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Improved high-temperature mechanical property of carbon-phenolic composites by introducing titanium diboride particles

机译:通过引入二硼化钛颗粒改善碳酚复合材料的高温机械性能

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摘要

The effect of TiB2 on the thermal stability of phenolic and the role of TiB2 on the high-temperature mechanical property of carbon-phenolic composites are investigated by introducing TiB2 particles into phenolic, and then TiB2 particles into carbon-phenolic composites. The results show that the thermal stability of phenolic is enhanced by TiB2 additions. And the enhancement in thermal stability of phenolic exhibits a positive effect on improving the high-temperature mechanical property of carbon-phenolic composites. The flexural strength at 1000 degrees C of carbon phenolic composites is increased by 148.2% after introducing 20 wt% TiB2 particles into phenolic matrix. In the heating stage before high-temperature mechanical test, TiB2 particles react with oxygen or oxygen-containing molecules released by phenolic pyrolysis. Therefore, amorphous carbon coated with glassy B2O3 and ceramic particles forms a new compact matrix. The well-bonded interface provides TiB2 modified carbon phenolic improved mechanical performance at high temperature.
机译:通过将TiB2颗粒引入酚醛中,然后将TiB2颗粒引入碳酚复合物中,研究了TiB2对酚醛热稳定性的影响以及TiB2对碳酚复合物高温机械性能的作用。结果表明,通过添加TiB2可以提高酚醛树脂的热稳定性。酚醛树脂热稳定性的提高对改善碳酚醛复合材料的高温机械性能具有积极作用。将20 wt%的TiB2颗粒引入酚醛基质后,碳酚醛复合材料在1000摄氏度下的抗弯强度提高了148.2%。在高温机械测试之前的加热阶段,TiB2颗粒会与氧或酚热解所释放的含氧分子发生反应。因此,涂有玻璃态B2O3和陶瓷颗粒的无定形碳形成了一种新的致密基质。良好结合的界面在高温下为TiB2改性的碳酚醛树脂提供了改进的机械性能。

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