MICROPLASTICITY PREDICTIONS OF r-VALUES AND YIELD LOCI OF LOW CARBON SHEET STEELS DEFORMING BY PENCIL GLIDE

S. Semiatin, P. R. Morris, H. Piehler
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引用次数: 8

Abstract

The plastic deformation of low carbon sheet steels has been analyzed using microplasticity models and Hill's theory of anisotropic continuum plasticity. The analytical methods used to determine the crystallite stress states which must be generated for the isostress (lower-bound) and isostrain (upper-bound) cases are briefly discussed and then applied to predict yield loci for three cold-rolled, annealed low-carbon steels (enameling iron, aluminum-killed steel, and interstitial-free steel) whose textures were characterized by crystallite orientation distribution functions. While measured r-values correlate best with upper-bound yield loci predictions for enameling iron, those for the aluminum-killed steels show better agreement with lower-bound yield loci predictions. In the case of the interstitial-free steel, measured r-values could not be accounted for by either upper- or lower-bound predictions. The yield loci measurements and predictions are reviewed in the context of Hill's continuum theory.
铅笔滑动变形的低碳薄板r值和屈服轨迹的微塑性预测
采用微塑性模型和Hill的各向异性连续塑性理论分析了低碳钢薄板的塑性变形。简要讨论了确定等应力(下限)和等应变(上限)情况下必须产生的晶体应力状态的分析方法,然后将其应用于预测三种以晶体取向分布函数表征织构的冷轧退火低碳钢(搪瓷铁、铝杀钢和无间隙钢)的屈服位点。虽然测量的r值与搪瓷铁的上限屈服位点预测最相关,但铝杀死钢的r值与下限屈服位点预测更一致。在无间隙钢的情况下,测量的r值不能用上限或下限预测来解释。在希尔连续统理论的背景下,回顾了屈服轨迹的测量和预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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