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Nonlinear Magneto-Electro-Mechanical Response of Physical Cross-Linked Magneto-Electric Polymer Gel
X. W. Fan; Y. Wang; B. C. Wang; L. J. Shen; J. Li; Z. B. Xu; S. Wang and X. L. Gong
2021
发表期刊Frontiers in Materials
ISSN2296-8016
卷号8页码:10
摘要This work reports on a novel magnetorheological polymer gel with carbon nanotubes and carbonyl iron particles mixed into the physical cross-linked polymer gel matrix. The resulting composites show unusual nonlinear magneto-electro-mechanical responses. Because of the low matrix viscosity, effective conductive paths formed by the CNTs were mobile and high-performance sensing characteristics were observed. In particular, due to the transient and mutable physical cross-linked bonds in the polymer gel, the electromechanical behavior acted in a rate-dependent manner. External stimulus at a high rate significantly enhanced the electrical resistance response during mechanical deformation. Meanwhile, the rheological properties were regulated by the external magnetic field when magnetic particles were added. This dual enhancement mechanism further contributes to the active control of electromechanical performance. These polymer composites could be adopted as electromechanical sensitive sensors to measure impact and vibration under different frequencies. There is great potential for this magnetorheological polymer gel in the application of intelligent vibration controls.
DOI10.3389/fmats.2021.665814
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/65457
专题中国科学院长春光学精密机械与物理研究所
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X. W. Fan,Y. Wang,B. C. Wang,et al. Nonlinear Magneto-Electro-Mechanical Response of Physical Cross-Linked Magneto-Electric Polymer Gel[J]. Frontiers in Materials,2021,8:10.
APA X. W. Fan.,Y. Wang.,B. C. Wang.,L. J. Shen.,J. Li.,...&S. Wang and X. L. Gong.(2021).Nonlinear Magneto-Electro-Mechanical Response of Physical Cross-Linked Magneto-Electric Polymer Gel.Frontiers in Materials,8,10.
MLA X. W. Fan,et al."Nonlinear Magneto-Electro-Mechanical Response of Physical Cross-Linked Magneto-Electric Polymer Gel".Frontiers in Materials 8(2021):10.
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