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Coating of Carbon Fiber with Polyhedral Oligomeric Silsesquioxane (POSS) to Enhance Mechanical Properties and Durability of Carbon/Vinyl Ester Composites

机译:碳纤维与多面体低聚倍半硅氧烷(POSS)的涂层可增强碳/乙烯基酯复合材料的机械性能和耐久性

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摘要

Our continuing quest to improve the performance of polymer composites under moist and saltwater environments has gained momentum in recent years with the reinforcement of inorganic nanoparticles into the polymer. The key to mitigate degradation of composites under such environments is to maintain the integrity of the fiber/matrix (F/M) interface. In this study, the F/M interface of carbon/vinyl ester composites has been modified by coating the carbon fiber with polyhedral oligomeric silsesquioxane (POSS). POSS is a nanostructured inorganic-organic hybrid particle with a cubic structure having silicon atoms at the core and linked to oxygen atoms. The advantage of using POSS is that the silicon atoms can be linked to a substituent that can be almost any chemical group known in organic chemistry. Cubic silica cores are ‘hard particles’ and are about 0.53 nm in diameter. The peripheral organic unit is a sphere of about 1–3 nm in diameter. Further, cubic structure of POSS remains intact during the polymerization process and therefore with appropriate functional groups, if installed on the fiber surface, would provide a stable and strong F/M interface. Two POSS systems with two different functional groups; namely, octaisobutyl and trisilanolphenyl have been investigated. A set of chemical and mechanical procedures has been developed to coat carbon fibers with POSS, and to fabricate layered composites with vinyl ester resin. Interlaminar shear and low velocity impact tests have indicated around 17–38% improvement in mechanical properties with respect to control samples made without the POSS coating. Saltwater and hygrothermal tests at various environmental conditions have revealed that coating with POSS reduces water absorption by 20–30% and retains the composite properties.
机译:近年来,随着将无机纳米颗粒增强到聚合物中,我们不断寻求提高聚合物复合材料在潮湿和咸水环境下的性能的势头有所提高。在这种环境下减轻复合材料降解的关键是保持纤维/基质(F / M)界面的完整性。在这项研究中,碳/乙烯基酯复合材料的F / M界面已通过在碳纤维上涂覆多面体低聚倍半硅氧烷(POSS)进行了改性。 POSS是具有立方结构的纳米结构的无机-有机杂化颗粒,该立方结构在核心具有硅原子并且与氧原子连接。使用POSS的优势在于,硅原子可以与取代基相连,该取代基几乎可以是有机化学中已知的任何化学基团。立方硅石核是“硬颗粒”,直径约为0.53 nm。外围有机物单元是直径约1-3 nm的球体。此外,POSS的立方结构在聚合过程中保持完整,因此,如果将适当的官能团安装在纤维表面,则可以提供稳定而牢固的F / M界面。具有两个不同功能组的两个POSS系统;即,已经研究了八异丁基和三硅烷醇苯基。已开发出一套化学和机械程序,用POSS涂覆碳纤维,并用乙烯基酯树脂制造层状复合材料。层间剪切和低速冲击试验表明,与不带POSS涂层的控制样品相比,机械性能提高了约17-38%。在各种环境条件下进行的盐水和湿热测试表明,用POSS涂层可将吸水率降低20–30%,并保留复合材料的性能。

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