Very interesting post [MENTION=93267]terminus[/MENTION]. It's good to hear from someone informed on this subject.
So, that's >15 years. Seems like pretty slow progress to me. Care to expound?
Well, I do get paid by the hour...
But seriously, it's all product strategy & risk management. Yes, there are customers who want them but how many will pay the premium for it? What about sourcing? There's a lot of advantages to having a plant in the US to serve that market, and the same goes for other countries. But a new plant is a MAJOR headache. Not to mention new suppliers. So even if you have an existing engine designed for other markets that is on the shelf and ready to go (which is never the case, of course) it's a big pain in the ass. Plus, the subtleties of diesel engine design can require significant R&D to overcome. And the complexity of the emissions system is daunting, but so is the fuel system. I work on a lot of proprietary designs, so I have to be careful what I say. Just to give you an idea, here's some common issues I've seen with just the fuel systems on these engines.
Modern diesels with common rail injection run really high pressures. Think 30,000 psi. That's a non-trivial engineering challenge. The high cyclic pressure fatigues metal fuel lines in short order. And with 30,000 psi there's no such thing as a slow leak. They're all catastrophic. Plus the misfire that occurs after the ruptured fuel line causes a high spike in torsional acceleration, which can fail the clutch or other driveline components.
Another problem with the fuel systems is the high pressure pump uses diesel fuel as a lubricant. This usually works just fine but when it doesn't (often due to dirty or poor quality fuel) things get ugly fast. The rest of the fuel system gets taken out like domino's. Fuel injectors are another challenge. Modern ones are amazing at how precisely they regulate fuel, capable of pilot injection and all that. But they still fail, and they can cause a lot of damage in the process. And I'm not even going to get into the hydraulic resonance issues. You know the water hammer you can get in your house plumbing? Just imagine what could happen at these high pressures and the high frequency opening/closing of the injectors.
OK, last example, just because this blew my mind at the time. I was working on a new engine design for almost two years (still on the computer, at this point). We built the first actual prototype engines are we were all pretty excited & nervous. The company had invested over $2 billion at this point! All the prototypes failed, and failed quickly. Post mortem teardown revealed the pistons had all failed. After a bit of head scratching and a few experiments, we figured it out. The fuel was injected at such a high pressure, that any small amount that was still liquid (not vaporized) hit the pistons so hard it put a hole in it. Yes, diesel fuel put holes in the pistons. That one took me a while to wrap my head around :biggrin2:
Sorry for the long answer, but I figured it was either that or a start a "which tire" thread...