航空学报 > 1995, Vol. 16 Issue (3): 76-79

晶体生长方向对亚快速凝固结晶形貌的影响

蒋成保1, 胡汉起1, 王佩君1, 李建国2   

  1. 1. 北京科技大学铸造教研室,北京,100083;2. 西北工业大学铸造教研室,西安,710072
  • 收稿日期:1993-05-24 修回日期:1994-04-13 出版日期:1995-06-25 发布日期:1995-06-25

THE INFLUENCE OF THE CRYSTAL GROWTH ORIENTATION ON THE MICROSTRUCTURE IN HYPORAPID SOLIDIFICATION

Jiang Chengbao1, Hu Hanqi1, Wang Peijun1   

  1. 1. Cast Faculty, Beijing University of Science and Technology,Beijing,100083;2. Cast Faculty, Northwestern Polytechnical University, Xi'an,710072
  • Received:1993-05-24 Revised:1994-04-13 Online:1995-06-25 Published:1995-06-25

摘要: 采用区域熔化定向凝固装置,对冷却速度在13~130K/s范围内Ni-5%Cu合金的结晶形貌研究表明:在温度梯度GL300K/cm条件下,晶体生长速度υ为500μm/s时,不同结晶取向的晶粒其结晶形貌不同。以<100>方向生长的晶粒为树枝晶组织;以<120>方向生长的晶粒为细胞晶组织。当υ为800μm/s时,不同结晶取向的细胞晶间距不同。以<100>方向生长的细胞晶间距是28μm;以<211>方向生长的细胞晶间距是16. 5μm。相同凝固条件下,同一晶粒内不同取向的分枝,结晶形貌不同。亚快速凝固条件下,树枝晶生长的生长方向已不完全按<100>方向择优取向,细胞晶生长的择优取向性被抑制。

关键词: 晶体生长, 方位, 冷却, 速度, 晶粒, 结晶, 形状

Abstract: The solidified microstructure of Ni-5wt% Cu alloy is researched at the cooling velocity range of 13~130K/s with zone melting unidirectional solidification apparatus. It indicates that the crystals with different crystal growth orientations have different solidified microstructures in the condition of G L=1 300K/cm,υ=500μm/s: the crystal with solidified orientation <100>is dendrite; the crystal with solidified orientation <120> is superfine cell. The crystals have different superfine cellular spacing due to the crystal growth orientation with G L=1 300K/cm, υ=800μm/s: superfine cellular spacing of the crystal with solidfied oriention <100> is 28μm, and that of the crystal with solidified oriention <21 1 > is 16. 5μm. In a grain, two parts have different microstructures due to the different orientations under the same solidification parameters. In hyporapid solidification, dendritic solidified orientation isn′t the preferential direction <100>; the preferential orientation is disposed in the superfine cellular growth process.

Key words: crystal growth, bearing, cooling, velocity, crystallites, crystallization, shapes

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