Assimilator1 wrote1. Most people aren't reacting to a close analysis of the bearing surface. They're looking at (pics of) the bearings from more than a foot away, seeing some vaguely coppery coloration, and concluding from that that the bearings are shagged. By calling out the discoloration, I'm pointing to the thing people tend to use as their criterion for critical wear. If "people" doesn't include you, then I'm not addressing you.IamFODI
As you know I largely agree with you, but I pick you up again on the term discolouration.
Wear on the micro grooves shows that it is not just a colour change (say from some chemical reaction) but physical wear, albeit to a light degree.
2. Most of this discussion is dominated by low-resolution representations. So far, the main alternative to "discoloration" is "excess wear." Both technically incorrect, but the latter is more incorrect given the obvious connotations of the word "excess."
How about a phrase like "light surface wear” instead?
Assimilator1 wroteWell, let's ask BE:Higher flow rate due to bigger rod bearing clearance necessarily means lower pressure within the rod bearings themselves, at least on average
I don't know why you say that when the variable volume pump compensates for the greater flow, so therefore no pressure drop in the rod bearings, and no issues for the mains.
Am I missing something?
We could expect that increasing bearing clearance might decrease oil pressure.
When we change bearings from factory to BE Bearings with increased clearance, there may be a slight drop in oil pressure due to the larger bearing clearance.
Yes, in theory, pump regulation might be able to compensate. But it’s not like the pump can reach into the engine and selectively compensate for pressure loss in one specific location. If it had sensors downstream of the rod bearings (or at least closer to them in the system) that could feed back on the pump, then yeah, maybe. But all it can sense and correct for are the pressure and volume very close to its outlet. It's not a given that a pressure loss at the rod bearings – after the oil filter assembly, oil cooler, and main bearings – will be "felt" sufficiently at the pump for the pump's reactions to fully compensate for it.Our hopes with BE Bearings were to allow a modest drop in oil pressure, so long as it was accompanied by an increase in oil flow.
Worth noting that BE did measure a pressure loss even with sensors well upstream of the rod bearings:
Not a huge loss by any means. But we should remember that, for the aforementioned reasons, this means a pressure loss of at least that much everywhere else in the system – likely more at the source of the pressure loss (i.e. the rod bearings) and adjacent parts (e.g. the mains).Oil pressure does seem to decrease slightly with BE Bearings. This is most likely due to the extra clearance... [t]he amount of decrease is between 2-3 PSI, over a 70+ PSI average. Assuming the 73 PSI average, a 3 PSI pressure drop is equal to 4% of the total.
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