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Effect of Epoxy Functional Groups on the Properties of Carbon Fiber-EpoxyComposites

机译:环氧官能团对碳纤维-环氧复合材料性能的影响

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Matrix resins of carbon fiber-epoxy composites with different numbers of epoxy functional groups were prepared, and their properties were compared to optimize the matrix resin composition. To understand the bonding strengths between the carbon fiber and epoxy resins in monofilaments and micro-sized resin beads, the interfacial shear strength (IFSS) was measured using the microdroplet technique. The bonding strength for the T800SC carbon fibers was maximized for a 50:50 (wt/wt) ratio of epoxy resins containing four and three epoxy groups per molecule, respectively, and that for the IMS60 carbon fibers was maximized for a 70:25:5 (wt/wt/wt) ratio of epoxy resins containing four, three, and two epoxy groups per molecule, respectively. The transverse tensile, in-plane shear, interlaminar shear, and compression strengths were higher for the interfacial-shear-strength-optimized T800SC-epoxy mixture than for the T800SC-100% basic bisphenol A epoxy material. These composite materials exhibit a potential to be used in applications such as automobiles and aircraft as lightweight, high-strength, and rigid materials.
机译:制备了具有不同环氧官能团的碳纤维-环氧树脂复合材料的基体树脂,并对其性能进行了比较,以优化基体树脂的组成。为了了解单丝和超细树脂珠中碳纤维与环氧树脂之间的粘结强度,使用微滴技术测量了界面剪切强度(IFSS)。对于每个分子分别包含四个和三个环氧基的环氧树脂,T800SC碳纤维的粘结强度达到最大,比率为50:50(wt / wt),IMS60碳纤维的粘结强度最大化,达到70:25:每个分子中分别含有四个,三个和两个环氧基的环氧树脂的比例为5(wt / wt / wt)。界面剪切强度优化的T800SC-环氧树脂混合物的横向拉伸,平面内剪切,层间剪切和压缩强度高于T800SC-100%碱性双酚A环氧材料。这些复合材料具有轻质,高强度和刚性材料的潜力,可用于诸如汽车和飞机等应用。

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