首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Relationships between the heterogeneous microstructure, the mechanical properties and the braking behaviour of an organic brake lining material
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Relationships between the heterogeneous microstructure, the mechanical properties and the braking behaviour of an organic brake lining material

机译:有机制动衬片材料的异质组织,力学性能和制动性能之间的关系

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摘要

Industrial brake lining materials are composite with complex formulations consisting of multiple constituents. Resulting from the fabrication process, the morphology and distribution of the constituents have significant influences on the future properties and braking performance. In this study, an in-depth analysis ranging from the microscale to the macroscale was performed to assess the relationships between the microstructure, the mechanical properties and the braking performance of an industrial brake lining material formulated for heavy vehicles. It was observed that the manufacturing process had different effects on the morphology and size of constituents and on their distribution in the phenolic binder. The morphologies of large organic particles such as rubber and graphite were affected by the mixing procedure, contrary to those of fibres and mineral particles. A transverse anisotropy consistent with fibre orientation due to cold preforming and hot moulding was observed. The micro-structure displayed a strong local heterogeneity right up to the mesoscopic scale at which friction and wear mechanisms typically occur. The mechanical properties were analysed with regard to the heterogeneity of the microstructure to determine the scale at which these properties could be considered to be associated with a homogenised behaviour. The rubbing surface after braking showed that load-bearing localisation depends on the nature, morphology and orientation of constituents but that this heterogeneity can be of interest with regard to the braking ability.
机译:工业制动衬片材料是复合材料,具有由多种成分组成的复杂配方。由于制造过程,成分的形态和分布对未来的性能和制动性能具有重大影响。在这项研究中,进行了从微观到宏观的深入分析,以评估配制用于重型车辆的工业制动衬片材料的微观结构,力学性能和制动性能之间的关系。观察到制造过程对组分的形态和尺寸以及它们在酚醛粘合剂中的分布具有不同的影响。混合过程会影响橡胶和石墨等有机大颗粒的形态,这与纤维和矿物颗粒的形态相反。由于冷预成型和热成型,观察到与纤维取向一致的横向各向异性。微观结构显示出很强的局部异质性,直到通常发生摩擦和磨损机制的介观尺度。针对微观结构的异质性分析了机械性能,以确定可以认为这些性能与均质化行为相关的尺度。制动后的摩擦表面表明,承重位置取决于组成部分的性质,形态和方向,但这种异质性对于制动能力可能是令人感兴趣的。

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