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Nonlinear Dynamic Analysis of an Inclined Timoshenko Beam Subjected to a Moving Mass/Force with Beam’s Weight Included

机译:倾斜的Timoshenko梁在质量/力移动的情况下的非线性动力学分析,其中包括梁的重量

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In this study, the nonlinear vibrations analysis of an inclined pinned-pinned self-weight Timoshenko beam made of linear, homogenous and isotropic material with a constant cross section and finite length subjected to a traveling mass/force with constant velocity is investigated. The nonlinear coupled partial differential equations of motion for the rotation of warped cross section, longitudinal and transverse displacements are derived using the Hamilton's principle. These nonlinear coupled PDEs are solved by applying the Galerkin's method to obtain dynamic responses of the beam. The dynamic magnification factor and normalized time histories of mid-point of the beam are obtained for various load velocity ratios and the outcome results have been compared to the results with those obtained from linear solution. The influence of the large deflections caused by a stretching effect due to the beam's fixed ends is captured. It was seen that existence of quadratic-cubic nonlinear terms in the nonlinear governing coupled PDEs of motion causes stiffening (hardening) behavior of the dynamic responses of the self-weight beam under the act of a traveling mass as well as equivalent concentrated moving force. Furthermore, in a case where the object leaves the beam, its planar motion path is derived and the targeting accuracy is investigated and compared with those from the rigid solution assumption.
机译:在这项研究中,研究了由线性,均质和各向同性的材料制成的斜钉扎式自重Timoshenko梁的非线性振动分析,该材料具有恒定的横截面和有限的长度,并且受到行进质量/力的恒定速度的影响。使用汉密尔顿原理导出了用于扭曲截面的旋转,纵向和横向位移的非线性耦合偏微分运动方程。通过应用Galerkin方法获得光束的动态响应,可以解决这些非线性耦合的PDE。获得了各种载荷速度比下梁的动态放大系数和中点的归一化时间历程,并将结果与​​通过线性解获得的结果进行了比较。可以捕获由于梁的固定端而产生的拉伸效应所引起的大挠度的影响。可以看出,在非线性控制耦合运动的PDE中存在二次三次非线性项会导致自重梁在行进质量以及等效集中运动力作用下的动态响应变硬(变硬)。此外,在物体离开光束的情况下,推导其平面运动路径,并研究瞄准精度,并将其与刚性解决方案假设的精度进行比较。

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