燃油和润滑油质量分析设备数字监控系统

V. R. Nigmatullin, I. R. Nigmatullin, R. Nigmatullin, A. Migranov
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引用次数: 0

摘要

目前,为了提高工业生产的效率,越来越多地使用高性能和昂贵的技术设备,从效率和可靠性的角度来看,其中最薄弱的环节是重载摩擦联轴器的组件和部件,它们在明显不同的温度(有条件地在较轻的条件下,温差可达100-120度)和气候条件(高湿,高温和高温)下运行。(大气中磨料和其他化学元素的存在)。根据对摩擦单元故障频率的分析结果,相应的,其修复成本达到所有设备成本的9- 20%,而不考虑企业因停机而造成的重大收入(利润)损失。这一问题的解决是基于对工作油、冷却润滑剂和润滑脂中积累的磨损产物对摩擦单元磨损率的研究。开发并实现了一套数字设备监测系统(DSMT),该系统包括由原始的现代记录设备动态记录磨损产品的数量和油温,然后对其进行处理和使用技术。该系统还包括在理论和实践方面有用和必要的大型数据集中查找必要信息的方法,采用由数字监测系统控制的类似技术。SMT的优点是能够预测设备的可靠性;降低生产风险,显著降低低效成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital monitoring system of equipment for the analysis of fuel and lubricants quality
Currently, to increase the efficiency of industrial production, high-performance and expensive technological equipment is increasingly used, in which the weakest link, from the point of view of efficiency and reliability, is the components and parts of heavily loaded tribo – couplings operating both at significantly different temperatures (conditionally under lighter conditions, the temperature difference can be 100-120 degrees) and climatic conditions (high humidity, the presence of abrasives and other chemical elements in the atmosphere). As the results of the analysis of the frequency of failures of friction units and, accordingly, the cost of their restoration reach 9-20 percent of the cost of all equipment, without taking into account significant losses of income (profit) of the enterprise from downtime. The solution of this problem is based on the study of the wear rate of friction units by the wear products accumulated in working oils, cooling lubricants, and greases. A digital equipment monitoring system (DSMT) has been developed and implemented, which includes dynamic recording of the number of wear products and oil temperature by original modern recording devices, followed by the technology of their processing and use. The system also includes methods for finding the necessary information in large data sets useful and necessary in theoretical and practical terms with a similar technique controlled by a digital monitoring system. The advantages of SMT are the ability to predict the reliability of the equipment; reduce production risks and significantly reduce inefficient costs.
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