Thank you Terry,quote:
Originally posted by Terry:
1911, to answer your query, the theories and thought I am sharing affects all the lubricated areas of a engine.
No one , including me is arguing engineering or accepted physics theory, because thats not my business. Nor do I have an interest in using my time to prove something I already do on a proprietary basis for hire. There are plenty of well read and educated folks here that can argue neat theories all day, and not make a dime....or save an engine or put the customer in the winners circle !
What I am saying , using your example of the fluid flow dynamics of a air foil, is that things change in application, especially in automotive engines. Much like the Dyson Theory
of laminar flow vs. turbulent flow in lubes that
are synthetic ( engineered molacules) and relatively thin compared to the viscosities most accept and are familiar with.
What happens when that fluid film is disturbed and in a turbulent flow mode ? Like air flow over a wing in stall the physics change and if captured can be extremely helpful to the tribologist.
I disagree that tribologists and lube engineering is not one in the same in automotive applications, especially racing applications. The crossover in working a problem with chemists,engineers,physicists,engine builders, formulators, and the poor humble lube analyst is truly amazing. Molakule is a good example of that kind of tribologist. He does not rely on conventional thought to develop,and formulate cutting edge lubricants. Ask Too Slick about the crossover in racing engines to NASA engineering issues on a theoretical vs practical application level.
Films are sure important but which film ? The hostlube hydrodynamic film, the chemical, polymer, film ? Maybe a mixture of both, or what about relying on the coatings films that were applied to the actual moving parts or embedded in the alloys during assembly or manufacture ?
Point is , it is not as cut and dried as your "we all know " statement to Ugly3 came across.
1911, check out a article published and presented at the STLE 58th annual meeting by Tung and Gao on " A study in Break-in film development with different piston ring coatings and correlation with electrical contact resistance measurements". Find the article in LE magazine Vol 59 No.9 9/2003.
25w-70 is a bit heavy for the pillow, John !!! Better than a horse head though.![]()
In the automotive/diesel engine world, I agree with you that those circles representing tribology and lubrication engineering may have a lot of overlap. With other machinery, perhaps they do not!!! Perhaps we could measure the overlap by correlating it with how much AW. EP, etc type additives are needed in the lubricant for that application. I can tell you that some of the lube system designers I worked with at GE on 40 million dollar turbines knew almost nothing about tribology. They did know all about flows, pumps, pre start/post stop lube demands, bearing sealing, tilt pad journal bearings, etc. Their job was top keep the tribolists away. Some of these babies would run 50K hours with negligible wear (especially if the start count was low).
Thanks again. I look forward to learning a little bit of tribology on this board.
1911