执行机构
软机器人
材料科学
弹性体
液晶
计算机科学
机械工程
复合材料
光电子学
人工智能
工程类
作者
Qiguang He,Zhijian Wang,Yang Wang,Adriane Fernandes Minori,Michael T. Tolley,Shengqiang Cai
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2019-10-11
卷期号:5 (10): eaax5746-eaax5746
被引量:539
标识
DOI:10.1126/sciadv.aax5746
摘要
Soft tubular actuators can be widely found both in nature and in engineering applications. The benefits of tubular actuators include (i) multiple actuation modes such as contraction, bending, and expansion; (ii) facile fabrication from a planar sheet; and (iii) a large interior space for accommodating additional components or for transporting fluids. Most recently developed soft tubular actuators are driven by pneumatics, hydraulics, or tendons. Each of these actuation modes has limitations including complex fabrication, integration, and nonuniform strain. Here, we design and construct soft tubular actuators using an emerging artificial muscle material that can be easily patterned with programmable strain: liquid crystal elastomer. Controlled by an externally applied electrical potential, the tubular actuator can exhibit multidirectional bending as well as large (~40%) homogenous contraction. Using multiple tubular actuators, we build a multifunctional soft gripper and an untethered soft robot.
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