1. Field of the Invention
The present invention relates to an air pump apparatus, and in particular to an air pump nozzle for engaging with an inflation valve of an inflatable object.
2. The Prior Arts
Inflation valves are universally found installed on inflatable objects, such as tires. When inflation is needed, the inflation valve is engaged with a nozzle fastened to an air hose to allow air to be pumped into the inflatable object.
A conventional inflation valve is provided with a valve needle. When the valve needle is in a standby position, the air pressure inside the inflatable object seals the air valve and prevents the air from leaking out. When the valve needle experiences an external force, the valve is opened up, which enables the inside of the inflatable object to communicate with the atmospheric air and allows air to be discharged from or charged into the inflatable object.
In general, there are two methods to inflate an inflatable object. One is to engage a nozzle fastened to a hose with the inflation valve of the inflatable object. The hose is in turn connected with an air pump or an air compressor, so that air is pumped through the hose and the nozzle into the inflatable object. The other method is to engage the nozzle directly disposed at an air outlet of the air pump with the inflation valve, so that air may be pumped through the nozzle into the inflatable object.
The conventional needle tube E is structured with a tubular body having a protruded edge E3 formed at a proper position in its outer periphery. The protruded edge E3 divides the needle tube E into the first end E1 and the second end E2. The first end E1 is to be connected with a hose, while the second end E2 is to be pressed against the air valve of an inflatable object. The housing A has to be capable of rotating freely around the needle tube E in order to engage the cap B connected to the housing A with the inflation valve. To fulfill the requirement, the metal sleeve body D is disposed covering the block member C and part of the needle tube E to avoid the friction between the rubber block member C and an inner periphery of the housing A from hindering the housing rotation.
An objective of the present invention is to solve the structural problem of a conventional nozzle, wherein a sleeve body is required to isolate the inner periphery of the housing from the block member in order to avoid hindrance to the housing rotation caused by the contact therebetween. The requirement of the sleeve body complicates the manufacturing procedure and product assembly, which impedes the reduction of the manufacturing cost.
A primary feature of the present invention is to provide a block assembly seat which lodges the block member and the needle tube. The combination of the separate block assembly seat and the needle tube supersedes the aforementioned conventional integrally molded needle tube, as well as provides the isolating function of a conventional sleeve body.
One technical means of the present invention is to form a block assembly seat by mechanical machining or integral molding. At one end of the block assembly seat is a seat head with an enlarged diameter. The seat head is provided with a compartment for lodging the block member and the needle tube. A sidewall of the seat head isolates the block member from the inner periphery of the housing. The isolation prevents the housing rotation from being hindered by the friction caused by the contact between the rubber block member and the metal housing. In this respect, the block assembly seat supersedes the conventional sleeve body.
A further technical means of the present invention is, after the block member and the needle tube are lodged in the compartment of the block assembly seat, to align an air outlet of the needle tube with an air inlet of the block assembly seat, so that the air flow will not be affected. In this respect, the block assembly seat supersedes the conventional sleeve body.
An even further technical means of the present invention is, after the needle tube is installed in an insertion hole of the block member, to fit the protruded edge of the needle tube in a concave edge formed at the end of the insertion hole to prevent the needle tube from disaffiliating from the block member.
A still further technical means of the present invention is that, after the needle tube is fitted into the block member and then as a whole lodged in the compartment of the block assembly seat, which is in turn lodged in an inner space of the housing, the inner space is closed with a cap to prevent the block assembly seat from disaffiliating from the housing.
According to the present invention, the block member is isolated from the housing by the sidewall of the seat head of the block assembly seat. The isolation assures the smoothness of the housing rotation by avoiding the contact between the rubber block member and the metal housing. In this respect, the present invention supersedes the conventional sleeve body. Furthermore, the air flow from the block assembly seat to the needle tube is not affected. In this respect, the present invention supersedes the integrally molded structure of a conventional needle tube. Accordingly, the design of separate needle tube and block assembly seat according to the present invention not only simplifies the manufacturing procedure and product assembly, but also reduces the manufacturing cost.
The present invention will be apparent to those skilled in the art by reading the following detailed description of a preferred embodiment thereof, with reference to the attached drawings, in which:
With reference to
The housing 1, as shown in
The cap 2 is provided at the first end with an outer thread 21 which is in pair with the second inner thread 12, and a through hole 20 at a center thereof which extends from the first end through the second end.
The block assembly seat 3 may be manufactured with any material with proper strength and hardness, such as plastic or metal. At the first end of the block assembly seat 3 is formed with a seat head 31 with a larger diameter than the second end. The seat head 31 is provided at the end thereof with a concave compartment 310 of a proper depth. A centered air outlet 32 is extended from the compartment 310 towards the second end. The outer diameter of the seat head 31 is slightly smaller than the inner diameter of the inner space 10 of the housing 1, so that the seat head 31 may be lodged in the inner space 10. On the other hand, the outer diameter of the second end of the block assembly seat 3 is slightly smaller than the inner diameter of the through hole 20 of the cap 2, so that the second end may be inserted through the through hole 20.
The block member 5 is manufactured with material of excellent airtight performance, such as rubber. An insertion hole 51 is formed at a center of the block member 5. A concave edge 52 with an enlarged diameter is formed at an inner periphery of the second end of the block member 5. The outer diameter of the block member 5 is virtually equivalent to the inner diameter of the compartment 310 of the block assembly seat 3.
The needle tube 4 is provided with a centered air outlet 42 extending from the first end through the second end through the center of the needle tube 4 as shown in
Please refer to
With reference to
Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.
| Number | Name | Date | Kind |
|---|---|---|---|
| 1245115 | McEwen | Oct 1917 | A |
| 1362804 | Kraft | Dec 1920 | A |
| 1874915 | Crowley | Aug 1932 | A |
| 2027956 | Bowser | Jan 1936 | A |
| 2149681 | Johnston | Mar 1939 | A |
| 2918076 | Dockrell | Dec 1959 | A |
| 2939478 | Dockrell | Jun 1960 | A |
| 3727952 | Richardson | Apr 1973 | A |
| 4569363 | Kleeman | Feb 1986 | A |
| 4945337 | Huang | Jul 1990 | A |
| 4970904 | Knotts | Nov 1990 | A |
| 5365967 | Moore | Nov 1994 | A |
| 5398744 | Street et al. | Mar 1995 | A |
| 5762095 | Gapinski et al. | Jun 1998 | A |
| 5819781 | Wu | Oct 1998 | A |
| 6076544 | Pierce | Jun 2000 | A |
| 6382268 | Lin | May 2002 | B1 |
| 6786247 | Kemppainen et al. | Sep 2004 | B1 |
| 7309034 | Huang | Dec 2007 | B2 |
| 20080271789 | Huang | Nov 2008 | A1 |
| Number | Date | Country | |
|---|---|---|---|
| 20070272301 A1 | Nov 2007 | US |