On developing structural and technical solutions to ensure the vibratory displacement of the working medium

R. Bolshakov, S. K. Kargapoltsev
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Abstract

A research study into using vibration technologies for the transport of granular working medium was carried out. A vibration testing machine, whose calculation model includes a mechanical vibration system having two degrees of freedom with a rigid body on elastic supports, was selected as an object of research. The study involved analysing the variation in the system vibrations by using the structural theory for vibration isolation systems, where a dynamic equivalent represented by a structural diagram of an automatic control system is compared to the initial calculation model. The structural diagram of the system is based on the motion equations in operator form obtained using Lagrange differential equations of the second kind. The Laplace transform was used to transform the initial data for the system of differential motion equations. The paper addresses the characteristics of a new structural and technical solution in the field of vibratory displacement of a granular working medium using the working body of a vibration technological machine, which involves introducing a number of additional weights, levers, springs, and hinges. Here, springs comprise generalised structures containing both elastic elements and vibration dampers. To connect the coordinates of the endpoints in the working body of the vibration technological machine, analytical relations were obtained. It was established that varying the parameters of the elements within the elastic-lever blocks allows the dynamic state of the vibration technological machine to be controlled. In addition, it was shown that the obtained structural diagram helps to derive mathematical expressions for transfer functions, comprising the ratio between the motion coordinates of a technical object and an external force disturbance. On the basis of these expressions, the transfer function for the ratio of the motion coordinates of the vibration technological machine was formulated. A mathematical model of a vibration technological machine was obtained in the form of a transfer function, including a large number of additional elastic and massinertial elements, where the parameters of vibration displacement can be adjusted automatically. The research results will allow the existing technical solutions in the field of technological engineering to be modernised.
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制定结构和技术解决方案,确保工作介质的振动位移
对使用振动技术输送颗粒状工作介质进行了研究。研究选择了一台振动试验机作为研究对象,其计算模型包括一个具有两个自由度的机械振动系统,该系统的刚体位于弹性支撑上。研究包括利用隔振系统的结构理论分析系统振动的变化,将自动控制系统结构图所代表的动态等效模型与初始计算模型进行比较。系统的结构图是基于使用拉格朗日第二类微分方程得到的算子形式的运动方程。拉普拉斯变换用于变换微分运动方程系统的初始数据。本文探讨了利用振动技术机器的工作机身对颗粒状工作介质进行振动位移的新结构和技术解决方案的特点,其中涉及引入一些额外的砝码、杠杆、弹簧和铰链。在这里,弹簧由包含弹性元件和振动阻尼器的通用结构组成。为了连接振动技术机器工作体中各端点的坐标,我们获得了分析关系。结果表明,改变弹性杠杆块内各元素的参数,可以控制振动技术机器的动态状态。此外,研究还表明,所获得的结构图有助于推导出传递函数的数学表达式,其中包括技术对象的运动坐标与外力干扰之间的比率。在这些表达式的基础上,制定了振动技术机械运动坐标比的传递函数。以传递函数的形式获得了振动技术机械的数学模型,包括大量附加的弹性和质量惯性元素,其中振动位移的参数可以自动调整。研究成果将使技术工程领域现有的技术解决方案实现现代化。
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