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Investigation of the Elastic Modulus Effect on Free Vibration Characteristics of Fiber Reinforced Polymer Composite Beams Made of Various Fundamental Shapes

机译:各种基础形状制成的纤维增强聚合物复合梁自由振动特性的弹性模量效应研究

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Woven fiber reinforced polymer composites plays major role in structural applications. Structures subjected to dynamic situations, this leads to increased attention in finding characteristic behaviour/performance of FRP composites beams under vibrating conditions. The objective of this work is to understand and investigate the influence of cross sectional shapes of beams on successive vibration resonance frequencies and its damping performance under cantilever end conditions. The beams were fabricated by hand lay-up method in two different modulus material and cross sections like I and channel;;maintaining uniform cross sectional area and moment of inertia apart from length of the beams using woven carbon fibre. The investigation was performed by impulse frequency response method using standard test procedure on low modulus Glass/epoxy composite beams and compared with high modulus Carbon/epoxy beams. Frequency response curve of I and channel shaped beams were compared for their damping performance. The modal frequencies of all fabricated beams were obtained using MEScopeVES~R software and modal resonant frequencies, loss factor were compared against shapes.
机译:编织纤维增强聚合物复合材料在结构应用中起主要作用。经受动态情况的结构,这导致在振动条件下发现FRP复合梁的特征行为/性能提高。本工作的目的是理解和研究横截面振动谐振频率在悬臂端条件下的横截面形状的影响及其阻尼性能。通过手动叠层方法在两种不同的模量材料和横截面中用手动铺设方法制造梁;使用编织碳纤维的梁的长度保持均匀的横截面积和惯性矩。通过在低模量玻璃/环氧复合梁上使用标准测试程序进行脉冲频率响应法进行研究,并与高模量碳/环氧树脂束进行比较。比较I和通道形光束的频率响应曲线,以它们阻尼性能。使用Mescopeves〜R软件和模态谐振频率获得所有制造梁的模态频率,将损耗因子与形状进行比较。

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