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首页> 外文期刊>eXPRESS Polymer Letters >Artificial muscles based on coiled UHMWPE fibers with shape memory effect
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Artificial muscles based on coiled UHMWPE fibers with shape memory effect

机译:具有形状记忆效应的基于卷曲UHMWPE纤维的人造肌肉

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Ultra-high molecular weight polyethylene (UHMWPE) fibers drawn at drawing ratio of 6 (pre-deformation strain500%) demonstrating the obtained one-way shape memory effect. Artificial muscles have been manufactured in the form ofcoiled UHMWPE fibers. Isometric recovery stress and recovery strain of the fibers were measured during heating by usinga dynamic mechanical analyzer (DMA). As a result, the fibers were capable to demonstrate large contraction of 78% (recoverystrain of 93%) due to the entropic elasticity. The recovery stresses of the fibers reach up to 27 MPa. The work ofstroke cycle for coiled artificial muscles with a constant stress of 1 MPa was recorded. Artificial muscles based on coiledUHMWPE fibers have a large stroke of 64 %. The structural mechanisms of muscle-like behavior were discussed.
机译:以6的拉伸比(变形前应变为500%)拉伸的超高分子量聚乙烯(UHMWPE)纤维证明了获得的单向形状记忆效果。人造肌肉已制成超高分子量聚乙烯纤维的形式。使用动态机械分析仪(DMA)在加热期间测量纤维的等距回复应力和回复应变。结果,由于熵弹性,纤维能够表现出78%的大收缩(93%的回复应变)。纤维的回复应力达到27 MPa。记录了恒定应力为1 MPa的盘绕人造肌肉的冲程循环功。基于卷曲的UHMWPE纤维的人造肌肉具有64%的大行程。讨论了类肌肉行为的结构机制。

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