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System development, formability quality and microstructure evolution of selective laser-melted magnesium

机译:选择性激光熔炼镁的系统开发,成形质量和显微组织演变

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摘要

A selective laser melting (SLM) system, which consisted of a fibre laser, a three-dimensional motion platform and a motion control system, was developed in this study. The effect of process parameters on the microstructure evolution of SLMed magnesium parts was investigated. The results revealed that under an irradiation of laser energy density <3.0 J/mm, the powder remained in the discrete state. At a laser energy density 3.0-6.0 J/mm, the powder partially melted and sintered together, yielding incompact tracks. As the energy density increased to 6.0- 12.0 J/mm, the powder fully melted forming continuous and smooth tracks. With a further increase in the laser energy density evaporation of the powder occurred. Dense magnesium parts free of pores and cracks were successfully fabricated with the optimal energy density of 10.0 J/mm. The immersion experiment revealed that the degradation product was mainly consisted of Mg(OH)_2, which slowed down the degradation rate acting as a protective layer.
机译:本研究开发了由光纤激光器,三维运动平台和运动控制系统组成的选择性激光熔化(SLM)系统。研究了工艺参数对SLMed镁零件组织演变的影响。结果表明,在<3.0 J / mm的激光能量密度照射下,粉末保持离散状态。在3.0-6.0 J / mm的激光能量密度下,粉末部分熔融并烧结在一起,产生了紧密的轨迹。当能量密度增加到6.0-12.0 J / mm时,粉末完全熔化,形成连续且平滑的轨道。随着激光能量密度的进一步增加,发生了粉末的蒸发。成功地以10.0 J / mm的最佳能量密度成功地制造了无孔和裂纹的致密镁零件。浸没实验表明,降解产物主要由Mg(OH)_2组成,减缓了降解速率,起到了保护层的作用。

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