Ok, since experiencing more trouble calls than I want to recall on my CRD, and feeling that DC isn't losing any sleep on figuring out why our EGR valves are failing, I decided to revisit what could be done if the EGR valve goes belly up after warranty. Drastic issues, drastic measures
Since my turbo decided to blow 2 quarts of oil into my intercooler and intake system, I decided to see how to eliminate the EGR soot from the equation if possible.
Others have tried putting a blocking plate on the exit port of the EGR valve, only to find that a CEL/MIL code was their reward for their efforts. So I made some observations, as well as burning the midnight oil on the Bosch EDC-16 control system. To cover briefly what we already know about the CRD egr and related air control/anti-shudder valve operation, I'll list it briefly as I understand it:
Normal operation of the EGR valve:
cold engine - EGR valve off, to prevent rough idle and troublesome starting
Normal temperature engine, vehicle moving - EGR valve on, unless WOT
Normal temperature engine, idle more than 60 seconds - EGR off, to ensure smooth idle and other problems with excessive soot buildup. This EGR idle parameter is also listed in the FSM.
PCM commands EGR valve on, also commands Air Control Valve to close quite a bit, reducing fresh air draw from intercooler/airbox and increasing draw from EGR valve - at this same point in time, PCM also commands Turbo vanes to minimum output, to further reduce fresh air input, at least at idle. This coordinated set of PCM commands - open egr, shut turbo output to minimum, close air control valve to nearly closed, is all to increase the draw from the intake to the egr valve, in order to ensure an adequate amount of exhaust gas will be drawn into the engine. There are probably other limit controls which are not known to us as well.
PCM further checks for rationality of EGR behavior by checking the Mass Airflow rate in the intake air box when the EGR valve is commanded open, the air control valve is nearly closed, and the turbo vanes are set for minimum flow - under these conditions, the fresh air flow rate reduces greatly, as shown by a simple test of observation. I have read that when the EGR valve is open, the fresh air rate needs to reduce at least 25% - it may be even more than this. At any rate, this reduction in fresh air intake will serve as a backup inferred value to let the PCM logic be assured that something didn't block the EGR valve from doing its job.
Observed behavior:
Hot idle in driveway, after 20 mile trip home, during turbo cooldown time, 60 - 80 seconds, EGR valve shuts, exhaust flow increases dramatically, engine exhaust note becomes quieter, at least on an Aero-Tubine muffler equipped CRD. Exhaust temperature increases noticeable for a moment, then drops.
Disconnecting both Intercooler hoses at the Intercooler when at hot idle reinforces the operation and interaction of the EGR, Air Control Valve and turbo reduction. When at hot idle, air from turbo is minimum, on other intercooler hose to intake, suction is also minimum. When the 60 -80 second period is up, the turbo output hose increases air flow dramatically and the vacuum on the other intercooler hose also increases dramatically, indicating that the air control valve has opened fully, drawing more fresh air in.
So, if one had an inoperative EGR valve, could the system be disabled without setting a CEL? Suppose a blocking plate were installed on the output port of the EGR valve, but, in addition, the other end of the EGR pipe to the intake were disconnected. In the port on the intake tube, one would connect a small air filter. So then, one could postulate that when the PCM commands the EGR valve to open, the turbo to go to minimum output, and the air control valve to close nearly shut, this time, the closing action of the air control valve would increase fresh air intake into the engine from the former egr intake port, now connected to the small air filter. The EGR valve would either remain stuck open, closed or inoperative, but the blocking plate would stop bad things from happening. Also, the closing of the air control valve would dramatically reduce the fresh air flow through the air box, and the Mass Airflow sensor would dutifully report the lower amount of air flow. There would be order in the universe of the PCM. All would be well.
Once could assume, this would eliminate the seemingly unfixable egr valve problem and stop the CEL/MIL light. Unless the EGR valve has some complex flow measuring rate indicator built in. A real flow rate indicator, not just a position indicator. Judging from the apparent quality of this part, I suspect not. Too low a price point spec I would think. I think economics may work in our favor here, a quick Mass Air flow rate check is too tempting to budget conscious constrained engineering managers. I hope this worked in our favor.
Just a thought should DC not come up with an expensive fix until we're all out of warranty. Or expect us to keep replacing EGR valves ad infinitum...