The Grain-Size-Dependence of Flow Stress in Mild Steel

J. Evans, R. Rawlings
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引用次数: 5

Abstract

AbstractTensile tests have been made on mild-steel specimens with a range of grain sizes. Suppression of the yield point for the purpose of observing the early stages of work-hardening was accomplished by decarburizing in wet hydrogen or by quenching from 700°C. Analysis of the results indicates that there are two regions of work-hardening, which operate below and above 10% elongation, respectively. During the first stage, where work-hardening is parabolic, the rate of hardening varied with grain size. This was interpreted in the light of recent experimental observations relating flow stress and dislocation density, enabling an equation to be written that describes the flow stress in terms of grain size and plastic strain for the first 10% of elongation.
低碳钢流变应力的晶粒依赖性
摘要对不同晶粒尺寸的低碳钢试样进行了拉伸试验。为了观察加工硬化的早期阶段,通过在湿氢中脱碳或从700°C淬火来抑制屈服点。结果表明,在10%伸长率以下和10%伸长率以上存在两个加工硬化区。在第一阶段,加工硬化呈抛物线状,硬化速率随晶粒尺寸的变化而变化。这是根据最近的流动应力和位错密度的实验观察来解释的,从而可以写出一个方程,以晶粒尺寸和塑性应变来描述前10%伸长率的流动应力。
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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