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Application of electrospun nanofibers for the improvements in mode-i fracture toughness of fiberglass composites

机译:静电纺丝纳米纤维在提高玻璃纤维复合材料i型断裂韧性中的应用

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摘要

Delamination is a major mode of failure in laminated composites. This paper addresses development of advanced delamination resistant composites using interlaminar SiO2 nanofibers. The SiO2 nanofibers were manufactured using Tetra Ethyl Orthosilicate (TEOS) sol gel. The sol gel viscosity of 100–200 cps Voltage of 18kV and distance between spinneret and grounded collector plate of 80 mm were found to be suitable for maximizing production of electrospun fibers. It was observed that typical electrospun fibers were of 300 nm diameter after they were sintered at 600 degrees C. These SiO2 nanofibers produced using electrospinning were then integrated into fiber glass Epon 862 resin matrix composites. During mechanical characterization of these three phase (fiber glass+Epon 862+SiO2 nanofibers) composites, extensive experimentation was carried out as per the ASTM D 5528 standard to study the influence of electrospun SiO2 nanofibers on the Mode I fracture toughness of fiber glass composites. Other characterization studies were related to determining the effect of SiO2 nanofibers on short beam shear strength, flexure properties, and tensile properties of three phase composites.
机译:分层是层压复合材料中的主要破坏方式。本文研究了使用层间SiO 2 纳米纤维开发的高级抗分层复合材料。 SiO 2 纳米纤维是使用正硅酸四乙酯(TEOS)溶胶凝胶制造的。溶胶凝胶的粘度为100-200 cps,电压为18kV,喷丝板与接地的集电板之间的距离为80 mm,适用于最大程度地生产电纺纤维。观察到典型的电纺纤维在600摄氏度下烧结后直径为300 nm。然后将这些使用电纺丝生产的SiO 2 纳米纤维整合到玻璃纤维Epon 862树脂基复合材料中。在对这三种三相(玻璃纤维+ Epon 862 + SiO 2 纳米纤维)复合材料进行机械表征期间,根据ASTM D 5528标准进行了广泛的试验,以研究电纺SiO 2的影响纳米纤维对玻璃纤维复合材料I型断裂韧性的影响。其他表征研究与确定SiO 2 纳米纤维对三相复合材料的短束剪切强度,弯曲性能和拉伸性能的影响有关。

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