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A Novel Method of Creation Capillary Structures in Metal Parts Based on Using Selective Laser Melting Methid of 3D Printing Technology and Surface Roughness

机译:基于使用3D印刷技术选择性激光熔融和表面粗糙度的基于使用选择性激光熔化的金属部件创造毛细结构的新方法

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It has been experimentally proved that it is possible to produce a metal capillary structure with significant capillary action and free shape configuration using selective laser melting. Capillaries are created by dividing the solid detail volume into micro-sized parallel walls with roughness as a result of SLM 3D printing. Experiments are conducted on aluminum powder with particle size in the range of 10-40 μm (,) and distances in 3D model between surfaces incapillary generation zone in the range of 50-200 μm. It is showed that products produced from model with 100 μm gaps have the greatest efficiency of fluid lifting as a result of obtaining stable arrays of capillaries of 20-40 μm in size. Change in the direction of (growing) printingthe product doesn't significantly influence on capillary geometry, but it affects on safety of the structure.
机译:已经通过实验证明,可以使用选择性激光熔化产生具有显着毛细管作用和自由形状的金属毛细结构。由于SLM 3D打印,通过将固体细节体积除以具有粗糙度的微小平行壁来产生毛细血管。实验在铝粉末上,粒径为10-40μm(,)和表面在50-200μm范围内的表面敏锐的产生区之间的3D模型的距离。结果表明,由于100μm间隙的模型产生的产品具有最大的液体提升效率,导致获得尺寸为20-40μm的毛细血管卷阵列。 (生长)印刷方向的变化对毛细管几何没有显着影响,但它会影响结构的安全性。

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