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A FINITE ELEMENT ANALYSIS FOR STIFFNESS OF FIXTURE UNITS

机译:固定装置刚度的有限元分析

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摘要

This paper presents a systematic finite element model to predict the fixture unit stiffness by introducing nonlinear contact elements on the contact surface between fixture components. The contact element includes three independent springs: two in tangential directions and one in the normal direction of the contact surface. Strong nonlinearity is caused by possible separation and sliding between two fixture components. The problem is formulated by the penalty function method and is solved by the Newton-Raphson procedure. The model was validated by two cases of analysis of a linear cantilever beam and a simple fixture unit with two components. Results are in agreement with the corresponding analytical solution of beams and the previous experiment results for fixture in the literature.
机译:本文提出了一个系统的有限元模型,通过在夹具组件之间的接触面上引入非线性接触元件来预测夹具单元的刚度。接触元件包括三个独立的弹簧:两个在切线方向上,一个在接触表面的法线方向上。强烈的非线性是由两个夹具组件之间可能的分离和滑动引起的。该问题由罚函数法表述,并通过牛顿-拉夫森程序解决。通过分析线性悬臂梁和具有两个组件的简单夹具单元的两种情况验证了该模型。结果与梁的相应解析解和文献中用于夹具的先前实验结果一致。

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