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Modeling of workpiece location error due to fixture geometric error and fixture-workpiece compliance

机译:夹具几何误差和夹具-工件一致性导致的工件位置误差建模

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摘要

Several fixture-related error sources contribute to workpiece location error in a machining system. Inaccurate part placement in the fixture relative to the cutting tool, for example, can negatively affect the quality of the part. In this paper the following major sources of error are considered: fixture geometric error and elastic deformation of the fixture and workpiece due to fixturing forces. The workpiece location error is predicted by modeling the process of part loading (given fixture geometric variations) and clamping (given deformations at the contact points) in a machining fixture. Linear elastic models for the fixture elements, contact mechanics models for the contact regions, and flexibility influence coefficients to capture the bulk elasticity of the workpiece have been used to model the compliance of the entire fixture-workpiece system. The deformations at the contact points are obtained by solving a constrained optimization model. The effect of geometric errors and compliance on workpiece location error is examined using part response points as a measure of quality. Experimental validation is also provided,for several fixture-workpiece variable levels using a 3-2-1 machining fixture.
机译:几种与夹具相关的误差源会导致加工系统中的工件位置误差。相对于切削工具,固定装置中零件的不正确放置会例如负面影响零件的质量。在本文中,考虑了以下主要误差源:夹具几何误差以及夹具力引起的夹具和工件的弹性变形。工件位置误差是通过对机械夹具中零件加载(给定夹具的几何变化)和夹紧(给定的接触点变形)的过程进行建模来预测的。用于夹具元件的线性弹性模型,用于接触区域的接触力学模型以及捕获工件的整体弹性的柔韧性影响系数已用于对整个夹具-工件系统的柔度进行建模。接触点的变形是通过求解约束优化模型获得的。使用零件响应点作为质量度量来检查几何误差和顺应性对工件位置误差的影响。还提供了使用3-2-1加工夹具对多个夹具-工件可变水平的实验验证。

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