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A coupled diffusion and cohesive zone modelling approach for numerically assessing hydrogen embrittlement of steel structures

机译:用于数值评估钢结构氢脆的耦合扩散和粘聚区建模方法

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Simulation of hydrogen embrittlement requires a coupled approach; on one side, the models describing hydrogen transport must account for local mechanical fields, while on the other side, the effect of hydrogen on the accelerated material damage must be implemented into the model describing crack initiation and growth. The present study presents a review of coupled diffusion and cohesive zone modelling as a method for numerically assessing hydrogen embrittlement of a steel structure. While the model is able to reproduce single experimental results by appropriate fitting of the cohesive parameters, there appears to be limitations in transferring these results to other hydrogen systems. Agreement may be improved by appropriately identifying the required input parameters for the particular system under study. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:模拟氢脆需要一种耦合方法。一方面,描述氢传输的模型必须考虑局部机械场,而另一方面,必须在描述裂纹萌生和扩展的模型中实施氢对加速材料破坏的影响。本研究提出了耦合扩散和内聚区建模的综述,作为数值评估钢结构氢脆的一种方法。虽然该模型能够通过适当拟合内聚参数来重现单个实验结果,但在将这些结果转移到其他氢系统中似乎存在局限性。通过适当地确定正在研究的特定系统所需的输入参数,可以改善一致性。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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