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Manufacturing Of Fine-structured 3d Porous Filter Elements By Selective Laser Melting

机译:通过选择性激光熔化制造精细结构的3d多孔滤芯

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Selective laser melting (SLM) allows manufacturing porous 3D parts with customized near-net shape and internal geometry designed at the stage of their computer modeling. The relations between laser operational parameters, computer design of the manufacturing object, composition and microstructure of the obtained fine porous structures are discussed. A series of experiments are carried out on PHENIX PM-100 machine to analyze the influence of the manufacturing strategy on anisotropy and regularity of the internal structure of samples from stainless steel, nickel alloys and metal-polymer powders. The issues of accurate reproduction of the parts geometry, strategy of manufacturing thin-walled 3D filters and filters with customized pattern of the micron-sized channels are addressed. Effect of the porous structure on the material filtering performance is analyzed in order to optimize and diversify design of the porous materials for a given application and to improve their operational behavior.
机译:选择性激光熔化(SLM)允许制造多孔3D零件,这些零件具有在其计算机建模阶段设计的定制近净形状和内部几何形状。讨论了激光操作参数,制造对象的计算机设计,所得微孔结构的组成和微观结构之间的关系。在PHENIX PM-100机器上进行了一系列实验,以分析制造策略对不锈钢,镍合金和金属聚合物粉末样品的各向异性和内部结构规则性的影响。解决了零件几何形状的精确复制,制造薄壁3D滤镜和具有定制尺寸的微米尺寸通道的滤镜的问题。分析了多孔结构对材料过滤性能的影响,以优化和多样化给定应用的多孔材料设计,并改善其工作性能。

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