SAW BLADE POSITIONING MECHANISM FOR ANNULAR SAWING MACHINE
20180185934 ยท 2018-07-05
Inventors
Cpc classification
B23D45/16
PERFORMING OPERATIONS; TRANSPORTING
B28D1/04
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23D45/16
PERFORMING OPERATIONS; TRANSPORTING
B23D47/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A saw blade positioning mechanism for an annular sawing machine includes a protective case, two first driven wheels, two second driven wheels, and an adjustment component. The protective case conceals a portion of an annular saw blade. The first and second driven wheels are rotatably disposed at two opposing ends of the protective case and abut against two opposing lateral sides of the annular saw blade, respectively. The adjustment component is disposed at the protective case to drive the protective case to move in the radial direction of the annular saw blade relative to the annular saw blade. The position of the protective case is adjusted with the adjustment component such that the first and second driven wheels get positioned in place synchronously with displacement of the protective case. The protective case can be demounted so that the first and second driven wheels are simultaneously removed and changed.
Claims
1. A saw blade positioning mechanism for an annular sawing machine, the annular sawing machine comprising a driving source, an annular saw blade, and an active wheel, with the annular saw blade having a first lateral side and a second lateral side facing away from the first lateral side, with the first lateral side having positioning annular grooves, with the active wheel connected to the driving source and engaged with an annular surface of the annular saw blade, the saw blade positioning mechanism comprising: a protective case movable in a radial direction of the annular saw blade, disposed on an outer circumferential surface of the driving source, and adapted to conceal a portion of the annular saw blade; two first driven wheels rotatably disposed at the protective case, positioned to flank the active wheel, and insertedly engaged with the positioning annular grooves of the first lateral side of the annular saw blade; two second driven wheels rotatably disposed at the protective case, positioned to flank the active wheel, and abutting against the second lateral side of the annular saw blade; and an adjustment component disposed at the protective case to drive the protective case to move in the radial direction of the annular saw blade relative to the annular saw blade.
2. The saw blade positioning mechanism for an annular sawing machine according to claim 1, wherein the protective case has an active wheel recess and two guide shaft holes, with the active wheel recess adapted to contain the active wheel and disposed between the two guide shaft holes, allowing the two guide shaft holes of the protective case to each movably fit around a guide shaft, with the two guide shafts fixed to the outer circumferential surface of the driving source.
3. The saw blade positioning mechanism for an annular sawing machine according to claim 2, wherein the protective case has a receiving recess, and the adjustment component has a fixing plate, a knob, and two resilient elements, with the fixing plate movably disposed in the receiving recess of the protective case and having an adjustment screw hole, with the knob having a knob head and an adjustment screw connected to the knob head, with the knob head disposed outside the receiving recess of the protective case, with the adjustment screw screwed to the adjustment screw hole of the fixing plate, wherein the adjustment screw has an end connected to the knob head and another end abutting against a wall of the receiving recess, wherein the two resilient elements each have an end abutting against the fixing plate and another end abutting against the wall of the receiving recess.
4. The saw blade positioning mechanism for an annular sawing machine according to claim 3, wherein the protective case further has two opposing first fixing holes, and the fixing plate further has two opposing second fixing holes which flank the adjustment screw hole, with the adjustment component having two fixing elements, wherein the two fixing elements each have an end insertedly disposed in a corresponding one of the first fixing holes of the protective case and another end fixed to a corresponding one of the second fixing holes of the fixing plate, wherein the two resilient elements fit around the fixing elements, respectively.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENT OF THE INVENTION
[0017] Referring to
[0018] Referring to
[0019] The protective case 30 has a first case body 31 and a second case body 32. The first case body 31 is disposed above the first lateral side 181 of the annular saw blade 18. The second case body 32 is disposed below the second lateral side 182 of the annular saw blade 18. The first and second case bodies 31, 32 are connected head-to-head such that the protective case 30 is adapted to conceal a portion of the annular saw blade 18. Referring to
[0020] The two first driven wheels 40 are mounted at two ends of the first case body 31 of the protective case 30, respectively, to flank the active wheel 16. The two first driven wheels 40 are insertedly engaged with the positioning annular grooves 183 of the first lateral side 181 of the annular saw blade 18, as shown in
[0021] The two second driven wheels 50 are mounted at two ends of the second case body 32 of the protective case 30, respectively, to flank the active wheel 16. The two second driven wheels 50 abut against the second lateral side 182 of the annular saw blade 18, as shown in
[0022] The adjustment component 60 has a fixing plate 61 and a knob 64, as shown in
[0023] To repair the saw blade positioning mechanism 20, a user demounts the two guide shafts 37 from the outer circumferential surface of the driving source 14 and then removes the protective case 30 and the first and second driven wheels 40, 50. In doing so, not only can the user change just a damaged part, but the demounting process is also easy and convenient, thereby enhancing the ease of maintenance. Upon completion of maintenance, the user mounts the protective case 30 on the driving source 14 by means of the two guide shafts 37, adjusts the position of the protective case 30 by means of the adjustment component 60 to ensure that the two first driven wheels 40 are insertedly engaged with the positioning annular grooves 183 of the annular saw blade 18 firmly, and exerts an outward force on the annular saw blade 18 to finalize the positioning of the annular saw blade 18. At this point in time, the two second driven wheels 50 adjust their own positions in response to the displacement of the protective case 30, so as to support the annular saw blade 18. Hence, the aforesaid assembly and adjustment are done in one step (by contrast, the prior art discloses mounting and adjusting the driven wheels one by one), so as to not only enhance the ease of demounting, mounting, and maintenance, but also enable the annular sawing machine to demonstrate high precision when assembled.