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首页> 外文期刊>Engineering Fracture Mechanics >Modeling of scatter and size effects in ductile fracture: application to thermal embrittlement of duplex stainless steels
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Modeling of scatter and size effects in ductile fracture: application to thermal embrittlement of duplex stainless steels

机译:塑性断裂中的散射和尺寸效应建模:在双相不锈钢热脆化中的应用

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摘要

The aim of this work was to investigate the effect of specimen size and geometry on ductile fracture of cast duplex stainless steels after thermal embrittlement. Different specimen geometries, including smooth and notched bars, Charpy and compact tension (CT) specimens, were tested using three different materials. These specimens were used to investigate both crack initiation and propagation. In all cases, a significant scatter was observed. Size effects were also evidenced using homothetic samples having the same geometry. Microstructural investigations have also shown that damage is highly heterogeneous. In order to predict rupture, finite element models were used. The material was described using the Gurson model. In order to model size effects and scatter, it was necessary to account for the distribution of damage nucleation rates which were experimentally measured by quantitative metallography. Comparison of experiments with simulations showed that the model can be applied to describe both crack initiation and propagation. In particular it can predict mean value and scatter observed on strain to failure (tensile bars) and on initiation and propagation energies (Charpy and CT specimens).
机译:这项工作的目的是研究试样尺寸和几何形状对热脆后铸造双相不锈钢延性断裂的影响。使用三种不同的材料测试了不同的样品几何形状,包括光滑和带缺口的条形样品,夏比和紧凑拉伸(CT)样品。这些标本用于研究裂纹的产生和扩展。在所有情况下,均观察到明显的分散。使用具有相同几何形状的同质样品也证明了尺寸效应。微观结构研究还表明,损伤是高度异质的。为了预测破裂,使用了有限元模型。使用Gurson模型描述了材料。为了模拟尺寸效应和散射,有必要考虑损伤成核率的分布,其通过定量金相学实验测量。模拟实验的比较表明,该模型可用于描述裂纹萌生和扩展。特别是,它可以预测在破坏应变(拉力棒)以及初始和传播能量(夏比和CT试样)上观察到的平均值和散射。

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