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Microstructure-property relationships in directionally solidified single crystal nickel-base superalloys

机译:定向凝固单晶镍基高温合金的组织与性能关系

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摘要

Some of the microstructural features which influence the creep properties of directionally solidified and single crystal nickel-base superalloys are discussed. Gamma precipitate size and morphology, gamma-gamma lattice mismatch, phase instability, alloy composition, and processing variations are among the factors considered. Recent experimental results are reviewed and related to the operative deformation mechanisms and to the corresponding mechanical properties. Special emphasis is placed on the creep behavior of single crystal superalloys at high temperatures, where directional gamma coarsening is prominent, and at lower temperatures, where gamma coarsening rates are significantly reduced. It can be seen that very subtle changes in microstructural features can have profound effects on the subsequent properties of these materials.
机译:讨论了一些会影响定向凝固和单晶镍基高温合金蠕变性能的微观组织特征。伽马沉淀物的大小和形态,伽马-伽马晶格失配,相不稳定性,合金成分和工艺变化都是考虑的因素。对最近的实验结果进行了回顾,并与工作变形机理和相应的力学性能有关。特别强调单晶高温合金在高温下的蠕变行为,高温下定向伽马粗化突出,而低温下伽马粗化率显着降低。可以看出,微结构特征的非常细微的变化会对这些材料的后续性能产生深远的影响。

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