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A study of sample withdrawal for lubricated systems. Part 1: influence of flow characteristics, sampling techniques and locations

机译:润滑系统样品抽取的研究。第1部分:流动特性,采样技术和位置的影响

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摘要

The wear of a machine element, whether it is due to fatigue or abrasive wear, will add contaminants in the form of particulates to the system. If a machine element is starting to wear out it will produce a large amount of particles and it will finally break down. Since this can be very costly, one can establish the need to monitor the system so that one can foresee failure. There are many different ways to monitor a system, e.g. measurements of the temperature, pressure, vibrations and the degree of contamination. The purpose of contamination control is to extend the life of a component and thereby save money. When monitoring a system it is very important that the monitoring control instrument should give the right output. One important factor in achieving this is the withdrawal of a representative oil sample. In this paper an investigation of where and how to take a representative sample is performed using Stokes' law and the migration of spheres in a channel. A generalised sedimentation chart for different oils and particles is introduced. Sampling routines for proper sample withdrawal are also presented.
机译:机器元件的磨损,无论是由于疲劳还是磨料磨损,都会以微粒形式向系统添加污染物。如果机器元件开始磨损,它将产生大量颗粒,并最终将其分解。由于这样做的成本可能非常高,因此可以确定是否需要监视系统,以便可以预见故障。有许多不同的方法来监视系统,例如测量温度,压力,振动和污染程度。污染控制的目的是延长组件的寿命,从而节省成本。监视系统时,监视控制仪器应提供正确的输出非常重要。实现这一目标的一个重要因素是抽取有代表性的油样。本文使用斯托克斯定律和通道中球体的迁移情况,对在何处以及如何获取代表性样本进行了研究。介绍了不同油和颗粒的一般沉降图。还介绍了用于正确抽取样品的采样程序。

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