液压传动液压系统压力变化的自适应影响

S. Kravets
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引用次数: 0

摘要

各种技术用途的氢化机器的效率在很大程度上取决于环境的温度。温度是影响液压传动效率的主要因素,它改变了工作流体的物理性质:粘度、含水率、气体和机械杂质,这些决定了它的弹性模量。在低温和高温下,效率都显著降低。液压驱动的高温模式降低了液压机(建筑和道路、山地、农业等自行式机械)的技术和操作性能。高温是影响工质老化的重要因素之一。润滑剂温度升高到70℃以上,导致润滑能力下降,设备过早磨损,润滑剂泄漏量增加,粘度降低,液压设备内表面形成焦油沉积,热破坏。由于摩擦表面的润滑能力下降,液压机的容积效率降低,被加热元件的线性尺寸发生变化,因此观察到强烈的磨损,技术操作的准确性恶化,液压设备的资源显着减少。所有这些都导致了机器生产率和可靠性参数的下降。在高温下运行的氢化机器需要采取一些措施来增加传热和稳定温度状态。本文以TT4M-23L履带拖拉机实验模型为例,研究了容积式液压传动液压系统给定弹性模量的确定问题,以及给定弹性模量与压力和温度的关系。计算了液压系统弹性模量与压力之间的关系式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ADAPTIVE INFLUENCE OF PRESSURE CHANGE OF THE HYDRAULIC SYSTEM OF THE HYDRAULIC DRIVE
The efficiency of hydrogenated machines of various technological purposes depends to a large extent on the temperature of the environment. Temperature is the main factor in the efficiency of the hydraulic drive, which changes the physical properties of the working fluid: viscosity, moisture content, gases and mechanical impurities, which determine its modulus of elasticity. Efficiency is significantly reduced both at low temperatures and at high temperatures. The high-temperature mode of the hydraulic drive reduces the technical and operational performance of hydraulic machines (construction and road, mountain, agricultural and other self-propelled machines). High temperature is one of the most important factors that intensively affect the aging of the working fluid. An increase in the temperature of the lubricant above 70° C leads to a decrease in the lubricating capacity and premature wear of the equipment, an increase in the leakage of the lubricant, a decrease in its viscosity, thermal destruction with the formation of tarry deposits on the internal surfaces of the hydraulic equipment. Intensive wear is observed due to a decrease in the lubricating capacity of the friction surfaces, a decrease volumetric efficiency of hydraulic machines, changes in the linear dimensions of heated elements, as a result, the accuracy of technological operations deteriorates and the resource of hydraulic equipment is significantly reduced. All this leads to a decrease in the parameters of productivity and reliability of machines. Hydrogenated machines operated at elevated temperatures require a number of measures to increase heat transfer and stabilize the temperature regime. This article examines the issue of determining the given modulus of elasticity of the hydraulic system of a volumetric hydraulic drive using the example of the experimental model of the TT4M-23L tracked crawler tractor and the relationship of the given modulus with pressure and temperature. An equation is calculated that allows establishing the relationship between pressure and the given modulus of elasticity of the hydraulic system.
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