Effect of mineral filler on low velocity impact behaviour of bi-directional glass fibre/epoxy composites exposed to varied temperature conditions

复合材料 环氧树脂 材料科学 填料(材料) 断口学 玻璃纤维 纤维增强塑料 硅灰石 热固性聚合物 断裂力学 原材料 化学 有机化学
作者
K. S. Lokesh,C. G. Ramachandra,D. Shrinivasa Mayya,T Varuna,Praveen Kumar Kanti,Abhinav Kumar,Melkamu Biyana Regasa
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:20 (6): e0322208-e0322208
标识
DOI:10.1371/journal.pone.0322208
摘要

Fibre reinforced plastics are predominantly used in automotive, aerospace applications due to their promising features of low cost, easy of processing and durability, however these composites are more susceptible to varied temperature conditions under different loading conditions. One such problem where these composites vary greatly in their performance is due to impact loading conditions. The objective of present research is to determine the effect of calcium inosilicate (also termed as wollastonite) powder which is used as a filler on low velocity impact (LVI) behaviour of bi-directional glass fibre reinforced with epoxy thermosets (GFRP) for different loading percentage of 1%,3%,5% and 7%. Composites were prepared through manual lay-up route and prepared samples were exposed for 3 different temperature conditions of continuous heating and cooling cycles at +50 0 c, −5 0 C including room temperature conditions for 168hrs. Aged samples were tested for low velocity impact(LVI) testing by keeping constant energy of 30J. Results revealed that addition up to 3% filler influence largely on LVI response of GFRP composites for all the temperature conditions, addition to this polynomial regression of 9 th order was performed and the results were best fit with experimental values. Fractography study revealed the severity of damage modes upon LVI testing.
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