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HAZ Liquation Cracking Mechanism of IN-738LC Superalloy Prepared by Laser Solid Forming

机译:激光实心成型制备的738LC高温合金的Haz液态裂解机理

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The heat-affected zone (HAZ) liquation cracking mechanism of nickel-based superalloys with high (Al + Ti) content during the laser solid forming (LSF) process was investigated via laser remelting of an as-deposited IN-738LC superalloy. Microstructural HAZ analysis revealed that cracks consistently propagated from the HAZ to the remelting zone along the grain boundary (GB). The formation of a liquid film during GB liquation was mainly owing to localized melting of the semicontinuous gamma-gamma' eutectic distributed along the GB. The solute segregation behavior of the IN-738LC alloy during LSF was analyzed using the Giovanola-Kurz model and Scheil models, revealing that a significant enrichment of gamma-gamma' eutectic-forming elements in the residual liquid at the final stage of solidification (solid fraction similar to 0.87) in the molten pool was the main cause of semicontinuous gamma-gamma' eutectic formation along the GB. Further, a B enrichment at the GB was identified in LSF-fabricated IN-738LC, which promoted cracking by lowering the GB liquation temperature and promoting wetting of the GB by the liquid film. Unlike the phenomenon observed in the welding of cast IN-738LC, the coherence between the gamma' phases and the gamma matrix in LSF-fabricated IN-738LC can suppress the occurrence of constitutional liquation of the gamma' phase. To understand the interaction between the thermal stress and the liquid film in the LSF process, thermal stress as a cracking driving force was also estimated based on the measurement of the residual stress from the substrate to the remelting zone of the IN-738LC deposit by the Vickers micro-indentation method. (C) The Minerals, Metals & Materials Society and ASM International 2018
机译:通过激光重熔在738LC高温合金中,研究了在激光实体形成(LSF)过程中具有高(Al + Ti)含量的高(Al + Ti)含量的镍基超合金的热影响区域(HAZ)液化机制。微结构HAL分析显示,沿着晶界(GB)始终从HAZ传播的裂缝(GB)。在GB液中形成液膜的形成主要是由于沿着GB分布的半连续γ-γ'共晶的局部熔点。使用Giovanola-Kurz模型和Scheil模型分析了738LC合金在LSF期间的溶质分离行为,揭示了在凝固的最终阶段的残留液体中γ-Gamma'共晶形成元素的显着富集γ-gamma的共晶形成元素(固体熔池中类似于0.87)的级分是沿着GB的半连续γ-Gamma-γ'共晶形成的主要原因。此外,在738LC中,在LSF制造的GB中鉴定了GB的B富集,其通过降低GB液态温度并通过液体膜促进GB的润湿而促进裂化。与在738LC铸造焊接中观察到的现象不同,LSF制造的γ'相和γ基质在-738LC中的γ基质之间的相干性可以抑制γ相的组织化的发生。为了了解LSF工艺中的热应力和液膜之间的相互作用,还基于从基板的残余应力的测量到738LC沉积物的重熔区的测量来估计作为裂化驱动力的热应力维克斯微压痕法。 (c)2018年矿物质,金属和材料协会和ASM国际

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    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

    Tohoku Univ Grad Sch Engn Dept Mat Proc Aoba Ku 6-6-11 Aoba Sendai Miyagi 9808579 Japan;

    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

    Univ Leicester Dept Engn Leicester LE1 7RH Leics England;

    Northwestern Polytech Univ Xian Bright Laser Technol LTD Western Part South Second Ring Rd Xian 710072 Shaanxi Peoples R China;

    Northwestern Polytech Univ State Key Lab Solidificat Proc 127 Youyixilu Xian 710072 Shaanxi Peoples R China;

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