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首页> 外文期刊>Metallurgical and Materials Transactions A >Liquation Microfissuring in the Weld Heat-Affected Zone of an Overaged Precipitation-Hardened Nickel-Base Superalloy
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Liquation Microfissuring in the Weld Heat-Affected Zone of an Overaged Precipitation-Hardened Nickel-Base Superalloy

机译:过度硬化沉淀的镍基高温合金的焊接热影响区的液化微裂纹

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摘要

The effect of preweld overaging heat treatment on the microstructural response in the heat-affected zone (HAZ) of a precipitation-hardened nickel-base superalloy INCONEL 738LC subjected to the welding thermal cycle (i.e., rapid) was investigated. The overaging heat treatment resulted in the formation of an interfacial microconstituent containing M23X6 particles and coarsening of primary and secondary γ′ precipitates. The HAZ microstructures around welds in the overaged alloy were simulated using the Gleeble thermomechanical simulation system. Microstructural examination of simulated HAZs and those present in tungsten inert gas (TIG) welded specimens showed the occurrence of extensive grain boundary liquation involving liquation reaction of the interfacial microconstituents containing M23X6 particles and MC-type carbides. In addition, the coarsened γ′ precipitate particles present in the overaged alloy persisted well above their solvus temperature to temperatures where they constitutionally liquated and contributed to considerable liquation of grain boundaries, during continuous rapid heating. Intergranular HAZ microfissuring, with resolidified product formed mostly on one side of the microfissures, was observed in welded specimens. This suggested that the HAZ microfissuring generally occurred by decohesion across one of the solid-liquid interfaces during the grain boundary liquation stage of the weld thermal cycle. Correlation of simulated HAZ microstructures with hot ductility properties of the alloy revealed that the temperature at which the alloy exhibited zero ductility during heating was within the temperature range at which grain boundary liquation was observed. The on-cooling ductility of the alloy was significantly damaged by the on-heating liquation reaction, as reflected by the considerably low ductility recovery temperature (DRT). Important characteristics of the intergranular liquid that could influence HAZ microfissuring of the alloy in overaged condition are also discussed.
机译:研究了预焊接过时效热处理对经受焊接热循环(即快速)的沉淀硬化镍基高温合金INCONEL 738LC的热影响区(HAZ)的显微组织响应的影响。过度时效热处理导致形成包含M23 X6 颗粒的界面微成分,并使一次和二次γ'沉淀物粗化。使用Gleeble热力学模拟系统对过时效合金中焊缝周围的HAZ微结构进行了模拟。对模拟的热影响区和钨极惰性气体保护焊样品中的热影响区进行了显微组织检查,结果表明,发生了广泛的晶界液化,涉及包含M23 X6粒子和MC型碳化物的界面微成分的液化反应。另外,在持续快速加热期间,存在于过时效合金中的粗化γ'析出颗粒在其固溶温度以上的温度下仍会保持较高的温度,在此温度下,它们发生结构化液化,并导致大量晶界液化。在焊接试样中观察到晶间热影响区微裂纹,主要在微裂纹的一侧形成再凝固产物。这表明,在焊接热循环的晶界液化阶段,HAZ微裂纹通常是通过固-液界面之一的脱粘而发生的。模拟的热影响区组织与合金的热延展性之间的相关性表明,合金在加热过程中表现出零延展性的温度在观察到晶界液化的温度范围内。合金的冷却延展性由于加热液化反应而显着受损,这表现为相当低的延展性恢复温度(DRT)。还讨论了可能影响过时效条件下合金的热影响区微裂的晶间液体的重要特征。

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