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Failure behavior of woven fiberglass composites under combined compressive and environmental loading

机译:组合压缩与环境负载下织物玻璃纤维复合材料的故障行为

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摘要

The purpose of this study is to quantitatively characterize the compressive and damage behavior of a woven fiberglass composite under combined environmental loading. Cuboidal samples of a commercially available woven fiberglass epoxy resin composite, garolite G10, are examined under uniaxial compressive loading perpendicular to the plies at quasi-static (10(-3) s(-1)) and dynamic (10(3 )s(-1)) strain rates using a standard load frame and Kolsky (split-Hopkinson) bar. In order to simulate environmental conditions, a subset of samples were soaked in either distilled or ASTM standard seawater prior to loading. Two time periods of environmental conditioning were investigated: short term at two weeks and long term at four months. Results demonstrate that, on average, the dynamic compressive strength of the fiberglass increased 35% from the quasi-static. Moreover, environmentally treated samples generally experienced a decrease strain to failure, and composites exposed to water for only short periods exhibited signs of the absorbed water sustaining additional load under quasi-static rates. Ultra-high-speed photography combined with digital image correlation, a full-field surface kinematic measurement technique, is used to map 2D strains on the sample during loading. In all cases, a clear shear failure mechanism from local instabilities appears, and a Mohr-Coulomb failure criterion is used to extract a mesoscale cohesive shear stress and coefficient of internal friction.
机译:本研究的目的是定量表征编织玻璃纤维复合材料在环境负载下的纤维复合材料的压缩和损伤行为。在垂直于准静态(-3)(-1))和动态(10(3)( -1))使用标准负载框架和kolsky(分型Hopkinson)栏的应变速率。为了模拟环境条件,在装载之前将样品的子集浸泡在蒸馏或ASTM标准海水中。调查了两次环境条件的时间:短期为两周,长期四个月。结果表明,平均而言,玻璃纤维的动态抗压强度从准静态增加了35%。此外,环保处理样品通常经历了对失效的减少菌株,并且仅暴露于水的复合材料,仅在短时间内显示出在准静态速率下的吸收水的额外载荷的迹象。超高速摄影结合数字图像相关性,全场表面运动测量技术用于在装载期间映射样品上的2D菌株。在所有情况下,出现来自局部不稳定性的透明剪切失效机制,并且使用MoHR-Coulomb失效标准来提取Mesoscale内聚剪切应力和内部摩擦系数。

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