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The Directional Solidification Process Optimization of Al-Ni-Co-Ti Alloys Based on the Numerical Simulation Technology

机译:基于数值模拟技术的Al-Ni-Co-Ti合金定向凝固工艺优化

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The ratio of the temperature gradient at solidification front to the solidification rate of solid-liquid interface plays a great role for columnar grain growth. Transient temperature fields of directional solidification of Al-Ni-Co-Ti alloys were studied based FEM. The effect of molten steel pouring temperature, heat flux and mould temperature on the ratio was analyzed. The results show that molten steel pouring temperature has an effect on the ratio greatly and the individual ratio soars up in the initial stage of solidification in all situations, when the solidification front reaches 5-6cm, the ratio plunges down rapidly and even tends to be closed to each other. The simulation result is consistent with the production reality.
机译:凝固前沿的温度梯度与固液界面的凝固速率之比对柱状晶粒的生长起着重要的作用。基于有限元法研究了Al-Ni-Co-Ti合金定向凝固的瞬态温度场。分析了钢水浇注温度,热通量和铸型温度对比例的影响。结果表明,钢水浇注温度对铸坯凝固率有很大的影响,在任何情况下,凝固初期单个铸坯的比重都有所提高,当凝固前沿达到5-6cm时,铸坯的铸坯比重将急剧下降,甚至趋于下降。彼此封闭。仿真结果与实际生产相吻合。

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