弹性体
材料科学
人工肌肉
介电弹性体
复合材料
刚度(电磁)
执行机构
拉伤
软机器人
电活性聚合物
聚合物
计算机科学
人工智能
医学
内科学
作者
Zheqi Chen,Zipeng Ma,Jiali Tang,Youhua Xiao,Jie Mao,Yiting Cai,Junjie Zhao,Xiang Gao,Tiefeng Li,Yingwu Luo
出处
期刊:Materials horizons
[The Royal Society of Chemistry]
日期:2021-01-01
卷期号:8 (10): 2834-2841
被引量:23
摘要
Soft biological tissues and muscles composed of semiflexible networks exhibit rapid strain-hardening behaviors to protect them from accidental rupture. In contrast, synthetic soft elastomers, usually featuring flexible networks, lack such behaviors, leading to a notorious issue when applying them to a promising artificial muscle technology (dielectric elastomer, DE), that is electromechanical instability (EMI) induced premature breakdown. We report that a facile thermomechanical training method can adaptively reconstruct the network of a soft triblock copolymer elastomer to transform its flexible network strands into semiflexible ones without extra chemical modifications and additives so that the electro-actuation performance is significantly enhanced by avoiding EMI. The free-standing actuators of trained elastomers exhibit a large stable electro-actuation strain and a high theoretical energy density (133%, 307 kJ m-3 at 158.1 V μm-1), and the capacity of actuating at low-temperature environments (-15 °C).
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