铸造起重机起升机构理论模型的建立

V. Borisenko, V. Sidorov, D. Bazhutin, A. I. Zemlyanskiy
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引用次数: 0

摘要

在铸造起重机的起重传动中,经常出现分体式滚筒嵌件螺栓连接失效的紧急情况。后者是由“左”和“右”机电系统的齿轮箱中出现不等间隙的原因,这些齿轮箱是由异步电动机驱动的,电动机带有由单个变频器供电的短路转子。由于发动机机械特性的高刚性,标称滑块的微小偏差可能导致发动机负载的显著变化,从而导致齿轮箱负载不均匀和齿条加载歪斜。这导致了鼓的两个部分的速度稳定性的破坏,以及在提升绳和金属桶的振动中出现额外的动态载荷。提出的铸造起重机起重机构的设计方案允许跟踪简化的性质,并关注可能出现的紧急情况。机电系统的提升模型使其在典型工作模式下的动力学研究成为可能。当其中一个电机关闭时,插入物中存在间隙导致机电系统中的振荡过程;这尤其会影响插入元件的运动——存在间隙打开的区域,这会导致螺栓连接中额外的动态载荷和它们的过早失效。建议将插件中的弹性力矩作为诊断值,通过其变化的性质,可以判断机电升降系统中紧急情况的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Construction of theoretical models for the lifting mechanism of the foundry crane
In the lifting drive of the foundry crane, there are emergency situations provoked by failures of bolted connections in the insert of the split drum. The latter is explained by the appearance of unequal gaps in the gearboxes of the «left» and «right» electromechanical systems driven by asynchronous motors with short-circuited rotors powered by individual frequency converters. With high rigidity of the mechanical characteristics of the engines, small deviations in nominal slides can cause a significant variation in engine loads and, as a result, unequal loading of gearboxes and a skew in the loading of the insert. This leads to a violation of the stability of the speed regime of both parts of the drum and to the appearance of additional dynamic loads in the lifting ropes and vibrations of the bucket with metal. The proposed design schemes of the lifting mechanism of the foundry crane allow tracing the nature of simplifications and focusing on possible emergency situations. Lifting models of electromechanical systems make it possible to study their dynamics in typical operating modes. The presence of a gap in the insert when one of the motors is switched off leads to an oscillatory process in electromechanical systems; this especially affects the movement of the insert elements — there are areas of gap opening, which leads to additional dynamic loads in bolted connections and their premature failure. It is recommended to take the elastic moment in the insert as a diagnostic value, by the nature of the change of which it is possible to judge the development of an emergency situation in electromechanical lifting systems.
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