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MELTING AND RESOLIDIFICATION OF A TWO-COMPONENT METAL POWDER LAYER HEATED BY A MOVING GAUSSIAN HEAT SOURCE

机译:由移动的高斯热源加热的双组分金属粉末层的熔化与调节

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Melting and resolidification of a subcooled mixed metal powder layer that contains a mixture of two metal powders with significantly different melting points heated by a moving Gaussian heat source is investigated numerically. The phase change is modeled using a temperature-transforming model and shrinkage induced by melting is also taken into account. The problem appears to be steady-state since it is formulated in a coordinate system moving with the Gaussian heat source and the size of the powder is much larger than that of the heat source. The results show that the powder layer thickness, moving heat source intensity and scanning velocity have significant effects on the sintering depth.
机译:在数值上研究了含有两个金属粉​​末的混合混合金属粉末层的熔融和调节,该混合金属粉末层的混合物具有在数值上进行移动高斯热源加热的显着不同熔点的混合物。使用温度变换模型建模相变模型,并考虑通过熔化引起的收缩。问题似乎是稳态,因为它在与高斯热源一起移动的坐标系中配制,粉末的尺寸远大于热源的尺寸。结果表明,粉末层厚度,移动热源强度和扫描速度对烧结深度具有显着影响。

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