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Vibration-based identification of mechanical properties of orthotropic arbitrarily shaped plates: Numerical and experimental assessment

机译:基于振动的正交异性任意形状板的力学性能识别:数值和实验评估

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摘要

An innovative procedure is introduced for the identification of the mechanical parameters of orthotropic plates of arbitrary shape, under various boundary conditions, based on vibration data. The method employs a combination of a convenient Rayleigh-Ritz approach and Particle-Swarm Optimization to estimate elastic constants of the orthotropic material in a straightforward manner, without requiring computationally demanding iterative Finite Element analyses. Specifically, the pb-2 Rayleigh-Ritz procedure is extended and applied to deal with orthotropic plates, simplifying the approach to more easily treat generic plate shapes, taking advantage of the Green's theorem. The method is then appropriately combined with the Particle-Swarm Optimization procedure to expeditiously identify material parameters based on available vibration data. Several numerical applications are presented to show the reliability of the approach, and comparisons with pertinent results available in the literature demonstrate the efficiency and accuracy of the proposed procedure. The study is then supplemented by experimental tests developed in the Laboratory of Experimental Dynamics at the University of Palermo, Italy. In this context, because of the obvious relevance for modern additive manufacturing processes, vibration tests are performed on several 3D printed stiffened plates. Numerical vis-a-vis experimental data are examined, showing that the proposed procedure accurately capture equivalent orthotropic parameters of the stiffened plates.
机译:引入了一种创新方法,用于基于振动数据,在各种边界条件下识别任意形状的正交异性板的机械参数。该方法结合了便利的Rayleigh-Ritz方法和粒子群优化技术,以直接的方式估算正交异性材料的弹性常数,而无需计算上需要迭代有限元分析。具体而言,将pb-2 Rayleigh-Ritz程序扩展并应用于正交各向异性板,从而简化了利用格林定理的方法,更容易地处理通用板的形状。然后,将该方法与“粒子群优化”过程进行适当组合,以根据可用的振动数据快速识别材料参数。提出了几个数值应用程序,以证明该方法的可靠性,并且与文献中提供的相关结果进行的比较证明了所提出程序的效率和准确性。然后,由意大利巴勒莫大学实验动力学实验室开发的实验测试对研究进行补充。在这种情况下,由于与现代增材制造工艺有着显着的相关性,因此需要在多个3D打印的加劲板上进行振动测试。相对于实验数据的数值进行了检查,表明所提出的程序准确地捕获了加劲板的等效正交各向异性参数。

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