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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Heat Treatment on Chemical Segregation in CMSX-4 Nickel-Base Superalloy
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Effect of Heat Treatment on Chemical Segregation in CMSX-4 Nickel-Base Superalloy

机译:热处理对CMSX-4镍基高温合金化学偏析的影响

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Superalloys display a strong tendency toward chemical segregation during solidification. Therefore, it is of great importance to develop appropriate techniques for the melting and casting of superalloys. Elements partitioning between the γ and γ' phases in single crystal superalloys have been investigated by several authors using electron probe microanalysis (Hemmersmeier and Feller-Kniepmeier Mater Sci Eng A 248:87-97, 1998; Kearsey et al. Intermetallics 12:903-910, 2004; Kearsey et al. Superalloys 2004, pp 801-810, 2004; D'Souza et al. Mater Sci Eng A 490:258-265, 2008). We examined the effect of the particular stages of standard heat treatment (solution treatment and ageing) applied to CMSX-4 single crystal superalloy on chemical segregation that occurs between dendrites and interdendritic areas. Dendritic structures were observed using a scanning electron microscope. Analyses of the chemical composition were performed using energy dispersive x-ray spectroscopy. The obtained qualitative and quantitative results for the concentrations of elements enabled us to confirm the dendritic segregation in as-cast CMSX-4 super-alloy. The concentrations of some refractory elements (tungsten, rhenium) were much greater in dendrites than in interdendritic areas. However, these differences in chemical composition gradually decreased during heat treatment. The results obtained in this study warrant further examination of the diffusion processes of elements during heat treatment of the investigated superalloy, and of the kinetics of diffusion.
机译:高温合金在凝固过程中表现出强烈的化学偏析趋势。因此,开发用于熔炼和铸造超级合金的合适技术非常重要。多位作者使用电子探针显微分析研究了单晶高温合金中γ和γ'相之间的元素分配(Hemmersmeier和Feller-Kniepmeier Mater Sci Eng A 248:87-97,1998; Kearsey等人Intermetallics 12:903- 910,2004; Kearsey等人,Superalloys 2004,pp 801-810,2004; D'Souza等人,Mater Sci Eng A 490:258-265,2008)。我们检查了应用于CMSX-4单晶高温合金的标准热处理(固溶处理和时效)特定阶段对枝晶和枝晶间区域之间发生的化学偏析的影响。使用扫描电子显微镜观察树突结构。使用能量色散X射线光谱法进行化学成分分析。获得的元素浓度的定性和定量结果使我们能够确认铸态CMSX-4超级合金中的树枝状偏析。树突中某些难熔元素(钨,rh)的浓度远高于树突间区域。但是,这些化学组成的差异在热处理过程中逐渐减小。在这项研究中获得的结果值得进一步检查所研究的高温合金在热处理过程中元素的扩散过程,以及扩散动力学。

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