Evaluation of tribological properties of silane‐treated rapeseed straw fiber reinforced friction polymer composites prepared by wet granulation

Author:

Zhang Qifeng12345,Qi Zicheng134ORCID,Ma Yunhai25ORCID,Yao Yumei134,Li Lekai25,Cong Xu25,Zhang Cuiying1

Affiliation:

1. Shandong Academy of Agricultural Machinery Science Shandong Academy of Agricultural Sciences Jinan China

2. Key Laboratory of Bionic Engineering (Ministry of Education, PR China) Jilin University Changchun China

3. Shouguang Industrial Technology Research Institute of Agricultural and Animal Husbandry Waste Resource Utilization Shandong Academy of Agricultural Sciences Weifang China

4. Feixian Industrial Technology Research Institute of Agricultural and Animal Husbandry Cycle Technology and Equipment Shandong Academy of Agricultural Sciences Feixian China

5. Weihai Institute for Bionics Jilin University Weihai China

Abstract

AbstractReinforcing fibers play a key role in improving the tribological properties of friction polymer composites. Cellulose reinforcing fibers were extracted from rapeseed straw waste and prepared as friction composites based on wet granulation, and the effects of heat and rapeseed straw fiber (RSF) additions on the tribological properties were systematically investigated. The addition of RSF induced an important transformation of the major wear mechanism to abrasive wear, especially at 9 wt%, where the abundant tribo‐films contributed to the stability of the friction coefficients (fade rate 6.8%, recovery rate 106.6%), resulting in a 37.5% increase in wear resistance compared to no addition. Furthermore, XRD, FTIR and SEM analyses showed that the silane‐ethanol solution modification contributed to the good performance of RSF.Highlights Rapeseed straw fiber (RSF) and granulation technology for polymer composites. Addition of RSF transforms adhesive and fatigue wear into abrasive wear. Friction models are developed to clarify the wear mechanism transformation. A 37.5% increase in wear resistance was achieved when RSF was added at 9 wt%.

Funder

National Key Research and Development Program of China

Shandong Academy of Agricultural Sciences

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,General Chemistry,Ceramics and Composites

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