1. Field of the Invention
The present invention relates to a pneumatic tool and more particularly, to an air intake control structure for pneumatic tool.
2. Description of the Related Art
In a conventional pneumatic tool, more particularly, a reciprocating type pneumatic tool, the vibration produced by the impact unit may cause damage to the internal parts or injure the operator if the impact unit is stopped against the workpiece during its operation.
There are commercially available pneumatic tools that have means to prevent idle running. However, these designs are commonly complicated, resulting in a high manufacturing cost. There are also known simple designs of pneumatic tools, however these simple designs of pneumatic tools cannot effectively prevent idle running.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide an air intake control structure for pneumatic tool that controls intake of air rapidly and accurately, preventing idle running. It is another object of the present invention to provide an air intake control structure for pneumatic tool that has a simple structure convenient for assembly and practical for durable use.
To achieve these and other objects of the present invention, the air intake control structure is used in a pneumatic tool and coupled to an impact unit, comprising a tool body, the tool body comprising a mounting portion, an accommodating chamber defined in the mounting portion, and an air inlet in air communication with the accommodating chamber; a sliding barrel adapted to accommodate the impact unit, the sliding barrel comprising a barrel body mounted in the accommodating chamber of the tool body in an airtight status and movable between a first position and a second position, and a stop flange extending around the periphery of the barrel body; a damper unit adapted to buffer movement between the sliding barrel and the tool body; and an air control device, the air control device comprising a plug mounted in the air inlet of the tool body and adapted to block the air intake when the sliding barrel is moved to the first position, and to open the air inlet for letting a compressed air pass through the air inlet to move the impact unit when the sliding barrel is moved to the second position.
a is a sectional view showing an alternate form of the air control device according to the present invention.
b is a sectional view showing another alternate form of the air control device according to the present invention.
a is a sectional view showing still another alternate form of the air control device according to the present invention.
b is a sectional view showing still another alternate form of the air control device according to the present invention.
a is a sectional view showing still another alternate form of the air control device according to the present invention.
b corresponds to
a is a sectional view showing still another alternate form of the air control device according to the present invention.
b corresponds to
Referring to
The tool body 10 comprises a mounting portion 11, a handle 12 connected to the mounting portion 11, a first bearing hole 13 and an accommodating chamber 14 and a second bearing hole 15 formed in proper order in the mounting portion 11, a seal ring groove 141 and an air groove 142 respectively extending around the inside wall of the mounting portion 11 within the accommodating chamber 14, a first locating means (for example, a screw hole) 16 disposed at one end of the first bearing hole 13, a second locating means 17 and a positioning means 18 (both the second locating means 17 and the positioning means 18 form a screw hole) disposed near the orifice of the second bearing hole 15, and an air inlet 19 formed in the handle 12 and extending to the accommodating chamber 14. Further, a seal ring 71 is mounted in the seal ring groove 141 inside the tool body 10.
The sliding barrel 20 comprises a barrel body 21 axially slidably inserted into the accommodating chamber 14 and peripherally surrounded by the seal ring 71 to prevent leakage of air, an air chamber 22 defined within the barrel body 21, an inner thread 23 formed in the air chamber 22 inside the barrel body 21 for receiving the impact unit 8, a plurality of air holes 24 in air communication between the air chamber 22 and the air groove 142 of the tool body 10, a stop flange 25 extending around the periphery of the barrel body 21, and an air groove 26 extending around the periphery of the barrel body 21 adjacent to the stop flange 25. The air holes 24 and air groove 26 of the sliding barrel 20 are in air communication with the air groove 142 of the tool body 10.
The damper unit 30 comprises a first damper 31 and a second damper 32. The first and second dampers 31 and 32 each comprise a damping coil 311 or 321 respectively mounted on the barrel body 21 of the sliding barrel 20 near the two distal ends thereof, and a locating means 313 or 323 extended from the respective damping coil 311 or 321 and respectively fastened to the first locating means 16 and second locating means 17 of the tool body 10.
The air control device 40 comprises a cylindrical plug 41 inserted into the air inlet 19 of the tool body 10, a sealing flange 42 formed integral with the peripheral wall of the cylindrical plug 41, an air hole 43 axially extending through the two distal ends of the cylindrical plug 41, a stop portion 45 facing the compressed air source, and a sealing portion 47 for stopping against the stop flange 25 of the sliding barrel 20.
The operation of the present invention is outlined hereinafter. When pressed the press-button switch (not shown), compressed air is allowed to pass to the air inlet 19 of the tool body 10 and the air control device 40 to push the air control device 40 upwards, thereby forcing the sealing portion 47 against the stop flange 25 of the sliding barrel 20 and the sealing flange 42 against the peripheral wall of the air inlet 19, and therefore the air inlet 19 is blocked and the impact unit 8 does no work. At this time, the stop flange 25 of the sliding barrel 20 is in the first position as shown in
When wishing to reciprocate the impact unit 8, press the tip (front end) of the impact unit 8 against the workpiece to overcome the spring force of the damper unit 30 and to further force the sliding barrel 20 backwards, having the stop flange 25 of the sliding barrel 20 moved to the second position as shown in
The air control device and the matching parts may be variously embodied. For example, the stop portion 45A of the embodiment shown in
The air control device of the embodiment shown in
The air control device of the embodiment shown in
The stop flange 25A of the sliding barrel according to the embodiment shown in
According to the embodiment shown in
According to the embodiment shown in
According to the embodiment shown in
According to the embodiment shown in
According to the embodiment shown in
As indicated above, the contour of the axial cross section of the air control device can be made having a circular shape, T-shape, L-shape, trapezoidal shape, rectangular shape, spherical shape, or annular shape.
Further, the contour of the top side of the transverse cross section of the air control device can be made having an arched, straight, convex, or corrugated shape.
In general, the invention provides an air intake control structure for pneumatic tool, which has the following features:
1. The air intake control structure controls intake of air rapidly and accurately, preventing idle running.
2. The air intake control structure has a simple structure convenient for assembly and practical for durable use.
Although particular embodiments of the invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims
Number | Date | Country | Kind |
---|---|---|---|
93208054 | May 2004 | TW | national |