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Evolution of Raft Structure during Creep Deformation of The Ni-Based Single-Crystal Superalloy TMS-138

机译:Ni基单晶超合金TMS-138蠕变变形过程中筏结构的演变

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The evolution of the raft structure in the Ni-based single-crystal superalloy TMS-138 crept at 1100°C and 137 MPa has been investigated quantitatively by the Fourier analysis of scanning electron microscope (SEM) images. This method of analysis quantifies the extent of tilting of the γ/γ' interface during creep deformation. The analysis is carried out on two different crystallographic planes, (100) and (110), on which SEM observations of deformation microstructures are made, to see if there is any difference in the results of analysis depending on observation planes. The tilt angle of the γ/γ' interface, which is deduced by the Fourier analysis, increases with the accumulation of creep strain. The rate of the increase in the tilt angle is significantly large in the tertiary creep stage. The result of analysis does not depend significantly on crystallographic planes on which SEM observations of microstructures are made.
机译:通过扫描电子显微镜(SEM)图像的傅立叶分析,已经通过傅立叶分析定量地研究了基于Ni的单晶超合金TMS-138在1100℃和137MPa的基于Ni的单晶超合金TMS-138。这种分析方法量化了蠕变变形期间γ/γ'界面的倾斜程度。在两个不同的晶粒上进行分析,(100)和(110),在其上进行了变形微观结构的SEM观察,看看是否存在分析结果的差异,这取决于观察平面。傅立叶分析推导的γ/γ'界面的倾斜角度随着蠕变应变的累积而增加。第三次蠕变阶段,倾斜角的增加的速率显着大。分析结果不会显着依赖于制造微结构的SEM观察的晶体平面。

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