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Investigation of the size effects in Timoshenko beams based on the couple stress theory

机译:基于偶应力理论的季莫申科梁的尺寸效应研究

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In this paper, a size-dependent Timoshenko beam is developed on the basis of the couple stress theory. The couple stress theory is a non-classic continuum theory capable of capturing the small-scale size effects on the mechanical behavior of structures, while the classical continuum theory is unable to predict the mechanical behavior accurately when the characteristic size of structures is close to the material length scale parameter. The governing differential equations of motion are derived for the couple-stress Timoshenko beam using the principles of linear and angular momentum. Then, the general form of boundary conditions and generally valid closed-form analytical solutions are obtained for the axial deformation, bending deflection, and the rotation angle of cross sections in the static cases. As an example, the closed-form analytical results are obtained for the response of a cantilever beam subjected to a static loading with a concentrated force at its free end. The results indicate that modeling on the basis of the couple stress theory causes more stiffness than modeling by the classical beam theory. In addition, the results indicate that the differences between the results of the proposed model and those based on the classical Euler-Bernoulli and classical Timoshenko beam theories are significant when the beam thickness is comparable to its material length scale parameter.
机译:在本文中,基于偶应力理论开发了尺寸依赖的Timoshenko梁。偶应力理论是一种非经典的连续体理论,能够捕获小尺寸尺寸对结构力学行为的影响,而经典连续体理论无法在结构的特征尺寸接近结构力学尺寸时准确地预测力学行为。材料长度比例参数。利用线性动量和角动量原理导出了耦合应力Timoshenko梁的支配运动微分方程。然后,获得了静态条件下的轴向变形,弯曲挠度和横截面旋转角度的边界条件的一般形式和通常有效的闭合形式的解析解。例如,对于悬臂梁在其自由端受到集中力的静态载荷的响应,可获得封闭形式的分析结果。结果表明,基于耦合应力理论的建模比基于经典梁理论的建模具有更高的刚度。此外,结果表明,当梁的厚度与材料长度尺度参数相当时,所提出的模型的结果与基于经典的Euler-Bernoulli和经典的Timoshenko束理论的结果之间的差异是显着的。

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