This application claims priority of Taiwanese Patent Application No. 097120723, filed on Jun. 4, 2008, the disclosure of which is herein incorporated by reference.
1. Field of the Invention
This invention relates to a scroll sawing machine, more particularly to a driving device for driving reciprocating movement of a saw blade of a scroll sawing machine.
2. Description of the Related Art
Referring to
However, due to the swinging motion of the swing arms 3, the saw blade 5 may sway (as indicated by solid and dotted lines illustrated in
An object of the present invention is to provide a driving device which can drive a saw blade of a scroll sawing machine to perform stable and straight reciprocating movement so as to prevent breakage of the saw blade.
According to this invention, the driving device includes a linking member, upper and lower arms coupled to the linking member and respectively having upper and lower actuating ends, a drive unit disposed to synchronously deliver upper and lower reciprocating forces to move the upper and lower arms, respectively, a head body unit including upper and lower head bodies, a saw-blade straightening unit including upper and lower straightening members, and a linkage unit including upper and lower linkage members. Each head body has a pivoted region pivotally mounted on a frame of a scroll sawing machine about a fulcrum axis, and an anchored region connected to a respective one of the upper and lower actuating ends of the upper and lower arms, and extends forwardly to terminate at a nose segment which has outer and inner regions opposite to each other in an upright direction and which is turnable about the fulcrum axis. Each straightening member has a securing end adapted to grip a tightened end of a saw blade, and a connecting end opposite to the securing end. Each linkage member includes a hanging end connected to the outer region, a holding end connected to the connecting end, and a linking segment which defines with the holding end a straight line that is parallel to a running path of the saw blade such that, when the outer region is turned about the fulcrum axis, the linking segment is lifted or lowered along the straight line so as to remain in the straight line with the holding end.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiment of the invention, with reference to the accompanying drawings, in which:
Referring to
The driving device of this embodiment comprises a linking member 60, upper and lower arms 70, 80, a drive unit 90, a head body unit including upper and lower head bodies 10, a saw-blade straightening unit including upper and lower straightening members 20, a linking unit including upper and lower linkage members 30, and a blade tension adjusting unit 50.
The linking member 60 is pivotally mounted to the upright segment 110, and has upper and lower linking ends 61. The upper arm 70 extends along the cantilevered frame segment 111, and has an upper linked end 71 coupled to the upper linking end 61, and an upper actuating end 72 opposite to the upper linked end 71 in a longitudinal direction that is transverse to the upright direction. The lower arm 80 extends along the underlying frame segment 112 and has a lower linked end 81 coupled to the lower linking end 61, and a lower actuating end 82 opposite to the lower linked end 81 in the longitudinal direction. The drive unit 90 is disposed to synchronously deliver upper and lower reciprocating forces to move the upper and lower arms 70, 80, respectively, in the longitudinal direction.
Each of the upper and lower head bodies 10 has a pivoted region 11 which is adapted to be pivotally mounted on a respective one of the cantilevered and underlying frame segments 111, 112 about a fulcrum axis (F), and an anchored region 12 which is connected to a respective one of the upper and lower actuating ends 72, 82 of the upper and lower arms 70, 80. Each of the upper and lower head bodies 10 further extends forwardly to terminate at a nose segment 13 which has outer and inner regions 131, 132 opposite to each other in the upright direction so that the outer region 131 is turnable about the fulcrum axis (F), and an engaging surface 133 facing forwardly.
Each of the upper and lower straightening members 20 has a securing end 23 that is adapted to grip a respective one of the upper and lower tightened ends 301 of the saw blade 300, and a connecting end 22 that is opposite to the securing end 23. Specifically, the securing end 23 has a left jaw wall 232 which extends in the longitudinal direction, a right jaw wall 233 which is movable relative to the left jaw wall 232 in a transverse direction relative to both the longitudinal and upright directions so as to cooperate with the left jaw wall 232 to grip the respective tightened end 301, and a locking member 234 which is operable to move the right jaw wall 233 toward the left jaw wall 232. In this embodiment, the locking member 234 has a cam mechanism which is configured such that turning of the locking member 234 results in displacement of the right jaw wall 233 in the transverse direction.
Each of the upper and lower linkage members 30 is in the form of a roller chain, and has a hanging end 31 which is pivotally mounted on the outer region 131 of the respective head body 10 about a pivot axis (X) that is parallel to the fulcrum axis (F), a holding end 32 which is connected to the connecting end 22 of the corresponding straightening member 20, and a linking segment 33 which defines with the holding end 32 a straight line (L) that is parallel to the running path of the saw blade 300. The linking segment 33 is configured to contact the engaging surface 133. Thus, as shown in
In addition, the driving device further comprises upper and lower anchoring members 90, each of which includes a slot 91, a pair of lugs 92, and a key 93. The slot 91 is disposed in the inner region 132 of the respective head body 10, and is elongated in the longitudinal direction. Each lug 92 has a pivoted end 921 which is pivotally connected to the respective straightening member 20, and a slideable end 922 disposed proximate to the slot 91. The key 93 is disposed on the slideable ends 922 of the lugs 92 to be slideably engaged in the slot 91 so as to accommodate horizontal movement of the respective straightening member 20 relative to the nose segment 13 when the outer region 131 of the respective head body 10 is turned about the fulcrum axis (F), and to guard against movement of the respective straightening member 20 relative to the nose segment 13 in the upright direction.
Referring to
As illustrated, by virtue of the engagement of the upper and lower linkage members 30 and the upper and lower anchoring members 90, the connecting ends 22 of the upper and lower straightening members 20 can be moved with the holding ends 32 of the upper and lower linkage members 30 along the straight line (L) to result in stable reciprocating movement of the saw blade 300 along the running path. Moreover, in case one of the upper and lower linkage members 30 is undesirably detached from the corresponding head body 10, by means of the anchoring members 90 which interconnect the head bodies 10 and the straightening members 20, substantial movement of the straightening member 20 relative to the head body 10 can be prevented.
While the present invention has been described in connection with what is considered the most practical and preferred embodiment, it is understood that this invention is not limited to the disclosed embodiment but is intended to cover various arrangements included within the spirit and scope of the broadest interpretations and equivalent arrangements.
Number | Date | Country | Kind |
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097120723 | Jun 2008 | TW | national |