首页> 外文期刊>Journal of The institution of engineers (India), Series C >Experimental Studies on Strength Behaviour of Notched Glass/Epoxy Laminated Composites under Uni-axial and Bi-axial Loading
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Experimental Studies on Strength Behaviour of Notched Glass/Epoxy Laminated Composites under Uni-axial and Bi-axial Loading

机译:单轴和双轴载荷下缺口玻璃/环氧树脂层压复合材料强度行为的实验研究

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摘要

The use of FRP composite materials in aerospace, aviation, marine, automotive and civil engineering industry has increased rapidly in recent years due to their high specific strength and stiffness properties. The structural members contrived from such composite materials are generally subjected to complex loading conditions and leads to multi-axial stress conditions at critical surface localities. Presence of notches, much required for joining process of composites, makes it further significant. The current practice of using uni-axial test data alone to validate proposed material models is inadequate leading to evaluation and consideration of bi-axial test data. In order to correlate the bi-axial strengths with the uni-axial strengths of GFRP composite laminates in the presence of a circular notch, bi-axial tests using four servo-hydraulic actuators with four load cells were carried out. To determine the in-plane strength parameters, bi-axial cruciform test specimen model was considered. Three different fibre orientations, namely, 0°, 45°, and 90° are considered with a central circular notch of 10mm diameter in the present investigation. From the results obtained, it is observed that there is a reduction in strength of 5.36, 2.41 and 13.92% in 0°, 45°, and 90° fibre orientation, respectively, under biaxial loading condition as compared to that of uni-axial loading in laminated composite.
机译:由于其高特定的强度和僵硬性能,近年来,在航空航天,航空,船舶,汽车和土木工程行业中使用FRP复合材料在近年来迅速增加。从这种复合材料中的构成构件通常经受复杂的负载条件,并在临界表面的位置导致多轴应力条件。连接复合材料的过程所需的凹口存在使其进一步显着。目前,单独使用单轴测试数据验证提出的材料模型的实践是不充分的,导致双轴测试数据评估和考虑。为了将双轴强度与GFRP复合层压板的单轴强度相关联,在圆形凹口存在下,使用具有四个称重电池的四个伺服液压致动器的双轴试验进行。为了确定面内强度参数,考虑了双轴坩埚试样模型。在本研究中,使用中央圆形凹口,即0°,45°和90°考虑三种不同的纤维取向,即0°,45°和90°。从获得的结果中,与单轴负载相比,在双轴负载条件下,观察到,分别在0°,45°和90°纤维方向上的强度降低5.36,2.41和13.92%在层压复合材料中。

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