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Friction and surface fracture of a silicon carbide ceramic brake disc tested against a steel pad

机译:碳化硅陶瓷制动盘的摩擦和表面骨折测试钢垫

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摘要

Friction coefficients of a SiC ceramic disc were measured on a laboratory-scale dynamometer by testing against a mild steel pad under different initial braking speeds, and its friction surface was investigated with microscopy techniques. At bedding, averaged friction coefficient for a braking stop varied significantly with the initial braking speed; after bedding, it converged to similar to 0.6, regardless of braking speed. Surface fracture on the SiC disc was responsible for the transformation from a flat surface into a rough one, making ploughing a dominant friction mechanism at bedded stage. It was found that fracture surface and non-contact regions directly contributed friction coefficient variation at bedding stage. Friction layer composed of iron oxides and plastic deformation with partial dislocations activated appeared on SiC surface, but were unsustainable owing to surface fracture. A quantitative analysis is provided to understand friction coefficient variation and SiC surface fracture during braking. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过在不同的初始制动速度下测试在实验室测量测力计上测量SiC陶瓷盘的摩擦系数,并用显微镜技术研究其摩擦表面。在床上用品时,制动速度的平均摩擦系数随着初始制动速度而显着变化;床上用品后,无论制动速度如何,它都会融合到0.6。 SiC盘上的表面骨折负责从平坦表面转变成粗糙的,使得在卧室阶段犁犁摩擦机制。发现断裂表面和非接触区域直接导致垫层阶段的摩擦系数变化。由氧化铁和具有部分脱位的塑性变形组成的摩擦层出现在SiC表面上出现,但由于表面骨折而使是不可持续的。提供了定量分析以了解制动期间的摩擦系数变化和SiC表面裂缝。 (c)2015 Elsevier Ltd.保留所有权利。

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