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OXIDATION BEHAVIOUR OF MATRIX-MODIFIED CARBON-CARBON COMPOSITES AT HIGH TEMPERATURE

机译:基质改性的碳-碳复合材料在高温下的氧化行为

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The approach of matrix modification has been used to increase the high-temperature oxidation resistance of carbon-carbon composites. A distinct effect has been obtained, and the oxidation law of matrix-modified composites at high temperature has been investigated. Initially, the change in weight loss with oxidation time for matrix-modified carbon-carbon composites at constant temperature was studied. The results show that the oxidation process can be divided into three stages: a linear stage (1) with the weight loss increasing from 0 to 60%, an exponential stage (2) with weight losses between 60% and 80%, and a linear stage (3) with weight losses from 80% to 100%. Also, the variation of weight loss with oxidation temperature for matrix-modified carbon-carbon composites at constant oxidation time was measured. The results showed that this variation could be divided into three stages: a constant weight stage from ambient temperature to the temperature of initial weight loss, an exponential stage from the commencement of initial weight loss to a residual weight of about 70%, and a linear stage as the residual weight falls from 70% to 0. A mathematical theory for the three stages has been derived and tested. This treatment may prove useful for improving the high-temperature oxidation resistance of carbon-carbon composites and their properties in service. [References: 10]
机译:基质改性的方法已被用于增加碳-碳复合材料的高温抗氧化性。获得了明显的效果,并且研究了基体改性的复合材料在高温下的氧化规律。最初,研究了在恒定温度下基质改性的碳-碳复合材料的重量损失随氧化时间的变化。结果表明,氧化过程可分为三个阶段:线性阶段(1)的重量损失从0%增加到60%;指数阶段(2)的重量损失在60%至80%之间;线性阶段(2) (3)阶段,体重减轻80%至100%。同样,在恒定的氧化时间下,测量了基质改性的碳-碳复合材料的重量损失随氧化温度的变化。结果表明,这种变化可分为三个阶段:从环境温度到初始失重温度的恒重阶段,从开始失重至剩余重量约70%的指数阶段,以及线性变化。当剩余重量从70%下降到0时,就得出了这一阶段。已经得出并测试了这三个阶段的数学理论。该处理可被证明对于改善碳-碳复合材料的高温抗氧化性及其使用性能是有用的。 [参考:10]

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