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Effect of low concentration hollow glass microspheres on mechanical and thermomechanical properties of epoxy composites

机译:低浓度中空玻璃微球对环氧复合材料机械和热机械性能的影响

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The processing of hollow glass microsphere (HGM) based composites is one of the growing areas in materials research due to the potential of significantly changing material properties even at low HGM concentrations. HGM-epoxy composites are prepared by sonication method. Four weight ratio configurations are considered (1, 3, 5 wt% HGM and 5 wt% NH2 functionalized HGM) and compared with neat epoxy to study the micro-enrichment effect. The influence of low volume HGM and functionalized HGM reinforcement on epoxy in the compressive and thermo-mechanical behavior of the composites were characterized by thermo-gravimetric analysis, dynamic mechanical analysis, and compression testing. The compressive strength of HP5% sample decreased in 101%, as compared with that of EP sample, whereas, storage modulus of HP5% and f-HP5% sample is increased by 27.7 and 32.5%, as compared with the EP sample, but did not significantly affected the thermal stability of the obtained composites. Scanning electron microscope images of the fractured samples had shown a good dispersion and interaction of the HGM in the matrix. By introducing HGM content, there was a remarkable difference in the surface morphology of the fractured surface of epoxy. POLYM. COMPOS., 40:3493-3499, 2019. (c) 2019 Society of Plastics Engineers
机译:中空玻璃微球(HGM)基复合材料是材料研究中生长区域之一,因为即使在低HGM浓度下也显着改变了材料特性。 HGM-环氧复合材料由超声处理方法制备。考虑四种重量比构型(1,3,5wt%HGM和5wt%NH2官能化HGM),并与整齐的环氧树脂进行比较,以研究微富集效果。通过热重分析,动态力学分析和压缩检测,低体积HGM和官能化HGM增强对复合材料的压缩和热力学行为中的环氧树脂的影响。与EP样品相比,HP5%样品的抗压强度以101%降低,而HP5%和F-HP5%样品的储存量模比为27.7%和32.5%,与EP样本相比,但是没有显着影响所得复合材料的热稳定性。扫描电子显微镜图像的裂缝样品显示出良好的分散和HGM在基质中的相互作用。通过引入HGM含量,环氧树脂裂缝表面的表面形态存在显着差异。聚合物。 Compos。,40:3493-3499,2019。(c)2019塑料工程师协会

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