首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Residual strain measurement and grain boundary characterization in the heat-affected zone of a weld joint between Alloy 690TT and Alloy 52
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Residual strain measurement and grain boundary characterization in the heat-affected zone of a weld joint between Alloy 690TT and Alloy 52

机译:690TT合金和52合金之间焊接接头热影响区的残余应变测量和晶界表征

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摘要

The distributions of residual strains and grain boundary microstructures were investigated in the heat-affected zone (HAZ) of a weld joint between Alloy 690TT (thermally treated) and Alloy 52 Using electron backscatter diffraction (EBSD) and transmission electron microscopy. the distributions of residual strains were examined at the top, middle, and root of the HAZ using EBSD to obtain the grain average misorientation. The weld residual strain increased from the top of the weld to the root while the peak of strain approached the fusion boundary (FB) in the HAZ. The maximum strains and their distances to the FB in the top, middle, and root was 15% and 800 mu m, 17% and 600 mu m, 20% and 200 mu m, respectively. The fraction of Sigma 3 special boundaries was about 40% in the HAZ but With obvious deviations from the structure of ideal boundaries. The HAZ region is considered to sustain the highest susceptibility to SCC at the root of the weld.
机译:利用电子背散射衍射(EBSD)和透射电子显微镜研究了690TT合金(热处理)和52合金之间的焊接接头的热影响区(HAZ)中的残余应变和晶界微观结构的分布。利用EBSD检查了热影响区顶部,中部和根部的残余应变分布,以获得晶粒平均取向错误。焊缝残余应变从焊缝顶部到根部增加,而应变的峰值接近热影响区中的熔合边界(FB)。顶部,中部和根部的最大应变及其与FB的距离分别为15%和800μm,17%和600μm,20%和200μm。在热影响区中,Sigma 3特殊边界的比例约为40%,但与理想边界的结构存在明显偏差。 HAZ区域被认为在焊缝的根部对SCC的敏感性最高。

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