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Defect formation mechanism in directional solidification method using chills and high temperature mould

机译:低温冷铸型定向凝固法的缺陷形成机理

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摘要

A directional solidification method using chills and high temperature moulds has recently been developed. In this work, experiments with low melting point pure metals and solidification simulation were conducted to discuss the formation mechanism and prediction method of string-like surface defects called 'wrinkles'. In the cases of pure tin and pure lead, a wrinkle was observed on the casting surface. On the basis of the calculated solidification pattern, it was suggested that the deformation of the front of the initially solidified shell can occur in the vicinity of the chill edge. In the calculated surface temperature gradient distribution of the castings, a temperature gradient area smaller than that of surroundings ('minimal zone') appeared at a position similar to that of the wrinkle. On the other hand, neither wrinkles nor minimal zones appeared in the case of pure bismuth. These results suggest that the generation of wrinkles can be predicted by checking the existence of minimal zones.
机译:最近已经开发出使用冷却器和高温模具的定向凝固方法。在这项工作中,进行了低熔点纯金属的实验和凝固模拟,以探讨称为“皱纹”的串状表面缺陷的形成机理和预测方法。在纯锡和纯铅的情况下,在铸件表面观察到皱纹。根据计算的凝固模式,建议初始凝固的壳的前部的变形可发生在激冷边缘附近。在计算出的铸件的表面温度梯度分布中,小于环境的温度梯度区域(“最小区域”)出现在与皱纹相似的位置。另一方面,在纯铋的情况下,既没有皱纹也没有最小的区域。这些结果表明,可以通过检查最小区域的存在来预测皱纹的产生。

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