This application claims priority of Taiwanese Patent Application No. 104127702, filed on Aug. 25, 2015.
The disclosure relates to a pneumatic tool, and more particularly to a pneumatic tool having a trigger unit.
Referring to
However, during assembly of the first part 11 of the conventional pneumatic tool, the trigger member 15 must be positioned relative to the valve rod 14 such that the valve rod 14 is located on the moving path of the trigger member 15. Such assembly process is inconvenient.
Moreover, since the first and second parts 11, 12 are separable, a pressure drop may easily occur when a gap between the first and second parts 11, 12 is not air-tightly sealed. The operation to rotate the first and second parts 11, 12 relative to each other is inconvenient, and the connecting members 13 may easily get lost during such operation.
Therefore, an object of the disclosure is to provide a pneumatic tool that can alleviate at least one of the drawbacks of the prior art.
According to the disclosure, the pneumatic tool includes a main body unit, a control valve unit, a switch unit and a trigger unit. The main body unit has a flow path that extends from a rear end of the main body unit toward a front end of the main body unit for guiding inflow of air, and an annular space that surrounds the flow path. The control valve unit is disposed at the main body unit for removably blocking the flow path. The switch unit includes a sleeve member that surrounds the control valve unit and that is movably disposed in the annular space. The sleeve member is movable relative to the main body unit between an open position where the control valve unit is driven to unblock the flow path, and a block position where the control valve unit is driven to block the flow path. The trigger unit includes a trigger member that is disposed on an outer surface of the main body unit and that is operable to move the sleeve member of the switch unit between the open position and the block position.
Other features and advantages of the disclosure will become apparent in the following detailed description of the embodiments with reference to the accompanying drawings, of which:
Before the disclosure is described in greater detail, it should be noted that where considered appropriate, reference numerals or terminal portions of reference numerals have been repeated among the figures to indicate corresponding or analogous elements, which may optionally have similar characteristics.
Referring to
The main body unit 2 includes a hollow main body 21, a tubular member 23 that is surrounded by the main body 21 and that surrounds an axis (X) to define a flow path 22, and a tool head 24 that is mounted to a front portion of the main body 21 for outputting power. The main body 21 has an opening 212 formed at a rear portion 210 thereof. The tubular member 23 cooperates with the main body 21 to define an annular space 230 therebetween, and has a front end 231 that is inserted into the main body 21, a rear end 232 that is disposed out of the main body 21, a stop flange 233 that extends radially and outwardly and that is proximate to the rear end 232, and a step surface 234 that faces toward the front end 231 and that is proximate to the stop flange 233. The flow path 22 extends from the rear end 232 to the front end 231 for guiding air to flow into the main body 21.
The control valve unit 3 includes a valve member 31 that removably blocks the flow path 22 of the main body unit 2, an actuating rod assembly 32, and a basing member 33 that is connected to the valve member 31 and that is disposed in the tubular member 23. The actuating rod assembly 32 includes a rod 321 that is co-movably connected to the valve member 31 and that extends along the axis (X), and a pin 322 that is movably mounted to the tubular member 23 and that has an end abutting against the rod 321 and an opposite end extending out from the tubular member 23. The basing member 33 resiliently biases the valve member 31 to block the flow path 22. In this embodiment, the basing member 33 is configured as a spring, and the pin 322 is movable in a direction perpendicular to the direction of the axis (X).
The switch unit 4 includes a sleeve member 41 that surrounds the tubular member 23 and that is movably and partially disposed in the annular space 230, and a restoring member 42. The sleeve member 41 has a flange segment 411 that is disposed out of the tubular member 23, a main segment 412 that is connected to the flange segment 411, a convergent segment 413 that is connected to an end of the main segment 412 distal from the flange segment 411, and a stop surface 414 that is formed in the main segment 412 and that faces toward the flange segment 411. The inner diameter of the end of the main segment 412 distal from the flange segment 411 is greater than the inner diameter of the convergent segment 413. The sleeve member 41 is movable relative to the tubular member 23 between a block position (see
The trigger unit 5 includes a trigger member 52 that is disposed on an outer surface of the main body 21 of the main body unit 2. The trigger member 52 has a pivoted portion 521 that is pivoted to the main body 21, and an operating portion 522 and an actuating portion 523 that are respectively located at two opposite sides of the pivoted portion 521. The operating portion 522 is operable to pivot relative to the main body 21 about a pivoted point of the pivoted portion 521 between a released position (see
Referring to
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The main body 21 of the main body unit 2 further has a plurality of angularly spaced-apart positioning grooves 211 that are from in an outer surface of the rear portion 210 of the main body 21.
The trigger unit 5 further includes an annular rotating member 51 that rotatably surrounds the main body 21 and that is formed with an opening 511 (see
The positioning unit 6 includes a bolt member 61 that is movably mounted to the annular rotating member 51, a ball member 62 that is movably disposed in the mounting hole 512 of the annular rotating member 51, and a resilient member 63 that has two opposite ends respectively abut against the annular rotating member 51 and the bolt member 61. The bolt member 61 has a recess 611 that is formed in an outer surrounding surface thereof, and is movable between a fixing position (see
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The annular rotating member 51 has a slide groove 513 that is formed in an inner surface thereof.
The trigger member 52 has a connecting portion 524 that is movable within the slide groove 513, and an operating portion 522 and an actuating portion 523 that are respectively located at two opposite sides of the connecting portion 524. The operating portion 522 is operable to move relative to the main body 21 between a released position (see
By such, when the operating portion 522 of the trigger member 52 is pressed to move from the released position to the pressed position, the actuating portion 523 of the trigger member 52 pushes the flange segment 411 of the sleeve member 41 so as to move the sleeve member 41 to the open position against the basing action of the restoring member 42. At this time, the inner surface of the convergent segment 413 is in contact with the pin 322 of the actuating rod assembly 32 of the control valve unit 3, and pushes the pin 322 to move the rod 321 and the valve member 31 to unblock the flow path 22, so as to permit air to flow into the main body 21.
Referring to
The trigger unit 5 further includes an annular mounting member 53 that is fixedly mounted to the main body 21. The annular mounting member 53 has an annular groove 531 (see
By such, the position of the trigger member 52 relative to the main body 21 can be easily adjusted by moving the ball-shaped connecting portion 525 of the trigger member 52 along the annular groove 531 of the annular mounting member 53.
The advantages of this disclosure are as follows:
1. By virtue of the sleeve member 41 that controls that valve unit 3 and that is mounted within the main body 21, the pin 322 of the valve unit 3 need not be located on the moving path of the trigger member 52, so the trigger member 52 can be easily mounted to the main body 21 regardless of the relative angular position thereof.
2. By virtue of the operation of the bolt member 61 of the positioning unit 6 or movement of the trigger member 52 along the annular groove 531 (see
In the description above, for the purposes of explanation, numerous specific details have been set forth in order to provide a thorough understanding of the embodiments. It will be apparent, however, to one skilled in the art, that one or more other embodiments may be practiced without some of these specific details. It should also be appreciated that reference throughout this specification to “one embodiment,” “an embodiment,” an embodiment with an indication of an ordinal number and so forth means that a particular feature, structure, or characteristic may be included in the practice of the disclosure. It should be further appreciated that in the description, various features are sometimes grouped together in a single embodiment, figure, or description thereof for the purpose of streamlining the disclosure and aiding in the understanding of various inventive aspects.
While the disclosure has been described in connection with what are considered the exemplary embodiments, it is understood that this disclosure is not limited to the disclosed embodiments 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.
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104127702 A | Aug 2015 | TW | national |
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20170057076 A1 | Mar 2017 | US |