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Tribological Aspects of Wear of Polished Steel Surfaces in dry Friction Contact on Polymer Composites with Glass Fibres

机译:玻璃纤维聚合物复合材料干摩擦接触中抛光钢表面磨损的摩擦学方面

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It is generally known that the friction and wear between polymers and polished steel surfaces has a special character, the behaviour to friction and wear of a certain polymer might not be valid for a different polymer, moreover in dry friction conditions. In this paper, the reaction to wear of certain polymers with short glass fibres (polyamide + 20% glass fibres, polyamide + 30% glass fibres and polycarbonate with 20% glass fibres) on different steel surfaces was studied, considering the linear friction contact, observing the friction influence over the metallic surfaces wear. The paper includes also its analysis over the steel’s wear from different points of view: the reinforcement content influence and tribological parameters (load, contact pressure, sliding speed, contact temperature, etc.). Thus, authors' findings related to the fact that the abrasive component of the friction force is more significant than the adhesive component are presented, which generally is specific to the polymers’ friction. Authors’ detections also state that, in the case of the polyamide with 30% glass fibres, the steel surface linear wear rate order are of 10-4 mm/h, respectively the order of volumetric wear rate is of 10-6 cm3 /h. The resulting volumetric wear coefficients are of the order (10-11 – 10-12) cm3/cm and respectively linear wear coefficients of 10-9 mm/cm.
机译:众所周知,聚合物与抛光钢表面之间的摩擦和磨损具有特殊的特性,此外,在干摩擦条件下,某些聚合物的摩擦和磨损行为可能不适用于另一种聚合物。在本文中,考虑了线性摩擦接触,研究了某些聚合物与短玻璃纤维(聚酰胺+ 20%玻璃纤维,聚酰胺+ 30%玻璃纤维和聚碳酸酯与20%玻璃纤维)在不同钢表面上的磨损反应,观察摩擦对金属表面磨损的影响。本文还从不同的角度对钢材的磨损进行了分析:钢筋含量的影响和摩擦学参数(载荷,接触压力,滑动速度,接触温度等)。因此,作者的发现与以下事实有关:摩擦力的磨料成分比粘合剂成分更重要,这通常是聚合物的摩擦所特有的。作者的检测结果还表明,在玻璃纤维含量为30%的聚酰胺的情况下,钢表面的线性磨损率顺序为10 -4 mm / h,而体积磨损率的顺序为10 -6 cm 3 / h。产生的体积磨损系数约为(10 -11 – 10 -12 )cm 3 / cm,线性磨损系数分别为10 -9 毫米/厘米。

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