用于小型机器的功能聚合物的3D打印

Q1 Materials Science
Neng Xia, Dongdong Jin, V. Iacovacci, Li Zhang
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引用次数: 1

摘要

微米或毫米尺寸的微型机器人和驱动器可以由多种电源驱动,例如化学燃料、光、磁场和声场。这些机器有可能进入复杂的狭窄空间,执行医疗任务,执行环境监测和操纵微型物体。最近3D打印技术的进步已经证明了在制造小型结构(如具有可编程物理特性的定制设计)方面的巨大优势。结合3D打印方法,功能聚合物和主动控制策略,使这些具有多种功能的微型机器能够扩大其在医疗应用中的潜力。在此,本文综述了适用于制造小型机器和可打印功能材料的3D打印技术,包括变形材料、生物材料、复合聚合物和自修复聚合物。讨论了3D打印制造的微型机器人和执行器的功能和应用,以及对小型智能机器的未来展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D printing of functional polymers for miniature machines
Miniature robots and actuators with micrometer or millimeter scale size can be driven by diverse power sources, e.g., chemical fuels, light, magnetic, and acoustic fields. These machines have the potential to access complex narrow spaces, execute medical tasks, perform environmental monitoring, and manipulate micro-objects. Recent advancements in 3D printing techniques have demonstrated great benefits in manufacturing small-scale structures such as customized design with programmable physical properties. Combining 3D printing methods, functional polymers, and active control strategies enables these miniature machines with diverse functionalities to broaden their potentials in medical applications. Herein, this review provides an overview of 3D printing techniques applicable for the fabrication of small-scale machines and printable functional materials, including shape-morphing materials, biomaterials, composite polymers, and self-healing polymers. Functions and applications of tiny robots and actuators fabricated by 3D printing and future perspectives toward small-scale intelligent machines are discussed.
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来源期刊
Multifunctional Materials
Multifunctional Materials Materials Science-Materials Science (miscellaneous)
CiteScore
12.80
自引率
0.00%
发文量
9
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