This application claims priority of Taiwanese Application No. 103208046, filed on May 8, 2014.
The disclosure relates to a nail gun, and more particularly to a gas nail gun and a gas container driving device thereof.
Referring to
When the safety member 14 is pressed against a workpiece (not shown) to move the sleeve 13 from the first position to the second position, the urging portion 131 of the sleeve 13 pushes and rotates the gas container driving member 17 to move the push portion 171 to push the gas container 15, so as to move the valve rod relative to the gun body 11, so that the gas is released from the gas container 15 and into the sealed combustion chamber 18 for being ignited.
However, when the gas container driving member 17 of the conventional gas nail gun 1 is rotated by the sleeve 13, a gap 110 (see
Therefore, an object of the disclosure is to provide a gas container driving device for use in a gas nail gun that can overcome the aforesaid drawback associated with the prior art.
According to the disclosure, a gas container driving device is for use in a gas nail gun. The gas nail gun includes a gun body that is formed with a receiving space extending in an X-direction and opening at a rear end portion of the gun body, a cylinder that is disposed in the gun body, a sleeve that cooperates with the gun body and the cylinder to define a combustion chamber thereamong and that is movable relative to the gun body and the cylinder in the X-direction between a first position where the combustion chamber is unsealed, and a second position where the combustion chamber is sealed, a safety member that is connected co-movably to the sleeve and that is disposed adjacent to a front end portion of the gun body for being pressed, and a gas container that is received in the receiving space and that has a valve rod. The valve rod is movable in the gun body for releasing gas from the gas container when being pressed. The gas container driving device includes a main body and a cap member. The main body has a connecting section that is connected to the gun body, and a lever section that has a control part and a push part. The control part is disposed in the receiving space and contactable with the sleeve. The push part is disposed at one side of the gas container opposite to the combustion chamber. When the sleeve is moved from the first position to the second position, the control part is pushed by the sleeve to drive the push part to push the gas container so as to move the valve rod relative to the gun body, so that the gas is released from the gas container and into the sealed combustion chamber. The cap member is pivoted to the main body and engages removably the rear end portion of the gun body for sealing the receiving space during operation of the main body.
Another object of the disclosure is to provide a gas nail gun that can overcome the aforesaid drawback associated with the prior art.
According to the disclosure, a gas nail gun includes a gun body, a cylinder, a sleeve, a safety member, a gas container and a gas container driving device. The gun body is formed with a receiving space that extends in an X-direction and that opens at a rear end portion of the gun body. The cylinder is disposed in the gun body. The sleeve cooperates with the gun body and the cylinder to define a combustion chamber thereamong, and is movable relative to the gun body and the cylinder in the X-direction between a first position where the combustion chamber is unsealed, and a second position where the combustion chamber is sealed. The safety member is connected co-movably to the sleeve and disposed adjacent to a front end portion of the gun body for being pressed. The gas container is received in the receiving space and has a valve rod. The valve rod is movable in the gun body for releasing gas from the gas container when being pressed. The gas container driving device includes a main body and a cap member. The main body has a connecting section that is connected to the gun body, and a lever section that has a control part and a push part. The control part is disposed in the receiving space and contactable with the sleeve. The push part is disposed at one side of the gas container opposite to the combustion chamber. When the sleeve is moved from the first position to the second position, the control part is pushed by the sleeve to drive the push part to push the gas container so as to move the valve rod relative to the gun body, so that the gas is released from the gas container and into the sealed combustion chamber. The cap member is pivoted to the main body and engages removably the rear end portion of the gun body for sealing the receiving space during operation of the main body.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiment with reference to the accompanying drawings, of which:
Referring to
The gun body 2 is formed with a receiving space 22 that extends in an X-direction (X) and that opens at a rear end portion 21 of the gun body 2.
The cylinder 3 is disposed fixedly in the gun body 2.
The sleeve 4 is disposed in the gun body 2, cooperates with the gun body 2 and the cylinder 3 to define a combustion chamber 30 thereamong, and is movable relative to the gun body 2 and the cylinder 3 in the X-direction (X) between a first position (see
The safety member 5 is connected co-movably to the sleeve 4 and disposed adjacent to a front end portion 24 of the gun body 2 for being pressed.
The gas container 6 is received in the receiving space 22, and has a valve rod 61. The valve rod 61 is disposed adjacent to the combustion chamber 30, and is movable in the gun body 2 for releasing gas from the gas container 6 when being pressed.
The gas container driving device 7 includes a main body 71, a cap member 72, a pivot shaft 73, two resilient members 74 and an engaging unit.
The main body 71 has a connecting section 711 that is connected to the gun body 2, and a lever section 714 that has two control parts 712 and two push parts 713 (only one is visible in
The cap member 72 has a plate portion 721, and two spaced-apart lugs 722.
The plate portion 721 is in contact with the rear end portion 21 of the gun body 2 for sealing the receiving space 22.
The lugs 722 respectively extend from two lateral edges of the plate portion 721 in the X-direction (X).
The pivot shaft 73 is disposed in the gun body 2 and extends in a direction perpendicular to the X-direction (X) and through the lugs 722 of the cap member 72 and the lever section 714 of the main body 71, so that the cap member 72 and the lever section 714 of the main body 71 are pivotable relative to each other about the pivot shaft 73.
The engaging unit includes first and second engaging structures 23, 723 respectively formed at an outer surface of the rear end portion 21 of the gun body 2 and a distal end of the plate portion 721 of the cap member 72. In this embodiment, the first engaging structure 23 is configured as a recess, and the second engaging structure 723 is configured as a protrusion and engages removably the first engaging structure 23 for sealing the receiving space 22. In a variation of the embodiment, the engaging unit may be configured as a hook and loop fastener device.
Each of the resilient members 74 has opposite ends connected respectively to the main body 71 and the cap member 72 for biasing resiliently the cap member 72 to contact the rear end portion 21 of the gun body 2 so as to maintain the engagement between the first and second engaging structures 23, 723 for sealing the receiving space 22.
The cap member 72 further has a projection 724 and an abutment portion 725.
The projection 724 is formed on an outer surface of the plate portion 721 of the cap member 72 so as to allow for manual operation.
The abutment portion 725 is formed at an opposite end of the plate portion 721 of the cap member 72 opposite to the second engaging structure 723 and abuts against the connecting section 711 of the main body 71. In this embodiment, the abutment portion 725 is made of a resilient material.
Referring further to
It is further noted that the abutment portion 725 of the cap member 72 deforms when the sleeve 4 is moved from the first position to the second position, and provides a restoring force to the main body 71 when the sleeve 4 is moved from the second position to the first position.
Referring back to
The advantages of this disclosure are as follows:
1. Since the cap member 72 and the lever section 714 of the main body 71 are pivotable relative to each other, the receiving space 22 is kept sealed during operation of the main body 71 for preventing environmental powdery dust from entering the receiving space 22.
2. The configuration of the gas container driving device 7 allows the receiving space 22 to be opened easily so as to facilitate replacement of the gas container 6.
While the disclosure has been described in connection with what is considered the exemplary embodiment, it is understood that this disclosure is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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103208046 | May 2014 | TW | national |