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A new progressive design methodology for complex sheet metal stamping operations: Coupling spatially differentiated restraining forces approach and multi-objective optimization

机译:一种用于复杂钣金冲压操作的新的渐进式设计方法:耦合空间差异约束力方法和多目标优化

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The growing interest in sheet metal stamping processes, particularly in the automotive industry has led to three main issues in this field:rn1. Request of very complex shapes;rn2. Growing interest in springback control;rn3. Solution of multi-objective problems.rnThese issues make a sheet metal stamping processes design very difficult and proper design methodologies to reduce times and costs are highly required.rnIn this paper, a computer aided approach aiming to satisfy the mentioned issues is proposed. In particular, a progressive design approach based on the integration between numerical simulations, Response Surface Methodology (RSM) and Pareto optimal solutions search techniques was applied in order to design a complex 3D automotive stamping operation. An explicit/forming-implicit/springback approach was utilized to develop the numerical simulations.rnThe proposed design approach is able to verify the necessity of a spatially differentiated restraining forces approach and to design the best policy for them.rnPareto optimal solutions search techniques were applied in two different phases: the former Pareto frontier was built using an uniform restraining forces policy while the latter, which is the final process design tool, was based on a differentiated restraining forces strategy.rnTwo different restraining force policies were applied: the former focused on drawbeads utilization, the latter utilized a segmented blankholder.rnAs the optimization objective functions are concerned, indicators related both to thinning distribution and to springback amount were taken into account.rnThe obtained Pareto curves can be used in order to discriminate which conditions have to be expected once a desired value of one of the objective functions is fixed.rnA new and flexible design methodology is proposed, able to:rn1. Deal with complex sheet metal stamping processes;rn2. Investigate many possible technological scenarios;rn3. Carry out a set of reliable solutions able to satisfy different design requirements.
机译:对钣金冲压工艺(尤其是汽车行业)的兴趣日益浓厚,导致该领域出现了三个主要问题:rn1。要求非常复杂的形状; rn2。对回弹控制的兴趣日益浓厚; rn3。多目标问题的解决。这些问题使钣金冲压工艺设计变得非常困难,并且迫切需要适当的设计方法来减少时间和成本。rn本文提出了一种旨在满足上述问题的计算机辅助方法。尤其是,基于数值模拟,响应表面方法学(RSM)和帕累托最优解搜索技术之间的集成,采用了一种渐进式设计方法,以设计复杂的3D汽车冲压操作。运用显式/隐式/回弹方法进行数值模拟。建议的设计方法能够验证空间差异约束力方法的必要性,并为其设计最佳策略。运用帕累托最优解搜索技术分两个不同阶段:前者的帕累托边疆采用统一的约束力政策建立,而后者是最终的工艺设计工具,则基于差异化的约束力策略。rn应用了两种不同的约束力政策:前者专注于拉伸珠的利用,后者利用分段的Blankholder。rn关于优化目标函数,考虑了与细化分布和回弹量有关的指标。rn可以使用获得的Pareto曲线来区分必须预期的条件一旦目标函数之一的期望值是提出了一种新的灵活的设计方法,能够:1。处理复杂的钣金冲压工艺; rn2。研究许多可能的技术方案; rn3。实施一套能够满足不同设计要求的可靠解决方案。

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