Study of operating modes of electromagnetic hammer with adjustable impact energy and blow frequency

Ayman Y. Al-Rawashdeh, Vlademer E. Pavlov
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Abstract

The current work was designed to study the operating modes of electromagnetic impact mechanism (electromagnetic hammer) comprising idle and working stroke windings that are enclosed in magnetic conductor, and reciprocating ferromagnetic striker. Investigation was conducted by modelling in MATLAB environment and performing verification tests with different hammers. Simulation model of the hammer was derived using experimentally obtained static characteristic curves of flux linkage and thrust force for each of the windings. Results revealed that at maximum working stroke winding voltage-varying idle stroke winding voltage, the impact energy did not change, but the impact frequency varied between 0-187 bpm. At maximum idle stroke winding voltage and working stroke winding voltage ranging between 0 to maximum value, the impact energy varied between 84-360 J, the impact frequency varied between 96-187 bpm. Maximum losses over the working cycle were associated with electric losses in the hammer windings and can be reduced by reducing winding currents through increasing the striker speed. The mathematical model of the current study allowed quantifying energy parameters of the electromagnetic hammer. The impact machine cycle includes three operating modes, each determines the main energy parameters: efficiency, impact energy, and cycle time.
冲击能量和打击频率可调的电磁锤工作模式研究
目前的工作旨在研究电磁撞击机构(电磁锤)的工作模式,该机构由磁导体包裹的空闲和工作冲程绕组以及往复式铁磁撞击器组成。研究在 MATLAB 环境中建模,并用不同的锤子进行验证测试。利用实验获得的每个绕组的磁通连线和推力的静态特性曲线,推导出锤子的仿真模型。结果显示,在最大工作行程绕组电压-空闲行程绕组电压变化时,冲击能量没有变化,但冲击频率在 0-187 bpm 之间变化。在最大空转行程绕组电压和工作行程绕组电压介于 0 至最大值之间时,冲击能量在 84 至 360 焦耳之间变化,冲击频率在 96 至 187 bpm 之间变化。工作周期内的最大损耗与锤头绕组中的电损耗有关,可通过提高锤头转速降低绕组电流来减少损耗。本次研究的数学模型可以量化电磁锤的能量参数。冲击机器循环包括三种工作模式,每种模式都决定了主要的能量参数:效率、冲击能量和循环时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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