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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >System-Level Modeling and Parametric Identification of Electric Impact Wrench
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System-Level Modeling and Parametric Identification of Electric Impact Wrench

机译:电动冲击扳手的系统级建模和参数识别

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摘要

Electric impact wrench is an important tool used in manufacturing and maintenance services. It has complex mechanism and its operation involves dynamic events occurring at vastly different time scales, which poses challenges for efficient and accurate modeling to facilitate design optimization and control. This investigation establishes a first principle-based, system-level model of a representative impact wrench. The model explicitly incorporates the dynamic flexibility of gear transmission, spindle shaft, and impacting components into the kinematic relations that connect them together. The nonlinear impact and contact events, coupled with the rotational and translational motions of all components, are explicitly analyzed, and systematic parametric identification is performed based on a multi-objective optimization (MOO) approach. The model prediction is correlated with experimental studies.
机译:电动扳手是用于制造和维护服务的重要工具。它具有复杂的机制,其操作涉及在非常不同的时间尺度上发生的动态事件,这对有效,准确的建模提出了挑战,以促进设计优化和控制。这项研究建立了具有代表性的冲击扳手的第一个基于原理的系统级模型。该模型将齿轮传动装置,主轴和冲击组件的动态灵活性明确纳入了将它们连接在一起的运动关系中。明确地分析了非线性撞击和接触事件,以及所有组件的旋转和平移运动,并基于多目标优化(MOO)方法执行了系统的参数识别。模型预测与实验研究相关。

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