结合微裂纹分布测量评估温度对断裂韧性影响的局部方法

C. Ruggieri, A. Jivkov
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摘要

本文描述了一种局部解理断裂(LAF)方法,结合微裂纹的统计数据来表征结构钢的解理断裂韧性分布。对22NiMoCr37压力容器钢的标准致密拉伸C(T)试样进行断裂韧性测试,提供了确定测量韧性分布所需的抗解理断裂数据。对被试钢蚀刻表面的金相检查也提供了碳化物的分布,这些碳化物被认为是格里菲斯断裂引发颗粒,分散在材料中,由此预测解理断裂韧性的分布。总的来说,本工作中进行的分析表明,结合微裂纹统计的LAFs是一种可行的工程程序,用于描述铁素体钢在DBT区域断裂韧性对温度的依赖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Local Approach to Assess Temperature Effects on Fracture Toughness Incorporating the Measured Distribution of Microcracks
This work describes a local approach to cleavage fracture (LAF) incorporating the statistics of microcracks to characterize the cleavage fracture toughness distribution in structural steels. Fracture toughness testing conducted on standard compact tension C(T) specimens for a 22NiMoCr37 pressure vessel steel provides the cleavage fracture resistance data needed to determine the measured toughness distribution. Metallographic examination of etched surfaces for the tested steel also provides the distribution of carbides, which are assumed as the Griffith fracture-initiating particles, dispersed in the material from which the cleavage fracture toughness distribution is predicted. Overall, the analyses conducted in the present work show that LAFs incorporating the statistics of microcracks are a viable engineering procedure to describe the dependence of fracture toughness on temperature in the DBT region for ferritic steels.
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