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Stability region of floating intermediate support in a shaft system with multiple universal joints

机译:带有多个万向节的轴系统中的浮动中间支撑的稳定区域

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摘要

A floating intermediate support is designed to reduce kinematic and dynamic fluctuations caused by the change of joint angles in a shaft system with multiple universal joints. The dynamic equation of the shaft system is derived via the principle of virtual work, which suggests the angular displacement of the input shaft is the only independent variable. A drive shaft system used in an articulated dump truck is taken as an example to analyze the sensitivities of shaft speed and input torque of the system about structural parameters and system variables, which proves the effectiveness of floating support to attenuate the kinematic and dynamic fluctuations of the shaft system. The stability region of floating support aimed at shaft speed and input torque of the system keeping relatively stable is obtained by setting proper upper limits of objectives, and the analysis results are verified by dynamic simulation in MapleSim platform, which is helpful to decide proper stiffness and damping or determine an optimum control strategy for floating angle of support in design.
机译:浮动中间支架的设计可减少在具有多个万向节的轴系统中,由于关节角度变化而引起的运动和动态波动。轴系统的动力学方程是根据虚拟功原理导出的,这表明输入轴的角位移是唯一的独立变量。以铰接式自卸车的驱动轴系统为例,分析了系统的轴速和输入扭矩对结构参数和系统变量的敏感度,证明了浮动支撑可减轻系统的运动和动态波动。轴系统。通过设置适当的目标上限,获得针对轴速度和系统输入转矩的,浮动支撑的稳定区域,并设置适当的目标上限,并通过MapleSim平台中的动态仿真验证分析结果,这有助于确定适当的刚度和阻尼或确定设计中支撑浮角的最佳控制策略。

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