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A Modified FEM for Transverse and Lateral Vibration Analysis of Thin Beams Under a Mass Moving with a Variable Acceleration

机译:变加速度作用下细梁横向和横向振动分析的改进有限元法

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In this paper, a new modified finite element method that can be used in the analysis of transverse and lateral vibrations of the thin beams under a point mass moving with a variable acceleration and constant jerk is presented. Jerk is the change in acceleration over time. In this method, the classical finite element of the beam is modified by the inclusion of the inertial effects of the moving mass. This modification is made using the relations between nodal forces and nodal deflections and shape functions of six DOF beam element. The mass, stiffness, and damping matrices of the modified finite element are determined by forces caused by the corresponding transverse and lateral accelerations and jerks, and transverse Coriolis and centripetal accelerations and jerks, respectively. This method was first applied on a simply supported beam plate to provide a comparison with the previous studies in literature, and it was proved that the results were within acceptable limits. Secondly, it was applied on a CNC type box-framed beam to analyse the dynamic response of the beam in terms of variable acceleration and jerk as well as constant velocity and mass ratios.
机译:本文提出了一种新的改进的有限元方法,该方法可用于分析在具有可变加速度和恒定加速度的点质量运动下,横梁的横向和横向振动。混蛋是加速度随时间的变化。在这种方法中,通过包含运动质量的惯性效应来修改梁的经典有限元。使用六个自由度梁单元的节点力和节点挠度以及形状函数之间的关系进行此修改。修改后的有限元的质量,刚度和阻尼矩阵分别由相应的横向和横向加速度和加速度以及横向科里奥利和向心加速度和加速度所引起的力确定。该方法首先应用于简单支撑的梁板上,以与文献中的先前研究进行比较,并证明结果在可接受的范围内。其次,将其应用于CNC型箱形梁,以可变的加速度和加速度,恒定的速度和质量比分析梁的动态响应。

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