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Experimental and numerical investigation of ductile-to-brittle transition in a pressure vessel steel

机译:压力容器钢中韧性到脆性转变的实验和数值研究

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Cleavage fracture toughness data often exhibits a considerable amount of scatter and strong dependencies on temperature, loading rate, pre-straining, etc. due to the highly localized nature of the failure mechanism and microstructural inhomogeneity in the ductile-to-brittle transition (DBT) region of a material. Beremin's model is popularly used by the researchers to predict the cleavage fracture probabilities. However, the temperature dependency of the Weibull parameters is an issue which is still being debated worldwide. Usually, elasto-plastic analysis is carried out to determine the Weibull stress and hence the effect of ductile crack growth prior to cleavage fracture is not considered. In this work, it is demonstrated that the temperature dependency of the parameters is observed due to inability of the models to predict the above pre-cleavage ductile crack growth. The authors have developed a combined nonlocal (mesh independent) ductile damage and cleavage fracture model to predict the fracture toughness transition curve of ferritic steels. Extensive experiments have been conducted on compact tension specimens in the DBT region and the predicted results have been compared with those of experiment to demonstrate the merits of the new model.
机译:断裂断裂韧性数据通常表现出相当大的分散性,并且对温度,载荷速率,预应变等具有很强的依赖性,这是由于断裂机理的高度局部性以及韧性到脆性转变(DBT)中的微观结构不均匀性材料的区域。研究人员普遍使用Beremin模型预测卵裂的概率。但是,威布尔参数对温度的依赖性是一个仍在全球范围内争论的问题。通常,进行弹塑性分析来确定威布尔应力,因此不考虑乳沟破裂之前韧性裂纹扩展的影响。在这项工作中,证明了由于模型无法预测上述劈裂前韧性裂纹的增长而导致的参数温度依赖性。作者已经开发出一种组合的非局部(独立于网格的)延性损伤和劈裂断裂模型,以预测铁素体钢的断裂韧性过渡曲线。在DBT区域对致密的拉伸试样进行了广泛的实验,并将预测结果与实验结果进行了比较,以证明新模型的优点。

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