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Influences of processing parameters on microstructure during investment casting of nickel-base single crystal superalloy DD3

机译:镍基单晶DD3合金熔模铸造工艺参数对组织的影响

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The effects of solidification variables on the as-cast microstructures of nickel-base single crystal superalloy DD3 have been investigated by using the modified Bridgman apparatus. The experiments were performed under a thermal gradient of approximately 45 K·cm-1 and at withdrawal rates ranging from 30 to 200 m·s-1. The experimental results show that the primary and secondary dendritic arm spacings (PDAS and SDAS) decrease when the withdrawal rate is increased. Compared with the theoretical models of PDAS, the results are in good agreement with Trivedi’s model. The relationships of PDAS and SDAS with withdrawal rates can be described as l1 = 649.7V -0.24±0.02 and l2 = 281V -0.32±0.03, respectively. In addition, the size of the γ′ phase significantly decreases with increasing withdrawal rate.
机译:利用改进的Bridgman装置研究了凝固变量对镍基单晶高温合金DD3铸态组织的影响。实验是在大约45 K·cm-1的热梯度和30至200 m·s-1的抽气速率下进行的。实验结果表明,当拔牙率增加时,初级和次级树突臂间距(PDAS和SDAS)减小。与PDAS的理论模型相比,结果与Trivedi的模型非常吻合。 PDAS和SDAS与撤回率的关系可以分别描述为l1 = 649.7V -0.24±0.02和l2 = 281V -0.32±0.03。另外,γ'相的尺寸随着退出速率的增加而显着减小。

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