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Designing a Uniaxial Tension/Compression Test for Springback Analysis in High-Strength Steel Sheets

机译:设计用于高强度钢板回弹分析的单轴拉伸/压缩试验

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摘要

We describe an innovative design for an in-plane measurement technique that subjects thin sheet metal specimens to bidirectional loading. The goal of this measurement is to provide the critical performance data necessary to validate complex predictions of the work hardening behavior during reversed uniaxial deformation. In this approach, all of the principal forces applied to the specimen are continually measured in real-time throughout the test. This includes the lateral forces that are required to prevent out of plane displacements in the specimen that promote buckling. This additional information will, in turn, improve the accuracy of the compensation for the friction generated between the anti-bucking guides and the specimen during compression. The results from an initial series of experiments not only demonstrate that our approach is feasible, but that it generates data with the accuracy necessary to quantify the directionally-dependent changes in the yield behavior that occur when the strain path is reversed (i.e., the Bauschinger Effect).
机译:我们描述了一种用于平面测量技术的创新设计,该技术可以使薄金属薄板样本承受双向载荷。此测量的目的是提供必要的关键性能数据,以验证反向单轴变形过程中加工硬化行为的复杂预测。通过这种方法,在整个测试过程中,将连续实时地测量施加到样品上的所有主力。这包括为防止试样中平面外位移而引起的屈曲所需的横向力。反过来,这些附加信息将提高在压缩过程中抗扭曲导向器和样本之间产生的摩擦的补偿精度。一系列初始实验的结果不仅证明了我们的方法是可行的,而且它所产生的数据具有量化应变路径反向时发生的屈服行为的方向相关变化所必需的精度(即鲍辛格影响)。

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