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Effect of addition of fine sub-micron sized and thick glass fibers into epoxy matrix on fatigue life of plain-woven textile carbon fiber composite

机译:将细亚微米尺寸和厚玻璃纤维的加入环氧基质对仿纺织纺织碳纤维复合材料疲劳寿命的影响

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This study investigated the mechanism of the effect of addition of fine sub-micron sized (close to nano-sized) and thick (11μm) glass fibers into epoxy matrix on the fatigue life of plain-woven textile carbon fiber composite. Static bending strength and fatigue life of the coupon shaped composite with the modified matrix were investigated by three-point static and cyclic loading test. The resistance of interlaminar delamination was characterized with double cantilever beam of Mode-I fracture test and ENF (end notch flexure) of Mode-II fracture test. The effect of the size of the added glass fibers on those mechanical properties was discussed. To explain the effect of the modification on the observed interfacial strength around the intertwining point of the reinforcing textile cloth, model specimens were prepared where an embedded carbon fiber bundle was put between other two carbon fiber bundles oriented to the perpendicular direction in the modified resin. Test results in current study showed that the addition of glass fibers with fine size was rather effective to dramatically improve the fatigue life. The fatigue life was dramatically increased 10-100 times by the addition of nano-sized glass fibers into the matrix in contrast to the static case. Fracture toughness in Mode-II was also improved by the modification of the matrix, while that in Mode-I was improved slightly. Macroscopic crack propagation in fatigue was totally prevented when the matrix was modified with fine glass fibers of 500nm in diameter. Those effects in improvement of mechanical properties of the textile carbon fiber composite were explained by the prevention of interfacial crack propagation with large resistance between carbon fiber bundles in Mode-II and modified matrix around the texture points where comparatively large strain energy would be released, if the epoxy matrix was adequately modified with the fine glass fibers.
机译:本研究探讨的另外细亚微米的效果的机构大小(接近纳米尺寸)和厚(为11μm)的玻璃纤维成环氧基体上平织织物的碳纤维复合材料的疲劳寿命。与修改后的基质是由三点静态和循环载荷试验调查静态抗弯强度和优惠券的疲劳寿命状复合材料。层间分层的抵抗的特征是,模式-II断裂试验的模式-I断裂试验和ENF(端切口弯曲)的双悬臂梁。讨论了对这些机械性能的添加玻璃纤维的尺寸的效果。为了解释在围绕增强织物布的缠结点所观察到的界面强度的变形例的效果,制备模型标本其中嵌入碳纤维束定向为在改性树脂中的垂直方向以外的两个碳纤维束之间放。在目前的研究测试结果表明,添加细尺寸的玻璃纤维是相当有效的,从而大幅度提高疲劳寿命。疲劳寿命通过加入纳米尺寸玻璃纤维的成对比静态情况下的基质显着增加10-100倍。在模式-II的断裂韧性也由基体的变形的改善,而在模式-I稍有改进。在疲劳宏观裂纹扩展时,基质用在直径为500nm的细玻璃纤维改性完全被防止。在改进纺织碳纤维复合材料的机械性能的那些作用通过预防与在模式-II的碳纤维束之间的大的阻力的界面裂纹扩展的说明和改进的基质周围,其中比较大的应变能量将被释放的质地分,如果环氧基质充分与细的玻璃纤维改性。

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