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Simulation of spring system's operation process for electromagnetic relay

机译:电磁继电器弹簧系统运行过程的仿真

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Electromagnetic relay (EMR), being one type of the representative electromechanical components, plays a vital role in control system, communication and industrial automation. Reliable motion is the important premise of the reliable operation. Spring system (including springs and contacts) is the executing parts of EMR, the dynamic mechanical character of which influences EMR's life directly and eventually affect its reliability. Based on the dynamics theory of flexible multi-body system, the mathematic model of motion process for spring system is built up in This work. The relative factors which affect dynamic character of contact (bouncing, contact pressure), such as contact position, pusher arm position, pushing pressure and spring size), is analyzed by using software-ADAMS. How to improve dynamic contact character of spring system is investigated by computer simulation. The conclusions can be used to guide the parameter optimized design of spring system for EMR in order to increase the reliability of contacts.
机译:电磁继电器(EMR)是代表性的机电部件之一,在控制系统,通信和工业自动化中起着至关重要的作用。可靠的运动是可靠运行的重要前提。弹簧系统(包括弹簧和触点)是EMR的执行部分,其动态机械特性直接影响EMR的寿命,并最终影响其可靠性。本文基于柔性多体系统动力学理论,建立了弹簧系统运动过程的数学模型。使用ADAMS软件分析了影响接触动态特性(弹跳,接触压力)的相对因素,例如接触位置,推动臂位置,推动压力和弹簧尺寸。通过计算机仿真研究了如何改善弹簧系统的动态接触特性。该结论可用于指导EMR弹簧系统的参数优化设计,以提高触点的可靠性。

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