首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Mechanical and tribological properties of phenolic resin-based friction composites filled with several inorganic fillers
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Mechanical and tribological properties of phenolic resin-based friction composites filled with several inorganic fillers

机译:填充有几种无机填料的酚醛树脂基摩擦复合材料的机械和摩擦学性能

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摘要

The calcined petroleum coke (CPC), talcum powder (TP) and hexagonal boron nitride (h-BN) were used as the friction modifiers to improve the mechanical and tribological properties of phenolic resin-based friction composites (the resin matrix was coded s PHE). Thus the composites filled with the inorganic particulates of laminar structures were prepared by compression molding. The hardness and bending strength of the friction composites were measured. The tribological properties of the composites sliding against cast iron were evaluated using a pin-on-disc test rig. The morphologies of the worn surfaces of the composites and the transfer films on the counterpart cast iron disc were analyzed by means of scanning electron microscopy, and the elemental plane distributions on the transfer films were analyzed using energy-dispersive X-ray analysis (EDXA). It was found that the friction composites of different compositions showed different friction and wear behaviors, which was highly dependent on the volume fractions of the friction modifiers in the composites. Namely, the inclusion of CPC, h-BN, and TP at a volume fraction of 10% helped to greatly increase the bending strength and wear resistance of the composites, and in these cases the coefficients of friction for the composites were ranged within 0.43-0.47. In particular, the PHE-based composite with 10% h-BN had excellent friction stability at various testing conditions and showed the best wear resistance above 125℃, which was attributed to the formation of a compact friction film (third-body-layer) on the rubbing surface of the composite and of a durable transfer film on the rubbing surface of the counterpart cast iron. The PHE-based composite with 10% CPC showed the best wear resistance below 125℃, which was ascribed to the same reasons mentioned above. The different actions of various friction modifiers in terms of their effects on the friction and wear behavior of the phenolic resin-based friction composites could be related to their different bonding strengths with the resin matrix and their different abilities to form friction films (third-body-layer) on the surfaces of the composites and transfer films on the counterpart cast iron surface as well.
机译:煅烧石油焦(CPC),滑石粉(TP)和六方氮化硼(h-BN)用作摩擦改进剂,以改善酚醛树脂基摩擦复合材料的机械和摩擦学性能(树脂基体的编码为PHE )。因此,通过压缩成型制备了填充有层状结构的无机颗粒的复合材料。测量了摩擦复合材料的硬度和弯曲强度。使用销钉圆盘试验台评估了在铸铁上滑动的复合材料的摩擦学性能。通过扫描电子显微镜分析复合材料和对应铸铁圆盘上的转移膜的磨损表面的形态,并使用能量色散X射线分析(EDXA)分析转移膜上的元素平面分布。发现不同组成的摩擦复合材料表现出不同的摩擦和磨损行为,这高度依赖于复合材料中摩擦改性剂的体积分数。即,以10%的体积分数包含CPC,h-BN和TP有助于大大提高复合材料的弯曲强度和耐磨性,在这些情况下,复合材料的摩擦系数在0.43范围内。 0.47。尤其是,含10%h-BN的PHE基复合材料在各种测试条件下均具有出色的摩擦稳定性,并且在125℃以上具有最佳的耐磨性,这归因于形成了致密的摩擦膜(第三体层)在复合材料的摩擦表面上具有耐久力,而在对应铸铁的摩擦表面上具有耐久的转印膜。 CPC含量为10%的PHE基复合材料在125℃以下表现出最佳的耐磨性,这是由于上述相同的原因。就其对酚醛树脂基摩擦复合材料的摩擦和磨损行为的影响而言,各种摩擦改进剂的不同作用可能与它们与树脂基体的不同结合强度以及不同的形成摩擦膜的能力有关(第三体-层)和复合铸铁表面上的转移膜。

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