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Identification of design parameter variability of honeycomb sandwich beams from a study of limited available experimental dynamic structural response data

机译:通过有限的可用实验动态结构响应数据研究确定蜂窝夹层梁的设计参数变异性

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The goal of this paper is to characterise the variability of two important design parameters of thermoplastic honeycomb sandwich beams from the analysis of experimentally determined resonance frequencies and mode shapes of a limited number of test beams, under free boundary conditions. The design parameters are the Young's modulus of the skin in length direction of the beam and the out-of-plane shear modulus of the honeycomb core. These two independent parameters are expressed as random fields using a Karhunen-Loeve series expansion of the covariance matrix, available after updating the finite element models using the experimental vibration data. The random variables of this series expansion are expressed in terms of a Hermite polynomial chaos. The aleatory uncertainty is modelled by the Gaussian random variables while the epistemic uncertainty is described by the randomness of the polynomial chaos coefficients. An estimation of the uncertainty resulting from the experimental and numerical modal analysis is discussed, along with its influence on the two considered stiffness parameters.
机译:本文的目的是通过分析在自由边界条件下实验确定的共振频率和有限数量的测试梁的振型,来表征热塑性蜂窝夹层梁的两个重要设计参数的可变性。设计参数是沿梁长度方向的蒙皮杨氏模量和蜂窝状芯的平面外剪切模量。使用协方差矩阵的Karhunen-Loeve级数展开将这两个独立的参数表示为随机字段,在使用实验振动数据更新有限元模型之后可以使用这些参数。该级数展开的随机变量以Hermite多项式混沌表示。偶然不确定性由高斯随机变量建模,而认知不确定性由多项式混沌系数的随机性描述。讨论了由实验和数值模态分析产生的不确定性的估计,以及不确定性对两个考虑的刚度参数的影响。

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