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Effect of Thermal Gradient on Solidification Microstructure in the Ni-Base Single Crystal Superalloy CMSX10

机译:热梯度对Ni基单晶超合金CMSX10中凝固微观结构的影响

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A single crystal superalloy including 6 wt.% Re, CMSX10 was studied by directional solidification at various thermal gradients, 13 ~ 23°C/mm and solidification rates, 1~100 μ.m/s. A high thermal gradient could be obtained by applying the liquid metal, such as Ga-In, as a cooling media in directional solidification apparatus, and also by adjusting the cold chamber in the Bridgman system. As increasing the solidification rate, the planar interface changed to cellular and dendritic interfaces. The higher thermal gradient contributed to reducing the dendrite arm spacing effectively, which results in reducing the size of eutectic, as well as higher solidification rate. The length of the mushy zone decreased with increasing the thermal gradient and increased with increasing the solidification rate.
机译:通过各种热梯度的定向凝固研究了包括6重量%的单晶高温合金,CMSX10,13〜23℃/ mm和凝固率,1〜100μ.m/ s。通过在定向凝固装置中施加诸如Ga-In的液态金属,例如通过在方向凝固装置中的冷却介质,以及通过调节布里奇曼系统中的冷室来获得高热梯度。随着凝固速率的增加,平面界面改变为细胞和树突式接口。较高的热梯度有效地减少了树枝状臂间距,这导致降低共晶的尺寸,以及更高的凝固率。随着热梯度的增加,糊状区的长度降低,随着凝固速率的增加而增加。

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