利用负载转矩和定子电流分析检测起升绞车系统钢丝绳笼鸟现象

H. Henao, S. R. Rastegar Fatemi, S. Sieg-Zieba, G. Capolino
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引用次数: 3

摘要

本文从理论上和实验上分析了三相感应电机定子电流和起升绞车系统负载转矩信号,以说明钢丝绳故障情况对它们的影响。当钢丝绳受到轴向和扭转载荷作用时,外股会与芯股永久分离,使钢丝绳失效。术语“鸟笼”是用来描述这种现象的,这种现象使钢丝绳永久地出现在被迫压缩的情况下。在起升绞车系统中,走绳在卷筒和滑轮上弯曲,并受到它们之间的旋转角的扭转应力。本文通过观察船队角对定子电流和负载转矩的影响,来检测钢丝绳的笼形。本文以22kW鼠笼式感应电机为研究对象,提出了一种新颖的利用电机定子电流检测钢丝绳故障状态的无创方法。
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Detection of birdcaging in steel wire rope of a hoisting winch system by analysis of load torque and stator current
The aim of this paper is to analyze theoretically and experimentally the stator current of a three phase induction machine and load torque signals in a hoisting winch system, in order to show how they are influenced by the wire rope faulty condition. When the wire rope is subjected to axial and torsional loads, the outer strands can separate from the core in permanent way and make the rope useless. The term birdcaging is used to describe this type of phenomenon giving a permanent appearance of a wire rope forced into compression. In a hoisting winch system the running rope is bent over drum and pulley and it is torsionally stressed by the fleet angle between them. In this paper, the effect of the fleet angle is observed in the stator current and load torque, in order to detect the wire rope birdcaging. This study is performed on a 22kW squirrel-cage induction machine and presents an original non invasive way to detect wire rope fault condition, by using the stator current of the electrical machine.
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