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Study of Residual Stresses and Microstructural Changes in Charpy Test Specimens Reconstituted by Various Welding Techniques

机译:各种焊接技术重构夏比试验标本的残余应力和微观结构变化研究

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摘要

Changes in the reactor pressure vessel (RPV) material properties due to neutron irradiation are monitored by means of surveillance specimen programs, which are used for realistic evaluation of the RPVs’ lifetime. Due to a limited number of surveillance specimens, the evaluation of reconstitution methods by various welding techniques after Charpy impact tests is of great importance. Time-of-flight (TOF) neutron diffraction method was used to determine the residual stress distributions and microstructural changes in Charpy specimens welded by arc stud, electron, and laser beam welding techniques. The lowest level of the residual stress in weld seams regions was found for the specimen welded by electron beam with optimal parameters as compared to other techniques. At the same time, this specimen exhibits the maximal level of microstrain, which points to high dislocation density in the material. The corresponding contributions to the yield strength due to various strengthening mechanisms were estimated.
机译:通过监测标本计划监测由于中子辐射引起的反应器压力容器(RPV)材料特性的变化,其用于RPVS寿命的现实评估。由于监测标本数量有限,夏比冲击试验后各种焊接技术对重建方法的评价具有重要意义。飞行时间(TOF)中子衍射方法用于确定通过弧形螺柱,电子和激光束焊接技术焊接的夏比样本中的残余应力分布和微观结构变化。与其他技术相比,通过电子束焊接的标本,找到焊缝区域中的残余应力的最低水平。同时,该样本表现出MicroStrain的最大水平,这指向材料中的高位脱位密度。估计了由于各种强化机制引起的相应贡献。

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  • 作者

    Gizo Bokuchava; Peter Petrov;

  • 作者单位
  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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