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Residual Stress Measurements in Welded and Plastically Deformed Target Structural Materials

机译:焊接和塑性变形靶结构材料中的残余应力测量

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Transmutation of spent nuclear fuels (SNF) is currently being considered to transform long-lived isotopes to species with relatively short half-lives and reduced radioactivity through capture and decay of minor actinides and fission products. This process is intended for geologic disposal of SNF for shorter durations in the proposed repository at the Yucca Mountain site. The structural material (Type 304L stainless steel/Alloy EP-823) surrounding the transmutation target will be subjected to welding operation and plastic deformation during fabrication, which could induce residual stresses in it. Destructive ring-core, and nondestructive x-ray diffraction, neutron diffraction, and positron annihilation spectroscopic techniques were used to evaluate residual stresses in welded and cold-worked specimens of both materials. The results indicate that, in general, for a welded specimen consisting of Alloy EP-823 and Type 304L stainless steel on opposite sides, compressive and tensile residual stresses were observed in the former and latter materials, respectively. However, a welded specimen consisting of only Alloy EP-823 on both sides showed tensile residual stresses. The extent of residual stresses in cold-worked specimens was enhanced with increased level of cold-reduction. In case of a bent specimen, compressive and tensile residual stresses were noticed in the convex and concave sides, respectively.
机译:目前正在考虑废核燃料(SNF)的嬗变,以通过捕获和腐烂和裂变产品的捕获和腐烂降低放射性,将长期同位素转化为具有相对较短的半衰期的种类。该过程旨在为尤卡卡山区拟议的储存库中的较短持续时间的SNF的地质处理。围绕嬗变目标的结构材料(型304L不锈钢/合金EP-823)将经受制造期间的焊接操作和塑性变形,这可能引起其残余应力。破坏性环芯和非破坏性X射线衍射,中子衍射和正电子湮灭光谱技术用于评估两种材料的焊接和冷加工标本中的残余应力。结果表明,通常,对于由合金EP-823和相对侧的型304L不锈钢组成的焊接试样,分别在前者和后一种材料中观察到压缩和拉伸残余应力。然而,由两侧上仅由合金EP-823组成的焊接试样显示拉伸残余应力。冷加工标本中残余应力的程度提高了降低水平。在弯曲标本的情况下,分别在凸起和凹面中注意到压缩和拉伸残留应力。

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