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Effect of Graphite Nanoplatelet Loading on the Microcrack Mitigation Capabilities of Composite Structures

机译:石墨纳米片载量对复合结构微裂纹缓解能力的影响

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摘要

Graphite nanoplatelets were added to the matrices of carbon fiber/epoxy composites to determine the effect of particle loading on the microcrack mitigation capabilities of composite samples after exposure to cryogenic temperatures. Volumetric particle concentrations of zero, one, two, three, four, five, and ten percent were added to the epoxy resin during filament winding. Although most of the samples contained some microcracks after cryogenic cycling, the graphite nanoplatelets seemed to have prevented the microcracks from propagating further. After comparing the various graphite nanoplatelet loadings, the addition of ten volume percent demonstrated the most drastic decrease in the number of microcracks within the laminate.
机译:将石墨纳米薄片添加到碳纤维/环氧树脂复合材料的基质中,以确定暴露于低温后颗粒负载对复合材料样品降低微裂纹能力的影响。在细丝缠绕过程中,将零,一,二,三,四,五和十%的体积颗粒浓度添加到环氧树脂中。尽管大多数样品在低温循环后都包含一些微裂纹,但石墨纳米片似乎阻止了微裂纹的进一步传播。在比较了各种石墨纳米片的负载量之后,添加了10%的体积证明层压板中微裂纹数量的减少幅度最大。

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