在组合式容器中处理散装和棒料

O. Trofymova, S. Felonenko, Viktoriia Hubkina
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摘要

目的和任务是研究半球形腔室中加工管状材料的振动装置的动力学及其运动(循环)的运动学。方法。为了实现这一目标,对在空气和液体环境中处理大块和棒状材料的现有方法进行了专家评估。研究方法。利用振动对块状和管状材料进行热处理,可以加强热交换过程,显著缩短加工时间,节省燃料和电力消耗,提高产品质量,降低维护成本和环境保护。给出了振动机械在不同工体振动类型和振动驱动数下的动力学理论研究资料。得到了振动参数的解析依赖关系。主要结果。利用振动开发高度可靠和高效的技术单元,将低技术操作的性能整合在一个设备中。结论及现实意义。在对液体环境振动机进行分析的基础上,提出了在空气和液体环境下加工大块、块状和棒状材料的技术改进和适宜的技术手段的研究结果。通过求解线性微分方程,得到了与工作摄像机点运动和装置角振荡相关的装置工作体稳态振荡幅值参数。证明了该点的垂直振动幅值等于安装重心的圆周振动幅值。得到合理的安装点振荡轨迹,根据材料加工工艺的要求确定合理的参数。所开发的计算方法可用于研究工作空间中同类含液体的其他类型的机械动力学。安装设计使得可以在较宽的范围内调节安装工作体点的振荡幅度和轨迹性质。关键词:棒状或块状材料,运动运动学,加工,振动机,振动轨迹,液体或空气环境。
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PROCESSING OF BULK AND ROD MATERIALS IN COMBINED VESSELS
Purpose and task is making research on the dynamics of a vibrating installation to process tubular materials and the kinematics of their movement (circulation) in hemispherical chambers. Methodology. To achieve the target goal, an expert assessment of existing approaches to methods of processing bulk and rod materials in air and liquid environments has been carried out. Research methods. Using vibrations for heat treatment of bulk and tubular materials makes it possible to intensify the heat exchange process, significantly reduce processing time, save fuel and electricity consumption, improve product quality, reduce costs on maintenance and environmental protection. The materials of theoretical studies on vibrating machine dynamics under different types of working body oscillations and the number of vibration drives are presented. Analytical dependences of vibration parameters have been obtained. The main results. Using vibrations to develop highly reliable and efficient technological units incorporating the performance of low technological operations in one device. Conclusions and practical significance. Based on the analysis of vibrating machines with a liquid environment, the results of research aimed at improving technologies and appropriate technical means to process bulk, lump and rod materials in air and liquid environments are provided. The solution of linear differential equations resulted in obtaining amplitude parameters of steady oscillations of an installation working body with relevance to the movement of working camera points and the installation angular oscillations as well. It has been proved that the amplitude of the vertical oscillations of the point is equal to the amplitude of the circular oscillations of the installation gravity center. Obtained rational trajectories of installation point oscillations to determine rational parameters are based on the requirements of material processing technology. The developed calculation methods can be used while studying machine dynamics of other types of a similar class containing liquid in the working space. Installation design makes it possible to adjust the oscillation amplitude and the nature of the trajectory of the installation working body points within wide limits. Keywords: rod or bulk material, motion kinematics, processing, vibrating machines, vibration trajectories, liquid, or air environment.
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