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Effect of the Microstructures on Vulcanized Rubber Frictions.
Nosaka, Masanaru; Tsujioka, Kazuma; Matsuo, Yasutaka; Okamatsu, Takahiro; Arita, Toshihiko; Shimomura, Masatsugu; Hirai, Yuji.
Afiliação
  • Nosaka M; Graduate school of Photonics Science, Chitose Institute of Science and Technology (CIST), 758-65, Bibi, Chitose 066-8655, Japan.
  • Tsujioka K; Graduate school of Photonics Science, Chitose Institute of Science and Technology (CIST), 758-65, Bibi, Chitose 066-8655, Japan.
  • Matsuo Y; Nanotechnology Research Center, Research Institute for Electronic Science (RIES), Hokkaido University, N21W10, Kita-ku, Sapporo, 011-0021, Japan.
  • Okamatsu T; the Yokohama Rubber Co., Ltd, 2-1, Oiwake, Hiratsuka 254-8601, Japan.
  • Arita T; Institute of Multidisciplinary Research for Advanced Materials (IMRAM), Tohoku University, 2-1-1, Katahira, Sendai 980-8577, Japan.
  • Shimomura M; Graduate school of Photonics Science, Chitose Institute of Science and Technology (CIST), 758-65, Bibi, Chitose 066-8655, Japan.
  • Hirai Y; Department of Applied Chemistry and Bioscience, Chitose Institute of Science and Technology (CIST), Bibi 758-65, Chitose 066-8655, Japan.
Langmuir ; 37(21): 6459-6467, 2021 Jun 01.
Article em En | MEDLINE | ID: mdl-34003659
ABSTRACT
Vulcanized rubber is widely used in a wide range of applications because of its flexibility, durability, sealing properties, and high degree of friction. However, this high degree of friction can also become an issue, as it leads to the wearing and breakage of parts. In this report, we investigated the effects of the vulcanized rubber microstructures on friction force by using simple, anisotropic microstructures. The line and space master microstructures were prepared from a photoresist, and the structures were transferred to PDMS, PSt, and then Ni. After surface modification of the Ni microstructures by TEOS, the vulcanized rubber microstructures were fabricated by a simple hot press process with the TEOS-coated Ni microstructure molds. The structural parameters of the vulcanized rubber line and space microstructures were found to be successfully varied by elongation, and the structural deformations were also investigated by FEM simulations. Measurements of the frictional force of the vulcanized rubber microstructures revealed the friction coefficient was reduced by the surface microstructures and was affected by the directions of the contact because of the microstructure anisotropy. The reason for of these results can be explained by the changes in the contact area and hysteresis friction. These results suggest that the friction coefficients of vulcanized rubbers can be reduced by the simple surface microstructures that are applicable to a wide range of fields.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article