Automatic selection of fixturing surfaces and fixturing points for polyhedral workpieces

Dan Ding, Yun-hui Liu, M. Wang, Shuguo Wang
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引用次数: 67

Abstract

Fixtures play an important role in many manufacturing operations such as inspection, machining and part fabrication. In the development of a fixture, it is desired that the feasible fixturing surfaces and optimal fixturing locations on the workpiece be selected automatically. An algorithm is presented to determine optimal fixturing locations which totally restrain the workpart in the fixture without being disturbed by any external force. First, based on observation that form-closure fixturing points exist on a set of surfaces if and only if the convex hull of the vertex contact wrenches resulting from the vertices of the surfaces contains the origin of R/sup 6/, an efficient approach is developed for finding an eligible set of fixturing surfaces. Second, we formulate the problem of determining optimal fixturing points on the eligible set of fixturing surfaces as a quadratic programming (QP) problem with the workpiece positioning accuracy as the performance index and the robust form-closure requirement as the linear constraints. Finally, the implementation for two numerical examples demonstrates the usefulness and efficiency of the proposed algorithm.
多面体工件自动选择装夹面和装夹点
夹具在许多制造操作中起着重要的作用,如检测、加工和零件制造。在夹具的开发中,需要自动选择可行的夹具表面和工件上的最佳夹具位置。提出了一种确定最优夹具位置的算法,使工件完全约束在夹具上而不受任何外力的干扰。首先,根据观察,当且仅当由曲面顶点产生的顶点接触扳手的凸包包含R/sup 6/原点时,一组曲面上存在形式闭合夹具点,开发了一种有效的方法来寻找一组合适的夹具面。其次,以工件定位精度为性能指标,以鲁棒型闭合要求为线性约束,将在符合条件的一组夹具表面上确定最优夹具点的问题表述为二次规划问题。最后,通过两个数值算例验证了该算法的有效性。
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