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Investigation of the Strain Hardening and Bauschinger Effect of Low and High Strength Steel Application in Drawbead-tester by Experiment and Numerical Simulation

机译:试验和数值模拟研究疲劳 - 试验机低强度钢应用菌株硬化和Bauschinger效应

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摘要

The research is aimed to investigate Bauschinger effect and strain hardening by the application of drawbead-tester. Generally, the drawbead is used to control the material flow into the die cavity in sheet metal forming process. When the material is flowing into the drawbead, it may cause the development of strain hardening and/or Bauschinger effect. This work consists of two main equipment particularly developed for the experiments. They are drawbead-tester and three-point bending device. The drawbead-tester provides the possibility to integrate the optical in-process strain analysis system. Whereas the sheet metal was being formed in the drawbead, the local strain of the sheet metal was evaluated. At the same time, the drawbead restraining and holding forces were measured. The three point bending device and numerical simulation method are used to investigate the Bauschinger effect. In the experiment, the cyclic bending forces were measured and compared with the result obtained by numerical simulation.
机译:该研究旨在通过绘制牵引仪测试仪调查Bauschinger效应和应变硬化。通常,抽绳用于将材料流入金属板形成过程中的模腔中。当材料流入抽头时,它可能导致应变硬化和/或Bauschinger效应的发展。这项工作包括两个主要为实验开发的主要设备组成。它们是DrawBead-Tester和三点弯曲装置。牵引件 - 测试器提供了集成光学内部应变分析系统的可能性。虽然在拔纸中形成金属板,但评估金属板的局部应变。同时,测量拉伸抑制和保持力。三点弯曲装置和数值模拟方法用于研究Bauschinger效应。在实验中,测量循环弯曲力并与通过数值模拟获得的结果进行比较。

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