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Performance assessment of hybrid composite friction materials based on flyash-rock fibre combination

机译:基于粉煤灰-岩石纤维组合的混合复合摩擦材料的性能评估

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摘要

Friction composites based on several combinations of flyash and inorganic mineral rock fibres such as lapinus™ fibre were fabricated, characterised and tribo-evaluated. The tribo-performance in terms of their friction-fade and friction-recovery behaviour has been rigorously evaluated while synchronously taking into account of the in situ braking induced temperature rise in the disc at the braking interface on a Krauss friction testing machine following pulse velocity wave (PVW) 3212 norms as per the Economic Commission for Europe (ECE) regulations. The fade behaviour has been observed to be highly dependent on the combination of flyash-lapinus fibre e.g. fade remained maximum (45%) in the composite with the highest amount of lapinus fibre content and lowest amount of flyash whereas the frictional fluctuations in terms of μ_(max) -μ_(min) has been observed to be higher in case of low flyash-high lapinus fibre combination. The recovery response seemed unaffected by the disparity of ingredients and remained consistently stable within the range of 112 ±2%. The analysis of friction and wear performance has revealed that flyash along with lapinus fibre provide thermo-mechanical stability and overall mechanical integrity to the system causing reduction in friction-fade whereas wear was found to be more recovery-controlled and less fade controlled. Worn surface morphology investigation using SEM has been carried out which has revealed that the interplay of flyash-lapinus combination and topographical attributes vis-a-vis dynamics of contact patches (formation-destruction) largely influence the friction and wear performance of such composites.
机译:基于飞灰和无机矿物岩石纤维(例如lapinus™纤维)的几种组合,制造了摩擦复合材料,进行了表征和摩擦评估。在摩擦衰减和摩擦恢复性能方面,对摩擦性能进行了严格的评估,同时同步考虑了在克劳斯摩擦试验机上的制动界面处,随着脉冲速度波的作用,制动盘上原位制动引起的温升。 (PVW)3212规范,符合欧洲经济委员会(ECE)法规。已经观察到褪色行为高度依赖于粉煤灰-松香纤维的组合,例如。羽绒纤维含量最高,粉煤灰含量最低的复合材料中,褪色保持最大(45%),而在粉煤灰较低的情况下,观察到以μ_(max)-μ_(min)表示的摩擦波动较大-高羊驼毛纤维组合。恢复响应似乎不受成分差异的影响,并且在112±2%的范围内始终保持稳定。对摩擦和磨损性能的分析表明,粉煤灰与羽扇豆纤维一起为系统提供了热机械稳定性和整体机械完整性,从而减少了摩擦褪色,而磨损则受到更多的恢复控制和更少的褪色控制。已经使用SEM进行了磨损的表面形态学研究,其揭示了粉煤灰-松石结合物和形貌属性相对于接触斑块的动力学(形成-破坏)的相互作用在很大程度上影响了这种复合材料的摩擦和磨损性能。

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