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Fatigue behavior of cross-ply glass-fiber epoxy composites including the effect of fiber-matrix interphase

机译:交叉层玻璃纤维环氧复合材料的疲劳行为,包括纤维-基体间相的影响

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摘要

The effect of glass-fiber epoxy interface in cross-ply reinforced composites on the fatigue behavior is studied throughout this paper. The sensitivity of the interphase on fatigue life of cross-ply laminates is shown by a shift of the S-N curve to approx. 30% higher applied maximum loads for the composites with well-bonded fibers. Further, the damage as measured by stiffness reduction is more significant for the composites with poor bonded and commercial sized fibers than was found for EP sized ones. The loss energy is shown to be a sensitive tool to characterize the nature of fiber-matrix adhesion. The loss energy for composites with poor adhesion between fiber and matrix results in significantly higher amounts of consumed energy during a single stress-strain than those composites containing well-bonded fibers.
机译:贯穿本文,研究了交叉增强复合材料中玻璃纤维环氧界面对疲劳行为的影响。通过将S-N曲线移动到大约5%,可以看出相间对交叉层压板疲劳寿命的敏感性。具有良好粘结的纤维的复合材料的最大施加载荷高出30%。此外,通过粘合强度降低所测得的损坏对具有不良粘合和商业尺寸纤维的复合材料比对EP尺寸的复合材料更为明显。损失能量被证明是表征纤维基质粘附性质的灵敏工具。在纤维与基体之间具有较差的粘合性的复合材料的损耗能量导致在一次应力应变过程中所消耗的能量明显高于那些包含粘合良好的纤维的复合材料。

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