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Characterisation of UHMWPE Polymer Powder for Laser Sintering

机译:超高分子量聚乙烯激光烧结用粉末的表征

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摘要

Ultra-high molecular weight polyethylene (UHMWPE) is a thermoplastic semicrystalline polymer that has outstanding mechanical properties, low friction coefficient, excellent wear resistance, and is highly resistant to corrosive chemicals. UHMWPE is found in many applications including artificial joints and filtration. However, UHMWPE parts cannot be produced easily by traditional techniques, such as injection moulding and extrusion because of its very high melt viscosity owing to the extremely long polymer chains. Few attempts were made to process UHMWPE by additive manufacturing, particularly laser sintering. This is due to the lack of understanding of the powder properties of UHMWPE. Therefore, the aim of the powder characterisation process in this study is to gain a better understanding of the material requirements and provide a detailed insight on whether UHMWPE is a suitable material for laser sintering. The characterisation process includes powder morphological and flow characteristics, thermal behaviour and stability, and crystallinity of UHMWPE. The study reveals that the sintering behaviour of polymers is controlled by the morphology of the particles in addition to the viscous flow of UHMWPE. There are still difficulties of processing UHMWPE due to highly agglomerated structure of smaller particles with the presence of fibrils in the UHMWPE particles.
机译:超高分子量聚乙烯(UHMWPE)是一种热塑性半结晶聚合物,具有出色的机械性能,低摩擦系数,出色的耐磨性和高度耐腐蚀性化学物质。 UHMWPE有许多应用,包括人工接头和过滤。但是,UHMWPE零件由于聚合物链非常长而具有很高的熔体粘度,因此无法通过传统技术轻松地生产,例如注塑和挤出。很少有人尝试通过增材制造,特别是激光烧结来加工UHMWPE。这是由于缺乏对UHMWPE粉末性能的了解。因此,本研究中粉末表征过程的目的是更好地了解材料要求,并提供有关UHMWPE是否适合用于激光烧结的详细信息。表征过程包括粉末的形态和流动特性,热行为和稳定性以及UHMWPE的结晶度。该研究表明,除了UHMWPE的粘性流动外,聚合物的烧结行为还受颗粒形态的控制。由于较小的颗粒高度聚集的结构以及UHMWPE颗粒中存在原纤维,因此仍然难以加工UHMWPE。

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