Study of the dynamics of the working cell of the automatic mill of the pipe-rolling unit

S. Rakhmanov, V. T. Vyshinskyi
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Abstract

Purpose. Determining the real spectrum and the level of dynamic loads would make it possible to develop recommendations for improving the TPA-350 automatic mill, with the aim of expanding its technological capabilities, improving the reliability of operation and durability. Metodology. This work was carried out on the basis of the development of a mathematical model of dynamic processes in the mechanical system of an automatic TPA mill, where an attempt was made to identify the features of the functioning of a working stand with a rolled sleeve in the formulation of dynamic problems. Obviously, the proposed approach is more correct and convenient when studying complex dynamic phenomena in the elements of an automatic TPA mill. Findings. The results of the study of the dynamics of the working stand of the automatic mill of the pipe-rolling unit (TPA) are given The basic parameters of the functioning of the working stand, such as the automatic mill TPA 350, are established, and a mathematical model of the basic problem of the dynamics of a mechanical system is developed. The differential equations of motion for the selected model of the working stand and the elastic elements of the bed retention mechanism on the support nodes of the automatic TPA mill have been compiled. The corresponding patterns of oscillations of the working stand were obtained. Some features of the functioning of the working stand are identified by the example of an automatic mill TPA 350. The dynamic parameters of the working stand of the mill, affecting the difference in the thickness of the rolled sleeves, are established. Originality. The interrelation of the working stand dynamics with the operating conditions of an automatic TPA mill on the basis of a simplified mathematical model of dynamic processes is established. A mathematical model of the mechanical system of a working working stand of an automatic TPA mill has been compiled. In the most general form, the mechanical system of a working stand of a mill is described using differential equations describing the behavior of the selected design scheme of a system with two degrees of freedom. Practical value. A scheme has been proposed for modernizing the working stand and the mechanism for holding the working stand of the TPA-350 automatic mill. IL. 4. Biblography: 8 titles.
轧管机自动轧机工作单元的动力学研究
目的。确定实际频谱和动态负荷水平将使改进TPA-350自动轧机的建议成为可能,其目的是扩大其技术能力,提高运行可靠性和耐久性。这项工作是在开发自动TPA轧机机械系统动态过程数学模型的基础上进行的,其中试图在动态问题的制定中确定带有轧制套筒的工作机架的功能特征。显然,本文提出的方法在研究TPA自动磨机元件的复杂动态现象时更为正确和方便。给出了轧管机自动轧机工位动力学研究的结果,建立了tpa350自动轧机工位工作的基本参数,建立了机械系统动力学基本问题的数学模型。编制了TPA自动轧机支承节点上所选工位模型和床身保持机构弹性元件的运动微分方程。得到了相应的工作台振动规律。以tpa350自动轧机为例,确定了工作架的一些功能特征。建立了轧机工作架的动态参数对轧套厚度差异的影响。在简化动态过程数学模型的基础上,建立了自动TPA轧机工位动态与工况的相互关系。建立了自动TPA轧机工作工作台机械系统的数学模型。在最一般的形式中,用微分方程来描述轧机工作机架的机械系统,微分方程描述了具有两个自由度的系统的选定设计方案的行为。实用价值。提出了对TPA-350型自动轧机工位及工位保持机构进行现代化改造的方案。IL。4。文献:8篇。
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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