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The effect of melt temperature profile on the transient metal/mold heat transfer coefficient during solidification

机译:熔体温度曲线对凝固过程中瞬态金属/模具传热系数的影响

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摘要

Modeling of casting solidification can provide a method for improving casting yields. An accurate casting solidification model might be used to predict microstructure and to control the process based on thermal and operational parameters, and for this, it is necessary the previous knowledge of the transient metal/mold heat transfer coefficient, h_i. Most investigations concerning the overall heat transfer coefficient between metal and mold have applied numerical methods for the solution of the inverse heat conduction problem (IHCP). In general, such studies consider a constant initial melt temperature in order to reckon the time-dependent h_i. In the present work, solidification experiments have been carried with alloys of two metallic systems, and experimentally obtained temperatures were used by a numerical technique in order to determine transient metal/mold heat transfer coefficients, h_i. It is shown that h_i profiles can be affected significantly by the initial melt temperature distribution.
机译:铸件凝固的模型可以提供一种提高铸件产量的方法。精确的铸造凝固模型可用于预测微观结构并基于热和运行参数控制过程,为此,必须具备瞬态金属/模具传热系数h_i的先前知识。关于金属与模具之间的总传热系数的大多数研究都采用了数值方法来解决反导热问题(IHCP)。通常,此类研究考虑恒定的初始熔体温度,以便计算出与时间有关的h_i。在目前的工作中,已经对两种金属体系的合金进行了凝固实验,并通过数值技术将实验获得的温度用于确定瞬态金属/模具传热系数h_i。结果表明,h_i曲线会受到初始熔体温度分布的显着影响。

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