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DEVELOPMENT OF AN INTERLAMINAR TOUGHNESS TEST FOR CERAMIC MATRIX COMPOSITES

机译:陶瓷基复合材料的开发开发陶瓷基复合材料的层间韧性试验

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Interlaminar fracture properties in fiber-reinforced ceramic matrix composites have been found to be a limiting feature in certain applications, a limitation that intensifies at elevated temperatures. Few if any fibers bridge the cracks in the interlaminar direction, resulting in a weaker toughness and a higher probability of failure in this direction. The main challenge in evaluating interlaminar fracture toughness is the difficulty to detect the crack initiation and to measure the crack length directly at high temperature, primarily because of the limited visual accessibility of the area of interest. A DCB test-method using a ceramic wedge is developed. The method uses electrical resistance to monitor crack growth for melt-infiltrated woven SiC/SiC composites at room temperature, with the goal of doing the same at high temperature. In situ optical measurements of crack growth in addition to micro-CT post-inspection were used to validate and calibrate the resistance method. The estimated crack length was in excellent agreement with the measured crack length in the three considered specimen geometries. Preliminary estimates of Mode I energy release rate were also provided.
机译:已经发现纤维增强陶瓷基质复合材料中的Interlamar裂缝性能是某些应用中的限制特征,其限制在升高的温度下增强。如果任何纤维桥接在层间方向上的裂缝,导致较弱的韧性和较高的失效概率。评估层间骨折韧性的主要挑战是难以检测裂纹启动并直接在高温下测量裂缝长度,主要是因为感兴趣区域的视觉可视性有限。开发了使用陶瓷楔的DCB测试方法。该方法采用电阻在室温下监测熔融渗透织造SiC / SiC复合材料的裂纹生长,其目的是在高温下进行相同的目标。原位光学测量除了微型CT后的裂纹生长,用于验证和校准电阻法。估计的裂缝长度与三个被认为标本几何形状的测量裂缝长度非常一致。还提供了模式I能量释放率的初步估计。

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