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Type IV creep cracking of welded joints: numerical study of the grain size effect in HAZ

机译:焊接接头的IV型蠕变开裂:HaZ中晶粒尺寸效应的数值研究

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摘要

A reliable creep design for very long lives, capable to account for both diffusion and dislocation mechanisms, was used to explain the onset of type IV fracture in weldments. An unexpected decreased creep rupture strength at low stress is the typical consequence of this failure. The fine-grained heat affected zone (FGHAZ) is the most sensitive region to the type IV failure. In this paper the effect of the grain size distribution was numerically investigated. The creep rupture occurs at the FGHAZ as a result of localized creep strain accumulation supported by high stress triaxiality which is known to promote nucleation and growth of cavities and reduce the material ductility. The stress triaxiality is mostly related to the grain size gradient in HAZ, thus an optimized grain size distribution could result in a longer creep life of the joints.
机译:一种可靠的蠕变设计(可以考虑很长的寿命)能够解释扩散和位错机制,用于解释焊件IV型断裂的发生。低应力下蠕变断裂强度意外降低是这种破坏的典型结果。细粒热影响区(FGHAZ)是对IV型失效最敏感的区域。本文通过数值研究了晶粒尺寸分布的影响。由于高应力三轴性支持局部蠕变应变积累,因此在FGHAZ发生蠕变破裂,众所周知,三轴性促进了形核和空洞的生长并降低了材料的延展性。应力三轴性主要与热影响区中的晶粒度梯度有关,因此优化的晶粒度分布可以延长接头的蠕变寿命。

著录项

  • 作者

    Esposito, L.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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