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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Modeling of geared positioning systems: An object-oriented gear contact model with validation
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Modeling of geared positioning systems: An object-oriented gear contact model with validation

机译:齿轮定位系统的建模:带有验证的面向对象的齿轮接触模型

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In aerospace positioning actuators, gear efficiencies of 85% as well as breakout forces as high as 50% of the stall load of the actuator are observed at very low temperature conditions. Due to the low efficiency and high loading, stiction in these actuators is common which can lead to limit cycles or problems with controlling the actuators. To be able to correctly predict and assess these effects using simulations, a complete actuator, including motor, inverter, load, and controller is needed. This article presents an object-based, numerically efficient gear contact in a planar environment with user-defined friction and stiffness laws. The emphasis of the modeling is not a fully detailed contact model, but the description of a gear contact model which can be used for system simulations like complete aircraft electromechanical actuators including control surfaces. The presented model is suitable for complex gearing configurations (e.g. compound planetary gears). This is enabled by breaking down the transmission into the basic gear contacts. By adding masses and constraints from an existing component library, a complete transmission can be modeled. The generated model can be used for standalone simulations or can be used in multi-domain simulations like actuator modeling, in order to analyze the complete actuator model including parts such as drives, controllers and mechanical systems. The presented models have been validated using a gear test rig for a single stage spur gear.
机译:在航空航天定位执行器中,在非常低的温度条件下,齿轮效率高达85%,而分断力高达执行器失速负载的50%。由于低效率和高负荷,这些致动器中的静摩擦是常见的,这可能导致极限循环或控制致动器的问题。为了能够使用仿真正确预测和评估这些影响,需要一个完整的执行器,包括电动机,逆变器,负载和控制器。本文介绍了在平面环境中具有用户定义的摩擦和刚度定律的基于对象的,数值有效的齿轮接触。建模的重点不是完整的接触模型,而是齿轮接触模型的描述,该模型可用于系统仿真,例如包括控制面的完整飞机机电致动器。提出的模型适用于复杂的齿轮配置(例如复合行星齿轮)。通过将变速箱分解成基本的齿轮触点可以实现这一点。通过添加现有组件库中的质量和约束,可以对完整的传输进行建模。生成的模型可以用于独立仿真,也可以用于执行器建模等多领域仿真,以分析完整的执行器模型,包括驱动器,控制器和机械系统等零件。所介绍的模型已通过齿轮测试装置对单级正齿轮的验证。

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