1. Field of the Invention
The present invention relates to machinery technology and more particularly, to a handwheel clutch for use in machinery.
2. Description of the Related Art
When using a machine tool to drive a tool for machining a workpiece, the operator needs to manually drive a handwheel to rotate a handwheel axle, moving the worktable to an appropriate machining position. However, a conventional machine tool does not provide a clutch device between the handwheel and the handwheel axle. Thus, the handwheel can easily be collided by a surrounding staff, resulting in an offset of the worktable and affecting the machining accuracy.
In order to solve the aforesaid problem, Taiwan Patent M492221 discloses a control device for controlling a clutch effect between an operating wheel and an axis tube. When pulls the control device, a plug rod will be moved with the control device axially to shift a plug rod, carrying a movable block toward a positioning block and forcing the movable block into engagement with the positioning block. At this time, the operating wheel can be driven to rotate the axis tube. When releases the control device, the movable block will be forced by a spring member to disengage from the positioning block. At this time, the operating wheel can simply be rotated relative to the axis tube. However, this prior art design has a complicated structure with a large amount of component parts, increasing the machining cost and also complicating the assembly and maintenance works.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide a handwheel clutch, which has the characteristics of simple structure and ease of assembling, and provides a very stable clutch effect.
To achieve this and other objects of the present invention, a handwheel clutch comprises a handwheel mounting unit and a clutch unit. The handwheel mounting unit comprises an axle sleeve and at least one lock nut. The axle sleeve comprises at least one outer thread portion and an external toothed ring portion. The at least one lock nut is respectively threaded onto the at least one outer thread portion. The clutch unit comprises a clutch member and a return spring. The clutch member is adapted for the mounting of a handwheel. Further, the clutch member comprises an axial hole and an internal toothed ring portion. The axial hole is coupled to the axle sleeve. The internal toothed ring portion is extended around an inside wall of the clutch member within the axial hole. The return spring is mounted around the axle sleeve to push the internal toothed ring portion of the clutch member.
Thus, when the clutch member is in a first position, the internal toothed ring portion of the clutch member is released from the external toothed ring portion of the axle sleeve. At this time, the clutch member will run idle relative to the axle sleeve, so that the handwheel cannot drive the handwheel axle to rotate. On the contrary, when the clutch member is in a second position, the internal toothed ring portion of the clutch member is meshed with the external toothed ring portion of the axle sleeve. At this time, the clutch member and the axle sleeve can be synchronously rotated so that the handwheel can drive the handwheel axle to rotate.
Other advantages and features of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
Referring to
The handwheel mounting unit 20 comprises an axle sleeve 21 and two lock nuts 25. The axle sleeve 21 is adapted for attaching onto a handwheel axle 12 (see
The clutch unit 30 comprises a clutch member 31. The clutch member 31 is adapted for the mounting of a handwheel 14 (see
When the clutch member 31 is in the first position P1 as shown in
Thus, when enabling the handwheel 14 to drive the handwheel axle 12, move the clutch member 31 from the first position P1 shown in
When going to release the transmission relationship between the handwheel 14 and the handwheel axle 12, release the pull force from the clutch member 31. At this time, the clutch member 31 will be forced by the elastic restoring energy of the return spring 36 to return to the first position P1 shown in
In conclusion, the handwheel clutch 10 of the invention uses the meshing relationship between the internal toothed ring portion 34 of the clutch member 31 and the external toothed ring portion 23 of the axle sleeve 21 to achieve the clutch effect between the handwheel 14 and the handwheel axle 12. When compared to the prior art techniques, the invention on the one hand simplifies the structure to reduce the processing cost and to facilitate the subsequent assembly process, and, on the other hand, provides a very stable clutch effect in operation to achieve the expected objectives.
Number | Date | Country | Kind |
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105101294 | Jan 2016 | TW | national |