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Effect of cerium addition on casting/chill interfacial heat flux and casting surface profile during solidification of Al-14Si alloy

机译:Al-14%Si合金凝固过程中铈添加对铸造/冷却界面热通量和铸造表面曲线的影响

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In the present investigation, Al-14 wt. % Si alloy was solidified against copper, brass and cast iron chills, to study the effect of Ce melt treatment on casting/chill interfacial heat flux transients and casting surface profile. The heat flux across the casting/chill interface was estimated using inverse modelling technique. On addition of 1.5% Ce, the peak heat flux increased by about 38%, 42% and 43% for copper, brass and cast iron chills respectively. The effect of Ce addition on casting surface texture was analyzed using a surface profilometer. The surface profile of the casting and the chill surfaces clearly indicated the formation of an air gap at the periphery of the casting. The arithmetic average value of the profile departure from the mean line (Ra) and arithmetical mean of the absolute departures of the waviness profile from the centre line (Wa) were found to decrease on Ce addition. The interfacial gap width formed for the unmodified and Ce treated casting surfaces at the periphery were found to be about 35um and 13 urn respectively. The enhancement in heat transfer on addition of Ce addition was attributed to the lowering of the surface tension of the liquid melt. The gap width at the interface was used to determine the variation of heat transfer coefficient (HTC) across the chill surface after the formation of stable solid shell. It was found that the HTC decreased along the radial direction for copper and brass chills and increased along radial direction for cast iron chills.
机译:在本调查中,Al-14重量。将%Si合金凝固铜,黄铜和铸铁冷却,研究Ce Melt处理对铸造/冷却界面热通量瞬变和铸造表面轮廓的影响。使用逆建模技术估计铸造/冷却界面上的热量通量。铜,黄铜和铸铁冷却的峰值热通量增加了1.5%Ce,峰值热通量增加了约38%,42%和43%。使用表面型材仪分析CE添加对铸造表面纹理的影响。铸件的表面轮廓和冷却表面清楚地表明在铸件的周边形成气隙。发现轮廓从平均线(Ra)的算术平均值与来自中心线(WA)的波纹谱的绝对偏离的绝对偏离的算术平均值。发现用于外周的未改性和Ce处理的铸件表面的界面间隙宽度分别为约35UM和13瓮。添加CE添加的热传递增强归因于液体熔体的表面张力的降低。界面处的间隙宽度用于在形成稳定的固体壳之后确定在冷却表面上的传热系数(HTC)的变化。发现HTC沿着铜和黄铜冷却的径向减小,并且沿铸铁冷却的径向沿径向增加。

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