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Microstructural effects on the springback of advanced high-strength steel

机译:显微组织对高级高强度钢回弹的影响

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The application of advanced high-strength steels (AHSS) has been growing rapidly in the automotive industry. Because of their high-strength, thinner sheet metals can be used for body components to achieve both weight savings and increased safety. However, this will lead to greater springback deviation from design after the forming operation. Fundamental understanding and prediction of springback are required for springback compensation and tooling design. While various types of continuum mechanics based models have been proposed to simulate the mechanical behavior of advanced high-strength steels, few of them consider microstructural effects such as material heterogeneity. In this study, through sheet thickness strength variation has been observed in DP 780 and TRIP 780 steels. Finite-element simulation indicates that the through thickness effect (TTE) can have a significant impact on the springback behavior of these sheet metals. This is verified through our experimental work using draw-bend testing. The results suggest that microstructural effects should be considered to accurately simulate springback of AHSS. Based on these results, implications of different microstructural designs will be discussed.
机译:先进的高强度钢(AHSS)的应用在汽车工业中迅速增长。由于它们的强度高,因此可以将较薄的金属薄板用作车身部件,以减轻重量并提高安全性。但是,这将导致成形操作后与设计产生更大的回弹偏差。回弹补偿和工具设计需要对回弹有基本的了解和预测。虽然已经提出了各种类型的基于连续力学的模型来模拟先进的高强度钢的力学行为,但很少有人考虑微观结构效应,例如材料异质性。在这项研究中,在DP 780和TRIP 780钢中观察到了整个板材厚度的强度变化。有限元模拟表明,贯穿厚度效应(TTE)可能对这些板材的回弹行为产生重大影响。通过使用弯曲试验的实验工作可以验证这一点。结果表明,应考虑微观结构效应以准确模拟AHSS的回弹。基于这些结果,将讨论不同微结构设计的含义。

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