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首页> 外文期刊>JOM >Crystal Nucleation and Growth in Undercooled Melts of Pure Zr, Binary Zr-Based and Ternary Zr-Ni-Cu Glass-Forming Alloys
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Crystal Nucleation and Growth in Undercooled Melts of Pure Zr, Binary Zr-Based and Ternary Zr-Ni-Cu Glass-Forming Alloys

机译:纯Zr,二元Zr基和三元Zr-Ni-Cu玻璃形成合金的水晶成核和生长。

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Glass formation of a liquid undercooled below its melting temperature requires the complete avoidance of crystal nucleation and subsequent crystal growth. Even though they are not part of the glass formation process, a detailed knowledge of both processes involved in crystallization is mandatory to determine the glass-forming ability of metals and metallic alloys. In the present work, methods of containerless processing of drops by electrostatic and electromagnetic levitation are applied to undercool metallic melts prior to solidification. Heterogeneous nucleation on crucible walls is completely avoided giving access to large undercoolings. A freely suspended drop offers the additional benefit of showing the rapid crystallization process of an undercooled melt in situ by proper diagnostic means. As a reference, crystal nucleation and dendrite growth in the undercooled melt of pure Zr are experimentally investigated. Equivalently, binary Zr-Cu, Zr-Ni and Zr-Pd and ternary Zr-Ni-Cu alloys are studied, whose glass-forming abilities differ. The experimental results are analyzed within classical nucleation theory and models of dendrite growth. The findings give detailed knowledge about the nucleation-undercooling statistics and the growth kinetics over a large range of undercooling.
机译:玻璃形成液体低于其熔化温度,需要完全避免晶体成核和随后的晶体生长。即使它们不是玻璃形成过程的一部分,也必须详细了解结晶所涉及的过程,是必须确定金属和金属合金的玻璃形成能力。在本作本作中,在固化之前将静电和电磁悬浮液体滴落液体的载体处理方法应用于槽金属熔体。完全避免在坩埚壁上的异质成核,从而进入大型过水。自由悬挂的液滴提供了通过适当的诊断手段显示耗尽溶解的快速结晶过程的额外益处。作为参考,实验研究了纯ZR的过冷熔体中的晶体成核和枝晶生长。等效地,研究了二元ZR-Cu,Zr-Ni和Zr-Pd和三元Zr-Ni-Cu合金,其玻璃形成能力不同。分析了实验结果,在典型的成核理论和树突生长模型中。该研究结果详细了解核心过冷统计和在大型过冷的增长动力学的知识。

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