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Profile and Areal Surface Characterization of Additive Manufacturing Polymer and Metal Parts

机译:添加剂制造聚合物和金属部件的概况和面表面表征

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Additive manufacturing (AM) has great potential on manufacturing both polymer and metal parts as final product. However, optimization of surface texture quality has not been fully achieved yet. AM surfaces present variable textures that differs according to the AM methods and process parameters. Because of their unusual texture, it is important to evaluate surface properties of metal and polymer parts produced by different AM processes. In this study, it is aimed to define 2D and 3D surface texture of poly-lactic acid (PLA) polymer and AISi10Mg metal parts manufactured by Fused Deposition Modelling (FDM) and Direct Metal Laser Sintering (DMLS) respectively. ISO 4287 Ra, Rq and Rz profile roughness parameters were defined by tactile method while ISO 25178 Sa, Sq and Sz areal parameters were measured by optical method. Measurements were taken from up-skin and down-skin of the samples which were in 30 mm diameter and 4 mm thickness. Results were evaluated within themselves and literature studies. Differences between profile and areal surface characterization and need of new specifications were also discussed.
机译:添加剂制造(AM)具有巨大的潜力,用于制造聚合物和金属部件作为最终产品。然而,表面纹理质量的优化尚未完全实现。 AM表面存在根据AM方法和工艺参数不同的可变纹理。由于其不寻常的质地,重要的是评估通过不同AM工艺产生的金属和聚合物部件的表面性质。在该研究中,旨在定义通过熔融沉积建模(FDM)和直接金属激光烧结(DMLS)制造的多乳酸(PLA)聚合物和AISI10Mg金属部件的2D和3D表面纹理。 ISO 4287 RA,RQ和RZ轮廓粗糙度参数由触觉方法定义,而ISO 25178 SA,SQ和SZ区域参数由光学方法测量。测量是从样品的上皮和下皮下脱皮,其直径为30毫米,厚度为4毫米。结果是在本身和文学研究中评估的。还讨论了轮廓和面表面表征之间的差异和新规范的需要。

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