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Printability and Microstructure of Selective Laser Melting of WC/Co/Cr Powder

机译:WC / Co / Cr粉末选择性激光熔化的适印性和微观结构

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摘要

The selective laser melting process is a growing technology for the manufacture of parts with very complex geometry. However, not all materials are suitable for this process, involving rapid localized melting and solidification. Tungsten has difficulties due to the high melting temperature. This study focuses on the possibility of processing a WC/Co/Cr composite powder using selective laser melting. Samples were fabricated and characterized in terms of density, defects, microstructure and hardness. Tests were conducted with hatch spacing of 120 μm and process speed of 40 mm/s. A constant laser power of 100 W and a powder layer thickness of 30 μm were used. A relative density of 97.53%, and therefore a low porosity, was obtained at an energy density of 12.5 J/mm2. Microscopic examination revealed the presence of small cracks and a very heterogeneous distribution of the grain size.
机译:选择性激光熔化工艺是用于制造几何形状非常复杂的零件的一项正在发展的技术。但是,并非所有材料都适合此过程,涉及快速的局部熔化和固化。钨由于熔化温度高而有困难。这项研究的重点是采用选择性激光熔化工艺加工WC / Co / Cr复合粉末的可能性。样品被制成并根据密度,缺陷,微观结构和硬度进行表征。舱口间距为120μm,处理速度为40 mm / s时进行测试。使用100 W的恒定激光功率和30μm的粉末层厚度。能量密度为12.5 J / mm 2 时,相对密度为97.53%,因此孔隙率较低。显微镜检查发现存在小裂纹和晶粒尺寸非常不均匀的分布。

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