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Experimental Study on Thermal and Mechanical Properties of Clay Modified Carbon Fiber einforced Epoxy

机译:粘土改性碳纤维增强环氧树脂热力学性能的实验研究

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In the present investigation, DMA, TGA, and flexural tests were performed on unfilled, lwt. %, 2wt. %, and 3wt. % clay filled SC-15 epoxy to identify the loading effect on thermal and mechanical properties of the matrix. Thermal and mechanical test results indicated that 2.0 wt% clay /epoxy systems showed the highest improvement in the storage modulus and strength as compared to the neat systems. After that, the nanophased matrix with 2 wt.% clay was then utilized in a Vacuum Assisted Resin Transfer Molding (VARTM) set up with satin weave carbon preforms to fabricate laminated composites. The resulting composites have been evaluated by TGA, DNA and flexural test, and 5°C increasing in glass transition temperature, 6°C increasing in decomposition temperature and 13.5% improvement in strength was observed in nanocomposite.
机译:在本研究中,对未填充的lwt进行了DMA,TGA和挠曲测试。 %,2wt。 %和3wt。 %的粘土填充的SC-15环氧化合物,以确定负载对基质热和机械性能的影响。热和机械测试结果表明,与纯净体系相比,2.0 wt%的粘土/环氧树脂体系显示出最高的储能模量和强度改善。此后,然后将具有2 wt%粘土的纳米相基质用于设置有缎纹编织碳预成型件的真空辅助树脂传递模塑(VARTM)中,以制造层压复合材料。通过TGA,DNA和挠曲测试评价了所得的复合材料,并且在纳米复合材料中观察到玻璃化转变温度升高5℃,分解温度升高6℃和强度提高13.5%。

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