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PROBABILITY OF BRITTLE FRACTURE IN LOW ALLOY STEELS

机译:低合金钢脆性骨折的概率

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摘要

This paper presents a method for quantifying probability of brittle fracture in low alloy steels. The proposed method shows how the probability of brittle fracture varies with stress intensity factor, temperature, deformation characteristics and microstructural parameters of low-alloyed steel. Application of this method on Ni-Cr steel demonstrated very good agreement of predicted temperature dependence of scatter in brittle fracture toughness values with experimental results. The method enables also to calculate characteristic distance as a radial dimension from the crack tip where microcrack initiation is the most probable. The characteristic distance of investigated Ni-Cr steel was found to decrease with increasing temperature. Microstructural mechanisms of initiation and propagation of brittle fracture were identified from results of fractography analysis. The proposed procedure represents a foundation for systematic control of relationship between stress-strain behaviours, toughness and reliability of steel engineering parts.
机译:本文介绍了低合金钢中脆性断裂概率的量化方法。该方法表明,脆性断裂概率如何随着低合金钢的应力强度因数,温度,变形特性和微观结构参数而变化。该方法在Ni-Cr钢上的应用表现出对脆性断裂韧性值散射的预测温度依赖性的非常良好的吻合。该方法还使得能够计算特征距离作为来自裂缝尖端的径向尺寸,其中微裂纹启动是最可能的。发现研究的Ni-Cr钢的特征距离随着温度的增加而降低。脆性骨折的显微组织机制鉴定了脆性骨折的结果。所提出的程序代表了系统控制应力 - 应变行为与钢铁工程部件件之间关系之间的关系的基础。

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