TORCH
A torch comprises a torch body and a gas valve assembly. The torch body comprises a handle portion and a main body portion, the gas valve assembly comprises a valve body, a first valve assembly and a second valve assembly, the valve body has an air inlet, an air outlet, a first gas path channel and a second gas path channel, and both the first gas path channel and the second gas path channel independently connect the air inlet with the air outlet. The air inlet is located at the main body portion, and is configured for connecting with a gas container. The torch also has an indication mark, comprising an ignition zone mark for indicating the ignition position of the first channel switch, an open mark for indicating the open position of the first channel switch and/or a close mark for indicating the close position of the first channel switch.
This application claims benefit of Chinese patent application No. CN 202422165554.9, filed on 3 Sep. 2024 and Chinese patent application No. CN 202422155742.3, filed on 3 Sep. 2024, the entire contents of which are hereby incorporated by reference.
TECHNICAL FIELDThe present application relates to the technical field of food cooking appliances, and specifically to a torch.
BACKGROUNDThe torch is an ignition heating tool derived from existing gas cans (such as butane gas cans). Torches are mainly divided into two forms according to the number of gas paths of their gas valves: single gas path and dual gas path. The single gas path torch has only one gas flow path, while the dual gas path torch has two gas flow paths that may be independently ventilated, and the two independent gas paths may be used to achieve different functions respectively.
The current problem with dual gas path torches is that the air inlet of the torch gas valve is not in the vertical direction (generally in the horizontal direction at its tail), resulting in that it cannot directly connect the gas bottle near to the middle position of the torch body of the torch like the single gas path torch, so that the torch connected with the gas bottle may be directly placed upright on the desktop by the gas bottle. The dual gas path torch needs to use a bent metal tube to extend the air inlet at the tail of the gas valve to the bottom of the torch handle on the torch body (it is difficult to extend to the middle position of the torch body), which makes the dual gas path torch installed with the gas bottle unable to be placed upright on the desktop, thereby causing inconvenience in use and safety problems. In addition, the processing and installation of the bent tube will also increase the product cost.
Usually, a handheld torch is mainly a simple throttle valve composed of a valve body and a valve core, which mainly controls the movement of the valve core by the user adjusting the switch, thereby opening, closing and adjusting the size of the gas outlet volume. Due to the rigid interference fit between the valve core and the valve body, the size of the ventilation volume and the switch process cannot be quantitatively matched. Therefore, the switch usually only has direction marks for opening or closing and direction marks for adjusting the gas volume size, and cannot accurately mark the opening, closing position or ignition position. This method leads to the realization of functions such as closing, opening and ignition of the torch, all directly depending on the user's manual blind operation, which increases the difficulty of the user's operation, and often requires the user to adjust repeatedly many times to successfully perform the corresponding operation.
SUMMARYThe main technical problem solved by the present application is: the dual gas path torch cannot be placed upright on the desktop after installing the gas bottle, thereby causing inconvenience in use and safety problems, and it needs to indirectly connect the air inlet with the gas bottle through a bent tube, which will lead to an increase in product cost.
In one embodiment, a torch is provided, comprising: A torch, comprising:
A torch body, the torch body comprises a handle portion and a main body portion, the handle portion is formed by extending from one end of the main body portion; and
A gas valve assembly, the gas valve assembly comprises a valve body, a first valve assembly and a second valve assembly, the valve body comprises an air inlet, an air outlet, a first gas path channel and a second gas path channel, the first gas path channel and the second gas path channel both independently connect the air inlet with the air outlet; the first valve assembly is defined at the first gas path channel for controlling a ventilation volume of the first gas path channel, the second valve assembly is defined at the second gas path channel for controlling an opening and a closing of the second gas path channel; and
The gas valve assembly is connected in the torch body, and the air inlet is located at the main body portion, the air inlet is configured for connecting with a gas container.
In one embodiment, the main body portion extends along a first axis, and the main body portion comprises a first end and a second end oppositely defined along the first axis, the handle portion is extendedly defined at the first end of the main body portion, the air outlet is located at the second end of the main body portion, and the air inlet is located between the first end and the second end.
In one embodiment, the main body portion extends along a first axis, an opening direction of the air inlet is perpendicular to the first axis, and an opening direction of the air outlet is parallel to the first axis.
In one embodiment, the main body portion also comprises a first side and a second side, the first side and the second side are oppositely defined along a direction perpendicular to the first axis; the air inlet and the handle portion are both located at the second side of the main body portion.
In one embodiment, the valve body comprises a first mating port communicating with the first gas path channel, the first mating port is located at the first side of the main body portion, and an opening direction of the first mating port is perpendicular to the first axis; the first valve assembly is mated with the first mating port and extends into the first gas path channel from the first mating port to adjust the ventilation volume of the first gas path channel.
In one embodiment, the gas valve assembly also comprises an adjustment knob, the adjustment knob is located at the first side of the main body portion, and the adjustment knob is connected to the first valve assembly; the adjustment knob is used to drive the first valve assembly to rotate to adjust the ventilation volume of the first gas path channel.
In one embodiment, the valve body comprises a second mating port communicating with the second gas path channel, the second mating port is located between the air inlet and the first mating port in a direction perpendicular to the first axis, and an opening direction of the second mating port is parallel to the first axis; the second valve assembly is mated with the second mating port and extends into the second gas path channel from the second mating port to control the opening and closing of the second gas path channel.
In one embodiment, the gas valve assembly further comprises an adjustment button, the adjustment button is located at the first end of the main body portion, and the adjustment button is connected to the second valve assembly for opening or closing the second valve assembly when triggered.
In one embodiment, further comprising a torch tube, the torch tube is connected to the first end of the main body portion, and the torch tube is communicated with the air outlet.
In one embodiment, it also comprises a gas container, the gas container is connected to the air inlet so that an internal space of the gas container is communicated with the air inlet; and a orthographic projection of a center of gravity of the torch on the bearing surface coincides with a orthographic projection of a bottom of the gas container on the bearing surface, when the gas container is placed on a bearing surface.
According to the torch of the above embodiments, the torch comprises a torch body and a gas valve assembly. The torch body comprises a handle portion and a main body portion, and the handle portion is connected to one end of the main body portion. The gas valve assembly comprises a valve body, a first valve assembly and a second valve assembly, the valve body has an air inlet, an air outlet, a first gas path channel and a second gas path channel, and both the first gas path channel and the second gas path channel independently connect the air inlet with the air outlet. The first valve assembly is disposed in the first gas path channel for controlling the ventilation volume of the first gas path channel, and the second valve assembly is disposed in the second gas path channel for controlling the opening and closing of the second gas path channel. The gas valve assembly is connected in the gun body, and the air inlet is located at the main body portion, and the air inlet is used for connecting with a gas container. On the one hand, when using the torch, the user may control the ventilation volume of the first gas path channel through the first valve assembly, thereby achieving gear adjustment or stepless adjustment of the firepower of the torch. The user may also control the opening of the second gas path channel through the second valve assembly, so that a large amount of combustible gas flows from the second gas path channel to the air outlet, thereby greatly increasing the firepower of the torch. On the other hand, since the air inlet is disposed on the main body portion instead of on the handle portion, when the gas container is installed at the air inlet, it is easier to balance the weight of the main body portion and the handle portion carried by the gas container, thereby facilitating the upright placement of the torch on a bearing surface such as a desktop through the gas container, and further facilitating the improvement of the convenience and safety of the use of the torch. Moreover, the gas container may be directly connected to the air outlet without indirectly connecting the air inlet with the gas container through a bent tube, thereby facilitating the reduction of the production cost of the torch.
The present application provides a handheld torch to improve the convenience of user operation.
Based on the above purpose, some embodiments of the present application provide a handheld torch, comprising:
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- A valve body, the valve body comprises a first gas channel capable of allowing a flow of gas for ignition;
- A first channel opening and closing assembly; and
- A first channel switch for the user to apply force, the first channel switch is movably installed on the valve body and forms a coupling structure with the first channel opening and closing assembly, and the first channel opening and closing assembly is capable to be driven by the first channel switch to adjust a ventilation volume of the first gas channel;
- The handheld torch comprises an indication mark, the indication mark comprises an ignition zone mark for indicating an ignition position of the first channel switch, an open mark for indicating an open position of the first channel switch and/or a close mark for indicating a close position of the first channel switch;
- The position of the first channel opening and closing assembly ensures that the ventilation volume of the first gas channel meets the ignition requirement, when the first channel switch moves to the ignition zone mark;
- The position of the first channel opening and closing assembly ensures that the first gas channel is opened, when the first channel switch moves to the open mark;
- The position of the first channel opening and closing assembly ensures that the first gas channel is closed, when the first channel switch moves to the close mark.
In some embodiments, the first channel opening and closing assembly comprises an ignition position, when the first channel switch moves to the ignition zone mark, the first channel opening and closing assembly is located at the ignition position, and the first channel opening and closing assembly opens the first gas channel, and the ventilation volume of the first gas channel meets the ignition requirement; and/or,
The first channel opening and closing assembly comprises an open position, when the first channel switch moves to the open mark, the first channel opening and closing assembly is located at the open position, and the first channel opening and closing assembly opens the first gas channel; and/or,
The first channel opening and closing assembly comprises a close position, when the first channel switch moves to the close mark, the first channel opening and closing assembly is in the close position, and the first channel opening and closing assembly closes the first gas channel.
In some embodiments, movement modes of the first channel switch comprises rotation, movement or a combination of both, and the indication mark is located on one side of at least one segment of a movement trajectory of the first channel switch, so that the position of the first channel switch is capable of being corresponded to the indication mark.
In some embodiments, the first channel opening and closing assembly comprises a sealing structure for sealing the first gas channel and a gas volume adjustment structure for adjusting the ventilation volume of the first gas channel;
The sealing structure opens the first gas channel, and the gas volume adjustment structure controls the ventilation volume in the first gas channel to meet the ignition requirement, when the first channel opening and closing assembly is located at the ignition position; the sealing structure closes the first gas channel, when the first channel opening and closing assembly is in the close position.
In some embodiments, the sealing structure comprises a first valve core, the first valve core is inserted into the first gas channel and forms a coupling structure with the first channel switch; the first valve core comprises a first sealing portion, the valve body comprises a second sealing portion facing the first sealing portion, a segment of the first gas channel penetrates the second sealing portion, and an elastic first flexible sealing member is provided between the first sealing portion and the second sealing portion;
The first sealing portion is able to separate from the second sealing portion and release the first flexible sealing member to open the first gas channel on the second sealing portion, when the first channel opening and closing assembly is located at the ignition position;
The first sealing portion is able to clamp the first flexible sealing member with the second sealing portion to close the first gas channel on the second sealing portion, when the first channel opening and closing assembly is in the close position.
In some embodiments, the gas volume adjustment structure comprises a gas volume adjustment member and a gas volume adjustment portion connected to the first valve core, the gas volume adjustment member comprises a penetrating first gas volume adjustment channel, the gas volume adjustment member is sealingly installed in the first gas channel, and the first gas channel cut off by the gas volume adjustment member communicates through the first gas volume adjustment channel; the gas volume adjustment portion is inserted into the first gas volume adjustment channel, and the gas volume adjustment portion is able to increase and decrease the gap with a cavity wall of the first gas volume adjustment channel with a movement of the first valve core to adjust the ventilation volume passing through the gap;
The ventilation volume corresponding to the minimum gap between the gas volume adjustment portion and the cavity wall of the first gas volume adjustment channel meets the ignition requirement, when the first channel opening and closing assembly is located at the ignition position; and/or,
When the first channel opening and closing assembly is in the close position, the minimum gap between the gas volume adjustment portion and the cavity wall of the first gas volume adjustment channel is 0, or the ventilation volume corresponding to the minimum gap is less than the ignition requirement, or an inner diameter of an outermost opening of the end of the first gas volume adjustment channel facing the first valve core is equal to an outer diameter of a position of the gas volume adjustment portion corresponding to the outermost opening.
In some embodiments, the sealing structure comprises a first valve core and a second valve core, the first valve core is sealingly inserted into the first gas channel; the first valve core comprises a transfer channel, and the first gas channel cut off by the first valve core communicates through the transfer channel; the first valve core comprises a third sealing portion, a segment of the transfer channel penetrates the third sealing portion, the second valve core is inserted into the transfer channel and forms a coupling structure with the first channel switch; the second valve core comprises a fourth sealing portion, and an elastic second flexible sealing member is provided between the third sealing portion and the fourth sealing portion;
The third sealing portion is able to separate from the fourth sealing portion and release the second flexible sealing member to open the transfer channel on the third sealing portion, when the first channel opening and closing assembly is located at the ignition position;
The third sealing portion is able to clamp the second flexible sealing member with the fourth sealing portion to close the transfer channel on the fourth sealing portion, when the first channel opening and closing assembly is in the close position.
In some embodiments, the second valve core is correspondingly provided with an elastic member for driving the fourth sealing portion to maintain sealing with the third sealing portion; the first channel switch comprises a movement motion, the second valve core is set on a movement path of the first channel switch, and the second valve core is capable to be driven to move by pressing the first channel switch, so that the fourth sealing portion and the third sealing portion release the second flexible sealing member to communicate with the transfer channel.
In some embodiments, the gas volume adjustment structure comprises a gas volume adjustment portion connected to the first valve core, a segment of the first gas channel is a second gas volume adjustment channel, the gas volume adjustment portion is inserted into the second gas volume adjustment channel, the first valve core forms a coupling structure with the first channel switch, and the gas volume adjustment portion is able to increase and decrease a gap with a cavity wall of the second gas volume adjustment channel with a movement of the first valve core to adjust the ventilation volume passing through the gap;
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- the ventilation volume corresponding to the minimum gap between the gas volume adjustment portion and the cavity wall of the second gas volume adjustment channel meets the ignition requirement, when the first channel opening and closing assembly is located at the ignition position; and/or,
- when the first channel opening and closing assembly is in the close position, the minimum gap between the gas volume adjustment portion and the cavity wall of the second gas volume adjustment channel is 0, or the ventilation volume corresponding to the minimum gap is less than the ignition requirement, or an inner diameter of an outermost opening of the end of the second gas volume adjustment channel facing the first valve core is equal to an outer diameter of the position of the gas volume adjustment portion corresponding to the outermost opening.
In some embodiments, a indication range of the indication mark is at least one regional segment or at least one point; and/or,
The indication mark also comprises a first large gas volume mark for indicating the first large gas volume position of the first channel switch; the ventilation volume of the first gas channel is greater than the ignition requirement, when the first channel switch moves to the first large gas volume mark.
In some embodiments, the handheld torch also comprises a housing, the valve body, the first channel opening and closing assembly and the first channel switch are all installed on the housing, and the ignition zone mark is defined on the housing, the valve body or installed on other components of the housing.
In some embodiments, the handheld torch also comprises a second channel opening and closing assembly and a second channel switch for the user to apply force, the valve body comprises a second gas channel, an air outlet of the first gas channel and an outlet of the second gas channel are merged or separately set, the second channel switch is movably installed on the valve body and forms a coupling structure with the second channel opening and closing assembly, and the second channel opening and closing assembly is capable to be driven by the second channel switch to move to close and open the second gas channel; and
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- the second channel opening and closing assembly comprises a second large gas volume position and a close position, the second channel opening and closing assembly opens the second gas channel, and the ventilation volume of the second gas channel is greater than the ignition requirement, when the second channel opening and closing assembly is located at the second large gas volume position; the second channel opening and closing assembly closes the second gas channel, when the second channel opening and closing assembly is in the close position.
In some embodiments, the first channel opening and closing assembly comprises a first valve core, the first valve core is inserted into the first gas channel and forms a coupling structure with the first channel switch; the first valve core comprises a first sealing portion, the valve body comprises a second sealing portion facing the first sealing portion, the first gas channel penetrates the second sealing portion, and an elastic first flexible sealing member is provided between the first sealing portion and the second sealing portion;
When the first channel opening and closing assembly is located at the ignition position, the first sealing portion is able to separate from the second sealing portion and release the first flexible sealing member to open the first gas channel on the second sealing portion, and the ventilation volume of the first gas channel meets the ignition requirement;
When the first channel opening and closing assembly is in the close position, the first sealing portion is able to clamp the first flexible sealing member with the second sealing portion to close the first gas channel on the second sealing portion.
In some embodiments, it also comprises a nozzle, and a temperature mark is defined on the nozzle, and the temperature mark is used to prompt a temperature of the nozzle.
In some embodiments, the indication mark also comprises a mode mark for indicating an use mode.
According to the handheld torch shown in the above embodiments, it has an indication mark, the indication mark comprises an ignition zone mark for indicating the ignition position of the first channel switch, an open mark for indicating the open position of the first channel switch and/or a close mark for indicating the close position of the first channel switch. The user may refer to the ignition zone mark, the open mark and/or the close mark to adjust the position of the first channel switch, and control the torch more quickly, conveniently and accurately, for example, simplifying the operation of repeatedly adjusting the ventilation volume during ignition operation, more accurately knowing whether the torch is open and/or more accurately confirming whether the torch is closed, etc.
The present application is further described in detail below through specific embodiments in combination with the drawings. Similar elements in different embodiments are assigned associated similar element numbers. In the following embodiments, many detailed descriptions are for better understanding of the present application. However, those skilled in the art may effortlessly recognize that some of the features may be omitted in different situations, or may be replaced by other elements, materials, methods. In some cases, some operations related to the present application are not shown or described in the specification, which is to avoid the core part of the present application being overwhelmed by excessive descriptions, and for those skilled in the art, it is not necessary to describe these related operations in detail, and they may fully understand the related operations according to the description in the specification and the general technical knowledge in the art.
In addition, the features, operations or characteristics described in the specification may be combined in any appropriate manner to form various embodiments. At the same time, the steps or actions in the method description may also be exchanged or adjusted in sequence in a manner obvious to those skilled in the art. Therefore, the various sequences in the specification and drawings are only for clearly describing a certain embodiment, and do not mean that they are necessary sequences, unless otherwise specified that a certain sequence must be followed.
The numbering of components in this article, such as “first”, “second”, etc., is only used to distinguish the described objects and does not have any sequential or technical meaning. The “connection” and “coupling” mentioned in the present application, unless otherwise specified, include direct and indirect connection (coupling).
The present embodiment provides a torch.
Please refer to
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On the one hand, when using the torch, the user may control the ventilation volume of the first gas path channel 213 through the first valve assembly 220, thereby achieving gear adjustment or stepless adjustment of the firepower of the torch. The user may also control the opening of the second gas path channel 214 through the second valve assembly 230, so that a large amount of combustible gas flows from the second gas path channel 214 to the air outlet 212, thereby greatly increasing the firepower of the torch. On the other hand, since the air inlet 211 is defined on the main body portion 120 instead of on the handle portion 110, when the gas container 400 is installed at the air inlet 211, it is easier to balance the weight of the main body portion 120 and the handle portion 110 carried by the gas container 400, thereby facilitating the upright placement of the torch on a bearing surface such as a desktop through the gas container 400, and further facilitating the improvement of the convenience and safety of the use of the torch. Moreover, the gas container 400 may be directly connected to the air outlet 212 without indirectly connecting the air inlet 211 with the gas container 400 through a bent tube, thereby facilitating the reduction of the production cost of the torch.
Among them, “the first gas path channel 213 and the second gas path channel 214 both independently connect the air inlet 211 with the air outlet 212” may be understood as the first gas path channel 213 and the second gas path channel 214 both being able to independently achieve on-off or ventilation volume adjustment control.
Please refer to
It should be noted that the torch may or may not comprise the gas container 400, that is, the gas container 400 may be regarded as a component of the torch, and at this time the torch comprises the gas container 400. The gas container 400 may also be regarded as an independent consumable used in cooperation with the torch, and at this time the torch does not comprise the gas container 400. Specifically, the gas container 400 may select a common gas bottle.
Please refer to
On the one hand, when the user connects the gas container 400 to the air inlet 211, the internal space of the gas container 400 communicates with the air inlet 211, so that the combustible gas in the gas container 400 may flow from the air inlet 211 into the cavity, and flow to the air outlet 212 through the first gas path channel 213 and/or the second gas path channel 214 for ignition. On the other hand, after the user uses the torch, the user may place the torch upright on a bearing surface such as a desktop or a countertop through the gas container 400. At this time, since the orthographic projection of the center of gravity of the torch on the bearing surface coincides with the orthographic projection of the bottom of the gas container 400 on the bearing surface, the torch is not easy to tip over, thereby facilitating the improvement of the convenience and safety of the placement of the torch.
Please refer to
On the one hand, the handle portion 110 is extendedly defined at the first end 121 of the main body portion 120, and the air inlet 211 is located between the first end 121 and the second end 122, so that the air inlet 211 is not located on the handle portion 110, and it is convenient to achieve weight balance between the first end 121 and the second end 122, thereby facilitating ensuring that the torch may be stably placed on the bearing surface through the gas container 400. On the other hand, the handle portion 110 and the air outlet 212 are respectively located at the first end 121 and the second end 122, so that when the user holds the handle portion 110 and operates the torch, the air outlet 212 that ejects flames is farther away from the user's hand, thereby facilitating the improvement of the safety of the torch. Specifically, the “first axis” may be regarded as the axis L1 in
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The air inlet 211 is opened in a direction perpendicular to the first axis, that is, the air inlet 211 is opened in the vertical direction when the torch is placed upright in actual application scenarios, which facilitates the direct connection of the gas container 400 to the air inlet 211. In the traditional scheme, when the air inlet 211 is opened horizontally, it is necessary to change the air inlet direction through a bent tube, and the gas container 400 may only be indirectly connected to the air inlet 211 through the bent tube, so it may be seen that the scheme of the present embodiment may simplify the installation structure and reduce the production cost. Moreover, opening the air outlet 212 in a direction parallel to the first axis conforms to the user's operating habits when operating the torch, thereby facilitating ensuring the user's experience when operating the torch.
Please refer to
When the user places and uses the torch, the second side 124 of the main body portion 120 is usually located below the first side 123, which on the one hand conforms to the user's operating habits, that is, when the user holds the handle portion 110, most of the hand and the handle portion 110 are located below the main body portion 120, thereby facilitating the user's operation of the torch. On the other hand, when the gas container 400 is installed at the air inlet 211, it is also located at the lower part of the torch, which not only facilitates ensuring the safety of the torch, but also facilitates placing the torch upright on the bearing surface through the gas container 400 after using the torch.
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When using the torch, the user may rotate the adjustment knob 240 to drive the first valve assembly 220 to rotate, thereby changing the opening degree of the first gas path channel 213, so that the ventilation volume of the first gas path channel 213 changes, and then the stepless adjustment of the firepower of the torch may be achieved. Specifically, the first valve assembly 220 may select a valve core 221 that is rotationally assembled at the first mating port 215 and may change the opening degree through its own rotation.
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When using the torch, the user may press the adjustment button to open or close the second valve assembly 230. When the second valve assembly 230 is opened, a large amount of combustible gas may flow to the air outlet 212 through the second gas path channel 214, thereby increasing the firepower of the torch, and then realizing the “one-key big fire” function of the torch. It not only expands the function of the torch, but also provides the user with more flexible operation methods. Specifically, the adjustment button 250 may indirectly drive the second valve assembly 230 to open and close through a transmission member 260 set in the main body portion 120, or may be directly connected to the second valve assembly 230, and the second valve assembly 230 may select a check valve 231.
Please refer to
On the one hand, the torch tube 300 communicates with the air outlet 212, so that the torch tube 300 plays a role in constraining and guiding the ejected flames, thereby facilitating the improvement of the safety of the torch. On the other hand, when the gas container 400 is connected between the first end 121 and the second end 122 of the main body portion 120, since the torch tube 300 is connected to the first end 121 of the main body portion 120, it also plays the effect of weight balancing with the handle portion 110 at the second end 122 of the main body portion 120, thereby facilitating increasing the stability when the torch is placed upright on the bearing surface through the gas container 400.
In the usual use process of a handheld torch (referred to as torch), the switch and size of the ventilation volume in the torch are controlled by the user based on feeling. Due to the difficulty of quickly and accurately controlling the ventilation volume to the desired size in this blind operation, it often requires the user to operate repeatedly many times, increasing the difficulty and inconvenience of control. For example, when the torch is ignited, the air output volume needs to be controlled within a certain range to cooperate with the ignition switch for ignition. Due to the high difficulty of manual control, the requirements for the user are high. For another example, when closing the torch, the user may not be able to close the torch in place at one time, resulting in air leakage. For another example, when opening the torch, the user may not be able to open the torch in place at one time, resulting in no gas output and inability to ignite and use.
Therefore, in some embodiments of the present application, an indication mark is set on the torch, the indication mark comprises an ignition zone mark for indicating the ignition position of the first channel switch, an open mark for indicating the open position of the first channel switch and/or a close mark for indicating the close position of the first channel switch. The user may refer to the ignition zone mark, the open mark and/or the close mark to adjust the position of the first channel switch, and control the torch more quickly, conveniently and accurately, for example, simplifying the operation of repeatedly adjusting the ventilation volume during ignition operation, more accurately knowing whether the torch is open and/or more accurately confirming whether the torch is closed, etc.
Please refer to
The valve body 1 has a first gas channel A for gas flow for ignition. The valve body 1 may be used to form the first gas channel A or more gas channels. The valve body 1 may be an independent part or may be formed by splicing and combining multiple parts. In the embodiments shown in
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When the first channel switch 3 moves to the ignition zone mark 11, the position of the first channel opening and closing assembly 2 ensures that the ventilation volume of the first gas channel A meets the ignition requirement. The user may refer to the ignition zone mark 11 to adjust the position of the first channel switch 3. When the first channel switch 3 moves to the ignition zone mark 11, the user may directly perform ignition, improving the convenience of the user's ignition operation.
When the position of the first channel switch 3 corresponds to the ignition zone mark 11, the first channel opening and closing assembly 2 is at the ignition position, and the first channel opening and closing assembly 2 opens the first gas channel A, with the ventilation volume of the first gas channel A meeting the ignition requirements. At this time, the ventilation volume within the torch (which determines the gas output of the torch) meets the ignition requirements. The ventilation volume required for ignition refers to the gas flow rate within the range necessary for ignition at that moment. The specific value of the ventilation volume required for ignition can be referenced from existing technology and will not be elaborated here.
When the first channel switch 3 moves to the open mark, the position of the first channel opening and closing assembly 2 ensures that the first gas channel A is opened. When the first channel switch 3 moves to the close mark, the position of the first channel opening and closing assembly 2 ensures that the first gas channel A is closed.
The torch may have both an open mark and a close mark, or it may have only one of them. Referring to
For example, when the mark 13 is an open mark, and the first channel switch 3 moves from the open direction (counterclockwise rotation as shown in
When the mark 13 is a close mark, and the first channel switch 3 moves from the close direction (clockwise rotation as shown in
The indication marks can include, but are not limited to, sensory marks such as sound marks, color marks, text marks, or tactile marks. Tactile marks refer to a distinct feel, such as a click or resistance, that draws attention when the first channel switch 3 moves to the corresponding position. In some embodiments, the tactile mark may be visible or invisible.
Furthermore, in some embodiments, the positions of the first channel opening and closing assembly 2 can be further divided in detail. For example, in some embodiments, the first channel opening and closing assembly 2 has an ignition position. When the first channel switch 3 moves to the ignition zone mark, the first channel opening and closing assembly 2 is at the ignition position, opens the first gas channel A, and the ventilation volume of the first gas channel A meets the ignition requirements, allowing the user to ignite directly.
And/or, the first channel opening and closing assembly 2 has an open position. When the first channel switch 3 moves to the open mark, the first channel opening and closing assembly 2 is at the open position, and the first channel opening and closing assembly 2 opens the first gas channel A. In some embodiments, this open position may indicate the position where the first channel opening and closing assembly 2 just opens the first gas channel A. In other embodiments, at this open position, the ventilation volume of the first gas channel A may be less than the ignition requirement. Alternatively, in other embodiments, at this open position, the ventilation volume of the first gas channel A may also meet the ignition requirements.
And/or, the first channel opening and closing assembly 2 has a close position. When the first channel switch 3 moves to the close mark, the first channel opening and closing assembly 2 is at the close position, and the first channel opening and closing assembly 2 closes the first gas channel A.
Furthermore, the indication mark is typically placed on one side of the movement trajectory of the first channel switch 3, so that the user can align the position of the first channel switch 3 with the indication mark. The movement mode of the first channel switch 3 can be arbitrary, as long as it can drive the first channel opening and closing assembly 2 to open or close the first gas channel A and adjust the ventilation volume of the first gas channel A.
In some exemplary embodiments, the movement mode of the first channel switch 3 includes rotation, linear movement, or a combination of both, and the indication mark is located on one side of at least one segment of the movement trajectory of the first channel switch 3, such as on the side of a rotational movement trajectory, a linear movement trajectory, or a combination of both, to allow the user to better align the position of the first channel switch 3 with the indication mark. The direction of the rotational axis is not limited and can be vertical, horizontal, or inclined. Similarly, the direction of the linear movement is not limited and can be vertical, horizontal, or inclined.
Furthermore, in some embodiments, the first channel switch 3 can use rotational movement to adjust the ventilation volume of the first gas channel A, achieving fine-tuning and improving control accuracy. For example, in the embodiments shown in
Regarding another aspect of the indication mark, in some embodiments, the indication range of each indication mark is at least one regional segment or at least one point. For example, the indication range of the ignition zone mark 11 is at least one regional segment or at least one point. When the ignition zone mark 11 is a regional segment, as long as the first channel switch 3 aligns with this segment, it indicates that ignition is possible. This segment reduces the precision required for the user to control the first channel switch 3. When the ignition zone mark 11 is a point, as long as the first channel switch 3 aligns with this point, it indicates that ignition is possible. For example, in the embodiment shown in
Referring to
Furthermore, referring to
Regarding the position of the indication mark, it may be set on any component of the torch, as long as it may satisfy that the user is able to correspond the first channel switch 3 with the indication mark. For example, in some embodiments, please refer to
More specifically, in the embodiments shown in
On the other hand, the inventor of the present application, after repeated research and experiments, found that the reason why no ignition indication mark is set in the existing torch is mainly because the valve core and the valve body 1 in these torches are in hard contact, and the closing of the gas channel is achieved through the extrusion deformation of the contact surface between the valve core and the valve body 1. After long use, it is extremely easy to cause wear of the valve body 1 and the valve core, so that the position of tightening the valve core each time the gas valve is sealed is not fixed, so various indication marks cannot be accurately given to the user, and as the use time increases, a larger torque is generally required to tighten and open the valve core in the later stage, and the use experience will also be greatly reduced. With multiple uses, the wear is also aggravated, which will also affect the stability of the air output volume.
In order to solve this technical problem, the present application provides multiple embodiments regarding the first channel opening and closing assembly.
In some embodiments, the first channel opening and closing assembly 2 comprises a sealing structure for sealing the first gas channel A and a gas volume adjustment structure for adjusting the ventilation volume of the first gas channel A. Alternatively, in other embodiments, the gas volume adjustment structure may not be set separately, and the sealing structure, while completing the opening of the first gas channel A, is also used as a gas volume adjustment structure, that is, the opening degree opened by the sealing structure itself may also be configured for gas volume adjustment.
More specifically, when the first channel opening and closing assembly 2 comprises a sealing structure for sealing the first gas channel A and a gas volume adjustment structure for adjusting the ventilation volume of the first gas channel A. The gas volume adjustment structure and the sealing structure are set separately, the sealing structure is responsible for sealing, and it does not affect the control of the gas volume by the gas volume adjustment structure. The gas volume adjustment structure is only configured for adjusting the gas volume, and it is not used as the main sealing component, so there is no wear or less wear. In some embodiments, the control of the sealing structure may be separated from the control of the gas volume adjustment structure. Even if the sealing structure is worn, the gas volume adjustment structure may ensure more accurate gas volume control, thereby ensuring that the given indication mark is always accurate. Of course, in other embodiments, the sealing method of the sealing structure may also be improved to reduce the wear of the sealing structure.
Further, when the first channel opening and closing assembly 2 is located at the ignition position, the sealing structure opens the first gas channel A, and the gas volume adjustment structure controls the ventilation volume in the first gas channel A to meet the ignition requirement; when the first channel opening and closing assembly 2 is in the close position, the sealing structure closes the first gas channel A. Among them, when the first channel opening and closing assembly 2 is in the close position, since the sealing structure has completed the sealing of the first gas channel A, the gas volume adjustment structure may not be closed at this time, and kept at a certain opening degree, for example, kept at the opening degree required for the ignition position, and the next time the sealing structure is opened, ignition may be performed directly. Of course, when the first channel opening and closing assembly 2 is in the close position, the gas volume adjustment structure may also be closed with the movement of the first channel opening and closing assembly 2.
Please refer to
The first valve core 2101 forms a coupling structure with the first channel switch 3, that is, the first channel switch 3 may be linked with the first valve core 2101. The first valve core 2101 has a first sealing portion 2111, and the valve body 1 has a second sealing portion 1101 facing the first sealing portion 2111, and a segment of the first gas channel A penetrates the second sealing portion 1101.
Please refer to
When the first channel opening and closing assembly 2 is located at the ignition position, the first sealing portion 2111 is able to separate from the second sealing portion 1101 and release the first flexible sealing member 241 to open the first gas channel A on the second sealing portion 1101, thereby opening the entire first gas channel A.
When the first channel opening and closing assembly 2 is in the close position, please see
In this embodiment, when the first channel opening and closing assembly 2 is in the close position, the first sealing portion 2111 and the second sealing portion 1101 no longer directly contact, but achieve the sealing effect by squeezing the flexible sealing member between them, so that the relative position of the first sealing portion 2111 and the second sealing portion 1101 is basically fixed each time it is closed, and there will be no wear problem.
Further, please refer to
In this embodiment, the gas volume adjustment portion 2301 and the first valve core 2101 are integrally formed, but in other embodiments, the two may also be fixedly connected or transmission connected to each other, as long as they may move integrally. Since the first valve core 2101 and the gas volume adjustment portion 2301 move integrally in this embodiment, the opening and closing of the first gas channel A by the first valve core 2101 and the gas volume control of the first gas volume adjustment channel 2311 by the gas volume adjustment portion 2301 are performed synchronously, which may simplify the structure and also simplify the user's operation steps and difficulty.
Further, please refer to
In the embodiment shown in
Based on the matching structure of the first gas volume adjustment channel 2311 and the gas volume adjustment portion 2301, in some embodiments, when the first channel opening and closing assembly 2 is located at the ignition position, the ventilation volume corresponding to the minimum gap between the gas volume adjustment portion 2301 and the cavity wall of the first gas volume adjustment channel 2311 meets the ignition requirement;
And/or, when the first channel opening and closing assembly 2 is in the close position: the minimum gap between the gas volume adjustment portion 2301 and the cavity wall of the first gas volume adjustment channel 2311 is 0, or the ventilation volume corresponding to the minimum gap is less than the ignition requirement.
Alternatively, in some embodiments, when the first channel opening and closing assembly 2 is in the close position, the inner diameter of the outermost opening of the end of the first gas volume adjustment channel 2311 facing the first valve core 2101 is equal to the outer diameter of the position of the gas volume adjustment portion 2301 corresponding to the opening. At this time, no extrusion deformation or only slight deformation occurs between the mouth wall of the outermost opening of one end of the first gas volume adjustment channel 2311 and the gas volume adjustment portion 2301, so that the wear consumption between the two may be reduced to avoid inaccuracy of gas volume adjustment.
Please refer to
The movement of the first valve core 2101 on the valve body 1 may be either rotation or movement along part of the first gas channel A. Please refer to
More specifically, please refer to
Please refer to
Please refer to
Please refer to
Please refer to
When the first channel opening and closing assembly 2 is located at the ignition position, the third sealing portion 2131 is able to separate from the fourth sealing portion 251 and release the second flexible sealing member 242 to open the transfer channel 2121 on the third sealing portion 2131; when the first channel opening and closing assembly 2 is in the close position, the third sealing portion 2131 is able to clamp the second flexible sealing member 242 with the fourth sealing portion 251 to close the transfer channel 2121 on the fourth sealing portion 251.
In order to simplify the structure and prevent the second valve core 2501 from rotating with the first channel switch 3, please refer to
Specifically, in
In order to ensure that the second valve core 2501 may reset, please refer to
Further, please refer to
Further, please refer to
Please refer to
Please refer to
In the embodiment shown in
Based on the matching structure of the second gas volume adjustment channel 1201 and the gas volume adjustment portion 2301, in some embodiments, when the first channel opening and closing assembly 2 is located at the ignition position, the ventilation volume corresponding to the minimum gap between the gas volume adjustment portion 2301 and the cavity wall of the second gas volume adjustment channel 1201 meets the ignition requirement;
And/or, when the first channel opening and closing assembly 2 is in the close position: the minimum gap between the gas volume adjustment portion 2301 and the cavity wall of the second gas volume adjustment channel 1201 is 0, or the ventilation volume corresponding to the minimum gap is less than the ignition requirement.
Alternatively, in some embodiments, when the first channel opening and closing assembly 2 is in the close position, the inner diameter of the outermost opening of the end of the second gas volume adjustment channel 1201 facing the first valve core 2101 is equal to the outer diameter of the position of the gas volume adjustment portion 2301 corresponding to the opening. At this time, no extrusion deformation or only slight deformation occurs between the mouth wall of the outermost opening of one end of the second gas volume adjustment channel 1201 and the gas volume adjustment portion 2301, so that the wear consumption between the two may be reduced to avoid inaccuracy of gas volume adjustment.
The movement of the first valve core 2101 on the valve body 1 may be either rotation or movement along part of the first gas channel A. Please refer to
Please refer to
More specifically, please refer to
More specifically, please refer to
Please refer to
The above embodiments show embodiments in which the first channel opening and closing assembly 2 simultaneously comprises a sealing structure for sealing the first gas channel A and a gas volume adjustment structure for adjusting the ventilation volume of the first gas channel A. In some other embodiments of the present application, the gas volume adjustment structure may also be omitted, and the sealing structure, while completing the opening of the first gas channel A, is also used as a gas volume adjustment structure, that is, the opening degree opened by the sealing structure itself may also be configured for gas volume adjustment.
For example, please refer to
When the first channel opening and closing assembly 2 is located at the ignition position, the first sealing portion 2111 is able to separate from the second sealing portion 1101 and release the first flexible sealing member 241 to open the first gas channel A on the second sealing portion 1101, and the ventilation volume of the first gas channel A meets the ignition requirement;
When the first channel opening and closing assembly 2 is in the close position, the first sealing portion 2111 is able to clamp the first flexible sealing member 241 with the second sealing portion 1101 to close the first gas channel A on the second sealing portion 1101.
On the other hand, after the torch is ignited, it often requires a larger ventilation volume to support the combustion demand, and the first channel switch 3 is usually designed as a fine adjustment structure, so it is difficult to quickly increase the ventilation volume of the first gas channel A. Based on this, please refer to
The second channel opening and closing assembly 710 has a second large gas volume position and a close position, when the second channel opening and closing assembly 710 is located at the second large gas volume position, the second channel opening and closing assembly 710 opens the second gas channel B, and the ventilation volume of the second gas channel B is greater than the ignition requirement; when the second channel opening and closing assembly 710 is in the close position, the second channel opening and closing assembly 710 closes the second gas channel B.
In order to meet the fine adjustment demand of the first channel switch 3 and meet the demand of the second channel switch 720 to quickly expand the ventilation volume, in some embodiments, the first channel switch 3 adopts a rotation method to adjust the ventilation volume of the first gas channel A, for example, through a knob or other structures to achieve the purpose of stepless adjustment of gas volume. The second channel switch 720 adopts a pressing method to open the second gas channel B, for example, using the one-key big fire key 800 shown in
Please refer to
Please refer to
Please refer to
In addition, please refer to
The above uses specific examples to illustrate the present application, which is only used to help understand the present application and is not used to limit the present application. For those skilled in the art to which the present application belongs, according to the idea of the present application, several simple deductions, deformations or replacements may also be made.
Claims
1. A torch, comprising:
- a torch body, wherein the torch body comprises a handle portion and a main body portion, the handle portion is formed by extending from one end of the main body portion;
- a gas valve assembly, wherein the gas valve assembly comprises a valve body, a first valve assembly and a second valve assembly, the valve body comprises an air inlet, an air outlet, a first gas path channel and a second gas path channel, the first gas path channel and the second gas path channel both independently connect the air inlet with the air outlet; the first valve assembly is defined at the first gas path channel for controlling a ventilation volume of the first gas path channel, the second valve assembly is defined at the second gas path channel for controlling an opening and a closing of the second gas path channel; and wherein
- the gas valve assembly is connected in the torch body, and the air inlet is located at the main body portion, the air inlet is configured for connecting with a gas container.
2. The torch according to claim 1, wherein the main body portion extends along a first axis, and the main body portion comprises a first end and a second end oppositely defined along the first axis, the handle portion is extendedly defined at the first end of the main body portion, the air outlet is located at the second end of the main body portion, and the air inlet is located between the first end and the second end.
3. The torch according to claim 1, wherein the main body portion extends along a first axis, an opening direction of the air inlet is perpendicular to the first axis, and an opening direction of the air outlet is parallel to the first axis.
4. The torch according to claim 2, wherein the main body portion also comprises a first side and a second side, the first side and the second side are oppositely defined along a direction perpendicular to the first axis; the air inlet and the handle portion are both located at the second side of the main body portion.
5. The torch according to claim 4, wherein the valve body comprises a first mating port communicating with the first gas path channel, the first mating port is located at the first side of the main body portion, and an opening direction of the first mating port is perpendicular to the first axis; the first valve assembly is mated with the first mating port and extends into the first gas path channel from the first mating port to adjust the ventilation volume of the first gas path channel.
6. The torch according to claim 5, wherein the gas valve assembly also comprises an adjustment knob, the adjustment knob is located at the first side of the main body portion, and the adjustment knob is connected to the first valve assembly; the adjustment knob is used to drive the first valve assembly to rotate to adjust the ventilation volume of the first gas path channel.
7. The torch according to claim 5, wherein the valve body comprises a second mating port communicating with the second gas path channel, the second mating port is located between the air inlet and the first mating port in a direction perpendicular to the first axis, and an opening direction of the second mating port is parallel to the first axis; the second valve assembly is mated with the second mating port and extends into the second gas path channel from the second mating port to control the opening and closing of the second gas path channel.
8. The torch according to claim 7, wherein the gas valve assembly further comprises an adjustment button, the adjustment button is located at the first end of the main body portion, and the adjustment button is connected to the second valve assembly for opening or closing the second valve assembly when triggered.
9. The torch according to claim 2, further comprising a torch tube, wherein the torch tube is connected to the first end of the main body portion, and the torch tube is communicated with the air outlet.
10. The torch according to claim 1, further comprising a gas container, wherein the gas container is connected to the air inlet so that an internal space of the gas container is communicated with the air inlet; and an orthographic projection of a center of gravity of the torch on the bearing surface coincides with a orthographic projection of a bottom of the gas container on the bearing surface, when the gas container is placed on a bearing surface.
11. A handheld torch, wherein comprising:
- a valve body, wherein the valve body comprises a first gas channel capable of allowing a flow of gas for ignition;
- a first channel opening and closing assembly;
- and a first channel switch for the user to apply force, wherein the first channel switch is movably installed on the valve body and forms a coupling structure with the first channel opening and closing assembly, and the first channel opening and closing assembly is capable to be driven by the first channel switch to adjust a ventilation volume of the first gas channel;
- the handheld torch comprising an indication mark, wherein the indication mark comprises an ignition zone mark for indicating an ignition position of the first channel switch, an open mark for indicating an open position of the first channel switch and/or a close mark for indicating a close position of the first channel switch;
- the position of the first channel opening and closing assembly ensures that the ventilation volume of the first gas channel meets the ignition requirement, when the first channel switch moves to the ignition zone mark;
- the position of the first channel opening and closing assembly ensures that the first gas channel is opened, when the first channel switch moves to the open mark;
- the position of the first channel opening and closing assembly ensures that the first gas channel is closed, when the first channel switch moves to the close mark.
12. The handheld torch according to claim 11, wherein the first channel opening and closing assembly comprises an ignition position, when the first channel switch moves to the ignition zone mark, the first channel opening and closing assembly is located at the ignition position, and the first channel opening and closing assembly opens the first gas channel, and the ventilation volume of the first gas channel meets the ignition requirement; and/or,
- the first channel opening and closing assembly comprises an open position, when the first channel switch moves to the open mark, the first channel opening and closing assembly is located at the open position, and the first channel opening and closing assembly opens the first gas channel; and/or,
- the first channel opening and closing assembly comprises a close position, when the first channel switch moves to the close mark, the first channel opening and closing assembly is in the close position, and the first channel opening and closing assembly closes the first gas channel.
13. The handheld torch according to claim 11, wherein the first channel opening and closing assembly comprises a sealing structure for sealing the first gas channel and a gas volume adjustment structure for adjusting the ventilation volume of the first gas channel;
- the sealing structure opens the first gas channel, and the gas volume adjustment structure controls the ventilation volume in the first gas channel to meet the ignition requirement, when the first channel opening and closing assembly is located at the ignition position; the sealing structure closes the first gas channel, when the first channel opening and closing assembly is in the close position.
14. The handheld torch according to claim 11, further comprising a nozzle, and a temperature mark is defined on the nozzle, and the temperature mark is used to prompt a temperature of the nozzle.
15. The handheld torch according to claim 11, wherein the indication mark further comprises a mode mark for indicating an use mode.
Type: Application
Filed: Sep 3, 2025
Publication Date: Mar 5, 2026
Inventors: Yueyang Song (Zhuhai City), Xuchao Chen (Shenzhen), Xiang Wei (Shenzhen), Xinheng Jiang (Shenzhen)
Application Number: 19/317,652