An Enhanced Computational Technique for the Static Analysis of Multi-Support Spindle Shafts with Nonlinear Elastic Bearings

V. Khavin, O. Kyrkach, B. Kyrkach
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Abstract

In this paper a mathematical model and a computational technique for the static analysis of multi-support stepped spindle shafts on nonlinear elastic supports are presented. On the basis of the Timoshenko differential equation of the beam's bent axis and the method of initial parameters, a resolving system of equations is obtained that takes into account the nonlinear dependency of the stiffness of the bearings on the forces acting on them along with the stepwise variation of the cross-sectional dimensions of the shaft. A numerical method for solving the problem has been proposed and a software tool has been developed, which performs the static analysis of multi-support stepped spindle shafts on nonlinear elastic supports in MATLAB environment.
非线性弹性轴承多支承主轴静力分析的改进计算方法
本文建立了非线性弹性支承上多支承阶梯式主轴轴静力分析的数学模型和计算方法。在梁弯曲轴的Timoshenko微分方程和初始参数法的基础上,得到了考虑轴承刚度随轴截面尺寸逐步变化的非线性依赖关系的解析方程组。提出了求解该问题的数值方法,并开发了软件工具,在MATLAB环境下对非线性弹性支承上的多支承阶梯主轴轴进行了静力分析。
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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