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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Analysis of reactions and minimum clamping force for machining fixtures with large contact areas
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Analysis of reactions and minimum clamping force for machining fixtures with large contact areas

机译:大接触面积加工夹具的反作用力和最小夹紧力分析

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摘要

This paper presents a model for analysing the reaction forces and moments for machining fixtures with large contact areas, e.g. a mechanical vice. Such fixtures transmit torsional loads in addition to normal and tangential loads and thus differ from fixtures using point or line contacts. The model is developed using a contact mechanics approach where the workpiece is assumed to he elastic in the contact region and the fixture element is treated as rigid. Closed-form contact compliance solutions for normal, tangential, and torsional loads are used to derive the elastic deformation model for each contact. A minimum energy principle is used to solve the multiple contact problem yielding unique predictions of the fixture-workpiece contact forces and moments due to clamping and machining forces. This model is then used to determine the minimum clamping force necessary to keep the workpiece in static equilibrium during machining. An example is given to demonstrate its effectiveness in analysing the clamping performance of a mechanical vice during machining.
机译:本文提出了一个模型,用于分析具有较大接触面积的固定装置的反作用力和力矩。机械恶习。除了法向和切向载荷外,此类夹具还传递扭转载荷,因此与使用点或线接触的夹具不同。该模型是使用接触力学方法开发的,其中假定工件在接触区域内具有弹性,而固定元件被视为刚性。用于法向,切向和扭转载荷的闭合形式接触柔度解决方案用于导出每个接触的弹性变形模型。最小能量原理用于解决多触点问题,从而对夹具与工件的接触力以及由于夹紧力和加工力而产生的力矩做出独特的预测。然后使用该模型确定在加工过程中使工件保持静态平衡所需的最小夹紧力。举例说明了其在分析机械虎钳在加工过程中的夹紧性能时的有效性。

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