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Semisolid structure formation and semisolid casting

机译:半固态组织形成和半固态铸造

摘要

Semisolid metal forming has now been accepted as a viable technology for production of components with complex shape and high integrity. The advantages of semisolid metal forming can only be achieved when the feedstock material has a non-dendritic semisolid structure. A controlled nucleation method has been developed to produce such structures for semisolid forming. By controlling grain nucleation method and growth, fine-grained and non-dendritic microstructures that are suitable for semisolid casting can be generated. The method was applied to hypoeutectic and hypereutectic Al-Si casting alloys, Al wrought alloys and a Mg alloy. Parameters such as pouring temperature, cooling rate and grain refiner addition were controlled to achieve copious nucleation, nuclei survival and dendritic growth suppression during solidification. The influences of the controlling parameters on the formation of semisolid structure were different for each of these alloy groups. The as-cast structures were then partially remelted and isothermally held. Semisolid structures were developed and followed by semisolid casting and stepped die.
机译:半固态金属成型现已被视为生产具有复杂形状和高完整性的部件的可行技术。仅当原料具有非树枝状的半固态结构时,才能实现半固态金属成型的优点。已经开发出一种受控的成核方法来生产用于半固态成形的这种结构。通过控制晶粒成核方法和生长,可以生成适用于半固态铸造的细晶粒和非枝晶组织。该方法适用于亚共晶和过共晶的Al-Si铸造合金,Al变形合金和Mg合金。控制浇注温度,冷却速率和晶粒细化剂添加等参数,以实现大量成核,晶核存活和凝固过程中的树突生长抑制。对于这些合金组中的每一个,控制参数对半固态结构形成的影响是不同的。然后将铸态结构部分重熔并等温保持。开发了半固态结构,然后进行了半固态铸造和阶梯模。

著录项

  • 作者

    Wang Hao;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 {"code":"da","name":"Danish","id":6}
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