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Elastic wave propagation in laminated FRP plates

机译:层压玻璃钢板中的弹性波传播

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摘要

In this paper, guided elastic Lamb wave propagation characteristics in laminated plates are studied using a proper phenomological model for the fiber reinforced composite material. It is well established that ultrasonic waves attenuate in FRP composite material. This is caused by the visco-elastic behavior of the resin ad scattering due to the fiber. The material here is, therefore, numerically modeled using complex material properties. Both the material and frequency-dependent damping for each layer of the laminated plate is incorporated in the formulation. A Rayleigh-Ritz based stiffness method is used to discretize the plate in the vertical direction to determine wave numbers. Furthermore, elasto-dynamic Green functions for both displacement and stress fields in the laminated composite plate are also derived. In this manner, the effect of guided wave attenuation on wave numbers and displacements and stress Green functions are studied. All wave numbers, including those for propagating modes, are complex. However, the relative value of the imaginary part of the wave number of the propagating modes are small, and it is seen that incorporation of damping has an insignificant effect on dispersion characteristics, irrespective of the excitation frequency. However, it significantly affects both displacement and stress fields, especially as the distance from the source increases. This effect is dependent on the excitation frequency. At relative low frequencies, the attenuation of the displacement and stress fields is small. The attenuation increases with excitation frequency, although seemingly the effects on the stress field are relatively less significant than those on the displacement field.
机译:本文使用纤维增强复合材料的适当物候模型研究了层合板中的引导弹性兰姆波传播特性。众所周知,超声波会在FRP复合材料中衰减。这是由于树脂和纤维引起的散射引起的粘弹性行为。因此,这里的材料是使用复杂的材料特性进行数值建模的。叠层板每一层的材料和频率相关的阻尼都包含在配方中。使用基于Rayleigh-Ritz的刚度方法在垂直方向离散化板以确定波数。此外,还导出了层合复合板中位移场和应力场的弹性动力学格林函数。以这种方式,研究了导波衰减对波数和位移以及应力格林函数的影响。所有波数,包括用于传播模式的波数都是复杂的。然而,传播模式的波数的虚部的相对值较小,并且可以看出,阻尼的引入对色散特性的影响不显着,与激发频率无关。但是,它会显着影响位移场和应力场,特别是当距震源的距离增加时。该效果取决于激励频率。在相对较低的频率下,位移场和应力场的衰减很小。衰减随激励频率的增加而增加,尽管看上去对应力场的影响不如对位移场的影响大。

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