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A spectral finite element model for analysis of axial-flexural-shear coupled wave propagation in laminated composite beams

机译:用于分析层合梁中轴-弯-剪耦合波传播的频谱有限元模型

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A spectral finite element model (SFEM) for analysis of axial-flexural-shear coupled wave propagation in thick laminated composite beams is presented. Range of validity of the first order shear deformation in the context of higher order Lamb wave modes is discussed. Concept of spectral element shape function, dynamic strain-displacement matrix and dynamically consistent force vector are derived. An exact dynamic stiffness matrix is derived, which is used in finite element (FE) analysis. Computation is performed in the Fourier domain at FFT sampling points over broad frequency band. Post-processing of the response is performed in both the frequency domain as well as in the time domain, which is suitable for structural diagnostics and broad-band wave propagation problems. To extend the range of engineering applications of SFEM, linear damping models are formulated. Effect of viscous damping on group speeds and wave amplitudes are studied for graphite-epoxy composite beams. Response under impact type loading is compared with time domain FE results. Numerical examples are presented, where the effect of axial-flexural-shear coupling is characterized. Efficient application of the model is shown considering laminated beam with ply-drops. Also a global/local model for estimation of Mode-Ⅱ crack tip field in a delaminated thick composite beam is presented.
机译:提出了一种频谱有限元模型(SFEM),用于分析厚叠层复合梁中轴-弯-剪耦合波的传播。讨论了高阶兰姆波模态下一阶剪切变形的有效范围。推导了谱单元形状函数,动态应变位移矩阵和动态一致力矢量的概念。导出精确的动态刚度矩阵,将其用于有限元(FE)分析。在宽频带上的FFT采样点的傅立叶域中执行计算。响应的后处理在频域和时域中均进行,这适用于结构诊断和宽带波传播问题。为了扩展SFEM的工程应用范围,制定了线性阻尼模型。研究了石墨-环氧复合梁的粘性阻尼对群速度和波幅的影响。将冲击类型载荷下的响应与时域有限元结果进行比较。给出了数值示例,其中表征了轴向-弯曲-剪切耦合的影响。考虑到带有层滴的叠层梁,该模型的有效应用得以展示。提出了一种整体/局部模型,用于估计分层厚复合梁中的Ⅱ型裂纹尖端场。

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