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Comparison of Laser-Engraved Hole Properties between Cold-Rolled and Laser Additive Manufactured Stainless Steel Sheets

机译:冷轧和激光增材制造的不锈钢薄板的激光刻孔性能比较

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Laser drilling and laser engraving are common manufacturing processes that are found in many applications. With the continuous progress of additive manufacturing (3D printing), these processes can now be applied to the materials used in 3D printing. However, there is a lack of knowledge about how these new materials behave when processed or machined. In this study, sheets of 316L stainless steel produced by both the traditional cold rolling method and by powder bed fusion (PBF) were laser drilled by a nanosecond pulsed fiber laser. Results were then analyzed to find out whether there are measurable differences in laser processing parts that are produced by either PBF (3D printing) or traditional steel parts. Hole diameters, the widths of burn effects, material removal rates, and hole tapers were measured and compared. Additionally, differences in microstructures of the samples were also analyzed and compared. Results show negligible differences in terms of material processing efficiency. The only significant differences were that the PBF sample had a wider burn effect, and had some defects in the microstructure that were more closely analyzed. The defects were found to be shallow recesses in the material. Some of the defects were deep within the material, at the end and start points of the laser lines, and some were close to the surfaces of the sample.
机译:激光打孔和激光雕刻是许多应用中常见的制造过程。随着增材制造(3D打印)的不断发展,现在可以将这些过程应用于3D打印中使用的材料。但是,缺乏有关这些新材料在加工或加工时的性能的知识。在这项研究中,用纳秒脉冲光纤激光器对传统冷轧法和粉末床熔合(PBF)法生产的316L不锈钢板进行了激光钻孔。然后对结果进行分析,以确定由PBF(3D打印)或传统钢制零件生产的激光加工零件是否存在可测量的差异。测量并比较了孔直径,燃烧效果的宽度,材料去除率和孔锥度。另外,还分析和比较了样品微观结构的差异。结果表明,在材料加工效率方面的差异可以忽略不计。唯一的显着差异是PBF样品具有更宽的燃烧效果,并且在微观结构中存在一些缺陷,需要进一步分析。发现缺陷是材料中的浅凹槽。一些缺陷在材料内部,激光线的终点和起点处很深,而一些缺陷则靠近样品的表面。

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