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THERMAL MODELING OF METAL POWDER-BASED SELECTIVE LASER SINTERING

机译:金属粉末选择性激光烧结的热建模

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In order to get a better understanding of Selective Laser Sintering (SLS) process of the metal powders, three-dimensional modeling of laser sintering of a metal powder mixture that contains two kinds of metal powder with significantly different melting points under a moving Gaussian laser beam is investigated numerically. Laser induced melting and resolidification accompanied by shrinkage are modeled using a temperature transforming model. The liquid flow of the melted low melting point metal driven by capillary and gravity forces is also included in the physical model. Both complete and partial shrinkages are considered in the model. Simulations are performed for both single line laser scanning and multiple-line laser scanning. The numerical results are compared with experimental results and a detailed parametric study is performed. The effects of the moving heat source intensity, the scanning velocity, the thickness of the powder layer and the number of existing sintered layers underneath on the sintering depth, the shape of the heat affected zone (HAZ) and the temperature distribution are discussed. The optimized dimensionless moving heat source intensity increases with increasing scanning velocity in order to achieve the desired sintering depth and bond the newly sintered layer to the previously sintered layers.
机译:为了得到更好的理解选择性激光烧结(SLS)的金属粉末,包含一个移动高斯激光束下两种金属粉末与显著不同熔点的金属粉末混合物的烧结激光的三维建模的过程的在数值研究。激光诱导熔融和再固化伴随着收缩是使用温度转换模型建模。熔融的低熔点金属通过毛细和重力驱动的液体流也被包括在物理模型。完全和部分收缩在模型中考虑。模拟是为两个单个线激光扫描和多线激光扫描进行。数值结果与实验结果进行比较,并执行详细的参数研究。移动热源强度,扫描速度的影响,所述粉末层的厚度的和现有的烧结层的数量上的深度烧结下方,热影响区(HAZ)和温度分布的形状进行了讨论。 ,以便增加扫描速度以实现所需的烧结深度和键的新烧结层与先前烧结层中的优化的量纲移动热源强度增加。

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