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Research on the transmission error of swing-rod movable teeth transmission system

机译:摆杆可移动齿传动系统传输误差的研究

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Using the two-tooth difference swing-rod movable teeth transmission system satisfying the drive function of large optical instruments as the study object, the influence of each component error on system transmission error is analysed. Each component error is presented by the vector method, and then it is transformed into equivalent error in the direction of the meshing action line based on the equivalent meshing error principle. The instantaneous transmission ratio of the system is obtained by the instantaneous velocity center method, and the system transmission error model is established. Using numerical analysis, the influence of each component error on the system transmission error is obtained. The transmission error test platform is used to test and analyze the transmission error of the two-tooth difference swing-rod movable teeth transmission system. The research results show that the swing-rod length error and the wave generator eccentric error have a great influence on the transmission error of the system among the six types of error factors, so they should be strictly controlled during design, processing and assembly. This study provides a theoretical basis for the rational allocation of machining errors and assembling errors of the two-tooth difference swing-rod movable teeth transmission system.
机译:使用满足大型光学仪器的驱动功能的双齿差摆杆可动齿传输系统作为研究对象,分析了每个组分误差对系统传输错误的影响。每个分量误差由矢量方法呈现,然后基于等效的网格误差原理将其转换为啮合动作线的方向等效误差。通过瞬时速度中心方法获得系统的瞬时传动比,建立系统传输误差模型。使用数值分析,获得了每个组件误差对系统传输错误的影响。传输错误测试平台用于测试和分析双齿差摆杆可移动齿传动系统的传输误差。研究结果表明,摆杆长度误差和波发生器偏心误差对六种误差因子中系统的传输误差产生了很大影响,因此应在设计,处理和装配过程中严格控制它们。本研究为双齿差摆杆可移动齿传动系统的加工误差和组装误差提供了理性分配的理论依据。

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