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Comparative Evaluation of Quasi-Static Indentation Behaviour of Glass Fiber Reinforced (GFRP) and Carbon Fiber Reinforced (CFRP) Laminates

机译:玻璃纤维增强(GFRP)和碳纤维增强(CFRP)层压物的准静态压痕行为的比较评价

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A comparative study of Quasi-Static Indentation (QSI) conduct of Glass Fiber Reinforced Laminates (GFRP) and Carbon Fiber Reinforced Laminates (CFRP) of different thicknesses is made in this work. QSI tests are performed as per ASTM Standard D 7766M using custom-built Digital Flexural test equipment with a dedicated fixture which provides constraint from all the four sides. A hemispherical Indentor of 12.5 mm diameter made from hardened steel is used to indent the specimens at a speed of 25 mm/minute. The damage area at different stages of QSI is assessed using ultrasonic 'A' scan and macroscopic inspection. The influences of thickness and type of laminate on the QSI parameters such as peak load at fracture, energy absorbed till fracture and maximum deflections are determined. It is found that the initial stiffness and the energy required for complete fracture is significantly more in case of CFRP as compared to GFRP laminate.
机译:在这项工作中,制造了对玻璃纤维增强层压板(GFRP)和碳纤维增强层压板(CFRP)和碳纤维增强层压板(CFRP)的比较研究。 根据ASTM标准D 7766M使用定制的数字弯曲测试设备进行QSI测试,该测试设备具有带有专用固定装置的专用夹具,该灯具提供了来自所有四个边的约束。 由硬化钢制成的12.5毫米直径为12.5毫米的半球形压痕,以速度为25mm /分钟的速度缩进。 使用超声波'A'扫描和宏观检查评估QSI不同阶段的损伤区域。 确定厚度和型层压体在QSI参数上的影响,例如断裂处的峰值,能量吸收直至裂缝和最大偏转。 结果发现,与GFRP层压板相比,在CFRP的情况下,完全骨折所需的初始刚度和能量明显更多。

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