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Tough thiourethane thermoplastics for fused filament fabrication

机译:坚韧的硫代甲烷热塑性塑料,用于熔丝长丝制造

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摘要

Fused filament fabrication (FFF) is the most common form of additive manufacturing. Most FFF materials are variants of commercially available engineering plastics. Their performance when printed can widely vary, thus there is an increasing volume of research on alternative materials with thermal and mechanical performance optimized for FFF. In this work, thiol-isocyanate polymerization is used for the development of a one-pot synthesis for polythiourethane thermoplastics for tough three-dimensional (3D) printing applications. The thiol-isocyanate reaction mechanism allows for rapid polymer synthesis with minimal byproduct formation and few limitations on reaction conditions. The resulting elastomer has high toughness and a low melting point, making it favorable for use as a 3D printing filament. The elastomer outperforms commercial filaments in tension when printed. Considering the rapid advancement of additive manufacturing and the limitations of many engineering polymers with the 3D printing process, these results are encouraging for the development of bespoke 3D printing thermoplastics. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 45574.
机译:熔丝灯丝制造(FFF)是最常见的添加剂制造形式。大多数FFF材料是商业上可获得的工程塑料的变型。它们的性能在印刷时可以广泛变化,因此对具有用于FFF的热和机械性能的替代材料的研究越来越大。在这项工作中,硫醇 - 异氰酸酯聚合用于开发用于坚硬的三维(3D)印刷应用的多核热塑性塑料的一罐合成。硫醇 - 异氰酸酯反应机制允许快速聚合物合成,具有最小的副产物形成和对反应条件的限制很少。所得弹性体具有高韧性和低熔点,使其有利于用作3D印刷长丝。弹性体在印刷时优于张力的商业长丝。考虑到添加剂制造的快速进步和许多工程聚合物的局限性与3D打印过程,这些结果令人鼓舞的3D印刷热塑性塑料的开发。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,45574。

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