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Laser powder bed fusion of WE43 in hydrogen-argon-gas atmosphere

机译:激光粉床融合WE43在氢气气体气氛中

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Growing demand for individual and especially complex parts with emphasis on biomedical or lightweight applications enhances the importance of laser powder bed fusion. Magnesium alloys offer both biocompatibility and low density, but feature a very high melting point of oxide layers while the evaporation temperature of pure magnesium is much lower. This impedes adequate part quality and process reproducibility. To weaken this oxide layer and enhance processability, a 2 %-hydrogen-argon-gas atmosphere was investigated. A machine system was modified to the use of the novel inert gas to determine the influence of gas atmosphere on hollow cuboids and solid cubes. While processing a 20.3 % decrease in structure width and 20.6 % reduction in standard deviation of the cuboids was determined. There was no significate influence on relative density of solid cubes although eight of the ten highest density specimen were fabricated with the hydrogen addition.
机译:增长对个人的需求,特别是复杂的部分,重点是生物医学或轻质应用增强了激光粉床融合的重要性。镁合金提供生物相容性和低密度,但具有非常高的氧化物层的熔点,而纯镁的蒸发温度低得多。这阻碍了足够的部分质量和过程再现性。为了削弱该氧化物层并增强加工性,研究了2%的氩气气氛。机器系统被修改为使用新型惰性气体,以确定气体气氛对中空立方体和固体立方体的影响。在处理结构宽度下降20.3%的同时,确定了长方体的标准偏差降低了20.6%。尽管用氢添加了八个最高密度标本的八个最高密度标本中的八个,但对固体立方体的相对密度没有意义。

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