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Polymer-based graphene composite molding: a review

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RSC ADVANCES
卷 13, 期 4, 页码 2538-2551

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d2ra07744b

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Polymer-based graphene composite products with high mechanical properties, heat resistance, corrosion resistance, and electrical conductivity can be obtained through different molding technologies. However, controlling the product quality is often difficult due to temperature and pressure fluctuations. High temperature or external load can cause carbonization or excessive porosity in polymer composites, impacting density and conductivity.
Polymer-based graphene composite products with high mechanical properties, heat resistance, corrosion resistance and electrical conductivity are obtained by different molding technologies. Although these processes conveniently realize the molding of polymer composites, it is often difficult to control the product quality because of the fluctuation of the temperature and pressure threshold. At the same time, a high temperature or external load will carbonize polymer composites or cause excessive porosity to influence the compacted density and electrical conductivity. In this review, additive manufacturing, injection molding, extrusion molding, hot pressing, spark plasma sintering, electromagnetic-assisted molding and other processing methods were introduced. Meanwhile, the powder molding mechanism and material constitutive model were introduced, providing appropriate molding methods and theoretical guidance based on the performance of raw materials and the performance requirements of products.

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