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A review of 3D printing processes and materials for soft robotics

机译:软机器人3D打印工艺和材料综述

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Purpose Soft robotics is currently a rapidly growing new field of robotics whereby the robots are fundamentally soft and elastically deformable. Fabrication of soft robots is currently challenging and highly time- and labor-intensive. Recent advancements in three-dimensional (3D) printing of soft materials and multi-materials have become the key to enable direct manufacturing of soft robots with sophisticated designs and functions. Hence, this paper aims to review the current 3D printing processes and materials for soft robotics applications, as well as the potentials of 3D printing technologies on 3D printed soft robotics. Design/methodology/approach The paper reviews the polymer 3D printing techniques and materials that have been used for the development of soft robotics. Current challenges to adopting 3D printing for soft robotics are also discussed. Next, the potentials of 3D printing technologies and the future outlooks of 3D printed soft robotics are presented. Findings This paper reviews five different 3D printing techniques and commonly used materials. The advantages and disadvantages of each technique for the soft robotic application are evaluated. The typical designs and geometries used by each technique are also summarized. There is an increasing trend of printing shape memory polymers, as well as multiple materials simultaneously using direct ink writing and material jetting techniques to produce robotics with varying stiffness values that range from intrinsically soft and highly compliant to rigid polymers. Although the recent work is done is still limited to experimentation and prototyping of 3D printed soft robotics, additive manufacturing could ultimately be used for the end-use and production of soft robotics. Originality/value The paper provides the current trend of how 3D printing techniques and materials are used particularly in the soft robotics application. The potentials of 3D printing technology on the soft robotic applications and the future outlooks of 3D printed soft robotics are also presented.
机译:目的软机器人目前是一种快速增长的机器人领域,机器人在根本上柔软和可弹性变形。软机器人的制作目前具有挑战性和高度的时间和劳动密集型。柔软材料和多材料的三维(3D)印刷的最新进展已成为实现具有复杂设计和功能的软机器人的关键。因此,本文旨在审查当前的3D打印工艺和用于软机器人应用的材料,以及3D印刷软机器人的3D打印技术的潜力。设计/方法/方法纸质评论了用于开发软机器人的聚合物3D打印技术和材料。还讨论了采用3D打印对软机器人进行3D打印的挑战。接下来,提出了3D打印技术的潜力和3D印刷软机器人的未来前景。调查结果本文评论了五种不同的3D印刷技术和常用材料。评估了各种技术技术的优点和缺点。还总结了每个技术使用的典型设计和几何形状。印刷形状记忆聚合物的趋势越来越大,以及使用直接墨水写入和材料喷射技术同时使用多种材料,以产生具有不同刚度值的机器人,其范围从本质上柔软和高度符合刚性聚合物。虽然最近的工作是仍然仅限于3D印刷软机器人的实验和原型,但是添加剂制造最终最终可以用于柔软机器人的最终用途和生产。原创性/值本文提供了多维印刷技术和材料特别是在软机器人应用中使用的现有趋势。还介绍了3D打印技术对软机器人应用的潜力和3D印刷软机器人的未来前景。

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