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Flame-Retardant Polyamide Powder for Laser Sintering: Powder Characterization Processing Behavior and Component Properties

机译:用于激光烧结的阻燃聚酰胺粉末:粉末表征加工行为和组分特性

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摘要

Up to now, laser-sintered components have been barely used by industries such as aerospace and transport industry due to high flammability. By the use of flame retardants, the flammability of laser-sintered parts should be reduced to extend their range of possible applications. This paper aims to investigate the influence of halogen-free phosphinate-based flame retardants on process-relevant characteristics and process behavior, as well as mechanical and physical properties. Most importantly, the flammability of the material should be reduced. Two different types of phosphinate-based fillers were used in a concentration between 10 and 25 wt % in combination with the matrix material polyamide 12 (PA12). Thermal, optical, and powder properties of the mixtures were analytically investigated. Furthermore, the mechanical characterization of the sintered specimen was carried out. The addition of filler in laser sintering changes the process behavior and properties of the component. With this investigation, the correlation among flame retardants, process-relevant characteristics, process behavior, and resulting part properties was derived for the first time. Finally, a mixture of 15–20 wt % of flame retardant leads to the best trade-off between flame retardancy and mechanical properties.
机译:到目前为止,由于高易燃性,激光烧结组件几乎不受航空航天和运输业等行业使用的。通过使用阻燃剂,应减少激光烧结部件的可燃性以延长其各种可能的应用。本文旨在探讨卤素次膦酸盐的阻燃剂对过程相关特征和工艺行为的影响,以及机械和物理性质。最重要的是,应减少材料的可燃性。与基质材料聚酰胺12(PA12)组合使用两种不同类型的磷酸基填料以10至25wt%之间的浓度使用。分析了混合物的热,光学和粉末性能。此外,进行烧结样品的机械表征。激光烧结中的填料添加改变了组分的过程行为和性质。通过该研究,第一次导出阻燃剂,过程相关特征,过程行为和产生部分性能之间的相关性。最后,15-20wt%的阻燃剂的混合物导致阻燃性和机械性能之间的最佳折衷。

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