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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Quantification of Foreign Object Damage and Electrical Resistivity for Ceramic Matrix Composites and Tensile Residual Strength Prediction
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Quantification of Foreign Object Damage and Electrical Resistivity for Ceramic Matrix Composites and Tensile Residual Strength Prediction

机译:陶瓷基复合材料的外物损伤和电阻率的量化及拉伸残余强度预测

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摘要

SiC-based ceramic matrix composites (CMC) in turbine engine applications must sustain certain foreign object impacts (FOIs) that might occur in services. Experiments and nondestructive evaluation. (NDE) have illustrated good correlations between impact energy and foreign object damage (FOD) assessed using electrical resistivity (ER), acoustic emission (AE), and microscopy. A progressive failure dynamic analysis (PFDA) method is explored in understanding and predicting the damage states, ER, and residual strength after impact of CMCs. To accurately correlate the damage state with ER, the PFDA tool has been improved to incorporate the physical damage mechanisms in CMCs, which are matrix microcrack density due to both longitudinal and transverse tensile loads and the fiber breakage due to probabilistic fiber strength distribution. The predicted damage states and ER are correlated with the measurement of FOD and validated with tension after impact tests using high temperature ER. The PFDA tool has demonstrated a great potential for CMCs' FOD and residual strength predictions.
机译:涡轮发动机应用中的SiC基陶瓷基复合材料(CMC)必须承受服务中可能发生的某些异物撞击(FOI)。实验和无损评估。 (NDE)已说明使用电阻率(ER),声发射(AE)和显微镜评估的冲击能与异物损坏(FOD)之间的良好相关性。在理解和预测CMC撞击后的损伤状态,ER和残余强度方面,探索了一种渐进式失效动态分析(PFDA)方法。为了准确地将损坏状态与ER相关联,对PFDA工具进行了改进,将CMC中的物理损坏机制纳入其中,这是由于纵向和横向拉伸载荷导致的基体微裂纹密度以及由于概率纤维强度分布导致的纤维断裂。预测的损坏状态和ER与FOD的测量值相关,并在使用高温ER进行冲击试验后通过张力进行验证。 PFDA工具已经证明了CMC的FOD和残余强度预测的巨大潜力。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2015年第5期|052503.1-052503.8|共8页
  • 作者单位

    AlphaSTAR Corporation, 5150 East Pacific Coast Highway, Suite 650, Long Beach, CA 90804;

    University of Akron, Auburn Science and Engineering Center 101, Akron, OH 44325-3903;

    AlphaSTAR Corporation, 5150 East Pacific Coast Highway, Suite 650, Long Beach, CA 90804;

    NAVAIR, Materials Engineering, 48066 Shaw Road, Unit 5, CODE 4341, BLDG 2188, Patuxent River, MD 20670-1908;

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