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A critical review on 3D printed continuous fiber-reinforced composites: History, mechanism, materials and properties

机译:3D打印连续纤维增强复合材料的重要评论:历史,机理,材料和性能

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摘要

Three-dimensional printing (3DP), interchangeably termed as additive manufacturing, is an emerging technology for creating myriad objects with numerous design flexibilities by sequential layering. The research revolving 3DP to develop different high-performance materials is in its young stage and burgeoning exponentially throughout the globe. The widest applications of 3DP technology are found in automobile, aerospace, building, metal and alloy, electronic and biomedical fields. Recently, the opportunity to use fiber as reinforcement in the plastic resin of 3D printed model has contributed significantly to the improvement of mechanical performances of 3D printed composites. In the present review, along with introducing brief history of 3DP, mechanism of embedding different continuous fibers into different plastics and their microstructural and mechanical properties including predicting models have been critically reviewed. Additionally, based on the limitations of current technology future research directions have been defined.
机译:三维打印(3DP)(可互换地称为增材制造)是一种新兴技术,可通过顺序分层来创建具有多种设计灵活性的多种对象。围绕3DP来开发不同高性能材料的研究尚处于起步阶段,并且在全球范围内呈指数级增长。 3DP技术的最广泛应用是在汽车,航空航天,建筑,金属和合金,电子和生物医学领域。最近,在3D打印模型的塑料树脂中使用纤维作为增强材料的机会极大地促进了3D打印复合材料的机械性能的提高。在本综述中,除了介绍3DP的简要历史外,还对不同连续纤维嵌入不同塑料中的机理及其包括预测模型在内的微观结构和力学性能进行了严格审查。另外,基于当前技术的局限性,已经定义了未来的研究方向。

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