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首页> 外文期刊>International Journal of Fatigue >Fatigue crack propagation resistance in homogeneous and graded alumina-epoxy composites
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Fatigue crack propagation resistance in homogeneous and graded alumina-epoxy composites

机译:均相和渐变氧化铝-环氧树脂复合材料的疲劳裂纹扩展阻力

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Fatigue crack propagation was investigated in homogeneous and graded alumina-epoxy composite specimens, produced via a multi-step infiltration technique. Crack-extension toughening was observed in homogeneous composite specimens under monotonic loading and attributed to the development of a bridging zone behind the crack-tip. A similar increase in crack propagation resistance was observed under cyclic loading. This was quantified, in an approximate manner, using an adjustment based on the Paris-law relation. Cracks in graded composite specimens underwent deflection and significant variations in crack-propagation resistance were observed as the crack traversed the graded region. The adjustment procedure provided a useful approximate method for characterising these variations, which resulted from crack-extension effects and the spatial variation of both intrinsic and extrinsic crack-growth resistance.
机译:在通过多步渗透技术生产的均质且渐变的氧化铝-环氧复合材料试样中研究了疲劳裂纹扩展。在单调载荷下,在均质复合材料试样中观察到裂纹扩展韧化,这归因于裂纹尖端后面的桥接区的发展。在循环载荷下观察到裂纹扩展阻力的相似增加。使用基于巴黎法律关系的调整,以近似的方式对此进行了量化。梯度复合材料试样的裂纹发生了挠曲,并且当裂纹穿过梯度区域时,观察到裂纹扩展阻力的显着变化。调整程序为表征这些变化提供了有用的近似方法,这些变化是由裂纹扩展效应以及内在和外在的裂纹增长阻力的空间变化引起的。

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