The present invention relates to a connector assembly, and more particularly to a connector assembly having an excellent leakage proofing effect.
A connector is applied to connect a pneumatic tool with a pressured air source to allow pressured air to be led to the pneumatic tool for work. With reference to
However, the O-ring 84 is held in an annular groove defined in the inner surface of the valve 82 and is easily detached from the groove due to the attachment or detachment of the plug 90 or the pressure of the pressured air. Consequently, the leakage proofing effect of the connector is lost. To re-assemble the O-ring 84 into the valve 82 is troublesome.
In addition, to enhance the combination of the O-ring 84 and the valve 82, an O-ring 84 with a larger diameter may be applied to prevent the O-ring 84 from being detached from the valve 82 unintentionally. However, the O-ring 84 with a large diameter will block a passage of the plug 90, so the air flow passing through the plug 90 will be reduced.
To overcome the shortcomings, the present invention tends to provide a connector assembly to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a connector assembly that can keep a seal from being detached from a valve unintentionally and can provide an excellent leakage proofing effect.
The connector assembly has a main body, a valve, a spring, a quick connecting device, and a seal. The main body is tubular and has two ends and two openings defined respectively in the ends of the main body. The valve is moveably mounted in the main body and has an adaptor, a valve body, and a sealing assembly. The adaptor has two open ends. The valve body is spaced from the adaptor and has a closed end away from the adaptor, an open end, and multiple through holes radially defined in the valve body. The sealing assembly is arranged between the valve body and the main body. The spring is mounted between the valve and the main body to provide a force for keeping the sealing assembly in a sealed condition. The quick connecting device is mounted on the main body. The seal is clamped between the valve body and the adaptor to connect the valve body with the adaptor and has a tubular sleeve and a clamped flange. The tubular sleeve has an end. The clamped flange is radially formed around and protrudes from the end of the sleeve and clamped between the open end of the valve body and the adaptor.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The main body 10 is tubular and has two ends and two openings defined respectively in the ends of the main body 10. Preferably, the main body 10 may be composed of two half bodies connected with each other by threading.
The valve 20 is moveably mounted in the main body 10 and has two ends. One of the ends of the valve 20 is an open end 201, and the other end of the valve 20 is a closed end 202. Multiple through holes 204 are radially defined in the valve 20 at positions adjacent to the closed end 202. A sealing assembly is arranged between the valve 20 and the main body 10 to seal a passage between the valve 20 and the main body 10 to prevent pressured air from flowing directly from one opening to the other opening of the main body 10. In practice, the sealing assembly may be conventional, or may comprise a sealing collar 12 and a sealing ring 206. The sealing collar 12 is mounted in the main body 10. The sealing ring 206 is mounted around the valve 20 at a position adjacent to the closed end 202 of the valve 20 and selectively abuts the sealing collar 12. With the abutment of the sealing ring 206 and the sealing collar 12, the passage between the valve 20 and the main body 10 can be sealed to prevent the pressured air from passing through the passage directly.
In addition, the valve 20 may be composed of a valve body 22 and an adaptor 24. The valve body 22 is spaced from the adaptor 24 and has a closed end and an open end, and the closed end of the valve body 22 is away from the adaptor 24 and is served as the closed end 202 of the valve 20. The through holes 204 of the valve 20 are radially defined in the valve body 22. The sealing ring 206 is mounted around the valve body 22. The adaptor 24 has two open ends, and the open end of the adaptor 24 that is away from the valve body 22 is served as the open end 201 of the valve 20.
The spring 30 is mounted between the valve 20 and the main body 10 to provide a force for keeping the sealing assembly in a sealed condition. Preferably, the spring 30 is mounted around the valve 20 and has two ends abutting respectively the valve 20 and the sealing collar 12.
With further reference to
The seal 50 is mounted in an inner surface of the valve 20 at a position adjacent to the open end 201 of the valve 20. The seal 50 comprises a tubular sleeve 52 and a clamped flange 54. The clamped flange 54 is radially formed around and protrudes from an end of the sleeve 52. When the valve 20 is composed of a valve body 22 and an adaptor 24, the clamped flange 54 is clamped between the open end of the valve body 22 and the adaptor 24. The adaptor 24 has an inner surface and a holding recess 242 defined in the inner surface of the adaptor 24. The sleeve 52 of the seal 50 is mounted in the holding recess 242 in the adaptor 24. Accordingly, the valve body 22 can be connected with the adaptor 24 by the seal 50. In addition, the inner surface of the seal 50 may be flush with the inner surface of the valve 20.
With reference to
Because the seal 50 comprises a tubular sleeve 52 and a clamed flange 54 and is engaged securely with the inner surface of the valve 20, the seal 50 is not easily detached from the inner surface of the valve 20 due to the attachment or detachment of the plug 70 or the pressure of the pressured air. Therefore, an excellent leakage proofing effect is provided. In addition, the seal 50 will not block the passage in the plug 70, so the air flow of the pressured air can be maximized.
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Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.