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首页> 外文期刊>Materials Science-Poland >Effect of casting/mould interfacial heat transfer during solidification of aluminium alloys cast in CO_2-sand mould
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Effect of casting/mould interfacial heat transfer during solidification of aluminium alloys cast in CO_2-sand mould

机译:CO_2砂模铸造铝合金凝固过程中铸模界面传热的影响

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摘要

The ability of heat to flow across the casting and through the interface from the casting to the mold directly affects the evolution of solidification and plays a notable role in determining the freezing conditions within the casting, mainly in foundry systems of high thermal diffusivity such as chill castings. An experimental procedure has been utilized to measure the formation process of an interfacial gap and metal-mould interfacial movement during solidification of hollow cylindrical castings of Al-4.5 % Cu alloy cast in CO_2-sand mould. Heat flow between the casting and the mould during solidification of Al-4.5 % Cu alloy in CO_2-sand mould was assessed using an inverse modeling technique. The analysis yielded the interfacial heat flux (q), heat transfer coefficient (h) and the surface temperatures of the casting and the mould during solidification of the casting. The peak heat flux was incorporated as a dimensionless number and modeled as a function of the thermal diff'usivities of the casting and the mould materials. Heat flux transients were normalized with respect to the peak heat flux and modeled as a function of time. The heat flux model proposed was to estimate the heat flux transients during solidification of Al-4.5 % Cu alloy cast in CO_2-sand moulds.
机译:热量流经铸件并从铸件流向铸模的界面的能力直接影响凝固的发展,并在确定铸件内的冻结条件方面起着显著作用,主要是在高热扩散率的铸造系统(例如冷)中铸件。利用实验程序测量了在CO_2砂模中铸造的Al-4.5%Cu合金空心圆柱铸件凝固过程中界面间隙和金属模界面运动的形成过程。采用逆模型技术评估了Al_2.5%Cu合金在CO_2砂模中凝固过程中铸件与铸模之间的热流。分析得出了铸件凝固过程中的界面热通量(q),传热系数(h)以及铸件和铸模的表面温度。将峰值热通量作为无因次数合并,并根据铸件和模具材料的热扩散率进行建模。相对于峰值热通量对热通量瞬变进行归一化,并建模为时间的函数。提出的热通量模型是为了估计铸造在CO_2-砂模中的Al-4.5%Cu合金凝固过程中的热通量瞬变。

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