Micromechanical models and the statistical analysis of fracture and fracture toughness

J. Knott
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引用次数: 7

Abstract

Abstract The paper addresses ways in which distributions of defects in engineering alloys lead to a distribution or ′scatter′ in measures of resistance to plastic flow or brittle fracture. The argument is that the statistical treatment and interpretation of any such distribution should be based on inferences drawn from micromechanical modelling of flow and fracture processes, rather than from empirical analysis. Examples cover distributions of ultimate tensile strength in aluminium alloy castings, the cleavage fracture stress in notched bars of ferritic weld-metal and fracture toughness values in ′quasihomogeneous′ quenched-and-tempered steels. Visual inspection of distributions are used to assess changes produced by heat treatment or processing variables. Attention is paid to the fracture toughness distributions obtained for ′heterogeneous′ materials and to the extrapolation of fracture toughness values to very low failure probabilities.
断裂和断裂韧性的微观力学模型和统计分析
摘要:本文讨论了工程合金中缺陷的分布导致抗塑性流动或脆性断裂的分布或“分散”的方法。这种观点认为,任何这种分布的统计处理和解释都应该基于从流动和断裂过程的微观力学模型中得出的推论,而不是从经验分析中得出。例子包括铝合金铸件的极限抗拉强度分布,铁素体焊接金属的缺口棒的解理断裂应力和“准均匀”调质钢的断裂韧性值。目视检查分布是用来评估由热处理或加工变量产生的变化。注意“非均质”材料的断裂韧性分布,并将断裂韧性值外推到非常低的失效概率。
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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