COFFEE BREWING PRESS WITH DISPLACEABLE AGITATOR
A beverage brewing press has an open topped container for receiving a liquid and particulate matter to be brewed into a beverage, a hollow plunger shaft, a sealing filter piston disposed on the plunger shaft, the sealing filter piston having a peripheral seal slidably sealing to an interior of the container and for separating the interior of the container into a first compartment and a second compartment, the piston having a filter thereon for allowing brewed beverage to be filtered from the first compartment into the second compartment upon displacement of the piston, an agitator disposed below the piston, the agitator being fastened to an agitator shaft disposed concentrically rotatably and slidably in the hollow plunger shaft, a displaceable distance being provided between the agitator and the piston, the agitator shaft being slidable in the plunger shaft to take-up the displaceable distance between the agitator and the piston when the piston moves toward the agitator due to an axial force exerted on the plunger shaft moving the piston in the direction of the agitator. In some embodiments, a spring is provided to absorb the displaceable distance and may also transmit rotational force to the agitator.
The present invention is related to beverage brewing apparatus and in particular to a beverage brewing press apparatus that includes a displaceable agitator to assist in the brewing process.
Beverage brewing devices such as the “French Press” are known in which a beverage to be brewed, for example, coffee, is allowed to brew for a period of time in a container holding hot liquid, i.e., water, into which the ground coffee beans have been disposed. After the period of brewing, a force is exerted on a plunger device which causes a sealing filter piston assembly (plunger) to compress the brewed hot liquid against the ground coffee beans to further enhance brewing and transfer the brewed beverage from a first compartment of the container containing the coffee grinds through the filter of the sealing filter piston assembly to a second compartment of the container, typically above the first compartment. The coffee grinds remain sealed by the sealing filter piston assembly in the first compartment. A defect of these known devices is that there is no means provided in these devices to assist or enhance the brewing process, for example, to derive greater flavor from the coffee grinds, other than through the time that the grinds are brewed in the heated water and the pressing action of the piston assembly.
U.S. Pat. No. 7,040,218 to Biolchini Jr. describes a stirring coffee press that includes agitator blades that are disposed directly below the sealing filter piston assembly to enhance the brewing process. The agitator blades are turned by a shaft that is disposed concentrically in a hollow outer shaft that drives the sealing filter piston assembly.
A drawback of this known device is that the agitator blades are disposed immediately below the sealing filter piston assembly. The location of the agitator blades directly below the sealing filter piston assembly provides for decreased agitation of the liquid and coffee grinds contained within the liquid and therefore does not provide an optimal degree of agitation of the liquid and therefore brewing of the hot beverage.
It is an object of the present invention to provide a beverage brewing apparatus that enhances the brewing process by providing improved agitation of the brewing beverage.
SUMMARY OF THE INVENTIONAccording to the invention, a beverage brewing press is provided having an agitator disposed below a sealing filter piston assembly in a container at a displaceable distance from the sealing filter piston assembly. The agitator blades are disposed during brewing prior to the pressing operation more centrally in the compartment where the beverage is being brewed and thus can more efficiently assist in the brewing process. A knob is coupled to an agitator shaft that is coupled to the agitator blades and can be rotated as desired to agitate the liquid and grinds during the brewing process. When the brewing process is complete, an axial force is exerted on the sealing filter piston assembly to drive the sealing filter piston assembly toward the bottom of the container in the direction of the agitator blades, forcing the brewed liquid through the filter of the piston assembly into a second compartment above the piston assembly. Once the agitator blades bottom near the bottom of the container, including on top of a layer of coffee grinds, the sealing filter piston assembly continues to move toward the agitator blades and the displaceable distance between the agitator blades and the sealing filter piston assembly decreases so that the agitator blades lie adjacent the sealing filter piston assembly.
In another embodiment, a compression spring in communication with the agitator shaft absorbs the displacement of the sealing filter piston assembly toward the agitator blades. In this embodiment, the spring preferably is disposed concentrically around the agitator shaft between the agitator shaft and a hollow plunger shaft that surrounds the agitator shaft and the spring.
In one embodiment having the spring, the agitator shaft is a one piece shaft having a stepped-down diameter portion around which the spring is concentrically wound.
In another embodiment having the spring, the agitator shaft is a two piece shaft having a reduced diameter shaft around which the spring is disposed and which shaft is concentrically disposed slidably in a larger diameter shaft which, at least in part, has a keyed or splined inner diameter in which the reduced diameter shaft is slidably disposed in a manner such that rotatable force can be transmitted between the two shafts.
In yet another embodiment, the spring is connected to the agitator shaft such that the spring transmits rotational force to the agitator shaft to rotate the agitator.
According to one aspect, the invention is a beverage brewing press comprising an open topped container for receiving a liquid and particulate matter to be brewed into a beverage; a plunger shaft having a proximal end and a distal end; a sealing filter piston assembly received slidably in the open topped container and disposed at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container; an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end; the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft allowing rotatable movement to be transmitted to the agitator blade assembly; the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly; the agitator shaft being slidable in the plunger shaft when the sealing filter piston assembly and agitator blade assembly displace toward each other due to a force being exerted on the plunger shaft moving the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container.
In one embodiment, a spring is disposed in communication with the agitator shaft for exerting an axial force on the agitator shaft such that the spring absorbs, at least in part, the displaceable distance between the agitator blade assembly and the sealing filter piston assembly as the sealing filter piston assembly moves in the direction of the agitator blade assembly toward the bottom of the container.
According to another aspect, the invention is an open topped container for receiving a liquid and particulate matter to be brewed into a beverage; a removable cover received on the open top having an opening therein for slidably receiving a plunger shaft having a proximal and a distal end; a sealing filter piston assembly received at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for slidably sealing to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container; an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end; the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft allowing rotatable movement to be transmitted to the agitator blade assembly; the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly; a spring disposed in communication with the agitator shaft for exerting a force on the agitator shaft; the agitator shaft comprising a one piece shaft having a stepped-down diameter portion with the spring being disposed concentrically around the stepped-down diameter portion between a shoulder formed on the agitator shaft where the agitator shaft steps-down to the stepped-down diameter portion and an end of the plunger shaft; the spring absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other due to an axial force being exerted on the plunger shaft to move the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container; wherein a knob is provided at the proximal end of the agitator shaft for providing a rotational force to the agitator shaft to rotate the agitator blade assembly; and further comprising a second knob disposed at the proximal end of the hollow plunger shaft for providing the axial force on the plunger shaft to displace the sealing filter piston assembly in the container.
According to yet another aspect, the invention is an open topped container for receiving a liquid and particulate matter to be brewed into a beverage; a removable cover received on the open top having an opening therein for slidably receiving a plunger shaft having a proximal end and a distal end; a sealing filter piston assembly received on a distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container; an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end; the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft allowing rotatable movement to be transmitted to the agitator blade assembly; the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly; a spring disposed in communication with the agitator shaft for exerting an axial force on the agitator shaft; the agitator shaft comprising a two piece shaft comprising a first diameter first shaft and a reduced diameter second shaft that is slidable in the first shaft and keyed to the first shaft to allow transmission of a rotatable force between the first and second shafts; the spring absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other due to an axial force being exerted on the plunger shaft to move the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container; wherein the spring is concentrically disposed about the reduced diameter second shaft between an end of the first shaft forming a shoulder for abutting against one end of the spring and an end of the hollow plunger shaft; further comprising a knob on the second shaft for providing a rotational force to the agitator shaft to rotate the agitator blade assembly.
According to still another aspect, the invention is a beverage brewing press comprising an open topped container for receiving a liquid and particulate matter to be brewed into a beverage; a plunger shaft having a proximal end and a distal end; a sealing filter piston assembly received slidably in the open topped container and disposed at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container; an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end; the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft, the agitator shaft allowing rotatable movement to be transmitted to the agitator blade assembly; the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly; and the agitator shaft being slidable in'the plunger shaft when the sealing filter piston assembly and agitator blade assembly displace toward each other due to a force being exerted on the plunger shaft moving the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container; further comprising a spring in communication with the agitator shaft for absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other; further wherein the spring is fastened to the agitator shaft for transmitting a rotational force to the agitator shaft to rotate the agitator blade assembly.
The above and other objects, features and advantages of the present invention will be described in greater detail in the following Detailed Description.
The invention will now be described in greater detail in the following Detailed Description with reference to the Drawings in which:
With reference now to the drawings,
A sealing filter piston assembly 10 is provided in slidable sealing relationship to the interior wall 12 of the container. Preferably, the container cross section is round and the container 1 is cylindrical, although the container can have any desired cross section or shape. The sealing filter piston assembly comprises, with reference to
The expansion spring 22 may be fastened to the top support 20 by any suitable method, including for example, by having the coils of the spring 22 wound through a plurality of holes in a lip of the top support 20 in known fashion.
An internally threaded shoulder nut 24 is provided through aligned openings in the top and bottom supports 14 and 20 and the filter member 16. Nut 24 has internal threads that engage with external threads provided at the distal end of a hollow plunger shaft 26. Nut 24 also has external threads that are engaged by a threaded collar 25 to clamp the sealing piston filter piston assembly 10 components 14, 16 and 20 together between the nut 24 and the external collar 25. Preferably nut 24 is securely fastened, as by welding or peening, to bottom support 14. Collar 25 is preferably disposed so that it is captured on hollow plunger shaft 26 but rotatable on the shaft 26. For example, one way to capture the collar 25 on the shaft 26 rotatably is to provide an annular slot on shaft 26 into which an internal snap ring on collar 25 is received. Other methods can be used. These provisions allow for easy disassembly of the sealing filter piston assembly 10 components without loss of the small parts 24 and 25 upon disassembly for cleaning.
Hollow plunger shaft 26 at its proximal end has a knob 28 attached thereto either by welding or peening or by any other suitable fastening means such as threads.
Disposed rotatably and slidably inside the hollow plunger shaft 26 is an agitator shaft 30 that is coupled to agitator blade assembly 32. The agitator shaft 30 can be coupled to the agitator blade assembly 32 by welding, peening or by any other suitable fastening arrangement such as threads or a screw.
At the top of the agitator shaft 30, a knob 34 is provided. The knob may be threaded to the agitator shaft 30 as shown in phantom at 34A.
The coffee brewing press of the present invention is typically, in use, first provided with coffee grinds in a suitable amount in the container 1 before the press assembly is inserted into the container. Hot liquid, e.g., water, in a suitable amount, is poured into the container 1. Thereafter, the press assembly, which comprises the entire assembly described, is attached to the container 1 such that the sealing filter piston assembly 10 with agitator blade assembly 32 disposed below it is slidably inserted into the container 1 with the piston assembly 10 in sealing relationship to the container wall 12 and above the hot liquid. The cover 3 is received in the top opening of the container. The piston assembly 10 is pressed down via knob 28 to the surface of the liquid contained in the container 1. The agitator blade assembly 32 will be maintained at a defined displaceable distance from the piston assembly 10 in the hot brewing liquid, as illustratably shown in
Once the desired degree of brewing has been obtained, the user presses down on the plunger shaft knob 28. Pressing down on the knob 28 drives the hollow plunger shaft 26 downwardly. Sealing filter piston assembly 10, which is secured at the distal end of the plunger shaft by the collar 25 and nut 24, is driven toward the bottom of the container 1. The agitator blade assembly 32, although displaceable with respect to the sealing filter piston assembly 10 due to its fastening to the slidable agitator shaft 30, will tend to move as a unit with the piston assembly 10 due to its weight or it may start to displace toward the piston assembly 10 due to liquid pressure as the piston assembly moves downwardly. Once the agitator blade assembly 32 bottoms in the container including on any ground particulate matter forced to the bottom as shown in
The invention provides for improved agitation of the brewing liquid by virtue of the location of the agitator blade assembly 32 during the brewing operation at a substantial distance from the sealing filter piston assembly 10 as show in
Agitator shaft 30′ in the embodiment shown in
Disposed about the stepped-down diameter portion 30B is the compression spring 38. Compression spring 38 is captured between the top proximal end of the hollow plunger shaft 26 right below the knob 28 and by the shoulder 36 of the agitator shaft 30.
When it is time to perform the pressing operation, as in the embodiment
The agitator blade assembly 32 will typically move as a unit with piston assembly 10. If spring 38 is a weak spring, the agitator blade assembly 32 may start to displace toward the piston assembly 10 before the agitator blade assembly bottoms out due to the pressure exerted by the liquid in the container against the agitator blade assembly 32 during the downward stroke.
Spring 38 is captured between shoulder 36 and the bottom of knob 28, and even when compressed, exerts a force therebetween which is not capable of overcoming the frictional force created by seal 18 of the piston assembly 10 against container wall 12, thus maintaining it in its compressed state after the pressing operation and maintaining the piston assembly 10 in its bottomed state.
In this embodiment, all features are the same, as previously described, except that the agitator shaft is again different and knob 28 is eliminated. Instead of a single piece shaft 30, 30′ as in the first two embodiments, the agitator shaft 30″ comprises a first lower shaft portion 30A′ having, at least in part, a hollow center 30AA as shown in phantom in
Although shaft portion 30A′ is shown as only partially hollow, the entire shaft portion 30A′ from end at shoulder 36′ to the agitator blade assembly 32 may be hollow.
The embodiment of
As with the second embodiment, depending on the strength of spring 38, the agitator blade assembly 32 may displace as a unit with the piston assembly 10 or it may start to displace toward the piston assembly 10 before it reaches bottom due to the pressure exerted by the liquid in the container on the agitator blade assembly 32 during the downward stroke.
In greater detail, in the position shown in
The compression force of the spring 38 is maintained between the shoulder 36′ of the larger diameter agitator shaft portion 30A′ and the collar 46 coupled to the plunger shaft 26 because the sealing frictional force provided by the sealing filter piston assembly 10 is adequate to keep the spring from expanding.
As shown, keyway 39 is preferably provided with a dogleg 39A to allow the key 41 to enter and be captured in the main part 39B of the keyway 39. A catch 39C is provided in the keyway portion 39B for holding the key 41 in the catch through bias provided by spring 38 so that the key 41 does not enter into the dogleg portion 39A of the keyway during rotation of knob 34 before the pressing operation. See
The shaft portions 30A′ and 30B′ can be separated by providing slight downward pressure on the knob 34 and twisting shaft 30B′ so that the key 41 is in the dogleg 39A and then retracting shaft 30B′ from shaft 30A′.
In a further embodiment having a two piece agitator shaft as in the embodiment of
In this embodiment, spring 38 is fastened to the top 36″ of agitator shaft 30′″ and to the knob 34 by any suitable means, such as by crimping or welding to stub shafts 31A and 31B provided on shaft 30′″ and knob 34, respectively, as shown. Other methods can be used to affix spring 38 to the knob 34 and shaft 30″, such as welding, peening or providing a slot for engaging the ends of spring 38, or any other suitable means can be used. In essence, the spring 38 serves as part of the agitator shaft and transmits rotational force when the knob 34 is turned. The spring 38 may also be disposed at an intermediate location in shaft 30′″.
As shown in
When the pressing operation is performed, knob 34 is driven downwardly, as shown in
The agitator blade assembly 32 can take various forms and can have a varying number of blades. It can, for example, include only a single blade disposed asymmetrically or it can be provided with 2 or more blades. A four blade assembly is shown in the embodiments. The blades can have different shapes than those shown.
In the second and third embodiments described, the agitator shaft, whether single piece or two piece, is shown such that the reduced diameter portion and the spring 38 are disposed at the top. However, variations that are still within the scope of the invention can be provided. For example, the reduced diameter portion of the agitator shaft can be provided at the bottom, near the sealing filter piston assembly 10 and the spring 38 can be located there to absorb the displacement between the piston assembly 10 and the agitator blade assembly 32.
Further, the beverage brewing press of the present invention is preferably made for ease of cleaning. According, all metal parts are preferably stainless steel, although other non-corroding metals or materials can be used. Knob 34 is preferably threaded to the agitator shaft 30, particularly in the embodiment of
Knob 34 may also be threaded to the agitator shaft portion 30B′ in the third embodiment. However, this is not necessary to enable disassembly because of the two piece nature of the agitator shaft, i.e., the agitator shaft portions 30A′ and 30B′ are separable via the doglegged keyway 39 as shown in
In the embodiment of
Furthermore, as previously described, the piston assembly 10 can be disassembled from plunger shaft 26 by turning the piston assembly 10 in the untightening direction while grasping collar 25. This will allow the collar 25 to unthread from nut 24, which is preferably fixedly attached to bottom support 14 by welding or peening. Once collar 25 separates from nut 24, the piston assembly 10 components 14, 16 and 20 can all be separated for cleaning. Preferably, collar 25 is captured rotatably on plunger shaft 26 so that it cannot be lost on disassembly, as previously described.
Although the present invention has been described in relation to particular embodiments thereof, many other variations and modifications and other uses will become apparent to those skilled in the art. It is preferred, therefore, that the present invention not be limited by the specific disclosure herein.
Claims
1. A beverage brewing press comprising:
- an open topped container for receiving a liquid and particulate matter to be brewed into a beverage;
- a plunger shaft having a proximal end and a distal end;
- a sealing filter piston assembly received slidably in the open topped container and disposed at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container;
- an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end;
- the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft, the agitator shaft allowing rotatable movement to be transmitted to the agitator blade assembly;
- the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly; and
- the agitator shaft being slidable in the plunger shaft when the sealing filter piston assembly and agitator blade assembly displace toward each other due to a force being exerted on the plunger shaft moving the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container.
2. The beverage brewing press of claim 1, further comprising a knob for providing a rotational force to the agitator shaft to rotate the agitator blade assembly.
3. The beverage brewing press of claim 2, further comprising a further knob disposed at the proximal end of the hollow plunger shaft for providing an axial force on the plunger shaft to displace the sealing filter piston assembly in the container.
4. The beverage brewing press of claim 2, further comprising a spring in communication with the agitator shaft for absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other.
5. The beverage brewing press of claim 4, wherein the agitator shaft is a one piece shaft having a stepped-down diameter portion with the spring being disposed concentrically around the stepped-down diameter portion between a shoulder formed on the agitator shaft where the agitator shaft steps-down to the stepped-down diameter portion and an end of the plunger shaft.
6. The beverage brewing press of claim 5, wherein a further knob is provided at the proximal end of the hollow plunger shaft for providing an axial force on the plunger shaft to displace the sealing filter piston assembly in the container and the further knob is disposed concentrically about the agitator shaft allowing the agitator shaft to rotate freely in the further knob, and wherein the spring is captured between the shoulder of the agitator shaft and the further knob.
7. The beverage brewing press of claim 1, wherein the agitator shaft is a two piece shaft comprising a first diameter first shaft and a reduced diameter second shaft that is slidable in the first shaft and keyed to the first shaft to allow transmission of a rotatable force between the first and second shafts, the shafts being slidable to take-up at least in part the displaceable distance between the agitator blade assembly and the sealing filter piston assembly.
8. The beverage brewing press of claim 7, further comprising a spring in communication with the agitator shaft for absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other.
9. The beverage brewing press of claim 8, wherein the spring is concentrically disposed about the reduced diameter second shaft between an end of the first shaft forming a shoulder for abutting against one end of the spring and an end of the hollow plunger shaft.
10. The beverage brewing press of claim 9, wherein the first shaft has a keyway slidably receiving a key on the second shaft.
11. The beverage brewing press of claim 10, wherein the keyway has a dogleg to a main portion of the keyway to allow capturing the key in the main portion of the keyway to prevent disconnection of the first and second shafts and furthermore allowing disconnection of the first and second shafts when the key is oriented in the dogleg.
12. The beverage brewing press of claim 11, further comprising a catch in the main portion of the keyway for catching the key in the keyway through bias provided by the spring and for preventing entry of the key into the dogleg to prevent disconnection of the first and second shafts.
13. The beverage brewing press of claim 9, further comprising a collar at the proximal end of the hollow plunger shaft for abutting against the spring.
14. The beverage brewing press of claim 9, further comprising a knob on the second shaft for providing a rotational force to the agitator shaft to rotate the agitator blade assembly.
15. The beverage brewing press of claim 2, wherein the knob is threaded to the agitator shaft to allow the agitator shaft and agitator blade assembly to be removed from the hollow plunger shaft.
16. The beverage brewing press of claim 4, wherein the spring transmits the rotational force from the knob to the agitator shaft to rotate the agitator blade assembly.
17. The beverage brewing press of claim 1, wherein the sealing filter piston assembly is clamped between a collar attached to the hollow plunger shaft and a threaded nut affixed to the sealing filter piston assembly to fix the sealing filter piston assembly on the plunger shaft and to allow disassembly of the sealing filter piston assembly and disassembly from the plunger shaft.
18. The beverage brewing press of claim 1, further comprising a removeable cover received on the open top having an opening therein for slidably receiving the plunger shaft.
19. A beverage brewing press comprising:
- an open topped container for receiving a liquid and particulate matter to be brewed into a beverage;
- a removable cover received on the open top having an opening therein for slidably receiving a plunger shaft having a proximal and a distal end;
- a sealing filter piston assembly disposed at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container;
- an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end;
- the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft, the agitator shaft allowing rotatable movement to be transmitted to the agitator blade assembly;
- the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly;
- a spring disposed in communication with the agitator shaft for exerting an axial force on the agitator shaft;
- the agitator shaft comprising a one piece shaft having a stepped-down diameter portion with the spring being disposed concentrically around the stepped-down diameter portion between a shoulder formed on the agitator shaft where the agitator shaft steps-down to the stepped-down diameter portion and an end of the plunger shaft;
- the spring absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other due to an axial force being exerted on the plunger shaft to move the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container;
- wherein a knob is provided at the proximal end of the agitator shaft for providing a rotational force to the agitator shaft to rotate the agitator blade assembly; and
- further comprising a second knob disposed at the proximal end of the hollow plunger shaft for providing the axial force on the plunger shaft to displace the sealing filter piston assembly in the container.
20. A beverage brewing press comprising:
- an open topped container for receiving a liquid and particulate matter to be brewed into a beverage;
- a removable cover received on the open top having an opening therein for slidably receiving a plunger shaft having a proximal end and a distal end;
- a sealing filter piston assembly disposed at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container;
- an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to an agitator shaft, the agitator shaft allowing rotatable movement to be transmitted to the agitator blade asssembly;
- the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft, the agitator shaft allowing rotatable movement to be transmitted to the agitator blade assembly;
- the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly;
- a spring disposed in communication with the agitator shaft for exerting a force on the agitator shaft;
- the agitator shaft comprising a two piece shaft comprising a first diameter first shaft and a reduced diameter second shaft that is slidable in the first shaft and keyed to the first shaft to allow transmission of a rotatable force between the first and second shafts;
- the spring absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other due to an axial force being exerted on the plunger shaft moving the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container;
- wherein the spring is concentrically disposed about the reduced diameter second shaft between an end of the first shaft forming a shoulder for abutting against one end of the spring and an end of the hollow plunger shaft; and
- further comprising a knob on the second shaft for providing a rotational force to the agitator shaft to rotate the agitator blade assembly.
21. The beverage brewing press of claim 20, wherein the knob also allows the axial force to be exerted on the plunger shaft.
22. A beverage brewing press comprising:
- an open topped container for receiving a liquid and particulate matter to be brewed into a beverage;
- a plunger shaft having a proximal end and a distal end;
- a sealing filter piston assembly received slidably in the open topped container and disposed at the distal end of the plunger shaft, the sealing filter piston assembly having a peripheral seal for sealing slidably to an interior wall of the container and for separating the interior of the container into a first compartment and a second compartment, the sealing filter piston assembly having a filter thereon for allowing brewed beverage to be filtered and passed from the first compartment of the container into the second compartment of the container upon displacement of the sealing filter piston assembly in the container;
- an agitator blade assembly disposed below the sealing filter piston assembly in the first compartment, the agitator blade assembly being fastened to a distal end of an agitator shaft having a proximal and distal end;
- the plunger shaft comprising a hollow shaft, the agitator shaft being disposed concentrically rotatably and slidably in the plunger shaft, the agitator shaft allowing rotatable movement to be transmitted to the agitator blade assembly;
- the agitator blade assembly being disposed such that there is a displaceable distance between the agitator blade assembly and the sealing filter piston assembly; and
- the agitator shaft being slidable in the plunger shaft when the sealing filter piston assembly and agitator blade assembly displace toward each other due to a force being exerted on the plunger shaft moving the sealing filter piston assembly in the direction of the agitator blade assembly toward the bottom of the container;
- further comprising a spring in communication with the agitator shaft for absorbing at least a part of the displaceable distance between the agitator blade assembly and the sealing filter piston assembly when the sealing filter piston assembly and agitator blade assembly displace toward each other;
- further wherein the spring is fastened to the agitator shaft for transmitting a rotational force to the agitator shaft to rotate the agitator blade assembly.
23. The beverage brewing press of claim 22, wherein the spring is attached for rotational movement between a knob and the agitator shaft.
Type: Application
Filed: May 16, 2016
Publication Date: Nov 16, 2017
Inventor: Daniel L. Dujmich (Staten Island, NY)
Application Number: 15/155,390