首页> 外文会议>2nd International Conference on Processing Materials for Properties, Nov 5-8, 2000, San Francisco, California >Metal-Mould Interfacial Heat Transfer During Solidification of Cast Iron Against Cast Iron Chills
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Metal-Mould Interfacial Heat Transfer During Solidification of Cast Iron Against Cast Iron Chills

机译:铸铁凝固过程中铸铁凝固过程中的金属模界面传热

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Heat transfer during the unidirectional solidification of a cast iron alloy against cast iron chills was investigated using an inverse modelling approach. Chills of thickness 100 mm and 10 mm were used, to simulate gravity die casting conditions and the use of chills in sand moulds. In both cases transient heat transfer, measured by the interfacial heat flux and heat transfer coefficient, declined from initially high values in the first few seconds of solidification, to values about an order of magnitude lower which persisted for the remainder of the experiments. In the case of the thin chill it became saturated with heat until it was no longer in a position to extract further heat from the casting. These results were interpreted by studying the resistance to heat transfer from the casting offered by the casting-chill interface and the chill itself. For example, the thermal resistance of the casting-chill interface can be influenced by the deformation of their respective surfaces and their subsequent relationship.
机译:使用逆模型方法研究了铸铁合金对铸铁冷风的单向凝固过程中的热传递。使用厚度为100毫米和10毫米的冷铸来模拟重力压铸条件和在砂模中使用冷颤。在这两种情况下,通过界面热通量和传热系数测得的瞬态传热从凝固前几秒钟的初始高值下降到大约低一个数量级的值,该值在其余的实验中一直保持不变。在稀冷的情况下,它变得充满热量,直到不再处于从铸件中提取更多热量的位置。这些结果是通过研究铸造-冷却界面和冷却自身对铸件传热的阻力来解释的。例如,铸-冷界面的热阻会受到其各自表面的变形及其后续关系的影响。

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