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Cohesive zone modeling of intergranular cracking in polycrystalline aggregates

机译:多晶骨料中晶间裂纹的内聚区建模

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摘要

Understanding and controlling early damage initiation and evolution are amongst the most important challenges in nuclear power plants, occurring in ferritic, austenitic steels and nickel based alloys. In this work a meso-scale approach to modeling initiation and evolution of early intergranular cracking is presented. This damage mechanism is present in a number of nuclear power plant components and depends on the material (e.g. composition, heat treatment, microstructure), environment and load. Finite element modeling is used to explicitly model the microstructure - both the grains and the grain boundaries. Spatial Voronoi tessellation is used to obtain the grain topology. In addition, measured topology of a 0.4 mm stainless steel wire is used. Anisotropic elasticity and crystal plasticity are used as constitutive laws for the grains. Grain boundaries are modeled using the cohesive zone approach. Different modeling assumptions/parameters are evaluated against the numerical stability criteria. The biggest positive contribution to numerical stability is the use of cohesive-type contact instead of cohesive elements. A small amount of viscous regularization should be also used along with the addition of a small amount of viscous forces to the global equilibrium equations. Two cases of grain boundary damage initiation are explored: (1) initiation due to normal separation and (2) initiation due to a combination of normal and shear separation. The second criterion significantly decreases the ductility of an aggregate and slightly improves the numerical stability.
机译:在铁素体,奥氏体钢和镍基合金中,了解和控制早期损伤的发生和发展是核电厂面临的最重要挑战之一。在这项工作中,提出了一种中尺度方法来模拟早期晶间裂纹的萌生和演化。这种损坏机制存在于许多核电站组件中,并且取决于材料(例如成分,热处理,微观结构),环境和负载。有限元建模用于显式建模微观结构-晶粒和晶粒边界。使用空间Voronoi镶嵌来获得晶粒拓扑。另外,使用了0.4mm不锈钢丝的测量拓扑。各向异性弹性和晶体可塑性被用作晶粒的本构定律。使用内聚区方法对晶界进行建模。根据数值稳定性标准评估不同的建模假设/参数。对数值稳定性的最大正面贡献是使用内聚型接触代替内聚元素。还应使用少量粘性正则化,以及在全局平衡方程中添加少量粘性力。研究了两种晶界损伤引发的情况:(1)由于正常分离引起的引发和(2)由于正常和剪切分离的结合引起的引发。第二个标准显着降低了骨料的延展性,并略微提高了数值稳定性。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2015年第3期|139-147|共9页
  • 作者

    Igor Simonovski; Leon Cizelj;

  • 作者单位

    European Commission, DG-JRC, Institute for Energy and Transport, P.O. Box 2, NL-1755 ZG Petten, The Netherlands;

    Jozef Stefan Institute, Reactor Engineering Division, Jamova cesta 39, SI-1000 Ljubljana, Slovenia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:42:15

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