Experimental and Analytical Investigations on Tribological Properties of PTFE/AP Composites. 2021

Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
School of Mechanical Engineering, Yanshan University, Qinhuangdao 066004, China.

The tribological properties of polytetrafluoroethylene (PTFE)/AP (poly(para-phenyleneterephthalamide) (PPTA) pulp) composites under different test conditions (load: 2N, 10N; frequency: 1 Hz, 4 Hz; amplitude: 2 mm, 8 mm) were holistically evaluated. PTFE/AP composites with different AP mass ratios of 3%, 6%, and 12% as a skeleton support material were prepared. The coefficient of friction (COF) and wear rate were determined on a ball-on-disk tribometer. Furthermore, the morphology, element composition, and chemical structure of the transfer membrane were analyzed accordingly. The relationships between load, frequency, amplitude, and tribological properties were further investigated. According to the wear mechanism, AP enables effective improvement in the stiffness and wear resistance, which is also conducive to the formation of transfer films.

UI MeSH Term Description Entries

Related Publications

Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
January 2023, RSC advances,
Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
February 2021, Materials (Basel, Switzerland),
Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
March 2022, ACS omega,
Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
October 2022, Materials (Basel, Switzerland),
Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
May 2010, Journal of biomedical materials research. Part B, Applied biomaterials,
Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
July 2020, Polymers,
Hai Wang, and Annan Sun, and Xiaowen Qi, and Yu Dong, and Bingli Fan
April 2024, International journal of molecular sciences,
Copied contents to your clipboard!