Optimisation of Dynamic Loads of Rope Systems of Lifting Mechanisms of Bridge Cranes During Cargo Handling

Y. Chovnyuk, L. Diachenko, Yevhen A. Ivanov, Nataliya Dichek, O. Orel
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引用次数: 1

Abstract

Relevance. In this study, considerable attention is devoted to the analysis of dynamic loads that occur in the rope systems of lifting mechanisms of overhead cranes during start-up and braking, and the reduction of these loads.Purpose. To identify the magnitude and nature of changes in dynamic loads in the elements of lifting mechanisms of bridge cranes, a comprehensive dynamic analysis of the lifting mechanism of the bridge crane and its elastic elements (rope systems) was performed.Methods. The dynamic analysis of the above mechanisms and systems was performed on well-grounded mathematical models of bridge-type cranes (single- and double-mass).Results. The analysis of the obtained calculations of mathematical models of the mechanism of lifting the load of bridge cranes demonstrated that the dynamic loads applied to the structural elements and drive mechanisms are oscillatory and comparable to static loads. The analysis of the obtained calculations of mathematical models of the mechanism of lifting the load of bridge cranes demonstrated that the dynamic loads applied to the structural elements and drive mechanisms are oscillatory and comparable to static loads. To minimise the integral functionals, the methods of classical calculus of variations, mathematical physics and differential equations were used to model the dynamics of loading processes of rope systems and drives of bridge cranes, and the terminal (initial and final conditions of movement of such systems) were considered, which allowed solving the optimisation problem unambiguouslyThus, to reduce dynamic loads in structural elements (in particular, in ropes) during transients in such lifting mechanisms of bridge cranes, it is proposed to perform optimisation of the modes of movement of their drive mechanisms. An essential place in such optimisation is occupied by the choice of the optimisation criterion. Among such criteria, integral optimisation criteria were used. As such integral optimisation criteria, the RMS values of the current loads in the elastic elements (ropes) of overhead travelling cranes have been used.Conclusions. Such integral criteria are integral functionalities that usually reflect undesirable properties of machines and their mechanisms, thus, they are subject to minimisation
桥式起重机起升机构绳索系统在货物装卸过程中的动态载荷优化
的相关性。本研究对桥式起重机起重机构绳索系统在启动和制动过程中产生的动态载荷进行了分析,并对如何减小这些载荷进行了研究。为了确定桥式起重机起升机构各单元动载荷变化的幅度和性质,对桥式起重机起升机构及其弹性元件(绳索系统)进行了全面的动力学分析。在桥式起重机(单质量和双质量)的数学模型上对上述机构和系统进行了动力学分析。通过对桥式起重机起升机构数学模型计算结果的分析,表明作用在桥式起重机结构元件和驱动机构上的动载荷是振荡的,与静载荷相当。通过对桥式起重机起升机构数学模型计算结果的分析,表明作用在桥式起重机结构元件和驱动机构上的动载荷是振荡的,与静载荷相当。为了最小化积分泛函,使用经典变分法、数学物理和微分方程的方法对绳索系统和桥式起重机驱动的加载过程进行了动力学建模,并考虑了这些系统的终端(运动的初始和最终条件),从而可以明确地解决优化问题。因此,减少结构元件(特别是,在桥式起重机的这种提升机构的瞬态过程中,建议对其驱动机构的运动模式进行优化。在这种优化中,优化标准的选择占据了一个重要的位置。在这些标准中,使用了积分优化标准。以桥式起重机弹性元件(绳索)中电流载荷的均方根值作为整体优化准则。这样的积分准则是积分功能,通常反映了机器及其机构的不良特性,因此,它们受到最小化的约束
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