Photometric Method of Diagnosis of Bearing Units Operating with Hydrocarbon Mixtures

Author:

Gryadunova E.N.1,Polyakov R.N.1,Tokmakov N.V.1

Affiliation:

1. Orel State University named after I.S. Turgenev

Abstract

The article is devoted to the diagnosis of bearing units working with hydrocarbon mixtures. The diagnostic is based on the photometric method. This method allows you to determine the internal damage to the bearing unit at the stage of the appearance of the microcrack. The photometric method is based on changing the color of the indicator fabric. As the indicator substance, a bromine solution was used which had a dark brown color. If there is a leak, the hydrocarbon reacts with bromine molecules and a bright spot appears on the tape. Indicator fabric is applied to the bearing unit during assembling.The material of the article contains a model of the physicochemical process, which is the basis of the photometric method. Various stages of leakage of hydrocarbon mixtures through microcracks were studied. The results of the experimental studies are consistent with the theoretical propositions. The proposed diagnostic method can be used as a method for non-destructive testing of bearing units.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference16 articles.

1. R. Polyakov, Increase of dynamic qualities and a resource of support units of rotors by combination of rolling and sliding bearings, Orel, (2005).

2. R. Polyakov, Dynamic qualities and resource of combined support units, Saarbrucken, Germany, (2012).

3. R. Polyakov, M. Bondarenko, D. Shutin, L. Savin, The approach to building the algorithm for controlling rotor motion in a hybrid mechatronic bearing, Vibroengineering PROCEDIA, 8 (2016) 219-224.

4. L. Savin, Mechatronic bearing units, Saarbrucken, Germany, (2012).

5. R. Polyakov, Interaction of Dynamic Characteristics of Rolling-Element and Fluid-Film Bearings in Hybrid Bearings, Procedia Engineering, 206 (2017) 61-67.

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