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BEDDING PERFORMANCE OF CARBON-SILICON CARBIDE COMPOSITE BRAKE DISCS WITH DIFFERENT MICROSTRUCTURE TESTED AGAINST ORGANIC PADS

机译:碳化碳化硅复合制动盘的床上用品,用不同的微观结构对有机垫进行测试

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Friction performance can vary noticeably at the bedding stage for a brake consisting of different carbon-silicon carbide composite discs and organic pads. Such character can become troublesome for brake engineers, either due to inconsistency in quality of components, or the change of supplier. In this paper, we are focusing on the composite disc with an aim to investigate how the variation of silicon carbide dictates the friction performance. The investigation was performed on a laboratory-scale dynamometer by pairing the ceramic discs against same organic pad. It was demonstrated that the number of braking stops required to achieve stable friction is less dependent on the silicon carbide content than the level of friction coefficient after being bedded. To get an insight of the friction performance of a composite brake, we experimentally measured the bedding performance of monolithic silicon carbide ceramics under different surface conditions to reveal any roles that silicon carbide could play.
机译:摩擦性能可以在床上用品上显着变化,用于由不同的碳 - 碳化硅复合盘和有机垫组成的制动器。由于部件质量不一致或供应商的变化,这些角色可以成为制动工程师的麻烦。在本文中,我们将专注于复合光盘,目的是研究碳化硅的变化决定了摩擦性能。通过将陶瓷盘与相同的有机垫与陶瓷盘配合来对实验室测力计进行调查。结果证明,实现稳定摩擦所需的制动止动件的数量较小地依赖于碳化硅含量而不是卧床型摩擦系数。为了了解复合制动器的摩擦性能,我们通过在不同的表面条件下通过实验测量整体碳化硅陶瓷的床上用品,以揭示碳化硅可以发挥的任何角色。

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