Lubrication at High Temperatures With Vapor-Deposited Surface Coatings

Author:

Baldwin D. J.1,Rowe G. W.1

Affiliation:

1. Tube Investments Research Laboratories, Hinxton Hall, Cambridge, England

Abstract

An experimental study of the friction of metals which have been coated with inorganic films by reaction with their surrounding atmosphere. The specimens are first cleaned at high temperature in vacuo and then heated in the selected reactive vapor. Many coatings will prevent seizure and give a fairly constant but high coefficient of friction up to high temperatures. Layer-lattice compounds such as MoS2, CrCl3, and TiI2 give much lower friction at all temperatures below those at which the film decomposes or evaporates (about 850 C for molybdenum disulphide). A film of boron nitride formed on boron shows a high intrinsic friction, but this can be reduced by certain vapors or by raising the temperature above about 800 C. Most of the experiments were performed with very light loads but the films are shown to be effective under kilogram loads. A simple indentation test capable of selecting lubricants under loads up to 12 tons is described. This shows that a film formed by heating stainless steel in CCl2F2 will lubricate at 400 C when the steel is deformed by over 50 per cent.

Publisher

ASME International

Subject

General Medicine

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Physics-Based Reduced-Order Model for Liquid Ring Pumps;Journal of Fluids Engineering;2023-01-13

2. Multiphase Flow in a Liquid-Ring Vacuum Pump;Journal of Fluids Engineering;2020-10-26

3. Chapter 19 Lubrication by Solids;Tribology Series;1985

4. Mechanism of Iodine Lubrication;Nature Physical Science;1971-02

5. Apparatus for Measurement of Friction and Adhesion at Ultrahigh Vacuum;Review of Scientific Instruments;1966-12

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