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Shape memory polyurethane-based electrospun yarns for thermo-responsive actuation

机译:用于热响应致动的形状内存聚氨酯电纺纱纱线

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Electrospun nanofibrous yarns of shape memory polyurethane (SMPU)-based nanofibers were successfully prepared. The electrospun yarns were analyzed to assess the dependence of mechanical and shape memory properties on the yarn twist angle. The yarn with a 60 degrees twist angle has high compactness and density, leading to increased tensile strength, elastic modulus, and strain energy. In addition, this yarn shows a significant improvement in the shape memory recovery stress compared with the non-twisted SMPU nanofibers. Moreover, thermal stimuli allowed for the 60 degrees twisted yarn to lift a load that is 103 times heavier than itself. This yarn had a shape recovery stress of 0.61 MPa and generated a 7.95 mJ recovery energy. The results suggest the electrospun yarns could be used as actuators and sensing devices in the medical and biological fields.
机译:成功制备了形状记忆聚氨酯(SMPU)基纳米纤维的静电纺纳米纤维纱。对电纺纱线进行分析,以评估纱线捻度角对机械和形状记忆性能的影响。捻度为60度的纱线具有较高的紧密度和密度,从而提高了拉伸强度、弹性模量和应变能。此外,与未加捻的SMPU纳米纤维相比,这种纱线的形状记忆恢复应力显著提高。此外,热刺激允许60度加捻的纱线提升比自身重103倍的负载。这种纱线的形状恢复应力为0.61MPa,产生7.95MJ的恢复能量。研究结果表明,电纺纱线可用于医疗和生物领域的驱动器和传感装置。

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