液压系统的体积刚度

Ali-Hikmat Ahmadov Ali-Hikmat Ahmadov, Samir Abbasov Samir Abbasov
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引用次数: 0

摘要

液压传动是一组相互作用的液压装置,它被设计成在压力下通过工作流体来实现虚影。大多数机器的液压传动的主要元件是动力液压缸。液压缸是指容积式液压装置,因为它的工作方式是将工作腔的容积填满并排空。液压缸的工作原理是基于工作器官(活塞、膜、柱塞)在流动流体的能量或外力(重力、弹簧)的机械能的影响下的运动。根据液压缸的工作原理,可分为两组:单向液压缸、双作用液压缸。为了保证液压缸的运行,需要泵,其目的是将机械能转化为流动流体的能量。研究液压缸的刚度有助于确定液压缸所能承受的最佳载荷,也有助于针对特定系统选择合适的液压缸尺寸。液压缸的刚度可以通过测量液压缸在给定范围内随载荷增加的运动来确定。例如,可以使用液压机将液压缸上的负载增加到一定值,然后可以使用测量工具来确定液压缸的运动。这些数据可以记录在计算机上,然后可以用来分析和计算液压缸的刚度。根据具体的测量系统,液压缸的刚度可以用牛顿/毫米或其他单位表示。通过使用各种材料(如文献所示),给出了旨在确定高压软管体积减小刚度的研究结果,以及液压缸体积减小刚度随其连杆运动过程中工作腔体积变化的依赖关系。关键词:液压系统,体积刚度,液压缸,模块,液压机械系统,软管,压力,杆,动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VOLUMETRIC RIGIDITY OF HYDRAULIC SYSTEMS
A hydraulic drive is a set of interacting hydraulic devices that is designed to be ghosted by means of a working fluid under pressure. The main element in hydraulic drives most machines is a power hydraulic cylinder. Hydraulic cylinder refers to volumetric hydraulic devices, since their operating mode is to fill the volume of the working chamber and empty it. The very principle of operation of the hydraulic cylinder is based on the movement of the worker organ (piston, membrane, plunger), under the influence of the energy of the flow fluid or the mechanical energy of external forces (gravity, spring).Depending on the principle of operation of hydraulic cylinders, it can be divided into two groups: one-way hydraulic cylinder, two-acting hydraulic cylinders. To ensure the operation of the hydraulic cylinder, a pump is required, the purpose of which is to convert mechanical energy into the energy of the flow fluid. Studying the stiffness of a hydraulic cylinder can help determine the optimal load that a hydraulic cylinder can withstand, as well as help in choosing the right size of hydraulic cylinder for a particular system. The stiffness of the hydraulic cylinder can be determined by measuring the movement of the hydraulic cylinder as the load increases in a given range. For example, a hydraulic press can be used to increase the load on a hydraulic cylinder to a certain value, and then a measuring tool can be used to determine the movement of the hydraulic cylinder. This data can be recorded on a computer, which can then be used to analyze and calculate the stiffness of the hydraulic cylinder. The stiffness of the hydraulic cylinder can be expressed in newtons per millimeter or other units depending on the specific measurement system. By using various materials (indicated in the literature), the results of studies aimed at determining the reduced volumetric stiffness of high-pressure hoses and the dependence of the reduced volumetric stiffness of the hydraulic cylinder on the change in the volumes of the working cavities in the process of moving its rod are given. Keywords: hydraulic system, volumetric stiffness, hydraulic cylinder, module, hydromechanical systems, hoses, pressure, rod, dynamics.
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