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首页> 外文期刊>Surface review and letters >INFLUENCE OF THE SOLIDIFICATION PARAMETERS ON DENDRITIC MICROSTRUCTURES IN UNSTEADY-STATE DIRECTIONALLY SOLIDIFIED OF LEAD-ANTIMONY ALLOY
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INFLUENCE OF THE SOLIDIFICATION PARAMETERS ON DENDRITIC MICROSTRUCTURES IN UNSTEADY-STATE DIRECTIONALLY SOLIDIFIED OF LEAD-ANTIMONY ALLOY

机译:凝固参数对铅-锑合金非稳态定向凝固枝状组织的影响

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Pb-9.3wt.%Sb alloy was directionally solidified upwards under argon atmosphere under the two conditions; with different temperature gradients, (G = 0.93-3.67K/mm) at a constant growth rate (V = 17.50 mu m/s) and with different growth rates (V = 8.30-497.00 mu m/s) at a constant (G = 3.67 K/mm) in a Bridgman furnace. The dependence of characteristic microstructure parameters such as primary dendrite arm spacing (lambda(1)), secondary dendrite arm spacing (lambda(2)) and dendrite tip radius (R) on the growth rate (V) and the temperature gradient (G) were determined by using a linear regression analysis. A detailed analysis of microstructure were also made and compared with the theoretical models and similar experimental works on dendritic solidification in the literature.
机译:在两种条件下,在氩气气氛下,Pb-9.3wt。%Sb合金定向凝固。在恒定的增长率(V = 17.50μm / s)下以不同的温度梯度(G = 0.93-3.67K / mm)和在恒定的(G)条件下具有不同的增长率(V = 8.30-497.00μm / s) = 3.67 K / mm)。特征微观结构参数(例如主枝晶臂间距(lambda(1)),次生枝晶臂间距(lambda(2))和枝晶尖端半径(R))对生长速率(V)和温度梯度(G)的依赖性通过使用线性回归分析确定。还对微观结构进行了详细分析,并将其与理论模型和类似的树突固化实验进行了比较。

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