Sector Plate Bending: Using Computer Algebra Systems

Dmitriy Goloskokov, Aleksandr Matrosov
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Abstract

Purpose: To investigate the stress-strain state of a thin homogeneous isotropic plate in the form of a sector by numerical-analytical method. To consider the possibility of using computer algebra systems (CAS) to calculate sectoral plates operating under bending due to a transverse load. To demonstrate the effectiveness of applying one of these CASs through the example of the Maple system for calculations using the Ritz method — performing analytical transformations when calculating the integral that determines the total potential energy functional, forming and solving the main resolving system of linear algebraic equations with respect to unknown numerical coefficients in the formula approximating the deflection of the plate, visualization of the obtained solution. Methods: A direct method is used to solve the variational problem of minimizing the functional of the total potential energy of deformation of a thin homogeneous isotropic plate in the form of a sector — the Ritz method. The solution is constructed in the form of a series in terms of basis functions. As basis functions, polynomial functions are chosen that exactly satisfy all boundary conditions. Results: An approximate numerical-analytical solution has been obtained for the problem of bending a sectoral plate in the form of a quarter of a circle, clamped along the contour and loaded with a uniformly distributed load. The effectiveness of using the Maple analytical computing system for solving the problem of bending a sectoral plate by the variational Ritz method is demonstrated. It is shown that the resulting solution quickly converges both for deflection and for bending moments and stresses. Practical significance: The algorithm proposed in the article for solving the problems of bending sectoral plates can be recommended for practical use in determining the stress-strain state of such plates.
扇形板弯曲:使用计算机代数系统
目的:用数值解析方法研究扇形各向同性薄板的应力-应变状态。考虑使用计算机代数系统(CAS)计算受横向载荷弯曲作用的扇形板的可能性。为了证明应用这些CASs之一的有效性,通过使用里兹方法进行计算的Maple系统的示例-在计算确定总势能泛函的积分时执行解析变换,形成并求解关于公式中未知数值系数的线性代数方程的主要解析系统近似板的挠度,获得的解的可视化。方法:用一种直接的方法求解扇形均匀各向同性薄板变形总势能泛函的最小化变分问题——里兹法。解被构造成一系列基函数的形式。选取精确满足所有边界条件的多项式函数作为基函数。结果:对于弯曲四分之一圆形式的扇形板,沿轮廓夹紧并加载均匀分布载荷的问题,获得了近似的数值解析解。用变分里兹法求解扇形板弯曲问题,证明了Maple解析计算系统的有效性。结果表明,得到的解对于挠度和弯矩、应力都是快速收敛的。实践意义:本文提出的求解弯曲扇形板问题的算法可推荐用于确定扇形板的应力-应变状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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