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首页> 外文期刊>Journal of Materials Science >Thermal shock behavior of two-dimensional C/SiC composites in controlled atmospheres
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Thermal shock behavior of two-dimensional C/SiC composites in controlled atmospheres

机译:二维C / SiC复合材料在受控气氛中的热冲击行为

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The thermal shock behavior of a two-dimensional carbon fiber reinforced SiC matrix composite fabricated by chemical vapor infiltration technique was investigated using a quenched method. Damage to composites was assessed by fracture strength, real-time damage energy and SEM characterization. The results showed that: (1) 2D-C/SiC composites had an excellent thermal shock resistance in different atmospheres which were simulated for an aero-engine gas. After 50 quenches from 700 to 1200 degrees C, the residual strength of the composite still retained 88.92% of the original strength in the wet oxygen atmosphere, and retained 98.90%, 96.46%, 95.82% in the argon, dry oxygen and water vapor atmosphere, respectively. (2) The real-time System of Damage Information Acquisition forecasted that the critical cycle number of thermal shock for 2D-C/SiC composite in the wet oxygen atmosphere was about 40 times, which was consistent with experimental statistical results. (3) Different atmospheres under the thermal shock affected mechanical properties of composites differently. (c) 2005 Springer Science + Business Media, Inc.
机译:采用淬火法研究了化学气相渗透技术制备的二维碳纤维增强SiC基复合材料的热冲击行为。通过断裂强度,实时破坏能和SEM表征评估复合材料的破坏。结果表明:(1)2D-C / SiC复合材料在不同的气氛下具有优异的抗热震性,这是针对航空发动机气体进行模拟的。从700到1200℃淬火50次后,复合材料的残余强度在湿氧气氛中仍保持原始强度的88.92%,在氩气,干氧和水蒸气气氛中保持98.90%,96.46%,95.82% , 分别。 (2)实时损伤信息采集系统预测,在湿氧气氛中2D-C / SiC复合材料的热冲击临界循环数约为40倍,与实验统计结果一致。 (3)在热冲击下不同的气氛对复合材料的力学性能有不同的影响。 (c)2005年Springer Science + Business Media,Inc.

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