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Prediction of Charpy impact toughness of steel weld heat-affected zones by combined micromechanics and stochastic fracture model - Part II : Model validation by experiment

机译:微机械和随机骨折模型预测钢焊缝热影响区的夏乳抗韧性 - 第二部分:实验模型验证

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摘要

The present paper presents the results of Charpy impact testing for a variety of simulated heat-affected zone (HAZ) samples having different chemical compositions and thermal cycles. The target microstructure was coarse-grained and predominantly composed of upper bainite with martensite-austenite (MA) constituents. Microstructural parameters, including volume fractions of the MA and grain boundary (GB) ferrite and the statistical distributions of the MA particle thickness, lath width and GB ferrite thickness, were measured. All these data were fed into the computational model to predict the Charpy impact absorbed energy transition behavior, presented in Part I. The predicted results agreed well with the experimental results. The present model does not rely on data from multiple specimens, but the Charpy absorbed energy together with its scatter can be predicted from the microstructural parameters and tensile properties only.
机译:本文介绍了具有不同化学组成和热循环的各种模拟的热影响区(HAZ)样品的夏比冲击试验结果。 目标微观结构粗粒,主要由具有马氏体 - 奥氏体(MA)成分的上贝氏体组成。 测定了微结构参数,包括MA和晶界(GB)铁氧体的体积分数和MA粒度厚度,板条宽度和GB铁氧体厚度的统计分布。 将所有这些数据馈入计算模型中以预测第I部分中呈现的夏比撞击的能量转换行为。预测结果与实验结果很好。 本模型不依赖于来自多个样本的数据,但是只能从微观结构参数和拉伸性能预测夏比与其散射一起吸收能量。

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