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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Dynamics of Multibody Systems With Spherical Clearance Joints
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Dynamics of Multibody Systems With Spherical Clearance Joints

机译:具有球形间隙关节的多体系统动力学

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This work deals with a methodology to assess the influence of the spherical clearance joints in spatial multibody systems. The methodology is based on the Cartesian coordinates, with the dynamics of the joint elements modeled as impacting bodies and controlled by contact forces. The impacts and contacts are described by a continuous contact force model that accounts for geometric and mechanical characteristics of the contacting surfaces. The contact force is evaluated as function of the elastic pseudo-penetration between the impacting bodies, coupled with a nonlinear viscous-elastic factor representing the energy dissipation during the impact process. A spatial four-bar mechanism is used as an illustrative example and some numerical results are presented, with the efficiency of the developed methodology discussed in the process of their presentation. The results obtained show that the inclusion of clearance joints in the modelization of spatial multibody systems significantly influences the prediction of components' position and drastically increases the peaks in acceleration and reaction moments at the joints. Moreover, the system's response clearly tends to be nonperiodic when a clearance joint is included in the simulation.
机译:这项工作涉及评估空间多体系统中球形间隙关节影响的方法。该方法基于笛卡尔坐标,关节单元的动力学建模为冲击体并受接触力控制。冲击和接触通过连续接触力模型来描述,该模型考虑了接触表面的几何和机械特性。评估接触力是冲击体之间的弹性拟穿透力的函数,再加上代表冲击过程中能量耗散的非线性粘弹性因子。使用空间四杆机构作为说明性示例,并给出了一些数值结果,并在其表示过程中讨论了所开发方法的效率。获得的结果表明,在空间多体系统的建模中包含间隙关节会显着影响零部件位置的预测,并大大增加关节处的加速度和反应力矩峰值。此外,当在仿真中包含间隙连接时,系统的响应显然趋向于非周期性的。

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