Hereinafter, an example of the invention will be described in detail with reference to
As shown in
The operating bench 100 is used to place workpieces. The machine frame 200 is hinge jointed on one end of the operating bench rotatably and a bench clamp 110 is mounted on it. The bench clamp 110 may move forwards and backwards through the rotation of the hand-operated crank 120 to secure and support the workpieces. A spring is provided on the hinge part to provide a restoring force for the machine frame 200 to return to the original position after being turned down.
The machine frame 200 was fixed on one end of the operating bench 100 rotatably through a hinge, and a handle 210 is provided at the other end of the machine frame. A switch 220 for turning on and shutting off the power supply is provided on the handle 210. The motor 300 and the cutting part 400 are provided at one side of the machine frame 200.
The motor 300 is provided at one side of the machine frame 200, and the switch 220 is used to control the rotation of the motor to supply a rotary force.
The cutting part 400 is used to cut workpieces, and it comprises a cutting blade 410 mounted on a rotation shaft at one side of the machine frame 200; a guard board 420 configured to envelop the circumference of the cutting blade 410. The cutting blade 410 employs a disc mill knife. The motor 300 and the cutting blade 410 are joined with the transmission part 500.
A rotatable guide plate 421 is mounted on the end portion of the guard board 420 so that the spark produced when the cutting blade 410 is cutting metal materials moves downwards along the inner surface of the guard board, thereby preventing the spark or dust from spraying towards the operator.
The transmission part 500 is joined with the motor 300 and the cutting blade 410 and transfers the driving force through belts.
Namely, the transmission part 500 comprises a fixing plate 510 mounted on one side portion of the machine frame 200; a reduction pulley 520 mounted rotatably on the fixing plate 510 and having a twostep structure; a first belt 530 and a second belt 540 for joining the motor 300 and the reduction pulley 520 and for joining the reduction pulley 520 and the cutting blade 410.
The fixing plate 510 is mounted by means of welding or bolts projecting on the side of machine frame 200 on which the rotation shaft of motor 300 and the rotation shaft of cutting blade 410. The reduction pulley 520 decelerates the rotation of the motor in transferring the driving force. It includes a major diameter pulley 521 and a minor diameter pulley 522 with different diameters and being formed integrally, and is mounted rotatably on the center portion of front surface of the fixing plate 510.
Namely, in the reduction pulley 520, a rotation shaft is provided in the center of the minor pulley 522 and the major pulley 521 formed, e.g., integrally therewith. After passing through the fixing plate 510, the rotation shaft is fastened by a fixing means, such as nuts and the like.
The first belt 530 and second belt 540 are used to join the driving pulley 310 on the rotation shaft of the motor 300 and the major diameter pulley 521 of the reduction pulley 520 and to join the minor diameter pulley 522 of the reduction pulley 520 and the driven pulley 411 mounted on the rotation shaft of the cutting blade 410. The diameters of the driving pulley 310 and the minor diameter pulley 522 are 20 to 40 mm, and the diameters of the driven pulley 411 and major diameter pulley 521 are 60 to 80 mm.
In such a way, in the transmission part 500, the driving pulley 310 of motor 300 rotates to cause the movement of the first belt 530, and the movement of the first belt 530 also makes the major diameter pulley 521 of the reduction pulley 520 rotate, with the rotation of the major diameter pulley 521, the minor diameter pulley 522 causes the movement of the second belt 540 which in turn makes the driven pulley 411 rotate, so that the cutting blade 410 has a rotating speed of 3800 to 4200 rpm.
A casing 550 for overlaying the circumference of the fixing plate 510 is provided removably on the fixing plate 510 of the transmission part 500.
The casing 550 is used to protect the transmission part 500 with one side opening, the interior periphery of the opening overlays the exterior periphery of the fixing plate 510, and the casing is fixed on a fixing sheet 511 at outside of the fixing plate 510 by bolt joints.
Moreover, a plurality of through holes 551 are formed on the outer surface of the casing 550 so that air may circulated through the through holes 511 to prevent overheating inside the casing. Moreover, as shown in
The construction of the tension regulating means is: the reduction pulley 520 is mounted movably in a cutting groove 512 formed on the fixing plate 510. A screw bolt 560 passes through a fixing sheet 513 formed at the upside of the cutting groove 512 of fixing plate 510, and forms a threaded connection with a fixing member, such as nuts and the like, connected on the axial portion of the guide pulley 520, so that the reduction pulley 520 may move up or down in the cutting groove 512 as rotation of the screw bolt 560 and the tension of the first belt 530 and the second belt 540 may be regulated.
As shown in
Moreover, the fixing plate 510 bends upwards from two side portions on which the driving pulley and driven pulley are mounted to the center portion on which the reduction pulley 520 is mounted to form an arch in shape. In such a way, when the cutting blade 410 is used to cut a workpiece, the interference between the fixing plate 510 of the transmission part 500 and the workpiece can be avoided.
Hereinafter, the utilization method of the cutter having the above structure will be described. Firstly, after the cutter is connected to the power supply, a workpiece is placed on the bench clamp 110 of the operating bench 100. The hand-operated crank is rotated to move the bench clamp 110 so as to secure the workpiece.
Next, the handle 210 is grasped and the switch 220 is turned on. The external power supply is applied to the motor 300, and the driving pulley 310 mounted on the rotation shaft of the motor 300 rotates.
Then, the first belt moves and causes the rotation of the major diameter pulley 521 as well as the minor diameter pulley 522 of the reduction pulley 520. In turn, the second belt moves, so that the driven pulley 411 and the cutting blade 410 rotate.
That is, the rotating speed is reduced first by the first belt 530 joining the driving pulley 310 and the major diameter pulley 521 of the reduction pulley 520, and the rotating speed is reduced further by the second belt 522 joining the driven pulley 411 and the minor diameter pulley 522 of the reduction pulley 520. Afterwards, a rotary force is transferred to the cutting blade 410 so that the rotating speed of the cutting blade 410 is 3800 to 4200 rpm.
At this time, a stable voltage is supplied to the motor 300 through the voltage regulator 230 mounted on the power connecting part of the switch 220.
When the cutting blade 410 rotates, the handle of the machine frame 200 is turned downwards, and the workpiece is cut with the outer circumference of the cutting blade 410.
When the first belt 530 and the second belt 540 are loose after a long time's running of the cutter, the casing 550 is removed from the fixing plate 510 and the screw bolt 560 is rotated to make the reduction pulley 520 move up and down in the cutting groove 512 of the fixing plate 510, so that the first belt 530 and the second belt 540 associated with the major diameter pulley 521 and the minor diameter pulley 522 of the reduction pulley 520 are tightened, thereby achieving the object of regulating the tension.
When the first belt 530 and the second belt 540 are elongated to a predetermined length, the first belt 530 and the second belt 540 are removed from the driving pulley 310, the reduction pulley and the driven pulley 411, and a new first belt 530 and a new second belt 540 are applied to the driving pulley 310, the reduction pulley 520 and the driven pulley 411 respectively and then the tension is regulated.
After regulating the tension, the casing 550 is fixed to the fixing plate 510 in the same way as described above, as such to complete the maintenance of the cutter.
Hereinafter, another example of the invention will be described. The same reference numbers are used for representing the same members for which the detailed description is omitted.
As shown in
Accordingly, when the driving pulley 310 of the cutting blade rotates, the third belt 570 also moves, and the movement of the third belt 570 causes rotation of the driven pulley 411, so that the cutting blade 410 rotates.
Herein, the tension of the third belt 570 of the transmission part 500′ can be regulated by a tension regulating means. As shown in
Number | Date | Country | Kind |
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10-2006-0065720 | Jul 2006 | KR | national |