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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Constructing interfacial path for enhancing mechanical and thermal performances of carbon fiber/cyanate ester resin composite
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Constructing interfacial path for enhancing mechanical and thermal performances of carbon fiber/cyanate ester resin composite

机译:构建增强碳纤维/氰酸酯树脂复合材料的机械和热性能的界面路径

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摘要

In spite of the rapid development of electronic technology, fabricating heat-conducting polymer matrix composites with light texture and excellent mechanical properties remains an enormous challenge. Herein, carbon fiber reinforced cyanate ester resin matrix composites embedded with manganese dioxide-polyamide 6 interfacial path were swimmingly manufactured. The analysis of chemical structure demonstrates that not only the propitious growth of compact and orderly nano-manganese dioxide but also the uniform graft of polyamide 6 are successfully achieved on the surface of carbon fiber in sequence. The results of the test of mechanical properties indicate that the tensile strength of the final composite is 97.7 %, higher than that of the original carbon fiber/ cyanate composite. The DMA analysis indicates that the obtained composite is featured with higher elastic modulus and lower mechanical losses. Indeed, the synergistic effect dated back to polyamide 6 and manganese dioxide optimizes the heat resistance and thermal conductivity property of the composite. In particular, the outplane thermal conductivity of the ultimate composite is 0.97 W/m?K, with an upgrade rate of 106 % compared with the original carbon fiber/cyanate composite.
机译:尽管电子技术飞速发展,但制备具有轻质结构和优异力学性能的导热聚合物基复合材料仍然是一个巨大的挑战。在此基础上,成功制备了嵌入二氧化锰-聚酰胺6界面路径的碳纤维增强氰酸酯树脂基复合材料。化学结构分析表明,在碳纤维表面依次成功地实现了致密有序的纳米二氧化锰的生长和聚酰胺6的均匀接枝。力学性能测试结果表明,最终复合材料的拉伸强度为97.7%,高于原碳纤维/氰酸酯复合材料的拉伸强度。DMA分析表明,所得复合材料具有较高的弹性模量和较低的机械损耗。事实上,聚酰胺6和二氧化锰的协同效应优化了复合材料的耐热性和导热性能。特别是,最终复合材料的平面外导热系数为0.97 W/m?K、 与原碳纤维/氰酸盐复合材料相比,升级率为106%。

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