首页> 外文会议>HTD-vol.376-2; ASME(American Society of Mechanical Engineers) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >Three-Dimensional Simulation of Multiple Line Laser Sintering of a Two-Component Metal Powder Layer on Top of Sintered Layers
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Three-Dimensional Simulation of Multiple Line Laser Sintering of a Two-Component Metal Powder Layer on Top of Sintered Layers

机译:烧结层顶部两组分金属粉末层多线激光烧结的三维模拟

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摘要

Multiple line laser scan sintering of a two-component metal powder layer on top of the sintered layers with a moving circular Gaussian laser beam is modeled numerically. The overlap between the adjacent scan lines to achieve enhanced bonding is taken into account. The binding between the newly sintered layer and existing sintered layers underneath through melting is also considered. The governing equation is formulated by a temperature-transforming model with partial shrinkage induced by melting considered. The liquid flow of the molten low melting point metal powders, which is driven by capillary and gravity forces, is formulated by Darcy's law. The effects of the dominant processing parameters, including the moving laser beam intensity, scanning speed and number of the existing sintered layers underneath, on the shape of the heat affected zone (HAZ) are investigated. A parametric study is performed and the best combination of the processing parameters is recommended.
机译:数值模拟了旋转运动的高斯激光束对烧结层顶部的两组分金属粉末层的多线激光扫描烧结。考虑到相邻扫描线之间的重叠以实现增强的结合。还考虑了新的烧结层和通过熔融在其下的现有的烧结层之间的结合。该控制方程由考虑了熔化引起的部分收缩的温度转换模型来表示。熔融的低熔点金属粉末的液体流是由毛细作用和重力作用驱动的,由达西定律制定。研究了主要加工参数,包括移动的激光束强度,扫描速度和下方现有烧结层的数量,对热影响区(HAZ)形状的影响。进行参数研究,并建议最佳处理参数组合。

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