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Effect of Pre-Weld Heat Treatment Temperatures on TIG Welded Microstructures on Nickel Base Superalloy, GTD-111

机译:焊接热处理温度对镍碱超合金,GTD-111的TIG焊接微观结构的影响

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Nickel-base superalloys have been used as high temperature materials in land-base gas turbine application. When subjected to long term, high temperature service, large crack propagation was observed. Typical refurbishment method of these turbines is carried out by using TIG welding followed by post-weld standard heat treatment. However, new crack initiation is found in the heat-affected zone after TIG welding. Pre-weld heat treatment has been discovered to improves final γ + γ' microstructure. This study focuses on the effect of pre-weld heat treatment temperature on final γ + γ' microstructure. Seven different conditions of pre-weld heat treatment temperature were investigated. Scanning electron microscopy studies were carried out after pre-weld and post-weld heat treatments to compare the γ + γ' microstructure and capture microcracks. The best pre-weld heat treatment temperature produces uniform distribution of finely dispersed γ' precipitates in the γ matrix without post-weld crack.
机译:镍基超金属已被用作陆地燃气涡轮机应用中的高温材料。当经过长期,高温服务,观察到大裂纹繁殖。这些涡轮机的典型翻新方法是通过使用TIG焊接进行的,然后进行焊接后标准热处理。然而,在TIG焊接后的热影响区域中发现了新的裂纹开始。已经发现预焊接热处理以改善最终γ+γ'的微观结构。本研究重点研究了焊前热处理温度对最终γ+γ'微观结构的影响。研究了七种不同的预焊接热处理温度条件。扫描电子显微镜研究在预焊前和焊后热处理后进行,以比较γ+γ'微观结构和捕获微裂纹。最好的预焊接热处理温度在γ基质中沉淀地产生均匀的γ基质沉淀,而不会焊接后裂缝。

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