Rohini Rani, Verma Kundan, Bose Suryasarathi
Materials Engineering Department, Indian Institute of Science, Bangalore 560012, India.
ACS Omega. 2018 Apr 10;3(4):3974-3982. doi: 10.1021/acsomega.8b00218. eCollection 2018 Apr 30.
In this work, we have attempted to improve electromagnetic interference (EMI) shielding and mechanical behavior of epoxy/carbon fiber (CF) composite, simultaneously, in the presence of functionalized carbon nanotubes. It is well understood that properties of composite depend on the interface between the filler and matrix. Considering this basic understanding, functionalized carbon nanotubes/epoxy nanocomposites were impregnated into a bidirectional carbon fiber (CF) mat and, further, various mechanical and EMI shielding behaviors were studied. Multiwalled carbon nanotubes were functionalized with branched poly(ethyleneimine) (b-MWNT) to tailor the interface of epoxy/CF composites. Laminates with two layers of CF were fabricated with functional MWNT modified epoxy. Scanning electron microscopy was used to analyze the microstructure of epoxy/CF laminates. Lap shear test was performed to analyze adhesion between the modified epoxy and carbon fiber. Further dynamic mechanical analysis in the temperature range of 30-160 °C was performed. Thermal degradation of composites was studied using a thermogravimetric analyzer. Electrical conductivity of laminates was measured using a four-point method on an Agilent probe station. EMI shielding effectiveness (SE) was measured for 0.5 mm-thin laminates in the Ku band. The b-MWNT modified epoxy/CF composites showed excellent SE of ca. -60 dB and SE of ca. -50 dB, which are of commercial importance. Compared to unmodified epoxy/CF, b-MWNTs/epoxy/CF exhibited 200% increment in EMI SE and 35% enhancement in storage modulus due to the improved interface between the epoxy matrix and carbon fiber.
在这项工作中,我们试图在存在功能化碳纳米管的情况下,同时改善环氧/碳纤维(CF)复合材料的电磁干扰(EMI)屏蔽性能和机械性能。众所周知,复合材料的性能取决于填料与基体之间的界面。基于这一基本认识,将功能化碳纳米管/环氧纳米复合材料浸渍到双向碳纤维(CF)毡中,并进一步研究了各种机械性能和EMI屏蔽性能。用支化聚(乙烯亚胺)(b-MWNT)对多壁碳纳米管进行功能化处理,以调整环氧/CF复合材料的界面。用功能化MWNT改性环氧制备了两层CF的层压板。采用扫描电子显微镜分析环氧/CF层压板的微观结构。进行搭接剪切试验以分析改性环氧与碳纤维之间的粘附力。进一步在30-160℃温度范围内进行动态力学分析。使用热重分析仪研究复合材料的热降解。在安捷伦探针台上采用四点法测量层压板的电导率。在Ku波段测量了0.5mm厚层压板的EMI屏蔽效能(SE)。b-MWNT改性环氧/CF复合材料表现出约-60dB的优异SE和约-50dB的SE,这具有商业重要性。与未改性的环氧/CF相比,由于环氧基体与碳纤维之间的界面得到改善,b-MWNTs/环氧/CF的EMI SE提高了200%,储能模量提高了35%。