首页> 外文期刊>International Journal of Pressure Vessels and Piping >Residual stresses in arc and electron-beam welds in 130 mm thick SA508 steel: Part 2-measurements
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Residual stresses in arc and electron-beam welds in 130 mm thick SA508 steel: Part 2-measurements

机译:130 mm厚SA508钢的电弧和电子束焊接中的残余应力:第2部分 - 测量

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摘要

In this study we aim to determine how the choice of welding process might impact on the through-life performance of critical nuclear components such as the reactor pressure vessel, steam generators and pressuriser in a pressurised water reactor. Attention is devoted to technologies that are currently employed in the fabrication of such components, i.e. narrow-gap variants of gas-tungsten arc welding (GTAW) and submerged arc welding (SAW), as well as a technology that might be applied in the future (electron beam welding). The residual stresses that are introduced by welding operations will have an influence on the integrity of critical components over a design lifetime that exceeds 60 years. With a view to making an assessment based on residual stress as pertinent as possible, weld test pieces were manufactured with each process at a thickness that is representative for such components, i.e. 130 mm. Residual stress measurements were made in the as-welded state using both incremental deep hole drilling and the contour method, and after post-weld heat treatment using deep hole drilling. Part 1 of this study documents weld manufacture, while Part 2 presents the residual stress measurements and discusses their significance.
机译:在这项研究中,我们的目的是确定焊接过程的选择如何影响临界核能成分的常态性能,例如反应器压力容器,蒸汽发生器和加压水反应器中的压力机。注意力致力于目前用于制造这些部件的技术,即气体 - 钨弧焊(GTAW)和浸没电弧焊接(SAW)的窄间隙变体,以及未来可能适用的技术(电子束焊接)。通过焊接操作引入的残余应力将对临界部件的完整性影响超过60岁的设计寿命。为了尽可能地基于残余应力进行评估,焊接试验片以代表这些组分的厚度的厚度制造,即130mm。使用增量深孔钻孔和轮廓法,以及使用深孔钻孔的焊接后热处理之后,在焊接状态下进行残余应力测量。本研究文件的第1部分文件焊接制造,而第2部分呈现残余应力测量并讨论其重要性。

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