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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Friction and wear mechanism of short-cut aramid fiber and silica reinforced elastomers
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Friction and wear mechanism of short-cut aramid fiber and silica reinforced elastomers

机译:短切芳族纤维和二氧化硅增强弹性体的摩擦磨损机理

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Important phenomena during sliding contact of elastomeric materials are friction and wear. Wear reduction of elastomers can be achieved by minimizing the propagation of cracks in the elastomer during sliding contact. Adding fillers like silica and fibers is a way to reduce the propagation of cracks and as a result reduction of wear. In the present study, the wear processes of short-cut aramid fiber reinforced elastomers as a function of sliding distance and their relation to friction are investigated. Two different types of systems are considered, i.e. (1) elastomers reinforced by solely short-cut aramid fibers and (2) elastomers reinforced by short-cut aramid fibers and silica. A pin-on-disc tribometer and a microscope are used to analyze the friction and wear mechanisms of the elastomeric composites in sliding contact with a granite counter surface. The results show that the coefficient of friction of the composites consists of different stages, these stages are influenced by the wear processes during sliding. For elastomers which are reinforced by short-cut aramid fibers and silica, a higher energy input is needed to achieve all stages since the presence of silica in the elastomer matrix increases the resistance of matrix particle detachment. A general friction behavior of short-cut aramid fiber and silica reinforced elastomers is proposed.
机译:弹性材料滑动接触期间的重要现象是摩擦和磨损。通过最小化在滑动触头期间弹性体中的裂缝的传播,可以实现弹性体的磨损。添加填料,如二氧化硅和纤维,是减少裂缝传播的一种方法,并导致磨损的降低。在本研究中,研究了短切芳族纤维增强弹性体作为滑动距离的函数的磨损过程及其与摩擦关系。考虑两种不同类型的系统,即(1)通过短切的芳族纤维和(2)由短切的芳族纤维和二氧化硅增强的弹性体增强的弹性体。索盘摩擦计和显微镜用于分析弹性体复合材料的摩擦和磨损机构与花岗岩配合物的滑动接触。结果表明,复合材料的摩擦系数由不同的阶段组成,这些阶段受到滑动期间的磨损过程的影响。对于通过短切芳族聚酰胺纤维和二氧化硅加固的弹性体,需要更高的能量输入来实现所有阶段,因为弹性体基质中的二氧化硅存在增加了基质颗粒脱离的电阻。提出了缩进芳族纤维和二氧化硅增强弹性体的一般摩擦行为。

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