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| 01-16-2017, 10:50 AM | #111 |
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The S85 failures were not attributed to bearings early on
It took a while before bearings were identified as a problem even on the S85. An acquaintance who is working at BMW has mentioned that they are now noticing the bearings as a problem only because of the increasing amount of failures. Unfortunately for us, the cars with the problem are way out of warranty even for their good will program.
Last edited by undecided; 01-16-2017 at 11:07 AM.. |
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| 01-16-2017, 11:00 AM | #112 | |
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So getting OEM clearance has always been possible with BE and this has been mentioned before. However, with the addition of +001 bearing shells, it's even easier now than before. But the option has always been there. |
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| 01-16-2017, 11:38 AM | #113 |
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Has there been any measurement of clearance at different assembly temperatures (0, 100, 200, 250F, etc). I'm curious how the varying thermal expansion of the different rod, crank, and bearing materials may affect the clearances and/or shape, particularly given the greater clearance of the aluminum/tin bearings without noticeable improvement in probability of failure. I do realize the shape was changed with the aluminum/tin bearings as well though. I'm also curious because of the high failure rate in hot climates.
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| 01-16-2017, 11:42 AM | #114 | |
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Has that analysis been done?
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| 01-16-2017, 11:50 AM | #115 | |
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At this point, there's no question BMW's engineers got it wrong, even with all that data. Far from the first time they've gotten something wrong, too-- they're far from faultless. Do I think these are a fix? I don't know. But, I do know the stock design is flawed. So the assumption that BMW got it right, because they had access to that data, is as flawed as the bearing design is.
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| 01-16-2017, 11:51 AM | #116 |
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Nope, no correlation with location or climates exists.
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| 01-16-2017, 11:51 AM | #117 |
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No not really. My interest is how the clearance (and its variation circumferentially) changes throughout the range of operating temperatures seen by this engine (and for each different bearing type). One of the reasons for my curiosity is that the forum is always speaking about excessive wear during very cold temperatures, yet we see many failures in hot climates.
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| 01-16-2017, 12:05 PM | #118 |
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| 01-16-2017, 07:05 PM | #119 | |
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To make sure the bearings were right before coming to market, many Automotive and Motorsports professionals were consulted..... Then after the bearings got to market, and the first batch were mostly sold out, BE still stuck with the testing program so that the info could be shared with the community. This testing program is not needed by BE since the bearings were selling like hot cakes without it, it was done because everyone involved with this is just as interested in providing the info for the good of the community and keeping our beloved S65's/S85's running, as they are with selling bearings. Many people are donating their time, knowledge, engines, cars, etc., so that this program is successful, all to help the community. If it weren't for the donated time, knowledge, engines and cars this program wouldn't have gotten off of the ground to begin with.
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| 01-16-2017, 09:29 PM | #120 | |
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We believe BE's measuring and binning each shell is one their big advantages, especially for race shops who like to dial everything in precisely. When the +0.001 shells came along, I thought we mentioned the possibility that it opened the door to any reasonable clearance, including standard OEM clearance. Sometimes information like that does get lost, or isn't as clear as it could be...or maybe we forgot to mention it clearly like you said. Hopefully everybody now knows they can order bearings in custom sizes. If they want factory clearance, then they should order a full set of +0.001 bearing shells. If they want something in between, they can order half and half. If they want full custom, they should measure their shells then contact BE for replacement shells of specified thickness. |
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| 01-17-2017, 02:49 AM | #121 | |
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The fact that you offer, as a result of "binning" extra clearance shells, bearings that actually match OEM clearance points to a worrying lack of tolerance control at Clevite and maybe explains why BMW dumped them as a supplier for the E9x M3 platform in the middle of the production run. Wouldn't be the first time BMW has had significant problems with a supplier being unable to maintain tolerance or quality control standards. I don't doubt it...doesn't make the "tight clearance" concept any less flawed though. Last edited by Sneaky Pete; 01-17-2017 at 04:18 AM.. |
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| 01-17-2017, 03:07 AM | #122 | |
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Having the possibility to match bearing shells to each journal to ensure all bearings have an equal clearance (albeit measured by plastigauge) is indeed a big advantage. Last edited by Sneaky Pete; 01-17-2017 at 04:17 AM.. |
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| 01-17-2017, 07:10 AM | #123 | |
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How do you know BMW "dumped" Clevite? Maybe BMW put the new aluminum bearing contract out to bid and another maker had a lower bud. |
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| 01-17-2017, 09:38 AM | #124 | ||
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And on the inconsistency of RB wear seen on 2008-2010 cars. Quote:
I know if I was in the market for a critical engine part I would be more concerned about long term reliability through accurate quality control than saving a few $$ in the short term. |
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| 01-17-2017, 10:08 AM | #125 |
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I thought you were against "maybe" or "speculation" in your rod bearing analyses?
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| 01-17-2017, 11:39 AM | #126 | |
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If you look at the empirical specs for BMW 088/089 Clevite bearings, and 702/703 Glyco bearings, they show 0.0003 variation in thickness. That's out of a sample size of only 16 shells. So I'm sure if you measured as many thousands of shells as BE has measured, you'd find they all, both Clevite and King, meet the same 0.0004 inch tolerance specification. http://wiki.rcollins.org/core/index....5_Rod_Bearings This observation leads to a very solid hypothesis that the only difference between the BMW BLUE (top) shells and BMW RED (bottom) shells is which end of the tolerance spectrum they fall. If you notice all of the BLUE (top) shells are about 0.00015 thicker than the RED (bottom) shells. Very likely, BMW is binning the shells exactly like BE and labelling the thicker tolerance shells top/blue, and the thinner tolerance shells bottom/red. If you take them all together, they have measured a 0.0003 inch spread -- exactly in line with the Clevite blueprints. |
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| 01-17-2017, 04:45 PM | #127 | |
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Different sized bearing shells to set clearances on the rotating assembly of any engine are extremely important and BMW is one of the few manufacturers that don't offer this. BE saw the lack of + 0.001 sized bearing shells and addressed it in the second production run of the bearings. |
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| 01-17-2017, 07:55 PM | #129 |
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Sorry, I had to look up what you were asking. Part of the problem, is who you're asking. There's nobody from BE Bearings on this forum. My company sells their parts here, but I can't answer their questions at least not this one. I suggest you contact BE Bearings directly to ask your questions.
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| 01-20-2017, 05:18 AM | #130 | |
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The association of cold temps to wear is not a function of oil clearance so much as oil flow at startup before the bearing reaches its normal operating mode (fluid film) and is still establishing that. This is where coatings and the delta of hardness between Babbitt layer and journal are concerned. Once oil pressure has built up and oil begins to flow through the bearing interface, the two surfaces are no longer in contact and material hardnesses are irrelevant. I think those who are concerned of cold temperatures focus on thinner oils and getting oil to flow faster at startup in cold temperatures. I personally don't think it's as big a factor as some. It's reasonably cold here in Maine and I do a lot of bearing replacements from cars all over New England. I have also had cars brought to me from FL, CA, TX, PA, etc and for preventive replacements and full rebuilds and I can't say I've noticed any difference at all in the wear on the bearings associated with locale. Any difference in oil clearance vs temperature of OEM vs BE bearings would be a function of the thermal expansion rates of dissimilar metals on some very thin pieces. Given the BE bearings are a tri-metal design, the same as the original 702-703 bearings, I can't see any reason the clearance variation due to thermal effects would be any different. Now, with the change to the 702/703 bearings, the difference in shell materials could play into that. |
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| 01-20-2017, 09:26 PM | #131 | ||
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The clearances used in the S65 limit the oil flow through the rod bearings to a level that is insufficient to cool the journals/bearings and provide a fully developed hydrodynamic state of lubrication. At the upper RPM's this lack of flow is actually causing cavitation and this is why bearing damage is occurring.
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Last edited by BMRLVR; 01-26-2017 at 05:29 PM.. Reason: ending was cut off |
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| 01-21-2017, 07:03 AM | #132 | |
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