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Analysis of Micro Fin Deformation Due to Micro EDM

机译:微细电火花加工引起的微细翅片变形分析

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摘要

This work describes deformation of fin machined by micro electrical discharge machining (EDM). First, temperature distribution in a workpiece due to micro EDM single discharge was calculated using finite element method, and the result was used to calculate residual stress. It was found that the residual stress in the radial direction, σ r ( z ) along the centre axis of the single discharge crater was distributed non-linearly in thickness direction from top surface of the workpiece. Then, in structural analysis, the result of σ r ( z ) was imposed within micro fin model. Here, thermal stress field due to series of sequential discharges was considered. The summation of calculated deflections after three sequential discharges was almost equal to the measurement result. To explain the deformation of fin, additional models of uniform rectangular beam were built. As a result, the non-linear distribution of σ r ( z ) was found to be the main reason that causes the non-uniform curvature of micro fin.
机译:这项工作描述了微放电加工(EDM)加工的翅片的变形。首先,使用有限元方法计算由于微细电火花单次放电引起的工件中的温度分布,并将其结果用于计算残余应力。已经发现,沿着单个放电坑的中心轴的径向残余应力σr(z)从工件的顶表面沿厚度方向非线性地分布。然后,在结构分析中,将σr(z)的结果强加到微鳍模型中。在这里,考虑了由于一系列连续放电引起的热应力场。三个连续放电后计算出的挠度总和几乎等于测量结果。为了解释鳍的变形,建立了附加的均匀矩形梁模型。结果,发现σr(z)的非线性分布是引起微翅片曲率不均匀的主要原因。

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