最大限度地减少液压流体在强制模式下的流变学和摩擦学性能退化

Andrey V. PUZANOV, Sergey A. KURDUBANOV
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引用次数: 0

摘要

在驱动器运行过程中,工作流体暴露于各种操作和功能性质的物理因素中。同时,液体会失去它们的特性,降解。这导致了生产率的下降和液压传动活动部件磨损的增加,其使用寿命的减少。当根据功率或速度参数强制液压驱动时,这些过程的动态增长。分析了对液压传动工作液工作参数产生负面影响的各种因素。采用多学科分析液压传动基本元件模型的软件工具作为研究方法。给出了液压传动工作过程的仿真结果。确定了工质降解程度受内外因素影响的区域和参数。利用实验数据的仿真结果可以评估某些设计和技术解决方案以及操作模式对改善液压传动液的流变学和摩擦学特性的积极或消极贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MINIMIZATION OF DEGRADATION OF RHEOLOGICAL AND TRIBOLOGICAL PROPERTIES OF HYDRAULIC FLUIDS IN FORCED MODES
During operation of the drive, the working fluid is exposed to various physical factors of operational and functional nature. At the same time, fluids lose their properties, degrade. This leads to a decrease in productivity and an increase in wear of the movable parts of the hydraulic drive, a decrease in its service life. When forcing hydraulic drives according to power or speed parameters, the dynamics of these processes grows. The paper analyzes various factors that have a negative impact on the operational parameters of the working fluid of hydraulic drives. Software tools of multidisciplinary analysis of models of basic elements of hydraulic drives are used as research methods. The results of simulation of hydraulic drive operating processes are given. Zones and parameters of working fluid degradation degree dependence on external and internal factors are localized. The simulation results using the experiment data make it possible to assess the positive or negative contribution of certain design and technological solutions and operational modes to improvement of the rheological and tribotechnical characteristics of hydraulic drive fluids.
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