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Sheet Metal Stamping Analysis and Process Design based on the Inverse Approach

机译:基于逆方法的钣金冲压分析和工艺设计

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The simplified (one step) method also called “inverse approach”(IA) for the numerical analysis of the stamping process has been continuously developed by the authors since the end of the eighties (1, 2, 3, 4). In the present paper we recall the main finite element formulation aspects of a robust IA analysis code, called FAST_STAMP, for an efficient estimation of the large elastoplastic strains (in particular the thickness strains) encountered in deep drawing operations. Our results will be presented and compared with others, obtained either from experiments or from incremental codes such as ABAQUS or STAMPACK. The presentation includes “math based” optimization algorithms and strategies for process parameter design. The cost functions and constraints are mainly express to reduce or control the thickness changes, the localized necking, the wrinkling tendency, the springback effects after forming. The design variables are describing the shape of the blank and the tools, the restraining forces due to drawbeads, material properties such as anisotropy coefficient and hardening exponent. Results will be presented to show the actual capabilities of the coupled analysis and optimization strategy with application to the design of stamping parameters.
机译:简化(一步)方法还要求冲压工艺的数值分析“逆算法”(IA)已被连续地由作者八十年代以来(1,2,3,4)的端部显影。在本论文中,我们记得在深冲压操作中遇到的一个健壮IA分析代码的主要有限元制剂方面,称为FAST_STAMP,对于大弹塑性菌株的有效估计(特别是厚度株)。我们的结果将提交并与他人,从实验或从增量代码,例如ABAQUS或STAMPACK获得任一比较。该报告包含了工艺参数设计“基础数学”,优化算法和策略。成本函数和约束主要表达,以减少或控制厚度变化,局部缩颈,起皱倾向,成形后的回弹效应。设计变量所描述的坯件和工具的形状,抑制力由于拉延筋,材料性质,例如各向异性系数和硬化指数。结果将用于展示与应用冲压参数的设计耦合分析和优化策略的实际能力。

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