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Polymers for additive manufacturing and 4D-printing: Materials, methodologies, and biomedical applications

机译:添加剂制造和4D印刷的聚合物:材料,方法和生物医学应用

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Additive manufacturing (AM), also known as additive manufacturing, permits the fabrication of fully customized objects with a high level of geometrical complexity at reduced fabrication time and cost. Besides metals and ceramics, polymers have become a widely researched class of materials for applications in AM. The synthetic versatility and adaptability, as well as the wide range of properties that can be achieved using polymer materials, have rendered polymers the most widely employed class of materials for AM methodologies, In this review, the basic principles, considering the printing mechanism as well as the advantages and disadvantages, of the most relevant polymer AM technologies are described. The particular features, properties and limitations of currently employed polymer systems in the various AM technology areas are presented and analyzed. Subsequently, 4D printing, that is the fabrication of 3D printed structures that are cabable to change with time, is discussed. A brief description of the polymeric materials and technologies under development for 4D printed structures as well as the different shape changes explored are presented. Finally, based on the characteristics of the polymers employed for each technology illustrative examples of the principal applications are discussed. (C) 2019 Elsevier B.V. All rights reserved.
机译:添加剂制造(AM),也称为添加剂制造,允许在减少的制造时间和成本下制造具有高水平的几何复杂性的完全定制的物体。除金属和陶瓷外,聚合物还已成为AM的应用广泛研究的应用。合成的通用和适应性,以及可以使用聚合物材料实现的宽范围的性能,使聚合物具有最广泛使用的AM方法材料类别,在本综述中,基本原则,考虑到印刷机制也是如此作为优点和缺点,描述了最相关的聚合物AM技术。提出和分析了当前采用的各种技术领域的特定特征,特性和限制。随后,讨论了4D打印,即,讨论了3D印刷结构的制造,该结构是随时间改变的3D印刷结构。介绍了4D印刷结构开发的聚合物材料和技术的简要描述以及探索的不同形状变化。最后,讨论了针对每个技术所采用的聚合物的特性,说明了主要应用的示例性示例。 (c)2019年Elsevier B.V.保留所有权利。

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