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Fabrication and Characterization of Toughened Nanocomposites Based on TiO2 Nanowire-Epoxy System

机译:基于TiO2纳米线环氧系统的增韧纳米复合材料的制造与表征

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TiO2(B) nanowires (TiO2(B)-NWs) were synthesized and characterized by X-ray diffraction, and Scanning Electron Microscopy (SEM) micrographs and the influence of different morphologies of TiO2 nanostructures on the mechanical performance of epoxy nanocomposites were thoroughly investigated. Transmission Optical Micrograph images of TiO2(B)-NW/epoxy nanosuspension reveals an excellent dispersion of TiO2(B)-NWs in the epoxy matrix. Tensile strength (similar to 26%), tensile modulus (similar to 16%), and fracture toughness (similar to 136%) improved remarkably for TiO2(B)-NWs modified epoxy composites. The mechanism that paved way to the enhancement in the fracture toughness of the TiO2(B)-NW/epoxy nanocomposites was evaluated. SEM micrographs disclose that the phenomena of shear yielding, crack deflection and crack bridging are responsible for the improved fracture toughness of TiO2(B)-NW/epoxy composite. Moreover, the analysis of visco-elastic properties revealed a very high modulus and improved T-g for the TiO2(B)-NW/epoxy composites when compared with neat epoxy owing to better filler/matrix interfacial interaction between TiO2(B)-NWs and epoxy matrix. This was further confirmed by quantitative analysis of the constrained region and by the evaluation of the interaction parameter B. TGA study shows that the thermal stability of composites are not compromised by the incorporation of TiO2 nanofillers. The obtained results can be considered as beneficial in the manufacture of components with higher strength-to-weight ratios for such uses as windmill blades or aircraft components. POLYM. COMPOS., 40:2629-2638, 2019. (c) 2018 Society of Plastics Engineers
机译:通过X射线衍射合成并表征TiO2(B)纳米线(TiO 2(B)-NWS),并扫描电子显微镜(SEM)显微照片(SEM)显微照片和TiO2纳米结构对环氧纳米复合材料的机械性能的影响以及不同形态的影响。 TiO2(B)-NW /环氧纳米柱的透射光学显微照片图像显示TiO 2(B)-NWS在环氧基质中的优异分散体。拉伸强度(类似于26%),拉伸模量(类似于16%),并且对于TiO 2(b)-NWS改性环氧复合材料,显着改善了裂缝韧性(类似于136%)。评价了铺设了铺设了TiO 2(B)-NW /环氧纳米复合材料的断裂韧性的增强的机制。 SEM显微照片公开了剪切屈服,裂纹偏转和裂纹桥接的现象负责TiO 2(B)-NW /环氧复合材料的改善的断裂韧性。此外,粘弹性性能的分析显示,对于TiO 2(B)-NWS和环氧树脂的更好的填充/基质界面相互作用,TiO 2(b)-NW /环氧复合材料的含量非常高的模量和改进的Tg /用于环氧复合材料。矩阵。通过对受约束区域的定量分析和相互作用参数B的评价进一步证实了这一点.TGA研究表明复合材料的热稳定性不受TiO2纳米填料的掺入损害。所得结果可以被认为是有益于制备具有更高强度重量比的组分,因为这种用途作为风车叶片或飞机组分。聚合物。 Compos。,40:2629-2638,2019。(c)2018塑料工程师协会

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