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FAILURE BEHAVIOR OF UNIDIRECTIONAL AS4/3501-6 CARBON/EPOXY LAMINATES

机译:单向AS4 / 3501-6碳/环氧树脂层压板的失效行为

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摘要

The work is aimed at improved understanding of deformation and failure mechanisms of unidirectional carbon fiber reinforced plastics. Monotonic tension and compression experiments are conducted on 3501-6 epoxy resin and AS4/3501-6 carbon/epoxy composite at temperatures ranging from room temperature to 200 degrees C. The goal is to better resolve the matrix modulus and matrix strength influence on the compressive strength and associated failure mechanisms. Two compressive failure mechanisms are observed. At temperatures below 100 degrees C, the failure is governed by formation of longitudinal matrix cracks followed by transverse shear failure. Above this temperature, the failure is governed by localized kinking of fibers. The tensile and compressive strengths of both materials decreased with increasing temperature, the sensitivity to temperature was higher in compression versus tension. A deformation model based on Eshelby's equivalent inclusion theory is utilized to investigate the local and mean field stresses in the matrix as a function of fiber misalignment angle, fiber/matrix modulus mismatch and fiber volume fraction. Deformation maps are constructed to illustrate the link between local stresses and failure mechanisms. The results are compared to the models proposed by Argon and Budiansky. [References: 27]
机译:这项工作旨在更好地理解单向碳纤维增强塑料的变形和破坏机理。在室温至200摄氏度的温度范围内,对3501-6环氧树脂和AS4 / 3501-6碳/环氧树脂复合材料进行单调拉伸和压缩实验。目的是更好地解决基体模量和基体强度对压缩性的影响强度和相关的故障机制。观察到两种压缩破坏机制。在低于100摄氏度的温度下,破坏由纵向基体裂纹的形成和横向剪切破坏控制。在此温度以上,故障是由纤维的局部扭结控制的。两种材料的拉伸强度和抗压强度都随温度的升高而降低,压缩对拉伸的温度敏感性更高。利用基于Eshelby等效包容理论的变形模型研究基质中的局部和平均场应力,该应力是纤维未对准角,纤维/基体模量失配和纤维体积分数的函数。构造变形图以说明局部应力和破坏机制之间的联系。将结果与Argon和Budiansky提出的模型进行比较。 [参考:27]

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