材料科学
复合材料
聚丙烯
摩擦学
复合数
软化
胶粘剂
基质(化学分析)
聚合物
软化点
竹子
大气温度范围
摩擦系数
热稳定性
粘着磨损
降级(电信)
合成纤维
摩擦系数
作者
Geng Hou,Yaole Cui,Wencong Huang,Zhidan Zhong
摘要
ABSTRACT This study investigates the ball‐on‐disk tribological behavior of short bamboo fiber‐reinforced polypropylene matrix composite under temperatures ranging from room temperature to the high temperature of 175°C, with a particular focus on elucidating their high‐temperature failure mechanisms. The results show that within the temperature range from room temperature to 175°C, the wear rate increased monotonically from 0.70 × 10 −3 to 6.13 × 10 −3 mm 3 /(N·m) with rising temperature, while the frictional coefficient exhibited an initial decrease followed by an increase, with values of 0.21 → 0.17 → 0.22. A comprehensive analysis of the mechanical and chemical characteristics of both the composite and its constituent materials reveals that high temperatures significantly soften the polypropylene matrix and the whole composite. Additionally, slight thermo‐oxidative degradation of the polypropylene matrix occurs, while the bamboo fibers retain the mechanical and chemical stability even at high temperatures. Consequently, matrix softening is identified as the primary factor contributing to increased wear and the deterioration of wear resistance at high temperatures. Moreover, this study uncovers the temperature‐dependent evolution of the frictional coefficient governed by the competing mechanisms of matrix softening and adhesive wear. These findings provide theoretical guidance for the application of natural fiber‐reinforced composites in high‐temperature environments such as braking systems.
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