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Family of columns isospectral to gravity-loaded columns with tip force: A discrete approach

机译:柱子的家庭谱谱与重力加载的柱子,尖端力量:一个离散的方法

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A discrete model is introduced to analyze transverse vibration of straight, clamped-free (CF) columns of variable cross-sectional geometry under the influence of gravity and a constant axial force at the tip. The discrete model is used to determine critical combinations of loading parameters - a gravity parameter and a tip force parameter - that cause onset of dynamic instability in the CF column. A methodology, based on matrix-factorization, is described to transform the discrete model into a family of models corresponding to weightless and unloaded clamped-free (WUCF) columns, each with a transverse vibration spectrum isospectral to the original model. Characteristics of models in this isospectral family are dependent on three transformation parameters. A procedure is discussed to convert the isospectral discrete model description into geometric description of realistic columns i.e. from the discrete model, we construct isospectral WUCF columns with rectangular cross-sections varying in width and depth. As part of numerical studies to demonstrate efficacy of techniques presented, frequency parameters of a uniform column and three types of tapered CF columns under different combinations of loading parameters are obtained from the discrete model. Critical combinations of these parameters for a typical tapered column are derived. These results match with published results. Example CF columns, under arbitrarily-chosen combinations of loading parameters are considered and for each combination, isospectral WUCF columns are constructed. Role of transformation parameters in determining characteristics of isospectral columns is discussed and optimum values are deduced. Natural frequencies of these WUCF columns computed using Finite Element Method (FEM) match well with those of the given gravity-loaded CF column with tip force, hence confirming isospectrality. (C) 2018 Elsevier Ltd. All rights reserved.
机译:离散模型引入到分析直,夹紧 - 自由(CF)可变的横截面几何形状的列的横向振动重力的影响,并在前端具有恒定的轴向力的作用下。离散模型被用于确定的负载参数临界组合 - 一个重力参数和尖端力参数 - 动态不稳定性的在CF列原因发病。甲方法,基于矩阵因式分解,描述了离散模型转换为一个家庭的对应于失重模型和卸载夹紧 - 自由(WUCF)列,每一个横向振动光谱等谱与原始模型。在这个家庭等谱模型特性取决于三个转换参数。的过程被讨论的等谱离散模型描述转换为从离散模型逼真列即几何描述中,我们构建具有矩形横截面的宽度和深度改变等谱WUCF列。作为数值研究的一部分以展示呈现技术中,均匀柱的频率参数和三种类型的下负载参数的不同组合的锥形CF列的功效从离散的模型获得。这些参数的典型的锥形柱的临界组合而得。这些结果匹配公布的结果。例如CF列下的负载参数任意挑选的组合被认为并且对于每个组合,等谱WUCF列构成。在确定等谱列的特性的变换参数的作用进行了讨论和最佳值推导出。这些WUCF列的固有频率使用计算机的有限元法(FEM)很好地匹配与那些具有尖端力给定的重力加载的CF列的,因此确认isospectrality。 (c)2018年elestvier有限公司保留所有权利。

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