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Two-Way 4D Printing: A Review on the Reversibility of 3D-Printed Shape Memory Materials

机译:双向4D打印:3D打印形状记忆材料的可逆性综述

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摘要

The rapid development of additive manufacturing and advances in shape memory materials have fueled the progress of four-dimensional (4D) printing.With the right external stimulus,the need for human interaction,sensors,and batteries will be eliminated,and by using additive manufacturing,more complex devices and parts can be produced.With the current understanding of shape memory mechanisms and with improved design for additive manufacturing,reversibility in 4D printing has recently been proven to be feasible.Conventional one-way 4D printing requires human interaction in the programming (or shapesetting) phase,but reversible 4D printing,or two-way 4D printing,will fully eliminate the need for human interference,as the programming stage is replaced with another stimulus.This allows reversible 4D printed parts to be fully dependent on external stimuli;parts can also be potentially reused after every recovery,or even used in continuous cycles-an aspect that carries industrial appeal.This paper presents a review on the mechanisms of shape memory materials that have led to 4D printing,current findings regarding 4D printing in alloys and polymers,and their respective limitations.The reversibility of shape memory materials and their feasibility to be fabricated using three-dimensional (3D) printing are summarized and critically analyzed.For reversible 4D printing,the methods of 3D printing,mechanisms used for actuation,and strategies to achieve reversibility are also highlighted.Finally,prospective future research directions in reversible 4D printing are suggested.
机译:增材制造的快速发展和形状记忆材料的发展推动了四维(4D)打印的发展。通过适当的外部刺激,将消除人为交互,传感器和电池的需要,并通过使用增材制造借助对形状记忆机制的最新了解以及用于增材制造的改进设计,最近证明了4D打印的可逆性是可行的。常规的单向4D打印需要编程中的人机交互(或定型)阶段,但可逆4D打印或双向4D打印将完全消除对人为干扰的需要,因为编程阶段已被另一种刺激替代。这使可逆4D打印部件完全依赖于外部刺激;零件在每次恢复后也可能被重复使用,甚至可以连续使用,这具有工业吸引力。每个人都对导致4D打印的形状记忆材料的机理,合金和聚合物中4D打印的当前发现及其各自的局限性进行了综述。形状记忆材料的可逆性及其使用三维(对3D打印进行了总结和批判性分析。对于可逆4D打印,还重点介绍了3D打印的方法,致动机理以及实现可逆性的策略。最后,提出了可逆4D打印的未来研究方向。

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  • 来源
    《工程(英文)》 |2017年第005期|663-674|共12页
  • 作者单位

    Singapore Centre for 3D Printing, School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore 639798, Singapore;

    Singapore Centre for 3D Printing, School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore 639798, Singapore;

    Singapore Centre for 3D Printing, School of Mechanical and Aerospace Engineering, Nanyang Technological University, Singapore 639798, Singapore;

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