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Investigation of relationship between blanking conditions and characteristics of edges of products blanked by two-step counter blanking processes: study on burr-free blanking I

机译:两步计数器消隐工艺消隐制造条件与产品边缘特性的调查:毛囊防撞研究I

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摘要

Finite element method (FEM) simulation has been performed for burr-free blanking processes such as conventional two-step counter-blanking and so-called push-back blanking, and the relationship between the blanking conditions and the characteristics of product edges has been investigated. In the conventional two-step counter-blanking process, there are many process parameters such as the first step punch penetration, the first step blanking clearance and the dimensions of the punch and die. The present study aims at determining the successful conditions in which time and cost can be reduced for burr-free blanking by experimental trial and error. In order to achieve this, FEM simulations are performed to clarify the deformation modes of material under various blanking conditions and to identify the successful blanking conditions for burr-free blanking. It is shown that the results of FEM simulations are qualitatively in good agreement with those of experiments using a stainless-steel sheet of 1 mm thickness.
机译:已经对诸如传统的两步反弹和所谓的重击消隐等突破性的消隐工艺进行了有限元方法(FEM)模拟,并且已经研究了消隐条件与产品边缘的特性之间的关系。在传统的两步反弹工艺中,有许多工艺参数,例如第一步骤冲突渗透,第一步消隐间隙和冲头的尺寸和芯片。本研究旨在确定通过实验试验和误差可以减少可能降低时间和成本的成功条件。为了实现这一点,进行有限元模拟,以阐明各种消隐条件下的材料变形模式,并识别无脉冲消隐的成功消隐条件。结果表明,使用1mm厚度的不锈钢片的实验结果与实验非常一致。

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