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Effects of Zinc Borate and Fly Ash on the Mechanical and Tribological Characteristics of Brake Friction Materials

机译:硼酸锌和粉煤灰对制动摩擦材料力学和摩擦学特性的影响

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Friction materials based on several combinations of zinc borate (ZB) and fly ash (FA) were fabricated and characterized for their mechanical and tribological performance. The triboperformance of the friction materials was evaluated on a Chase friction testing machine according to the brake lining quality test procedure as per SAE J661. The composites were manufactured based on a nonasbestos organic-based friction material for an automotive brake system and contained typical ingredients for commercial brake friction materials. The composites had a fixed composition of 15 wt% resin, 15 wt% fibers, and 5 wt% friction additives. ZB and FA as fillers were added to the the raw materials mixture at a total fraction of 65 wt%. The results showed that ZB and FA contents have a significant influence on the mechanical and tribological properties of the friction composites. In particular, the composites containing 0-5 wt% ZB and 65-60 wt% FA showed better friction stability and improved fade resistance compared to those containing 10-35 wt% ZB and 55-30 wt% FA, whereas the composite with 5 wt% ZB and 60 wt% FA showed a maximum friction coefficient. On the other hand, the specific wear rate of the composites decreased with increasing ZB and decreasing FA contents. The morphologies of the worn surfaces as well as wear debris were analyzed by means of scanning electron microscopy.
机译:制备了基于硼酸锌(ZB)和粉煤灰(FA)几种组合的摩擦材料,并对其机械和摩擦学性能进行了表征。摩擦材料的摩擦性能在大通摩擦测试机上根据SAE J661的制动衬片质量测试程序进行了评估。该复合材料是基于非石棉有机摩擦材料制造的,用于汽车制动系统,并包含商用制动摩擦材料的典型成分。该复合材料具有15wt%的树脂,15wt%的纤维和5wt%的摩擦添加剂的固定组成。将ZB和FA作为填料以65重量%的总分数添加到原料混合物中。结果表明,ZB和FA含量对摩擦复合材料的力学性能和摩擦学性能有重要影响。尤其是,与含有10-35 wt%ZB和55-30 wt%FA的复合材料相比,含有0-5 wt%ZB和65-60 wt%FA的复合材料显示出更好的摩擦稳定性和改善的耐褪色性重量%的ZB和60重量%的FA显示出最大的摩擦系数。另一方面,复合材料的比磨损率随ZB的增加和FA含量的减少而降低。通过扫描电子显微镜分析磨损表面的形态以及磨损碎屑。

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