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Experimental Investigation on Plastic Strain and Recrystallization of Single Crystal Nickel Based Superalloys

机译:单晶镍基高温合金塑性应变和再结晶的实验研究

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Recrystallization, which can be ascribed to the plastic deformation, poses one of the major difficulties in post-processing of SX blades castings of Ni-based superalloys. Hot compression and Brinell Indentation were utilized to cause plastic deformation, and thereafter some received solution heat treatment at different temperatures for different time. Profiler observation of indented deformation confirms the anisotropic mechanical properties of single crystal Ni-based superalloys. Deformation at high temperature leads to high dislocation density and stored energy, increasing the propensity of recrystallization, which is revealed by TEM and EBSD analysis. Critical temperature is relatively higher for SX superalloys than DS superalloys, and decreases with increasing plastic strains. Besides, it's easier for nucleation and grain boundary migration in the dendrite core region, which corresponds to the microsegregation and difference of γ' morphology between dendrite stern and eutectic regions.
机译:归因于塑性变形的重结晶是对镍基高温合金SX叶片铸件进行后处理的主要困难之一。利用热压缩和布氏压痕来引起塑性变形,然后一些在不同温度,不同时间接受固溶热处理。轮廓仪对压痕变形的观察证实了单晶镍基高温合金的各向异性力学性能。 TEM和EBSD分析表明,高温下的变形会导致高的位错密度和储能,从而增加了再结晶的倾向。 SX超级合金的临界温度相对比DS超级合金高,并且随着塑性应变的增加而降低。此外,枝晶核心区的形核和晶界迁移更容易,这与枝晶尾部和共晶区之间的γ'形貌的微观偏析和差异相对应。

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