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Domain-boundary element method for elastodynamics of functionally graded Timoshenko beams

机译:功能梯度蒂莫申科梁弹性力学的域边界元方法

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A new domain-boundary element method is developed for elastodynamic analysis of functionally graded Timoshenko beams. Three governing partial differential equations of motion are derived by considering through-the-thickness variations of the physical properties. Weighted-residual forms are imposed utilizing the static fundamental solutions. These forms are then reduced to three integral equations containing domain integrals with time derivatives of unknown functions. Through domain discretization and shape function approximation, integral equations are converted to a system of ordinary differential equations in time. Forced dynamic response is revealed by solving the system of equations via Houbolt method. Comparison of dynamic responses generated for homogeneous beams to those calculated through an analytical solution and finite difference method verify the developed procedures. Further parametric analyses are performed for functionally graded Timoshenko beams under step, harmonic, and impulsive loadings. The numerical results presented illustrate the influence of material inhomogeneity on time histories of deflection and stress. Domain-boundary element method is demonstrated to be an effective technique for elastodynamic analysis of functionally graded structures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:开发了一种新的域边界元方法,用于功能梯度Timoshenko梁的弹性动力学分析。通过考虑厚度的物理特性变化,可以得出三个主要的运动偏微分方程。利用静态基本解来施加加权残差形式。然后将这些形式简化为三个积分方程,其中包含具有未知函数时间导数的域积分。通过域离散化和形状函数逼近,将积分方程及时转换为常微分方程组。通过使用Houbolt方法求解方程组,可以揭示强制动态响应。将均匀光束产生的动力响应与通过解析解和有限差分法计算得到的动力响应进行比较,可以验证所开发的程序。在阶跃,谐波和脉冲载荷下,对功能梯度的Timoshenko梁进行进一步的参数分析。给出的数值结果说明了材料不均匀性对挠曲和应力时间历史的影响。域边界元方法被证明是一种功能梯度结构的弹性动力学分析的有效技术。 (C)2017 Elsevier Ltd.保留所有权利。

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