Pach Joanna, Frączek Natalia, Kaczmar Jacek
Department of Lightweight Element Engineering, Foundry and Automation, Faculty of Mechanical Engineering, Wroclaw University of Science and Technology, Wyb. Wyspiańskiego 27, 50-370 Wroclaw, Poland.
Materials (Basel). 2020 Oct 21;13(20):4686. doi: 10.3390/ma13204686.
The quasi-static penetration properties of hybrid laminates were experimentally investigated. Aramid fabrics, carbon fabrics, and short hemp fibres were applied as the reinforcements of hybrid and non-hybrid composite laminates with polyurethane-polyurea (PUR/PUA) matrix. The laminates were made by hand, in a mould. They were cured at room temperature for 24 h. Hybrid laminates consisted of aramid and carbon layers in two different configurations, i.e., aramid at the innermost layers and outermost layers. Aramid/PUR/PUA and carbon/PUR/PUA composites were fabricated for comparison purposes. Laminates were also prepared via an analogue sequence of laying the reinforcement layers with the addition of 5% by weight of hemp fibres in the PUR/PUA matrix. Quasi-static penetration tests (QSPT) were conducted using a tensile testing machine with a surface-hardened, hemispherical, steel punch (9 mm diameter tip), reflecting the geometry of the Parabellum projectile. A quasi-static puncture test was carried out until the laminate was perforated. The ratio between the support span (Ds) and the punch diameter (Dp) was SPR = Ds/Dp = 5.0. The results showed the influences of laminate hybridisation on the values of absorbed energy, punch shear strength, and damage mechanism in the QSPT test. The addition of hemp fibres to aramid laminates resulted in a positive hybridisation effect. The order of layers of aramid and carbon fabrics in hybrid laminates influenced the results obtained in the QSPT test.
对混杂层压板的准静态穿透性能进行了实验研究。芳纶织物、碳纤维织物和短麻纤维被用作聚氨酯 - 聚脲(PUR/PUA)基体的混杂和非混杂复合层压板的增强材料。层压板通过手工在模具中制作。它们在室温下固化24小时。混杂层压板由芳纶和碳层组成,有两种不同的配置,即芳纶在最内层和最外层。制备了芳纶/PUR/PUA和碳/PUR/PUA复合材料用于比较。还通过在PUR/PUA基体中添加5%重量的麻纤维以类似的铺层顺序制备层压板。使用带有表面硬化的半球形钢冲头(直径9毫米尖端)的拉伸试验机进行准静态穿透试验(QSPT),该冲头反映了帕拉贝鲁姆弹丸几何形状。进行准静态穿刺试验直至层压板被穿孔。支撑跨度(Ds)与冲头直径(Dp)的比值为SPR = Ds/Dp = 5.0。结果表明了层压板混杂化对准静态穿透试验中吸收能量值、冲头剪切强度和损伤机制的影响。向芳纶层压板中添加麻纤维产生了积极的混杂效应。混杂层压板中芳纶和碳纤维织物的层数顺序影响了在准静态穿透试验中获得的结果。