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Experimental determination of the friction coefficient on the workpiece-fixture contact surface in workholding applications

机译:实验确定工件夹具中工件与夹具接触表面的摩擦系数

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摘要

Surface flatness, geometric integrity and micro-surface finish characteristics are crucial for automotive industry to properly seal joints, reduce leakage and consequently increasing engines efficiency and reducing emissions. Optimum fixture layout is a key element in achieving this goal. Machining of flexible parts impose further challenges to the selection of a proper fixture scenario. Workpiece motion arising from localized elastic deformation at the workpiece/fixture contacts due to machining and clamping forces significantly affect the workpiece location accuracy and hence the machined part quality. The tangential friction force plays an important role in fixture configuration design as it can be utilized to reduce the number of fixture components, thereby the workpiece features accessibility to machining operations and providing a damping mechanism to dissipate input energy from machining forces out of the workpiece/fixture system. Although the literature is full of research on friction and its application, it lacks research that relates to the contact found in workpiece/fixture systems. This paper presents the results of an experimental investigation of the workpiece/fixture contact characteristics.
机译:表面平整度,几何完整性和微表面光洁度特性对于汽车工业正确密封接头,减少泄漏并因此提高发动机效率和减少排放至关重要。最佳的灯具布局是实现此目标的关键因素。柔性零件的机械加工对选择合适的夹具方案提出了进一步的挑战。由于加工和夹紧力而在工件/夹具触点处发生局部弹性变形而引起的工件运动会显着影响工件的定位精度,从而影响加工零件的质量。切向摩擦力在夹具配置设计中起着重要作用,因为切向摩擦力可用于减少夹具部件的数量,从而使工件具有可进行机械加工的特性,并提供了一种阻尼机制,可将来自机械加工力的输入能量耗散到工件/夹具系统。尽管文献中充斥着关于摩擦及其应用的研究,但缺乏与工件/夹具系统中的接触有关的研究。本文介绍了工件/夹具接触特性的实验研究结果。

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