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- W4224078324 abstract "Abstract Due to their advantages of low lost, low filling, high‐performance and multifunction, multi‐walled carbon nanotubes (MWCNTs) are ideal filler for preparing high‐performance and multifunctional rubber‐based nanocomposites. However, the poor dispersion of MWCNTs in rubber matrix and their weak interfacial adhesion with rubber matrix limit their industrial applications seriously. Herein, natural rubber (NR)/MWCNTs nanocomposites (NMNCs) with good static and dynamic mechanical properties, electrical and thermal conductivity have been successfully prepared via high‐speed shear dispersion of MWCNTs assisted by polyvinylpyrrolidone in water and its effective combination with rubber wet‐mixing technology, on the basis of the systematic optimization of the most common dispersants and exfoliation methods of carbon nanotubes (CNTs). Compared with NMNCs prepared by traditional dry‐mixing technology (D‐NMNCs), NMNCs prepared by wet‐mixing technology (W‐NMNCs) in this work exhibit better tensile properties, lower compression temperature rise and DIN abrasion, higher electrical and thermal conductivity, better ice and wet‐slip resistance (i.e., the higher loss tangents at −20 and 0°C, respectively), and lower rolling resistance (i.e., the lower loss tangent at 60°C), benefiting from the better dispersion of MWCNTs and the stronger interface interaction of NR‐MWCNTs in W‐NMNCs. In a word, the preparation route of W‐NMNCs developed in this work is very suitable for industrialization and conductive to breaking the insurmountable “Devil's Triangle” problem in tire industry, and W‐NMNCs have potential high‐technology applications in green, antistatic, and heat‐dissipation tires, antistatic conveyors, vibration absorption, and so forth." @default.
- W4224078324 created "2022-04-19" @default.
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- W4224078324 date "2022-04-14" @default.
- W4224078324 modified "2023-10-16" @default.
- W4224078324 title "High‐speed shear dispersion of <scp>MWCNTs</scp> assisted by <scp>PVP</scp> in water and its effective combination with wet‐mixing technology for <scp>NR</scp>/<scp>MWCNTs</scp> nanocomposites" @default.
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- W4224078324 doi "https://doi.org/10.1002/pc.26661" @default.
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