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Formation of Stray Grains in Directionally Solidified Ni-based Superalloy with Cross-section Change Regions

机译:截面变化区域定向凝固镍基高温合金中杂散晶粒的形成

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The formation mechanism of stray grains in cross-section change region of casting clusters for single crystal superalloy DD483 were investigated experimentally during the conventional directional solidification.The results showed that the stray grains formation was different on the two sides of the platform.Indeed,stray grains formation in the region of the cross-section change on the shadow side showed a high probability,while the heater side,no stray grains appeared.Additionally,the cooling curves at the cross-section change region also showed that the distribution of temperature was different on the two side of the platform.The formation of stray grain can be attributed to the local undercooling at the cross-section change region is exceed the critical undercooling for nucleation,led to the heterogeneous nucleation,while the asymmetric temperature distribution should be responsible for asymmetrical formation of stray grains on the two sides of the platform.
机译:通过实验研究了常规定向凝固过程中单晶高温合金DD483铸件团簇横截面变化区域中杂散晶粒的形成机理。结果表明,平台两侧杂散晶粒的形成是不同的。阴影侧的横截面变化区域中形成晶粒的可能性很高,而加热器侧则没有杂散的晶粒。此外,横截面变化区域的冷却曲线也表明温度分布是均匀的。在平台的两侧是不同的。杂散晶粒的形成可以归因于横截面变化区域的局部过冷超过了成核的临界过冷,导致了非均相成核,而非对称温度分布应负责用于在平台的两侧非对称地形成杂散晶粒。

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