Experimental investigation on low-velocity impact behavior of glass, Kevlar, and hybrid composites with an elastomeric polyurethane matrix

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES
Alessandro Vescovini , Joziel A. Cruz , Dayou Ma , Chiara Colombo , Antonio Salerno , Otavio Bianchi , Sandro C. Amico , Andrea Manes
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Abstract

Low-velocity impacts represent a critical dynamic condition for engineering structures. Combining two reinforcing fibers in a single matrix, i.e., hybridization, is considered a feasible way to improve composite performance. In this context, this paper presents an experimental work on composites with Kevlar and glass fabrics and a novel thermoset polyurethane matrix. The coupons are manufactured by vacuum infusion technique and low-velocity impact tests are carried out. First, the impact behavior of Kevlar and glass laminates of different thicknesses is assessed, and then impact tests are performed on different configurations of hybrid laminates, both symmetric and non-symmetric. For the non-symmetric specimens, impact tests were conducted on both sides of the stack. Load vs displacement curves are reported along with absorbed energy. To investigate the damage mechanism, the front, back, and cross-section views of the specimens are analyzed, and features related to the stacking sequences are discussed. Thermographic analyses are carried out on the impacted specimens to further analyze damage. The failure mechanisms are different from traditional epoxy composites and a hybridization effect is reported. The results evidence that the hybrid coupons are viable for structural applications, being capable of absorbing high-impact energies, in particular, non-symmetric hybrid laminates outperformed the Kevlar, glass, and symmetric ones, absorbing roughly 15% less energy for the highest energy impact.

玻璃、凯夫拉尔和带有弹性聚氨酯基体的混合复合材料的低速冲击行为实验研究
低速冲击是工程结构的关键动态条件。在单一基体中结合两种增强纤维,即杂化,被认为是提高复合材料性能的可行方法。在此背景下,本文介绍了一项关于凯夫拉纤维和玻璃纤维织物与新型热固性聚氨酯基体复合材料的实验工作。试样采用真空灌注技术制造,并进行了低速冲击试验。首先评估了不同厚度的 Kevlar 和玻璃层压材料的冲击行为,然后对不同结构的混合层压材料(对称和非对称)进行了冲击试验。对于非对称试样,冲击试验在叠层的两侧进行。报告了载荷与位移曲线以及吸收的能量。为了研究损坏机制,对试样的正面、背面和横截面进行了分析,并讨论了与堆叠顺序有关的特征。对受冲击的试样进行了热成像分析,以进一步分析损坏情况。失效机制不同于传统的环氧树脂复合材料,并报告了杂化效应。结果表明,混合试样可用于结构应用,能够吸收高冲击能量,特别是非对称性混合层压材料的性能优于凯夫拉尔、玻璃和对称性层压材料,在最高能量的冲击中吸收的能量大约减少了 15%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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