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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Carbon/carbon-boron nitride composites with improved wear resistance compared to carbon/carbon
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Carbon/carbon-boron nitride composites with improved wear resistance compared to carbon/carbon

机译:碳/碳氮化硼复合材料与碳/碳相比具有更高的耐磨性

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摘要

This paper describes the fabrication of a carbon fiber reinforced/carbon-boron nitride (C/C-BN) hybrid matrix composite for possible use in aircraft brakes. These composites were fabricated via liquid infiltration of a liquid crystalline borazine oligomer into a low-density carbon fiber/carbon matrix (C/C) composite. The friction and wear properties of the C/C-BN were explored over the entire energy spectrum for aircraft braking using an inertial brake dynamometer. The C/C-BN composites with densities of 1.55 g/cc displayed wear rates 50 percent lower than values observed with C/C samples with densities of approximately 1.75-1.8 g/cc. This includes the near elimination of wear from 300 to 600 kJ/kg, which represents the normal landing regime for aircraft brakes. This encouraging behavior is attributed in part to the improved oxidation resistance of the BN at high energy levels and the ability of the BN to facilitate formation of a stable wear film at lower energy levels. The coefficient of friction, while being slightly lower than the values for C/C, appeared much less sensitive to changes in energy level.
机译:本文介绍了碳纤维增强/碳氮化硼(C / C-BN)混合基复合材料的制造,该复合材料可能用于飞机制动器。这些复合材料是通过将液晶硼嗪低聚物渗入低密度碳纤维/碳基质(C / C)复合材料中制成的。使用惯性制动测功机,在飞机制动的整个能谱中探索了C / C-BN的摩擦和磨损性能。密度为1.55 g / cc的C / C-BN复合材料的磨损率比密度约为1.75-1.8 g / cc的C / C样品所观察到的值低50%。这包括几乎消除了300至600 kJ / kg的磨损,这代表了飞机制动器的正常着陆状态。这种令人鼓舞的行为部分归因于BN在高能级下的抗氧化性提高,以及BN有助于在较低能级下形成稳定的耐磨膜的能力。摩擦系数虽然略低于C / C值,但对能量水平的变化似乎不那么敏感。

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