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Effect of Braking Speeds on the Tribological Properties of Carbon/Carbon Composites

机译:制动速度对碳/碳复合材料摩擦学性能的影响

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This paper describes the tribological properties of carbon/carbon composites used as braking materials under various braking speeds, in which the materials with three kinds of microstructures were used: rough lamina (sampleA), smooth lamina (sample B), and the mixture of rough lamina and smooth lamina (sample C), respectively. Friction tests were carried out through a laboratory dynamometer. Polarized optical microscopy (OM) and scanning electron microscopy (SEM) were used to characterize the microstructure and worn surface. Results indicated that the friction coefficient of sample A reached a peak value at braking speed lower than that in both sample B and sample C. However, when the friction coefficients reached to the peak values the temperature inside the worn surface was observed to be approximately 250°C for all of the samples. The weight losses in all of the samples were observed to increase with increasing braking speed; however, the oxidation losses at speed of28m?s~(-1) are higher than that of 30 m?s~(-1) for all of the samples.
机译:本文描述了在各种制动速度下用作制动材料的碳/碳复合材料的摩擦学性能,其中使用了具有三种微观结构的材料:粗糙的薄片(样品A),光滑的薄片(样品B)以及粗糙的混合物。层板和平滑层板(样品C)。摩擦测试通过实验室测功机进行。偏光光学显微镜(OM)和扫描电子显微镜(SEM)用于表征显微组织和磨损表面。结果表明,样品A的摩擦系数在低于制动速度的情况下达到峰值,低于样品B和样品C。但是,当摩擦系数达到峰值时,观察到磨损表面内部的温度约为250所有样品的℃。观察到所有样品的失重都随着制动速度的增加而增加;但是,所有样品在28m?s〜(-1)速度下的氧化损失都高于30m?s〜(-1)。

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