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Inhomogeneity of misfit stresses in nickel-base superalloys: Effect on propagation of matrix dislocation loops

机译:镍基高温合金中失配应力的不均匀性:对基体位错环传播的影响

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It is shown experimentally that, during annealing and creep under low applied stresses, matrix dislocation loops frequently cross-glide. The periodic length of the zigzag dislocations deposited in the interfaces is equal to that of the γ/γ'-microstructure. Initially, the zigzag dislocations move in the (001) interface by a combination of glide and climb but then they stop near the γ'-edges and align along (100). Reactions of such dislocations lead to the formation of square interfacial networks consisting of (100) oriented edge dislocations. The complex dislocation movement is explained by the inhomogeneity of the misfit stresses between γ- and γ'-lattices. The tensile components of the stress tensor drive the dislocations through the channel, whereas the shear components near the γ'-edges cause the zigzag movement and the (l00)alignment. The total effect is the most efficient relaxation of the misfit stresses. The results are relevant, especially for single-crystal superalloys of the newest generations, which have an increased γ/γ' -misfit due to the high level of refractory elements.
机译:实验表明,在低应力作用下的退火和蠕变过程中,基体位错环经常发生交叉滑移。沉积在界面中的之字形位错的周期长度等于γ/γ'-微结构的周期长度。最初,锯齿形位错通过滑移和爬升的组合在(001)界面中移动,但随后在γ'边缘附近停止并沿(100)对齐。这种位错的反应导致由(100)取向的边缘位错组成的方形界面网络的形成。复杂的位错运动是由γ-和γ'晶格之间的失配应力的不均匀性解释的。应力张量的拉伸分量驱使位错通过通道,而γ'边缘附近的剪切分量导致之字形运动和(100)对齐。总的效果是最有效地缓解了失配应力。结果是有意义的,特别是对于最新一代的单晶高温合金,由于高含量的耐火元素,它们增加了γ/γ'-不匹配。

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