AIR PUMP HAVING PIVOTAL PRESSURE GAUGE
An air pump device includes a housing having a barrel, a gasket engaged in the housing and having a cavity for engaging with an inflation valve, a pumping mechanism coupled to the barrel for generating and supplying a pressurized air to the barrel and the housing, the barrel includes an outer peripheral recess communicating with the chamber of the barrel for receiving the pressurized air from the barrel, and a pressure gauge includes a ring member engaged onto the barrel and includes an inlet formed in the pressure gauge and communicating with the outer peripheral recess of the barrel for receiving the pressurized air from the barrel and for indicating a pressure in the chamber of the barrel.
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1. Field of the Invention
The present invention relates to an air pump or hand pump device or apparatus, and more particularly to an air pump or hand pump device or apparatus including an improved pressure gauge pivotally or rotatably attached or mounted or secured or coupled to the air pump or hand pump and pivotal or movable relative to the air pump or hand pump to suitable selected position or location and for allowing the pressure gauge to be easily and quickly seen and read by the user.
2. Description of the Prior Art
Typical air pump devices or apparatuses comprise a piston slidably or movably disposed or engaged in a cylinder housing and movable along or relative to the air pump device for generating a pressurized air and for filling or supplying the pressurized air to selectively inflate various kinds of balls, inner tires of the bicycles or the motorcycles or the vehicles, or other inflatable articles, and a pressure gauge attached or mounted or secured to the air pump device for showing or indicating the pressure within the air pump device.
For example, U.S. Pat. No. 5,964,577 to Chuang, U.S. Pat. No. 6,196,807 to Wu, U.S. Pat. No. 6,485,264 to Wu, U.S. Pat. No. 6,558,129 to Wang, U.S. Pat. No. 6,805,537 to Wu, and U.S. Pat. No. 8,336,386 to Wang disclose several of the typical hand operated air pumps each also comprising a cylinder housing including a chamber or compartment formed therein for slidably or movably receiving or engaging with a piston which is slidable and movable along or relative to the air pump device for generating a pressurized air and for filling or supplying the pressurized air to selectively inflate various kinds of balls, inner tires of the bicycles or the motorcycles or the vehicles, or other inflatable articles, and normally, a pressure gauge is further provided and attached or mounted or secured to the air pump device for showing or indicating the pressure within the air pump device.
However, the pressure gauge of the typical air pump device or apparatus is normally solidly and stably attached or mounted or secured to the air pump device at one side of the air pump device and partially blocked or shielded or covered by the air pump device, such that the pressure gauge of the typical air pump device or apparatus normally may not be easily and quickly seen and read by the user.
The present invention has arisen to mitigate and/or obviate the afore-described disadvantages of the conventional hand air pump devices.
SUMMARY OF THE INVENTIONThe primary objective of the present invention is to provide an air pump device including improved pressure gauge pivotally or rotatably attached or mounted or secured or coupled to the air pump or hand pump and pivotal or movable relative to the air pump or hand pump to suitable selected position or location and for allowing the pressure gauge to be easily and quickly seen and read by the user.
In accordance with one aspect of the invention, there is provided an air pump device comprising a housing including a compartment formed therein, and including a barrel having a chamber formed in the barrel, and having an entrance formed in the barrel and communicating with the compartment of the housing and communicating with the chamber of the barrel for guiding a pressurized air to flow from the chamber of the barrel into the compartment of the housing, a gasket engaged in the compartment of the housing, and the gasket including a cavity formed in the gasket for engaging with an inflation valve, a pumping mechanism coupled to the barrel of the housing for generating and supplying the pressurized air to the chamber of the barrel and the compartment of the housing, the barrel of the housing includes an outer peripheral recess formed in an outer peripheral portion of the barrel and communicating with the chamber of the barrel for receiving the pressurized air from the barrel, and a pressure gauge includes a ring member engaged onto the barrel and includes an inlet formed in the pressure gauge and communicating with the outer peripheral recess of the barrel for receiving the pressurized air from the barrel and for indicating a pressure in the chamber of the barrel, the ring member of the pressure gauge is rotatable relative to and around the barrel and the tubular member and the housing for 360 degrees for allowing the pressure gauge to be easily and quickly seen and read by the user when the air pump device is actuated or operated by the user.
The barrel of the housing includes at least one orifice formed in the barrel and communicating with the outer peripheral recess and the chamber of the barrel for allowing the pressurized air to flow from the chamber of the barrel and through the orifice and into the outer peripheral recess of the barrel.
The barrel of the housing includes two sealing rings engaged onto the barrel and engaged with the ring member of the pressure gauge for making an air tight seal between the ring member of the pressure gauge and the barrel and for preventing an air leaking problem from being occurred.
The barrel of the housing includes two outer peripheral depressions formed in the outer peripheral portion of the barrel for engaging with sealing rings respectively, and the outer peripheral recess of the barrel is located between the outer peripheral depressions of the barrel and the sealing rings for preventing an air leaking problem from being occurred.
The housing includes a sliding member slidably received and engaged in the compartment of the housing, the sliding member includes a bore formed therein and communicating with the entrance of the barrel for receiving the pressurized air from the barrel, the sliding member is engaged with the gasket for squeezing or actuating the gasket to engage with and to grasp or grip the inflation valve.
The housing includes a follower slidably engaged in the compartment of the housing and engaged with the sliding member for depressing or actuating or moving the sliding member to squeeze or actuate the gasket to grasp or grip the inflation valve. The housing includes a cover attached to the housing and engaged with the gasket.
The housing includes a hand grip having a cam member engaged in the compartment of the housing and pivotally secured to the housing with a pivot shaft, and the cam member is contacted or engaged with the follower for actuating or forcing the follower and the sliding member to engage with the gasket and to grasp or grip the inflation valve to the housing.
The pumping mechanism includes a tubular member coupled to the barrel of the housing, and having a space formed in the tubular member, a piston slidably engaged in the space of the tubular member and movable relative to the tubular member for generating a pressurized air and for supplying the pressurized air to the chamber of the barrel and then to flow into the compartment of the housing.
The pumping mechanism includes a piston rod attached or mounted or secured to or extended from the piston, and a handle is attached or secured to the piston rod for moving the piston relative to the tubular member in order to generate the pressurized air.
Further objectives and advantages of the present invention will become apparent from a careful reading of the detailed description provided hereinbelow, with appropriate reference to the accompanying drawings.
Referring to the drawings, and initially to
For example, as shown in
For example, the barrel 20 includes a chamber 21 formed therein, and includes a lateral orifice or entrance 22 formed therein, such as formed in or through the barrel 20 of the housing 10 and communicating with the compartment 11 of the housing 10 for guiding the pressurized air to flow from the chamber 21 of the barrel 20 into the compartment 11 of the housing 10. The housing 10 further includes an outer thread 23 formed or provided on the outer peripheral portion of the barrel 20 for threading or engaging with an air pump or pumping mechanism 3 and for detachably or changeably or selectively attaching or mounting or securing or coupling the pumping mechanism 3 to the barrel 20 of the housing 10. The pumping mechanism 3 includes a cylinder housing or tubular member 30 detachably coupled to the barrel 20 of the housing 10, and having a chamber or compartment or space 31 formed therein.
The pumping mechanism 3 further includes a piston 32 (
A control ferrule or barrel or lock sleeve or lock nut 35 may further be provided and threaded or engaged with the barrel 20 (
The air pump device 1 further includes a valve piece or shank or sliding member 40, as shown in
As also shown in
As also shown in
As shown in FIGS. 1 and 3-5, the housing 10 includes one or more (such as two) outer peripheral depressions 24, 25 formed or provided in the outer peripheral portion of the barrel 20 for receiving or engaging with sealing rings 26, 27 respectively, and further includes an outer peripheral recess 28 also formed or provided in the outer peripheral portion of the barrel 20 and located between the outer peripheral depressions 24, 25 of the barrel 20, and further includes one or more cavities or apertures or orifices 29 formed therein and communicating with the outer peripheral recess 28 and the chamber 21 of the barrel 20 for allowing the pressurized air to selectively flow from the chamber 21 of the barrel 20 and to flow out through the orifices 29 and into the outer peripheral recess 28 of the barrel 20.
The air pump device 1 further includes a pressure gauge 70, such as an electrical type pressure gauge 70 having a barrel or sleeve or tubular member or ring member 71 attached or mounted or secured or engaged onto the barrel 20 and contacted or engaged with the sealing rings 26, 27 for selectively making a water or air tight seal between the ring member 71 of the pressure gauge 70 and the barrel 20, and the pressure gauge 70 includes an entrance or orifice or passage or aperture or inlet 72 formed therein and communicating with the outer peripheral recess 28 of the barrel 20 for selectively receiving the pressurized air from the barrel 20 and for indicating or showing the pressure in the chamber 21 of the barrel 20 and the space 31 of the tubular member 30.
In operation, as shown in
Accordingly, the air pump device or hand pump in accordance with the invention includes an improved pressure gauge pivotally or rotatably attached or mounted or secured or coupled to the air pump or hand pump and pivotal or movable relative to the air pump or hand pump to suitable selected position or location and for allowing the pressure gauge to be easily and quickly seen and read by the user.
Although this invention has been described with a certain degree of particularity, it is to be understood that the present disclosure has been made by way of example only and that numerous changes in the detailed construction and the combination and arrangement of parts may be resorted to without departing from the spirit and scope of the invention as hereinafter claimed.
Claims
1. An air pump device comprising:
- a housing including a compartment formed therein, and including a barrel having a chamber formed in said barrel, and having an entrance formed in said barrel and communicating with said compartment of said housing and communicating with said chamber of said barrel for guiding a pressurized air to flow from said chamber of said barrel into said compartment of said housing,
- a gasket engaged in said compartment of said housing, and said gasket including a cavity formed in said gasket for engaging with an inflation valve,
- a pumping mechanism coupled to said barrel of said housing for generating and supplying the pressurized air to said chamber of said barrel and said compartment of said housing, wherein:
- said barrel of said housing includes an outer peripheral recess formed in an outer peripheral portion of said barrel and communicating with said chamber of said barrel for receiving the pressurized air from said barrel, and a pressure gauge includes a ring member engaged onto said barrel and includes an inlet formed in said pressure gauge and communicating with said outer peripheral recess of said barrel for receiving the pressurized air from said barrel and for indicating a pressure in said chamber of said barrel.
2. The air pump device as claimed in claim 1, wherein said barrel of said housing includes at least one orifice formed in said barrel and communicating with said outer peripheral recess and said chamber of said barrel for allowing the pressurized air to flow from said chamber of said barrel and through said at least one orifice and into said outer peripheral recess of said barrel.
3. The air pump device as claimed in claim 1, wherein said barrel of said housing includes two sealing rings engaged onto said barrel and engaged with said ring member of said pressure gauge for making an air tight seal between said ring member of said pressure gauge and said barrel.
4. The air pump device as claimed in claim 3, wherein said barrel of said housing includes two outer peripheral depressions formed in said barrel for engaging with sealing rings respectively, and said outer peripheral recess is located between said outer peripheral depressions of said barrel and said sealing rings.
5. The air pump device as claimed in claim 1, wherein said housing includes a sliding member slidably received and engaged in said compartment of said housing, said sliding member includes a bore formed therein and communicating with said entrance of said barrel for receiving the pressurized air from said barrel, said sliding member is engaged with said gasket.
6. The air pump device as claimed in claim 5, wherein said housing includes a follower slidably engaged in said compartment of said housing and engaged with said sliding member.
7. The air pump device as claimed in claim 6, wherein said housing includes a hand grip having a cam member engaged in said compartment of said housing and pivotally secured to said housing with a pivot shaft, and said cam member is engaged with said follower for forcing said follower and said sliding member to engage with said gasket.
8. The air pump device as claimed in claim 1, wherein said housing includes a cover attached to said housing and engaged with said gasket.
9. The air pump device as claimed in claim 1, wherein said pumping mechanism includes a tubular member coupled to said barrel of said housing, and having a space formed in said tubular member, a piston slidably engaged in said space of said tubular member and movable relative to said tubular member for generating a pressurized air.
10. The air pump device as claimed in claim 9, wherein said pumping mechanism includes a piston rod extended from said piston, and a handle attached to said piston rod for moving said piston relative to said tubular member in order to generate the pressurized air.
Type: Application
Filed: Dec 17, 2013
Publication Date: Jun 18, 2015
Applicant: Beto Engineering & Marketing Co., Ltd. (Taichung)
Inventor: Lo Pin WANG (Taichung)
Application Number: 14/108,466