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Influence of composition on the microstructure and mechanical properties of a nickel-base superalloy single crystal

机译:组成对镍基高温单晶组织和力学性能的影响

摘要

The effects of cobalt, tantalum, and tungsten contents on the microstructure and mechanical properties of single crystal Mar-M247 were investigated. Elevated temperature tensile and creep-rupture properties of 001 oriented single crystals were related to microstructural features of the alloys. Substitution of Ni for Co in the high refractory metal alloys increased the lattice mismatch, which was considered to be the cause of the increases in tensile and creep strength. Substitution of Ni for Ta caused large decreases in tensile strength and creep life, consistent with decreases in gamma prime volume fraction, lattice mismatch, and solid solution hardening. Substitution of W for Ta resulted in decreased life at high stresses, which was related to small decreases in mismatch and volume fraction. However, the W substitution resulted in improved life at low stresses, which was related to solid solution strengthening by W.
机译:研究了钴,钽和钨的含量对Mar-M247单晶组织和力学性能的影响。 001取向单晶的高温拉伸和蠕变断裂性能与合金的微观结构特征有关。在高难熔金属合金中用Ni代替Co会增加晶格失配,这被认为是抗拉强度和蠕变强度增加的原因。用Ni代替Ta会导致抗拉强度和蠕变寿命大大降低,这与gamma体积分数,晶格失配和固溶硬化的降低相一致。用W代替Ta会导致高应力下寿命缩短,这与失配和体积分数的小幅下降有关。然而,W替代导致低应力下的寿命改善,这与W固溶强化有关。

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    Nathal M. V.; Ebert L. J.;

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  • 年度 1984
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