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首页> 外文期刊>Materials Science and Technology >Post-weld heat treatment cracking in autogenous GTA welded cast Inconel 738LC superalloy
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Post-weld heat treatment cracking in autogenous GTA welded cast Inconel 738LC superalloy

机译:自生GTA焊接的Inconel 738LC高温合金的焊后热处理开裂

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摘要

The post-weld heat treatment (PWHT) cracking in autogenous gas tungsten arc (GTA) welded Inconel 738LC superalloy, which was given two different preweld heat treatments, was studied. One of the preweld heat treatments, designated as SHT, consisted of solution heat treatment at 1120°C for 2 h in vacuum followed by argon quenching. The second preweld heat treatment, designated as UMT, consisted of solution treatment at 1120°C for 2 h followed by air cooling and then aging at 1025°C for 16 h followed by water quenching. The welded specimens were given the same conventional PWHT, which consisted of SHT at 1120°C for 2 h in vacuum followed by argon quenching and subsequent aging at 845°C for 24 h in vacuum. Microstructural examination of the welded SHT and UMT treated material showed that intergranular microfissuring occurred during welding only in the heat affected zone (HAZ) with some cracks extending into the adjoining base metal (BM), whereas after the PWHT microfissures were observed in the fusion zone (FZ), HAZ and the BM far removed from the HAZ. The crack width ranged from 5 to 10 μm in the PWHT specimens as compared with 1-2 μm in the as welded sections. Although similar type of cracks was observed in samples given the two preweld heat treatments, the UMT preweld heat treatment was found to result in a significant reduction in average total crack length and average crack length, both during welding and during the subsequent PWHT. After PWHT, SHT samples had ∼43% more cracking than the UMT samples. It is suggested that a larger particle size of γ′ precipitates in the HAZ and a smaller size of HAZ in the as welded samples, combined with a softer BM of the UMT material (hardness 280 ± 12 HV10, as compared with 380 ± 10 HV10 of the SHT material) resulted in an improved capability of the material to absorb the strain-aging stresses, and hence a reduced incidence of cracking during PWHT.
机译:研究了采用两种不同的预焊热处理的自生钨丝(GTA)焊接的Inconel 738LC高温合金的焊后热处理(PWHT)开裂。一种预焊热处理,称为SHT,包括在真空中于1120°C固溶热处理2 h,然后进行氩气淬火。第二个预焊热处理,称为UMT,包括在1120°C下固溶处理2 h,然后进行空气冷却,然后在1025°C进行时效16 h,然后水淬。焊接后的试样采用了相同的常规PWHT,包括在1120°C的真空中进行2小时的SHT,然后进行氩气淬火,随后在845°C的真空中进行24小时的时效处理。对经SHT和UMT处理的焊接材料的显微组织检查表明,仅在热影响区(HAZ)的焊接过程中发生了晶间微裂纹,裂纹扩展到了相邻的贱金属(BM),而在熔合区则观察到了PWHT微裂纹。 (FZ),HAZ和BM远离HAZ。 PWHT试样的裂纹宽度为5到10μm,而焊接区的裂纹宽度为1-2μm。尽管在两次预焊热处理后的样品中观察到相似的裂纹类型,但发现在焊接过程中以及随后的PWHT中,UMT预焊热处理显着降低了平均总裂纹长度和平均裂纹长度。在进行PWHT之后,SHT样品的裂纹比UMT样品高约43%。建议在焊接样品中,较大的γ'颗粒沉淀在热影响区中,而较小的热影响区则与UMT材料的较软BM相结合(硬度为280±12 HV10,而380±10 HV10 SHT材料的抗疲劳性能)提高了材料吸收应变时效应力的能力,因此降低了PWHT过程中开裂的发生率。

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