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Computational modelling of hydrogen assisted fracture in polycrystalline materials

机译:多晶材料氢辅助断裂的计算模型

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摘要

We present a combined phase field and cohesive zone formulation for hydrogen embrittlement that resolves the polycrystalline microstructure of metals. Unlike previous studies, our deformation-diffusion-fracture modelling framework accounts for hydrogen-microstructure interactions and explicitly captures the interplay between bulk (transgranular) fracture and intergranular fracture, with the latter being facilitated by hydrogen through mechanisms such as grain boundary decohesion. We demonstrate the potential of the theoretical and computational formulation presented by simulating inter- and trans-granular cracking in relevant case studies. Firstly, verification calculations are conducted to show how the framework predicts the expected qualitative trends. Secondly, the model is used to simulate recent experiments on pure Ni and a Ni-Cu superalloy that have attracted particular interest. We show that the model is able to provide a good quantitative agreement with testing data and yields a mechanistic rationale for the experimental observations. (C) 2022 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:我们提出了一种用于氢脆的组合相场和内聚区公式,可解决金属的多晶微观结构。与以往研究不同,我们的变形-扩散-断裂建模框架考虑了氢-微结构相互作用,并明确地捕捉了块状(跨晶)断裂和晶间断裂之间的相互作用,后者通过晶界退粘等机制由氢促进。我们在相关案例研究中通过模拟晶间和跨晶裂化来展示理论和计算公式的潜力。首先,通过验证计算来展示框架如何预测预期的定性趋势;其次,该模型用于模拟最近引起特别关注的纯Ni和Ni-Cu高温合金的实验。我们表明,该模型能够与测试数据提供良好的定量一致性,并为实验观察结果提供机理理论依据。(c) 2022 作者。由Elsevier Ltd代表Hydrogen Energy Publications LLC出版。

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