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The structural aspects of determining the degree of reinforcement (increase in elasticity modulus) of carbon polymer–nanotube composites with ultralow concentrations of nanofiller are considered. It is shown that the specified parameter is controlled by two factors, the structure of the nanocomposite and the type of reinforcing component. The introduction of a nanofiller in the polymer matrix modifies...
Using the percolation reinforcement model, it has been shown that the main factor governing the degree of reinforcement of polymer/2D-nanofiller composites is the ability of a nanofiller to generate interfacial regions. This parameter is interrelated with two fundamental structural characteristics of a nanocomposite, i.e., the fractal dimension of its structure and the content of polymer matrix/nanofiller...
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