摘要
1 概 述 众所周知,橡胶和塑料等聚合物是优良的电绝缘材料。为了获得尽可能高的电阻和绝缘强度。
同被引文献23
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1Bueche F. Molecular basis for the mullins effect[J]. Journal of Applied Polymer Science, 1960, 4(10): 107-114. 被引量:1
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2Lu Jinrong, Weng Wengui, Chen Xiangfeng, et al. Piezoresis- rive materials from directed shear-induced assembly of graphite nanosheets in polyethylene[J]. Advanced Functional Materials, 2005, 15(8): 1358-1363. 被引量:1
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3Wang Peng, Ding Tianhuai. Conductivity and piezoresistivity of conductive carbon black filled polymer composite[J]. Jour- nal of Applied Polymer Science, 2010, 116(4): 2035-2059. 被引量:1
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4Wang Peng, Ding Tianhuai. Creep of electrical resistance under uniaxial pressures for carbon black- silicone rubber com-posite[J]. Journal of Materials Science, 2010, 45(13): 3595- 3601. 被引量:1
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5Chen Ling, Chen Guohua, Lu Liang,Piezoresistive behavior study on finger-sensing silicone rubber/graphite nanosheet nanocom- posites[J]. Advanced Functional Materials, 2007, 17(6): 898- 904. 被引量:1
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7Wang Luheng, Ding Tianhuai, Wang Peng. Effects of instan- taneous compression pressure on electrical resistance of carbon black filled silicone rubber composite during compressive stress relaxation[J]. Composites Science and Technology, 2008, 68(16): 3448-3450. 被引量:1
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8Hwang J, Jang J, Hong K,et al. Poly(3-hexylthiophene) wrapped earbon nanotube/poly(dimethylsiloxane) composites for use in finger-sensing piezoresistive pressure sensors[J]. Carbon, 2011, 49(1): 106-110. 被引量:1
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10Wang Luheng, Ding Tianhuai, Wang Peng. Effects of com- pression cycles and precompression pressure on the repeata- bility of piezoresistivity for carbon black-filled silicone rubber composite[J]. Journal of Polymer Science Part B: Polymer Physics, 2008, 46 (11 ): 1050-1061. 被引量:1
二级引证文献2
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1王宁,徐卓言,胡超,代坤,刘春太.CB/PA 6/HDPE导电高分子复合材料的拉伸敏感特性[J].上海塑料,2015,43(2):34-37. 被引量:1
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2代坤,孔威威,展鹏飞,宗继友,翟威,刘春太.石墨烯/TPU/PDMS导电复合材料的拉伸敏感性能研究[J].郑州大学学报(工学版),2019,40(2):72-76. 被引量:4
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