1 results match your criteria: "People's Republic of China. Beijing Aeronautical Science and Technology Research Institute[Affiliation]"
Nanotechnology
July 2014
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing 100084, People's Republic of China. Beijing Aeronautical Science and Technology Research Institute, Commercial Aircraft Corporation of China, Beijing 102211, People's Republic of China.
Due to the diversity of carbon nanotubes (CNTs), polymers, and the preparation processes of the composites, CNT-filled polymeric composites present various piezoresistive properties. One puzzling issue is the concurrence of a negative piezoresistive effect and a positive piezoresistive effect in composites with different polymer matrixes. In this paper, we present a microscopic view of the nature of the positive piezoresistive effect and its dependence on the polymer matrix types based on the model in our previous study, in which the piezoresistive behavior was tailored by a parameter-the average junction gap variation (AJGV)-describing the statistical property of the CNT conductive network.
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