School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Adv Mater. 2021 May;33(19):e2003558. doi: 10.1002/adma.202003558. Epub 2020 Dec 18.
Miniature soft robots are mobile devices, which are made of smart materials that can be actuated by external stimuli to realize their desired functionalities. Here, the key advancements and challenges of the locomotion producible by miniature soft robots in micro- to centimeter length scales are highlighted. It is highly desirable to endow these small machines with dexterous locomotive gaits as it enables them to easily access highly confined and enclosed spaces via a noninvasive manner. If miniature soft robots are able to capitalize this unique ability, they will have the potential to transform a vast range of applications, including but not limited to, minimally invasive medical treatments, lab-on-chip applications, and search-and-rescue missions. The gaits of miniature soft robots are categorized into terrestrial, aquatic, and aerial locomotion. Except for the centimeter-scale robots that can perform aerial locomotion, the discussions in this report are centered around soft robots that are in the micro- to millimeter length scales. Under each category of locomotion, prospective methods and strategies that can improve their gait performances are also discussed. This report provides critical analyses and discussions that can inspire future strategies to make miniature soft robots significantly more agile.
微型软体机器人是由智能材料制成的可移动设备,可通过外部刺激来实现其预期功能。本文重点介绍了微型软体机器人在微至厘米长度范围内的运动产生的关键进展和挑战。如果能够赋予这些小型机器灵巧的运动步态,使它们能够以非侵入式的方式轻松进入高度受限和封闭的空间,这将是非常理想的。如果微型软体机器人能够利用这种独特的能力,它们将有可能改变广泛的应用领域,包括但不限于微创医疗、芯片实验室应用和搜救任务。微型软体机器人的步态可分为陆地、水生和空中运动。除了能够进行空中运动的厘米级机器人外,本报告的讨论主要集中在微至毫米长度范围内的软体机器人上。在每种运动类别下,还讨论了可以提高其步态性能的潜在方法和策略。本报告提供了批判性的分析和讨论,可以为未来的策略提供灵感,使微型软体机器人更加灵活。