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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of tensile/compressive creeps on microstructure evolution of nickel-based single crystal superalloys
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Effects of tensile/compressive creeps on microstructure evolution of nickel-based single crystal superalloys

机译:拉伸/压缩蠕变对基于镍的单晶超合金微观结构演化的影响

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摘要

The microstructure evolution and failure mechanism of nickel-based single crystal DD9 under tensile and compressive creeps at 1100 degrees C and 140 MPa were studied. N-type rafting occurs in tensile creep and P-type rafting occurs in compressive creep. The gamma' phases gradually roughen into a layered plate structure during tensile creep and a rod structure during compressive creep. The rafting rate of tensile creep is higher than that of compressive creep. The crystal orientation deflection affects the Schmid factor, the activating of slip systems, and the morphology of Topological Close-Packed (TCP) phases. The moving direction and morphology of dislocations between tensile creep and compressive creep are approximately "opposite". Moreover, the microstructure evolution displays tension-compression asymmetry. The crack initiates and propagates easily along the TCP phase and the gamma/gamma' interface under the combination of misfit stress and dislocation pile-up stress. (C) 2020 Elsevier B.V. All rights reserved.
机译:研究了镍基单晶DD9在1100℃和140MPa拉伸蠕变和压缩蠕变下的微观结构演变和失效机理。N型漂流发生在拉伸蠕变中,P型漂流发生在压缩蠕变中。在拉伸蠕变期间,伽马相逐渐粗糙化为层状板状结构,在压缩蠕变期间,逐渐粗糙化为棒状结构。拉伸蠕变的漂流速率高于压缩蠕变。晶体取向偏转影响施密德因子、滑移系统的激活和拓扑紧密堆积(TCP)相的形态。拉伸蠕变和压缩蠕变之间位错的运动方向和形态大致相反。此外,微观结构演化表现出拉压非对称性。在错配应力和位错堆积应力的共同作用下,裂纹容易沿TCP相和γ/γ界面萌生和扩展。(C) 2020爱思唯尔B.V.版权所有。

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