Application of computer systems for modeling dynamic processes of lifting machines

Volodimir Mikolayovich Grischenko, Kateryna Serhiivna Leonova
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Abstract

The main task of mechanical engineering is to organize the production of a range of machines to meet the needs of all industries. These are power, transport, lifting and transport units, agricultural machinery, construction industry, etc. Among them, one can single out devices in which the relative movement of their parts is assigned, that is, kinematic pairs are included in the calculation models. The real operating conditions of machines are varied, but most often they are associated with periodic starts-stops, which determines the relevance of the study of unsteady modes. The analysis of the operation of such models becomes more complicated. For successful design results, mathematical modeling of individual processes in mechanisms is carried out. One of the first calculations is dynamic. Modern, available CAD / CAE systems for modeling and analysis provide automation capabilities, building more realistic design models. The paper discusses the approbation of the use of CAD for modeling the dynamics of a jib crane with a set of four units: platform, boom, sleeve and rod. The developed model is combined: the platform and the sleeve correspond to the kinetostatic model, and the boom and rod are elastic. The crane is designed to perform lifting operations in a vertical plane, with the possibility of relative movement in 3 rotational and one translational kinematic pairs. The performed calculations of the static, modal and dynamic analyzes of the links of the mechanism confirm the adequacy of their models. Among them is the task of instantaneous load application, which is typical for the "lifting and picking" operating mode of crane lifting mechanisms. The deformation of the entire structure in one of the boom positions is also considered. The determination of the reaction forces in the hydraulic cylinder provides important information for the selection of the power unit.
计算机系统在起重机械动态过程建模中的应用
机械工程的主要任务是组织各种机器的生产,以满足所有工业的需要。这些是电力,运输,起重和运输单位,农业机械,建筑行业等。其中,可以挑出指定其部件相对运动的装置,即将运动副包含在计算模型中。机器的实际运行条件是多种多样的,但大多数情况下都与周期性启停有关,这决定了非定常模态研究的相关性。这类模型的运行分析变得更加复杂。为了获得成功的设计结果,对机构中的各个过程进行了数学建模。第一个计算是动态的。现代,可用的CAD / CAE系统建模和分析提供自动化功能,建立更现实的设计模型。本文讨论了采用CAD对具有平台、臂架、套、杆四个单元的悬臂起重机进行动力学建模的可行性。所建立的模型是组合式的:平台和套筒对应于动静态模型,臂架和杆架为弹性模型。起重机设计用于在垂直平面上执行起重操作,可以在3个旋转运动对和一个平移运动对中进行相对运动。对机构各环节进行了静力、模态和动力分析,验证了模型的正确性。其中瞬时载荷施加任务是起重机起重机构“起拣”作业模式的典型任务。还考虑了整个结构在其中一个臂架位置的变形。液压缸反作用力的测定为动力装置的选择提供了重要信息。
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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