The present invention will be better understood by referring to the accompanying drawings, wherein:
Referring to
The basic board 2 is secured in the bed 1, and it has concentric curved slot 21 and curved bar-shaped protrusion 22 thereon.
The swinging support 3 is sector-shaped, and it has a shaft portion 31 sticking sideways, a curved fitting groove 32 thereon, and toothed portion 33 on a bottom. The swinging support 3 is joined to the basic board 2 with the shaft portion 31 being passed through the curved slot 21, and with the curved bar-shaped protrusion 22 being fitted in the curved fitting groove 32. Off-center insertion rods 312 are securely inserted in upper and lower sides of the shaft portion 31 of the swinging support 2, and bearings 311 are connected to respective ones of the off-center insertion rods 312 so as to touch the lateral side of the basic board 2.
The sliding assembly 4 consists of a sliding block 41, and a fixed block 42. The fixed block 42 has a groove 421 thereon, and the sliding block 41 has a sleeve 411 secured thereon. The fixed block 42 is secured on a lateral side of the swinging support 3 while the sliding block 41 is fitted on the groove 421 of the fixed block 42 so as to be capable of sliding up and down. A central shaft 412 is passed through the sleeve 411 of the sliding block 41, and the saw blade 43 is joined to the central shaft 412 at a center thereof.
The operating assembly 5 consists of a hand-operated wheel 51, and a worm 52 passed through and supported on the bed 1, and securely joined to the hand-operated wheel 51 and engaged with the toothed portion 33 of the swinging support 3. Therefore, the worm 52 will cause angular displacement of the swinging support 3 when rotating.
The up and down moving mechanism 6 consists of a motor 61, a bearing member 62, and a moving cylinder 63. The bearing member 62 is securely joined to the sliding block 41, and the motor 61 is positioned on the bearing member 62 such that motion of the motor 61 will be passed on to the central shaft 412 passed through the sleeve 411 and connected to the saw blade 43. The moving cylinder 63 is securely joined to the fixed block 42 with an output rod 631 thereof propping the bearing member 62. Therefore, the motor 61, the sliding block 41, and the saw blade 43 can be moved up and down together by means of controlling the output rod 631 of the moving cylinder 63. Furthermore, adjustment pieces 44 can be secured on the grooves 421 of the fixed block 42 for adjusting the tightness between the sliding block 41 and the fixed block 42.
Referring to
Therefore, the user is allowed to adjust the direction of the saw blade 43 to a sloping one either leftwards or rightwards by means of turning the hand-operated wheel 51; when the hand-operated wheel 51 is turned, the worm 52 will make the swinging support 3 swing with the shaft portion 31 and the curved fitting groove 32 thereof moving in a curved path along the curved slot 21 and the curved bar-shaped protrusion 22 of the basic board 2 respectively, and in turn the sliding assembly 4 and the up and down moving mechanism 6 swing with the swinging support 3, and angle of the saw blade 43 is changed. Referring to
In addition, the user is allowed to change the height of the saw blade 43 by means of the moving cylinder 63; when the moving cylinder 63 is actuated, the output rod 631 will move so as to cause the bearing member 62 and the sliding block 41 to change height.
From the above description, it can be seen that the circular saw of the present invention has the following advantages:
1. The saw blade of the circular saw machine can be adjusted either leftwards or rightwards to a sloping direction because the circular saw is equipped with the swinging support, the basic board, and the worm, and the swinging support together with the sliding assembly and the saw blade will move in a curved path along the curved slot and the curved bar-shaped protrusion of the basic board when the worm is turned.
2. In angular adjustment, the saw blade of the circular saw machine will pivot virtually on an imaginary line lengthways extending along a middle of an uppermost portion of the slot of the working platform owing to the swinging support, the basic board, and the worm; when the worm is turned, the swinging support, the sliding assembly, and the saw blade will change angle as if they are swinging with the above-mentioned imaginary line as the pivot. Therefore, adjustment of the angle of the saw blade will be relatively smooth and precise.
3. For the same reason, the saw blade of the circular saw machine will pivot virtually on the imaginary line in its angular adjustment even when the moving cylinder is used to change the height of the saw blade.
4. The slot of the working platform doesn't have to be formed with a very wide uppermost portion because the saw blade will pivot virtually on the above-mentioned imaginary line when it is angularly adjusted.