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Design of High Performance CMC Brake Discs

机译:高性能CMC制动盘的设计

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Ceramic matrix composite (CMC) materials based on 2D-carbon fibre preforms show high heat-absorption capacities and good tribological as well as thermomechanical properties. To take advantage of the full lightweight potential of these new materials in high performance automotive brake discs, the thermal conductivity transverse to the friction surface has to be high in order to reduce the surface temperature. Experimental tests showed, that lower surface temperatures prevent overheating of the brake's periphery and stabilizes the friction behaviour. In this study different design approaches with improved transverse heat conductivity have been investigated by finite element analysis. C/C-SiC bolts as well as SiC coatings and combinations of them have been investigated and compared with an orthotropic brake disc, showing a reduction of temperature of up to 50 %. Original sized brake discs with C/C-SiC have been manufactured and tested under real conditions which verified the calculations. Using only low-cost CMC materials and avoiding any additional processing steps, the potential of C/C-SiC brake discs are very attractive under tribological as well as under economical aspects.
机译:基于二维碳纤维预成型件的陶瓷基复合材料(CMC)具有较高的吸热能力,并具有良好的摩擦学和热机械性能。为了在高性能汽车制动盘中充分利用这些新材料的轻量化潜力,横向于摩擦表面的热导率必须很高,以降低表面温度。实验测试表明,较低的表面温度可防止制动器外围过热并稳定摩擦性能。在这项研究中,通过有限元分析研究了具有改善的横向导热性的不同设计方法。对C / C-SiC螺栓以及SiC涂层及其组合进行了研究,并将其与正交各向异性制动盘进行了比较,结果表明温度降低了50%。原始尺寸的C / C-SiC制动盘已在实际条件下制造和测试,从而验证了计算结果。仅使用低成本的CMC材料并避免任何额外的处理步骤,C / C-SiC制动盘的潜力在摩擦学和经济方面都很有吸引力。

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