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A probabilistic model for cleavage fracture with a length scale-influence of material parameters and constraint

机译:材料参数和约束的长度尺度影响下的劈裂裂缝概率模型

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A probabilistic model for the cumulative probability of failure by cleavage fracture with a material related length scale is developed in this study. The model aims at describing the random nature of fracture in ferritic steels in the brittle-to-ductile transition temperature region. The model derives from use of an exponential function to describe the distribution of microstructural entities eligible to take part in the fracture initiation process, where also a dependence on effective plastic strain is incorporated. A nonlocal stress measure, calculated as the average stress in a spherical volume, drives the contribution to failure probability of an infinitesimal material volume. The radius of the spherical volume enters as the material length in this model. This length has a significant influence on failure probability predictions in geometries exposed to strong stress gradients as found ahead of cracks. The material length is associated with a fracture toughness threshold value. In a fracture application three model parameters need to be estimated based on testing; a parameter directly related to the mean Fracture toughness, a parameter that primarily is related to crack-tip constraint effects and the material length parameter. The model is explored in a parametric study showing model features in concord with typical features found in toughness distributions from fracture mechanics testing in the transition region.
机译:在这项研究中,建立了一个与材料相关的长度尺度的,由劈裂引起的破裂累积失败概率的概率模型。该模型旨在描述脆性至延性转变温度区域中铁素体钢断裂的随机性。该模型源自使用指数函数来描述符合参与断裂引发过程的微结构实体的分布的方法,其中还包括对有效塑性应变的依赖性。计算为球体体积中的平均应力的非局部应力度量驱动着对无限小材料体积的破坏概率的贡献。在此模型中,球形体积的半径作为材料长度输入。该长度对在裂纹之前发现的承受强应力梯度的几何形状中的失效概率预测有重大影响。材料长度与断裂韧性阈值相关。在裂缝应用中,需要根据测试估算出三个模型参数。与平均断裂韧度直接相关的参数,主要与裂纹尖端约束效应和材料长度参数相关的参数。在参数研究中探索了该模型,该模型显示模型特征与过渡区域中断裂力学测试得出的韧性分布中的典型特征一致。

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