Tefera Getahun, Adali Sarp, Bright Glen
Discipline of Mechanical Engineering, University of KwaZulu-Natal, Durban 4041, South Africa.
Polymers (Basel). 2022 Jun 5;14(11):2296. doi: 10.3390/polym14112296.
This study investigates an experimental and analytical study on the flexural, failure, and viscoelastic properties of hybrid and non-hybrid composite laminates at increasing temperatures and frequencies. Carbon, glass, and hybrids of the two fibre materials with stacking sequences of [0/90] were considered, and specimens were prepared via the resin transfer moulding method. Three-point bending and dynamic mechanical analysis tools were used. The failure surfaces of the laminates were examined using a scanning electron microscope. The results indicated that the flexural strength, modulus, and strain at failure of all groups of laminates decreased as the temperature increased. In particular, the storage modulus, damping factor, flexural strength, and flexural modulus properties of all groups of laminates increased as the hybrid ratio decreased on each targeted temperature and frequency test. However, the strain at failure increased as the hybrid ratio increased. Additionally, results obtained from the scanning electron microscope images confirmed that combinations of delamination and debonding failure modes were observed on the stacking sequences of [0] and [90] layers of bidirectional laminates. Finally, a comparison between the storage modulus results of all groups of laminates was conducted with three empirical models. The empirical model developed by Gibson et al. provided the most accurate prediction for all groups of laminates in the targeted temperature and frequency range. The predictions using the remaining empirical models were broadly similar. Further work is needed to optimise the empirical parameters and minimise the errors.
本研究对混合和非混合复合层压板在温度和频率升高时的弯曲、失效及粘弹性性能进行了实验和分析研究。考虑了碳纤维、玻璃纤维以及这两种纤维材料的混合材料,其铺层顺序为[0/90],并通过树脂传递模塑法制备了试样。使用了三点弯曲和动态力学分析工具。用扫描电子显微镜检查了层压板的失效表面。结果表明,所有组层压板的弯曲强度、模量和失效应变均随温度升高而降低。特别是,在每个目标温度和频率测试中,所有组层压板的储能模量、阻尼因子、弯曲强度和弯曲模量性能均随混合比降低而增加。然而,失效应变随混合比增加而增加。此外,扫描电子显微镜图像的结果证实,在双向层压板[0]层和[90]层的铺层顺序上观察到分层和脱粘失效模式的组合。最后,用三个经验模型对所有组层压板的储能模量结果进行了比较。吉布森等人开发的经验模型在目标温度和频率范围内对所有组层压板提供了最准确的预测。使用其余经验模型的预测大致相似。需要进一步开展工作来优化经验参数并最小化误差。