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Experimental and Finite Element Results for Optimization of Punch Force and Thickness Distribution in Deep Drawing Process

机译:拉深过程中冲头力和厚度分布优化的实验和有限元结果

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摘要

Carrying out various experiments organized based on the design of experiments method, the deep drawing process is investigated entirely in this paper. The influences of eight main process parameters including punch and die radii, blank thickness, punch velocity, lubrication conditions at the interfaces of blank-die, blank-punch, and blank-blank holder as well as the blank holder force on the process outputs comprising punch force and sheet thickness variation are investigated. The analysis of variance method is considered to define the procedure by which these eight parameters be adjusted for deep drawing process to minimize the punch force and maximize the uniform thickness distribution in the products. It was found that for punch force, in addition to blank thickness, die and punch radii as well as the BHF are, respectively, the main essential parameters. Besides, blank thickness, die radius, and lubrication condition at the holder-blank interface are the most effective parameters on thickness distribution. Accordingly, initial blank thickness and die shoulder radius could be taken into account as two important parameters in deep drawing process should be set up appropriately to accomplish the minimum punch force and uniform thickness distribution together.
机译:根据实验方法的设计进行各种实验,对深冲过程进行了全面的研究。八个主要工艺参数的影响,包括冲头和模具的半径,毛坯厚度,冲头速度,毛坯模,毛坯冲头和毛坯毛坯支座界面处的润滑条件以及毛坯支座力对过程输出的影响,包括研究了冲压力和板厚变化。考虑使用方差分析法来定义用于深冲过程的这八个参数的调整过程,以最小化冲模力并最大化产品中的均匀厚度分布。已经发现,对于冲模力,除了毛坯厚度之外,模头和冲头半径以及BHF分别是主要的基本参数。此外,毛坯厚度,模具半径和刀柄-毛坯界面的润滑条件是厚度分布最有效的参数。因此,可以适当考虑初始毛坯厚度和模肩半径,因为应适当设置深冲过程中的两个重要参数,以同时实现最小的冲模力和均匀的厚度分布。

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