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Experimental investigation of the dynamic characteristics of wrapped and wound fiber and metal/fiber reinforced composite pipes

机译:包裹织物和金属/纤维增强复合管动态特性的实验研究

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This paper experimentally investigates the effect of the manufacturing method and metal reinforcement option on the natural frequency and damping behavior of five polymer and Fiber Reinforced Polymer (FRP) composite pipes. The five pipes are made of polymer, roll-wrapped woven glass FRP, metal-reinforced roll-wrapped woven glass FRP, filament-wound glass FRP, and metal reinforced filament-wound-up glass FRP. The composite pipes can replace conventional pipes in oil and gas industries and conventional metallic shafts in many applications. Logarithmic decay, logarithmic decrement, and random frequency excitation methods were employed to identify the damping ratio and the natural frequency of the different composite materials. Tests were conducted using a CVMSL electrodynamic shaker (M437A/BT500M) and a triaxle vibration measurement instrument. The results revealed that the metal-reinforcement option outperformed the rest of the reinforcement options in terms of dynamic characteristics, as it resulted in higher natural frequencies and damping ratios. In addition, the filamentwound-up manufacturing method demonstrated superior dynamic characteristics over the woven roll-wrapped method. The metal/filament-wound-up reinforcement increased the logarithmic damping decrement from 0.1165 to 0.1231 and the natural frequency from 36.5 Hz to 70 Hz.
机译:本文通过实验研究了制造方法和金属增强件对五种聚合物和纤维增强聚合物(FRP)复合管的固有频率和阻尼行为的影响。五个管道由聚合物,卷缠绕的编织玻璃FRP,金属增强辊缠绕的织物玻璃FRP,丝织玻璃FRP和金属增强丝卷曲玻璃FRP。复合管可以在许多应用中取代石油和天然气行业的传统管道和传统的金属轴。采用对数衰减,对数减量和随机激发方法来识别不同复合材料的阻尼比和固有频率。使用CVMSL电动振动器(M437A / BT500M)和三轴振动测量仪进行测试。结果表明,金属加固选择在动态特性方面优于其余的增强选择,因为它导致较高的固有频率和阻尼比率。此外,细丝末端制造方法在编织卷包装法上表现出优异的动态特性。金属/灯丝卷绕加强率从0.1165升至0.1231增加到0.1231,从36.5Hz到70 Hz增加。

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