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Effects of Temperature, Oxidation and Fiber Preforms on Fatigue Life of Carbon Fiber-Reinforced Ceramic-Matrix Composites

机译:温度,氧化和纤维预成型坯对碳纤维增强陶瓷基复合材料疲劳寿命的影响

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摘要

In this paper, the effects of temperature, oxidation and fiber preforms on the fatigue life of carbon fiber-reinforced silicon carbide ceramic-matrix composites (C/SiC CMCs) have been investigated. An effective coefficient of the fiber volume fraction along the loading direction (ECFL) was introduced to describe the fiber architecture of preforms. Under cyclic fatigue loading, the fibers broken fraction was determined by combining the interface wear model and fibers statistical failure model at room temperature, and interface/fibers oxidation model, interface wear model and fibers statistical failure model at elevated temperatures in the oxidative environments. When the broken fibers fraction approaches to the critical value, the composites fatigue fracture. The fatigue life S-N curves and fatigue limits of unidirectional, cross-ply, 2D, 2.5D and 3D C/SiC composites at room temperature, 800 A degrees C in air, 1100, 1300 and 1500 A degrees C in vacuum conditions have been predicted.
机译:本文研究了温度,氧化和纤维预制棒对碳纤维增强碳化硅陶瓷基复合材料(C / SiC CMCs)疲劳寿命的影响。介绍了沿加载方向(ECFL)的纤维体积分数的有效系数,以描述预成型坯的纤维结构。在循环疲劳载荷下,通过结合室温下的界面磨损模型和纤维统计失效模型,以及在氧化环境中高温下的界面/纤维氧化模型,界面磨损模型和纤维统计失效模型,来确定纤维断裂分数。当断裂的纤维分数接近临界值时,复合材料疲劳断裂。预测了室温,空气中800 A摄氏度,真空条件下1100、1300和1500 A的单向,交叉,2D,2.5D和3D C / SiC复合材料的疲劳寿命SN曲线和疲劳极限。

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