The present invention relates to a fall-out preventing structure for a fixing device of a guard member that is configured to guard a mounting portion of a rotary blade in a cutting machine having, for example, a circular grinding wheel or the rotary blade such as a saw blade or a tipped circular saw.
For example, a tabletop cutting machine includes a table for placing a material to be cut on an upper surface, and a cutting machine body supported above the table and operated to move upward and downward, and a cutting work is performed by moving the cutting machine body downward while a rotary blade is rotated, so that the rotary blade cuts into the material to be cut, which is fixed on the table. A technology relating to the cutting machine of this type is disclosed, for example, in the following Patent Document.
The cutting machine body includes a body case (blade case) supported so as to be movable upward and downward with respect to the table. An electric motor is mounted in the body case as a drive source. A rotational output of the electric motor is transmitted through a speed reduction gear train to a spindle that projects into the body case. In the body case, the rotary blade is fixed to the spindle with a blade fixing device such as a nut. The front of the mounting portion of the rotary blade with respect to the spindle (a rotary blade mounting portion) is guarded (shielded) by a guard member such as a guard panel. Generally, the guard member is supported by the body case. The guard member guarding the front of the rotary blade mounting portion prevents the blade fixing device from becoming damaged or from being loosened unintentionally due to interference with other articles or the like.
In contrast, the guard member is configured to be capable of being retracted from the front of the rotary blade mounting portion in order to ensure ease of maintenance such as removing the rotary blade from the spindle. Normally, the guard member is supported by the body case in such a state that it can pivot vertically between a guard position, which shields the front of the rotary blade mounting portion, and a retracted position, which opens the same. By opening the front of the rotary blade mounting portion, mounting and demounting operations of the rotary blade can be performed easily. Normally, the guard member is configured to be reliably fixed to the guard position with a fixing screw or the like.
Patent Document 1: Japanese Patent No.3553267
However, according to the guard structure of the related art described above, if the fixing screw is loosened too much unintentionally for moving the guard member from the guard position to an open position, the fixing screw might be removed from a threaded hole of the body case. If the fixing screw is removed, the operation for fixing again the guard member after the maintenance has been completed becomes cumbersome and, in addition, if the removed fixing screw has been lost, it requires a troublesome work for finding the screw and, in some cases, another fixing screw must be prepared.
Accordingly, it is an object of the present invention to prevent a fixing device such as a fixing screw for fixing a guard member to a guard position from unintentionally falling out, so that convenience of fixing operation with respect to mainly the guard position of the guard member is provided.
The above-described problem is solved by the invention described below. According to a first aspect of the invention, in a fall-out preventing structure of a cutting machine configured to perform a cutting operation by rotating a rotary blade by an electric motor mounted on a body case of a cutting machine body, a mounting portion of the rotary blade with respect to a spindle configured to output a rotary motive power of the electric motor is guarded by a guard member, the guard member is supported by the body case such that the guard member is movable between a guard position for guarding the mounting portion of the rotary blade and an open position for opening the mounting portion and is able to be fixed at the guard position by a fixing device, and the fixing device is provided with a fall-out preventing member for preventing fall-out from the body case.
With the first aspect of the invention, the fixing device for fixing the guard member to the guard position is provided with the fall-out preventing member for preventing the fixing device from falling out of the body case, and therefore, it is not necessary to make efforts for looking for the fixing device or setting the same again in a stage of fixing the guard member again at the guard position after completion of the maintenance work for the rotary blade mounting portion; in this respect, the operation for fixing the guard member can be rapidly and easily performed, and hence the workability of the maintenance operation can be improved.
For example, a fixing screw can be used as the fixing device. The fixing screw may be screwed into a threaded hole of the body case, so that the guard member is fixed at the guard position. By loosening the fixing screw, the guard member can be moved to the open position. The fixing screw is prevented by the fall-out preventing member from being excessively loosened and removed from the threaded hole, so that a part of its threaded shaft portion is always held in the state of being screwed into the threaded hole, hence fall-out from the body case can be prevented. Therefore, in the stage of fixing the guard member again at the guard position, it is not necessary to make an effort of again setting the threaded shaft portion of the fixing screw into the threaded hole, and simply rotating the fixing screw in the tightening direction can tighten the fixing screw for fixing the guard member.
According to a second aspect of the invention, in the first aspect of the invention, the guard member is configured to be movable between the guard position and the open position as the guard member rotates upward and downward.
With the second aspect of the invention, the guard member is supported by the body case so as to be rotatable upward and downward via a support shaft. For example, it may be possible to configure such that the guard member moves to the open position as it rotates downward, and that the guard member moves to the guard position as it rotates upward. In the case that a flat plate (a guard plate) is used as the guard member, the movement between the guard position and the open position is achieved by rotating the plate in a plane direction along the side surface of the body case.
According to a third aspect of the invention, in the first or second aspect of the invention, the fall-out from the body case is prevented by mounting a leaf spring serving as the fall-out preventing member on the body case and engaging the fixing device with the leaf spring.
With the third aspect of the invention, the fall-out of the fixing device can be prevented by using a simple and inexpensive configuration. The leaf spring is mounted on the body case in a state in which its urging force acts in the fixing direction of the fixing device (the direction for fixing the guard member). Therefore, as the fixing device is moved in the direction (the direction for releasing the faxing state of the guard member) opposite to the fixing direction against the urging force of the leaf spring, the fixed state of the guard member at the guard position is released. With the configuration of moving the fixing device against the urging force of the leaf spring, the fixing device is prevented from being unintentionally excessively moved in the direction opposite to the fixing direction, whereby the fall-out of the fixing device from the body case is prevented.
According to a fourth aspect of the invention, in the third aspect of the invention, an engaging hole is formed in the leaf spring, and a fixing screw serving as the fixing device is prevented from falling out of the body case due to prying of a head portion of the fixing screw against the engaging hole.
With the fourth aspect of the invention, the head portion of the fixing screw is engaged in a state of being entered into the engaging hole of the leaf spring, and therefore, the fall-out of the fixing screw from the threaded hole of the body case can be further reliably prevented.
Referring now to
Arranged on the upper surface of the table 2 is a positioning fence 5 for positioning the material W to be cut, in the direction of the plane of the table. The positioning fence 5 is fixed on the side of the base 3, and is arranged in a state of straddling over the upper surface of the table with a small gap so as to allow the horizontal rotation of the table 2. The material W to be cut, positioned by the positioning fence 5 is fixed to the upper surface of the table 2 by a clamp device, which is not illustrated.
The body supporting portion 4 includes a pair of left and right slide bars 6, 6 configured to support the cutting machine body 10 so as to be slidable in the horizontal direction with respect to the table 2, an inclinable support mechanism 18 configured to incline the cutting machine body 10 leftward or rightward when viewed from the user (the direction orthogonal to the paper plane in
The body supporting arm 8 is bent into an L-shape, and a body case 11 of the cutting machine body 10 is supported at a bent distal end side so as to be tillable upward and downward via a body tilting shaft 9. The body case 11 covers a range of upper half the circumference of a circular rotary blade 12. The rotary blade 12 rotates clockwise in
Provided on the back side of the body case 11 is a handle portion 14 that the user holds. When the user holds the handle portion 14 and pulls a switch lever 15 of a trigger type with a fingertip, the electric motor is activated and the rotary blade 12 rotates. When the user holds the handle portion 14 and tilts the cutting machine body 10 downward, the rotating rotary blade 12 can cut the material W to be cut.
A movable cover 16 covers a range of substantially lower half the circumference of the rotary blade 12. The movable cover 16 is supported by the guard member 20 in a state of being vertically pivotable via a support shaft 16a extending in parallel to the spindle 13. The guard member 20 is supported by the body case 11. Detailed description of the guard member 20 will be given later.
The movable cover 16 is opened and closed in conjunction with the tilting operation of the cutting machine body 10. A link arm 17 is interposed between the movable cover 16 and a distal end portion the body supporting aim 8. A rear end portion a (left end portion in the drawing) of the link arm 17 is coupled to the distal end portion of the body supporting arm 8 so as to be vertically pivotable via a support shaft 17a. The support shaft 17a is arranged at a position shifted away from the body tilting shaft 9 by a certain dimension. In association with the tilting operation of the cutting machine body 10, the link arm 17 is tilted vertically about the support shaft 17a with respect to the body supporting arm 8. When the cutting machine body 10 is tilted downward, the movable cover 16 rotates counterclockwise in
The guard member 20 is mounted on the front side of the body case 11. The guard member 20 is supported by the body case 11 in such a state that its front end side is vertically rotatable via the support shaft 21. An engaging recess 20a and a stopper projection 20b are formed on the rear end side of the guard member 20. In this embodiment, the engaging recess 20a is formed into a semi-circular shape so as to open upward.
A fixing device 30 is mounted on the front side of the body case 11 so as to correspond to the engaging recess 20a.
As shown in
The head portion 30b of the fixing device 30 is positioned in an engaging hole 31a of a leaf spring 31. The engaging hole 31a is formed to have a diameter which allows entry of the head portion 30b but does not allow passage of the flange portion 30c therethrough. The leaf spring 31 corresponds to one embodiment of the fall-out preventing member for the fixing device defined in the claims and functions to prevent the fixing device 30 from falling out of the threaded hole 11a and hence from the body case 11.
The engaging hole 31 a is formed at one end side of the leaf spring 31. The other end side of the leaf spring 31 is fixed to the front surface of the body case 11 by a mounting screw 32. The urging force of the leaf spring 31 acts in a direction for moving the fixing device 30 in the tightening direction (the upper side in
Also, when the fixing device 30 is loosened by a certain amount as shown in
When the fixing device 30 is sufficiently loosened within a range that does not cause the fixing device 30 to be fallen out, the flange portion 30c is moved away from a peripheral edge portion of the engaging recess 20a and is separated from the lower side of the stopper projection 20b, so that the fixation of the guard member 20 on the side of the rotating distal end side (the rear end portion side) is released. The engaging recess 20a of the guard member 20 is formed in a state of opening upward, and therefore, if the fixing state by the fixing device 30 is released, the guard member 20 is brought into a state of being capable of rotating downward (counterclockwise in the drawing). As shown in
According to the fall-out preventing structure for the fixing device according to the embodiment configured as described above, even if the fixing device 30 is loosened in order to move the guard member 20 to the opening position, the fixing device 30 may not fall out of the threaded hole 11 a due to the unintentional loosening as in the related art, hence the tightening operation of the fixing device 30 can be performed rapidly when the guard member 20 is subsequently fixed again at the guard position, and in this respect, the maintenance operation for the rotary blade mounting portion can be performed efficiently.
Various modifications may be made to the embodiment described above. For example, although the hexagonal bolt was exemplified as the fixing member, other types of screws (bolts) may also be applicable. In addition, in addition to the screw, coupling members having the other configurations, such as a clip or an insertion pin may be used as the fixing device.
Although the guard member 20 is rotatably supported at its the front side and is fixed at its back side in the exemplified configuration, a configuration reversed in the fore-and-aft direction, that is, a configuration rotatably supported at the back side and fixed at the front side is also applicable.
Also, although the exemplified configuration uses the leaf spring 31 as the fall-out preventing member for the fixing device 30, for example, as shown in
In addition, in the exemplified configuration, the guard member 20 is rotated downward to move to the open position, however it is also possible to apply a configuration in which the guard member 20 is rotated upward (clockwise in
The guard member 40 is provided with an engaging recess 40a at a rear portion thereof. The engaging recess 40a is provided in a state of opening downward inversely with the engaging recess 20a. The fixing device 30 is provided on a lateral portion of the body case 11 to correspond to the engaging recess 40a. The fixing device 30 is prevented from falling out of the body case 11 by the leaf spring 31 in the same manner as described above.
In this manner, in the case of the configuration in which the guard member 40 is rotated upward to be moved to the open position, even if the fixing device 30 has been loosened, the guard member 40 is prevented from rotating downward from the guard position because the engaging recess 40a is brought to ride thereon from above, so that a portion corresponding to the stopper projection 20b of the guard member 20 can be omitted.
Although the movable cover 16 is rotatably supported by the guard member 20 in the exemplified configuration, the movable cover 16 may be rotatably supported by the other portion, and the same configuration can be applied in a same manner to a cutting machine having no movable cover. The movable cover is not supported by the above-described guard member 40. Therefore, the configuration of fixing the guard member 40 at the guard position by the exemplified fixing device 30 may be applied to a cutting machine lacking this type of movable cover, such as a cutting machine having a grinding wheel as a rotary blade.
Number | Date | Country | Kind |
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2009-163884 | Jul 2009 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2010/060535 | 6/22/2010 | WO | 00 | 1/19/2012 |