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Free Vibration Analysis of an Integrally Stiffened Plate with Plate-Strip Stiffeners using a Set of Static Timoshenko Beam Functions

机译:使用一组静态Timoshenko梁功能的板条加强筋的无整体加强板的自由振动分析

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We investigated the natural frequencies and mode shapes of a freely vibrating, integrally stiffened and/or stepped plate. The stiffeners used here, were plate-strip stiffeners as opposed to rib stiffeners. Both plate and stiffeners were analyzed using the first order shear deformation theory (FSDT), which employs the transverse shear deformation and rotary inertias as well as the longitudinal displacements. The deflections and rotations were assumed as a product of Timoshenko beam functions, chosen appropriately according to the given boundary conditions. Unlike Navier and Levy solution techniques, the approach used in this paper can also solve for fully clamped and free stiffened plates. The governing differential equations were solved using Rayleigh-Ritz method. Stiffened plates were considered in the study with simply-supported, fixed and free boundary conditions. The procedure adopted in this paper can analyze plates with centrically and non-centrically placed stiffeners. Moreover, the development of the stiffness and the mass matrices in the Ritz analysis consumes huge amount of CPU time due to recursive integration of Timoshenko beam functions, which include sets of trigonometric functions. A technique is used to greatly decrease the amount of CPU time, by replacing the recursive symbolic integration in a loop structure in the computer program, with the solution of the integrand in the loop. The numerical results were compared with the exact solutions available in the literature and the commercially available finite element software ABAQUS~?, and the results were found to be highly satisfactory. Some parametric studies were carried out to exhibit the influence of certain important parameters on the natural frequencies of the stiffened plate. Finally, a plate with end viscous dampers was studied and some conclusions were drawn about the mode shapes of the plate.
机译:我们调查了自由振动,整体加强和/或阶梯式板的自然频率和模式形状。这里使用的加强件是板条加强件,而不是肋状加强筋。使用第一阶剪切变形理论(FSDT)分析板和加强件,其采用横向剪切变形和旋转惯性以及纵向位移。假设偏转和旋转作为Timoshenko光束功能的乘积,根据给定的边界条件适当地选择。与Navier和Levy解决方案技术不同,本文使用的方法也可以解决完全夹紧和自由加强板。使用Rayleigh-Ritz方法解决了控制微分方程。通过简单地支持,固定和自由边界条件,在研究中考虑加强板。本文采用的程序可以分析平板,并不居中放置加强筋。此外,RITZ分析中的刚度和大规模矩阵的发展消耗了由于Timoshenko波束函数的递归集成而产生的大量CPU时间,这包括三角函数集。通过替换计算机程序中的循环结构中的循环结构中的递归符号集成,通过循环中的循环解决方案来大大降低CPU时间的量。将数值结果与文献中可用的精确解决方案进行比较,并且可商购的有限元软件ABAQUS ~~~,结果被发现高度令人满意。进行了一些参数研究,以表现出某些重要参数对加强板的固有频率的影响。最后,研究了具有端部粘性阻尼器的板,并围绕板的模式形状绘制了一些结论。

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