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A probabilistic model for prediction of cleavage fracture in the ductile-to-brittle transition region and the effect of temperature on model parameters

机译:预测韧性-脆性过渡区解理断裂的概率模型以及温度对模型参数的影响

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摘要

This paper presents a modified Weibull stress model which accounts for the effects of plastic strain and stress triaxiality at the crack tip region. The proposed model is applied to predict cleavage fracture in a modified A508 pressure vessel steel. It is demonstrated that the Weibull modulus (m) remains a constant in the temperature range considered. The threshold value for the Weibull stress model, σ_(ω-min), decreases with temperature due to decrease of the yield stress with temperature. The Weibull stress scale parameter, σ_u, increases with temperature reflecting the combined effects of temperature on material flow properties and toughness. The proposed Weibull stress model accurately predicts the scatter of the measured fracture toughness data and the strong effects of constraint and temperature on cleavage fracture toughness.
机译:本文提出了一种改进的威布尔应力模型,该模型考虑了裂纹尖端区域塑性应变和应力三轴性的影响。提出的模型用于预测改进的A508压力容器钢的解理断裂。证明了威布尔模量(m)在所考虑的温度范围内保持恒定。 Weibull应力模型的阈值σ_(ω-min)由于屈服应力随温度降低而降低。威布尔应力标度参数σ_u随着温度增加而增加,反映了温度对材料流动性和韧性的综合影响。提出的Weibull应力模型可准确预测所测断裂韧性数据的分散性以及约束和温度对解理断裂韧性的强烈影响。

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