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首页> 外文期刊>Journal of Composite Materials >Role of thermal conductivity in controlling the tribo-performance of non-asbestos organic brake-pads
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Role of thermal conductivity in controlling the tribo-performance of non-asbestos organic brake-pads

机译:导热性在控制非石棉有机制动垫的摩擦性能方面的作用

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摘要

The range of thermal conductivity of friction materials is a critical issue since lower thermal conductivity leads to accumulation of frictional heat on the working surface, which results in excessive fade, while higher thermal conductivity leads to excessive heat flow towards back-plate resulting to "spongy brakes". Therefore, thermal conductivity of the friction materials across the brake-pads should not be high while along the length of brake-pad; it should be high. To enhance the thermal conductivity, metals in the form of powder or fibres are used in the friction materials. Apart from improvement in thermal conductivity, strength and structural integrity, metals get actively involved in controlling the tribo-performance. Their role as improver of thermal conductivity and hence indirectly tribo-performance can never be known clearly. Keeping this in view, it was proposed to design a bulk of pad rather than the surface. Three types of pads with identical composition but differing in the bulk/body were designed by placing a thin fabric layer of Cu (2 mm away from surface) in one pad and two layers in other pad. The third pad did not contain any fabric. The developed pads were characterized for physical, chemical, thermal, and mechanical properties. Tribo-performance was evaluated on full-scale inertia dynamometer by following the JASO C 406 testing standard. It was concluded that Cu fabric inclusion led to improvement in thermal conductivity and heat exaction capacity, which in turn, improved the tribo-performance of pads significantly.
机译:摩擦材料的导热系数是关键问题,因为较低的导热率导致工作表面上的摩擦热量积聚,这导致过度褪色,而较高的导热性导致过度热流朝向后板的热流量过多导致“海绵状”刹车“。因此,沿着制动垫的长度,制动垫穿过制动垫的摩擦材料的导热率;它应该很高。为了增强导热率,粉末或纤维形式的金属用于摩擦材料。除了导热系数,强度和结构完整性的改善之外,金属积极参与控制摩擦性能。它们作为导热率的改进的角色,因此间接摩擦性能永远不会清楚地知道。保持这种情况下,建议设计大部分垫而不是表面。通过将薄织物层(2mm远离表面距离表面)放入一个垫和其他垫中的两层,设计了三种具有相同组成但不同的组合物而具有相同的组合物但不同的焊盘。第三个垫不包含任何织物。开发垫的特征在于物理,化学,热和机械性能。通过遵循JASO C 406测试标准,在满量程惯性测功机上评估摩擦性能。结论是Cu织物包涵体导致导热率和散热能力的提高,从而显着改善了垫片的摩擦性能。

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