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首页> 外文期刊>Journal of Optimization in Industrial Engineering >Fixture Design and Work Piece Deformation Optimization Using the Iterative Simplex Algorithm
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Fixture Design and Work Piece Deformation Optimization Using the Iterative Simplex Algorithm

机译:迭代单纯形算法的夹具设计与工件变形优化

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Presents article is deal with optimization of the fixture for end milling process, the most important objective being the minimization of work piece deformation by changing the layout of fixture elements and the clamping forces. The main objective of this work has been the optimization of the fixtures Work piece deformation subjected to clamping forces for End milling operation. The present analysis is ?used in hollow rectangular ?isotropic material work piece for FEA analysis and its optimization A linear programing (L.P) simplex model optimization activity has been performed both on fixture-work piece systems modeled with FEM and on fixture-work piece systems modeled with 3-D solid elements. The optimization constraints is selected as W/P deformation in x,y,z direction for various clamping forces, in order to provide a new design of fixture. ?The MATLAB code has been developed for L.P. model optimization purpose. Present MATLAB code is validated by using available literature. This paper deals with application of the L.P. model for w/p deformation optimization for a accommodating work piece. A simplex iterative algorithm that minimizes the work piece elastic deformation for the entire clamping force is proposed. It is shown via an example of milling fixture design that this algorithm yields a design that is superior to the result obtained from either fixture layout or w/p deformation optimization alone.
机译:目前的文章是针对端铣削过程中夹具的优化,最重要的目标是通过改变夹具元件的布局和夹紧力来最大程度地减少工件变形。这项工作的主要目的是优化夹具,以便在端铣削操作中承受夹紧力的情况下使工件变形。本分析用于中空矩形各向同性材料工件,以进行FEA分析及其优化。在用FEM建模的夹具工件系统和夹具工件系统上均进行了线性编程(LP)单纯形模型优化活动。用3-D实体元素建模。为了提供一种新的夹具设计,选择最佳约束作为x,y,z方向上W / P变形以适应各种夹紧力。 ?MATLAB代码是为L.P.模型优化目的而开发的。当前的MATLAB代码通过使用现有文献进行了验证。本文讨论了L.P.模型在容纳工件的w / p变形优化中的应用。提出了一种简单的迭代算法,该算法将整个夹持力的工件弹性变形最小化。通过铣削夹具设计的示例显示,该算法产生的设计优于单独从夹具布局或w / p变形优化获得的结果。

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