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Selective laser sintering mechanism of polymer-coated molybdenum powder

机译:聚合物包覆钼粉的选择性激光烧结机理

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摘要

A type of polymer-coated molybdenum powder used in selective laser sintering technology was prepared by coating polymer on molybdenum particles and frozen grinding techniques, with the maximum particle diameter of 71 μm. The laser sintering experiments of polymer-coated molybdenum powder were conducted by using the self-developed selective laser sintering machine (HLRP-350I). The method of microscopic analysis was used to investigate the dynamic laser sintering process of polymer-coated molybdenum powder. Based on the study, the laser sintering mechanisms of polymer-coated molybdenum powder were presented. It is found that the mechanism is viscous flow when the laser sintering temperature is between 100 ℃ and 160 ℃, which can be described by a two-sphere model; and the mechanism is melting /solidification when the temperature is above 160 ℃.
机译:通过在钼颗粒上涂覆聚合物和冷冻研磨技术,制备一种用于选择性激光烧结技术的聚合物涂覆的钼粉末,最大粒径为71μm。通过使用自发选择激光烧结机(HLRP-350i)进行聚合物涂覆的钼粉末的激光烧结试验。微观分析方法用于研究聚合物涂覆钼粉的动态激光烧结过程。基于该研究,提出了聚合物涂覆的钼粉的激光烧结机制。结果发现,当激光烧结温度在100℃和160℃之间时,该机构是粘性流量,这可以通过双球模型描述;当温度高于160℃时,机制是熔化/凝固。

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