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Temperature Induced Ageing of PA12 Powder During Selective Laser Sintering Process

机译:选择性激光烧结过程中PA12粉末的温度诱导

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The selective laser sintering process has the potential to permanently overcome the boundary between model construction and functional components. The basic prerequisite for this is that components with reproducible quality can be manufactured. For this purpose, the virgin material must already be of the same quality. During the process, the laser sintered powder is heated to temperatures just below the melting temperature and held until the end of the building process. This results in thermal aging of the powder. Powder, which is not sintered, gets refreshed after the production process with new powder and can be reused. Due to the repeated refreshing process of the aged powder, a mixture is produced whose quality is difficult to define. By means of rheometry and differential scanning calorimetry (DSC), both new powder and powder, which was taken from a laser sintering process, are characterized. At the same time, the thermal aging is simulated by means of an oven heat. The rheological investigations show that the storage results in an increase of the viscosity, both in the process and in the oven. The reason is a post-condensation and thus the extension of the molecular chains. In addition, extended molecular chains lead to a faster reaching of the sol-gel transition and thus to a change from viscous to elastic material behavior. The post-condensation also leads to an increase in the melting temperature, which can be detected by means of DSC. The aging of the laser sinter powder can be reproduced by means of the oven storage and permits further investigations to ensure the quality of the virgin material.
机译:选择性激光烧结过程具有永久性地克服模型结构和功能部件之间的边界。这是基本先决条件是可以制造具有可重复质量的组件。为此,原始材料必须具有相同的质量。在此过程中,激光烧结粉末被加热至低于熔化温度的温度,并保持直至建筑工程结束。这导致粉末的热老化。粉末未烧结,在用新粉末的生产过程后刷新,可以重复使用。由于变黄粉末的重复刷新过程,制备了一种混合物,其质量难以定义。通过流变学和差分扫描量热法(DSC),表征从激光烧结过程中取出的新粉末和粉末。同时,通过烘箱热量模拟热老化。流变研究表明,储存导致在过程和烤箱中增加粘度。原因是缩合后,从而延伸分子链。另外,扩展的分子链导致溶胶 - 凝胶过渡的速度更快,从而达到从粘性与弹性材料行为的变化。后冷凝也导致熔化温度的增加,这可以通过DSC检测。激光烧结粉末的老化可以通过烤箱储存再现,并允许进一步研究以确保原始材料的质量。

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