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The Optimization Design Study of Selective Laser Sintering Process Parameters on the Pro-Coated Sand Mold

机译:促涂层砂模选择性激光烧结工艺参数的优化设计研究

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This paper presents experimental investigations on influence of important process parameters viz., laser power, scan speed, layer thickness, hatching space along with their interactions on dimensional accuracy of Selective Laser Sintering (SLS) processed pro-coated sand mold. It is observed that dimensional error is dominant along length and width direction of built mold. Optimum parameters setting to minimize percentage change in length and width of standard test specimen have been found out using Taguchi's parameter design. Optimum process conditions are obtained by analysis of variance (ANOVA) is used to understand the significance of process variables affecting dimension accuracy. Scan speed and hatching space are found to be most significant process variables influencing the dimension accuracy in length and width. And laser power and layer thickness are less influence on the dimension accuracy. The optimum processing parameters are attained in this paper: laser power 11 W; scan speed 1200 mm/s; layer thickness 0.5 mm and hatching space 0.25 mm. It has been shown that, on average, the dimensional accuracy under this processing parameters combination could be improved by approximately up to 25% compared to other processing parameters combinations.
机译:本文提出了关于重要工艺参数的影响的实验研究。,激光功率,扫描速度,层厚度,阴影空间以及它们对选择性激光烧结(SLS)加工的研发砂模的尺寸精度的相互作用。观察到,尺寸误差沿着建筑模具的长度和宽度方向主导。使用Taguchi的参数设计已经发现了最大限度地减少标准测试标本的长度和宽度百分比变化的最佳参数设置。通过方差分析(ANOVA)获得最佳过程条件来了解影响尺寸精度的过程变量的重要性。发现扫描速度和孵化空间是最重要的过程变量,影响长度和宽度的尺寸精度。激光功率和层厚度对尺寸精度的影响较小。本文达到了最佳处理参数:激光功率11 W;扫描速度1200 mm / s;层厚度0.5毫米,阴影空间0.25毫米。已经表明,与其他处理参数组合相比,平均而言,可以提高该处理参数组合下的尺寸精度大约高达25%。

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