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Assessing Formability of Sheet Metals through Advanced Tensile and LASER Speckle Analysis

机译:通过先进的拉伸和激光散斑分析评估片材的可成形性

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The ability of a metal to resist strain localisation and hence reduction in local thickness, is a most important forming property upon stretching. The uniform strain represents in this regard a critical factor to describe stretching ability - especially when the material under consideration exhibits negative strain rate sensitivity and dynamic strain ageing (DSA). A newly developed Laser Speckle Technique (LST), e.g. see [1], was used in-situ during tensile testing with two extensometers. The applied technique facilitates quantitative information on the propagating plasticity (i.e. the so-called PLC bands) known to take place during deformation where DSA is active. The band velocity (V_(band)), and the bandwidth (W_(band)) were monitored upon increasing accumulated strain. The knowledge obtained with the LST was useful for understanding the underlying mechanisms for the formability limit when DSA and negative strain rate sensitivity operate. The goal was to understand the relationship between PLC/DSA phenomena and the formability limit physically manifested as shear band formation. Two principally different alloys were used to discover alloying effects.
机译:金属以抵抗应变定位并因此降低局部厚度的能力是在拉伸时最重要的成形性能。在这方面,均匀的应变代表描述伸展能力的关键因素 - 特别是当所考虑的材料表现出负应激率敏感性和动态应变老化(DSA)时。一种新开发的激光散斑技术(LST),例如,有关两个突出器的拉伸试验期间,在原位使用原位使用。所应用的技术有助于在DSA活跃的变形期间发生的传播可塑性(即所谓的PLC带)的定量信息。在增加累积应变时监测带速度(V_(频带))和带宽(W_(波段))。使用LST获得的知识对于在DSA和负应变速率灵敏度运行时,可以理解可成形性极限的潜在机制。目标是了解PLC / DSA现象与物理表现为剪切带的关系之间的关系。两种主要不同的合金用于发现合金化效应。

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