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EVALUATION OF REPAIR WELDING INFLUENCE ON GH3535 SUPERALLOY MICROSTRUCTURE AND MECHANICAL PROPERTIES

机译:GH3535超级合金组织和力学性能的补焊性能评估

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摘要

GH3535 supperalloy, whose grade of ASME is UNS N10003, is currently considered as a candidate material for solid-fuel and fluid-fuel molten salt reactor in china. During the development of procedures for welding GH3535 superalloy, consideration should always be given to the possibility that repair welding may be necessary. This paper presents weld repairs of GH3535 alloy rolled plates using gas tungsten arc welding with filler metal. The purpose of this work is to evaluate the low heat input process for weld repair of GH3535 alloy plates about the microstructure features and mechanical properties. The results demonstrated that sound joints without defects could be obtained after weld repairs. Due to repair thermal cycles on the original weld seam, the size of carbide precipitate became large, but repair welding is found to cause no decrease in short-term time-independent strength.
机译:GH3535超合金(ASME等级为UNS N10003)目前被认为是中国固体燃料和流体燃料熔融盐反应堆的候选材料。在制定GH3535高温合金焊接工艺的过程中,应始终考虑可能需要进行补焊的可能性。本文介绍了使用填充钨极气体保护电弧焊对GH3535合金轧制板进行的焊接修复。这项工作的目的是评估GH3535合金板焊接修复的低热量输入过程,了解其微观结构特征和机械性能。结果表明,焊缝修复后可获得无缺陷的良好接头。由于原始焊缝上的修复热循环,碳化物沉淀物的尺寸变大,但发现修复焊接不会导致短期的与时间无关的强度降低。

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