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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effect of filler alloy composition on post-weld heat treatment cracking in GTA welded cast Inconel 738LC superalloy
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Effect of filler alloy composition on post-weld heat treatment cracking in GTA welded cast Inconel 738LC superalloy

机译:填充合金成分对GTA焊接Inconel 738LC高温合金焊接后热处理裂纹的影响

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摘要

The effect of filler alloy composition on post-weld heat treatment (PWHT) cracking in Inconel (trade name of the Special Metals group of companies) 738LC (IN-738LC) superalloy was investigated. Five filler alloys (IN-625, IN-718, FM-92, C-263 and Rene-41), containing varying concentrations of Al and Ti, were used to gas tungsten arc (GTA) weld IN-738LC superalloy specimens which were given two different preweld heat treatments. Additionally, autogenous (without filler) welds were also made on the same two preweld heat treated materials. The preweld heat treatments consisted of the standard industrial solution heat treatment (SHT) at 1120 deg C for 2 h in vacuum followed by argon quenching and a new heat treatment (UMT), developed by the authors to improve the heat affected zone (HAZ) cracking resistance of IN-738LC. The latter heat treatment comprised of solution treatment at 1120 deg C for 2 h followed by aging at 1025 deg C for 16 h and then water quenching. The welded specimens were given a PWHT consisting of solution treatment at 1120 deg C for 2 h in vacuum followed by argon quenching and subsequent aging at 845 deg C for 24 h in vacuum. Intergranular cracking was observed in all the PWHT welds, regardless of the filler alloy; however, autogenous welds suffered the highest amount of cracking, and cracking susceptibility of the filler welds reduced with a decrease in concentration of the main hardening elements, Al and Ti, in the fillers. While cracks were observed only in the HAZ of the as welded samples, almost all the PWHT samples were found to have cracks in the fusion zone (FZ) and in the base metal (BM), in addition to those present in the HAZ. The severity of cracking in the SHT preweld heat treated material was, however, consistently higher than that observed in the UMT preweld treated material, in both autogenous and filler welds. The microstructure of FZ of the welds made with various filler alloys consisted of a unimodal distribution of small spheroidal y' particles of 0.10-0.15 mu m, while a bimodal distribution of gamma precipitates, consisting of large cuboidal particles of about 0.5-0.6 mu m and fine spheroidal gamma particles of approx 0.1 mu m, was observed in FZ of the autogenous welds. Results of the microstructural analysis and crack measurements were correlated with the chemical composition and the precipitation kinetics of gamma in the filler alloys. It was observed that PWHT cracking in GTA welds of IN-738LC was reduced to a significant extent by using age hardenable fillers with (Al+Ti) concentration less than that in the BM. The PWHT cracking resistance of IN-738LC was further improved by the use of these fillers in conjunction with the UMT preweld heat treatment.
机译:研究了Inconel(特殊金属集团公司的商品名称)738LC(IN-738LC)高温合金中填充合金成分对焊后热处理(PWHT)开裂的影响。使用五种填充合金(IN-625,IN-718,FM-92,C-263和Rene-41)包含不同浓度的Al和Ti,以气焊钨极电弧(GTA)焊接IN-738LC高温合金样品,进行了两种不同的预焊热处理。此外,还对相同的两种预焊热处理材料进行自生(无填充)焊接。预焊热处理包括标准的工业溶液热处理(SHT),在1120℃的真空中进行2小时,然后进行氩气淬火和一种新的热处理(UMT),由作者开发以改善热影响区(HAZ) IN-738LC的抗裂性。后者的热处理包括在1120摄氏度下固溶处理2小时,然后在1025摄氏度下老化16小时,然后水淬。对焊接后的试样进行PWHT,包括在1120摄氏度的真空中固溶处理2小时,然后进行氩气淬火,随后在845摄氏度的真空中时效处理24小时。不论填充合金如何,在所有PWHT焊缝中均观察到晶间裂纹。但是,自生焊缝开裂量最大,随着填料中主要硬化元素Al和Ti浓度的降低,填充焊缝的开裂敏感性降低。尽管仅在焊接样品的热影响区中观察到裂纹,但除热影响区中存在的裂纹外,几乎所有PWHT样品都在熔合区(FZ)和母材(BM)中发现了裂纹。但是,在自焊和填充焊缝中,SHT预焊热处理材料的开裂严重程度始终高于UMT预焊处理材料中的开裂程度。由各种填充合金制成的焊缝的FZ的微观结构由0.10-0.15μm的小球形y'颗粒的单峰分布组成,而由约0.5-0.6μm的大立方形颗粒组成的γ沉淀物的双峰分布组成在自生焊缝的FZ中观察到约0.1微米的球形γ细颗粒。显微组织分析和裂纹测量的结果与填充合金中的化学成分和γ的沉淀动力学相关。观察到,通过使用(Al + Ti)浓度低于BM的时效硬化型填料,IN-738LC的GTA焊缝中的PWHT裂纹大大降低。通过将这些填料与UMT预焊热处理结合使用,可进一步提高IN-738LC的PWHT抗裂性。

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