the nuts and bolts of electrical diagnosis 115 · pdf filethe nuts and bolts of electrical...
TRANSCRIPT
32 GEARS August 2006
Engine misfire is one of the more common problems we can be presented with when diagnos-
ing transmission operation on today’s vehicles. Sending misfire problems down the road can mean denying your shop a quick, easy job, and the satisfac-tion of handing the keys to a smiling customer.
An engine misfire can also have potentially damaging effects on the transmission. Think about the jolting and shock load on the input shaft and other splines when a misfire occurs with the torque converter clutch applied. After repairing a transmission with spline or sun gear reaction shell failure, it isn’t uncommon to find out during the road test it has an engine misfire.
Recently I had the opportunity to diagnose misfire problems on a couple of Toyota Corollas with 1ZZ-FE engines. The 1ZZ-FE and its variants have been used in several Toyota plat-forms since its introduction in 1998 and it shares many similar traits with mod-ern engines being produced by other automakers. The 1ZZ-FE is a 1.8 liter, DOHC, 16-valve, 4-cylinder engine, with variable intake valve timing, coil-on-plug ignition, and port fuel injection. Many diagnostic approaches taken with this engine can be successfully applied to other automakers’ engines.
The first situation was with a 2000 Corolla. The customer complained the transmission was “bumping” or “shift-ing” when sitting at a stoplight after the vehicle had been driven for a while (engine fully warmed up).
THE NUTS AND BOLTS OF ELECTRICAL DIAGNOSIS
by Mike Van Dyke
15 Minute 15 Minute Misfire Misfire DiagnosisDiagnosis
Quick Test Examples on the Toyota 1ZZ-FE
Figure 1: Scan data shows only cylinder #3 was misfiring.
Figure 2: Switching coils, spark plugs, or even fuel injectors from known good cylinders can help narrow down the problem quickly.
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34 GEARS August 2006
It so happens that when the cus-tomer arrived at the shop the symptom was present. A road test with the cus-tomer verified the complaint. An initial diagnostic fee was agreed upon and the customer was given a ride home.
First I connected a scan tool to check for Diagnostic Trouble Codes (DTC) and to monitor any pertinent scan data. The customer indicated a possible transmission problem, but “seat of the pants” intuition told me to check for a misfire first. No DTCs were present, but, as you can see in figure 1, the misfire counter for cylinder number 3 was incrementing while the other cyl-inders remained at zero. There wasn’t enough misfire activity to set a DTC, but at least I knew the problem was isolated to cylinder number 3.
Rounding Up the Usual Suspects
Just for a quick heads up, I had the service writer check prices on the top three suspect components to cause a misfire:
• OEM specified Iridium spark plugs: $80 for a set ($20 each)
• Ignition coil: $160• Fuel Injector: $240
The age-old trick of spraying car-buretor cleaner around the intake mani-fold gasket created no change in the symptom, so I was fairly certain we were dealing with one of our three main suspects. But which part was at fault? And how could I quickly diagnose and be certain of the faulty part, without wasting time and money by replacing unnecessary parts? None of these parts are particularly inexpensive; even the spark plugs at $20 each aren’t cheap when they may not fix the problem. I wanted to make sure to keep the diagnosis and repair process moving smoothly in a positive direction.
Throwing Parts at the Problem
Some options that ran through my mind were:
1. Get out the COP (Coil-On-
Plug) adapters to scope the secondary coil waveform, or probe the primary side of the coil to get clues from firing voltage, burn time, and burn line slope.
2. Scope the injector voltage and current waveforms to get more clues from pintle humps, fly-back voltage spike, current ramp, etc.
3. Throw some known good parts at it and see if it works.
A few high tech options to really sink your teeth into with today’s test equipment! Options 1 and 2 were very tempting, but option 3 won out for me because I had seen three other cylin-ders working perfectly, sitting right there under the hood. That means three known good coils, spark plugs, and injectors.
A closer look revealed the
culprit spark plug was fouled with
deposits.
15 Minute Misfire Diagnosis
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Figure 3: A fouling spark plug ended up causing the intermittent misfire.
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GEARS August 2006 35
Why not just swap coils with neighborly cylinder #2, fire it up, and watch the misfire counter? Or, if I have to, roll up my sleeves and swap spark plugs? I grabbed a 10 mm socket and a speed handle. Two minutes later I had the engine running after switching the coils between cylinders 2 and 3 (figure 2). Number 3 cylinder was still show-ing misfires.
Then I dug in five minutes deeper and switch the spark plugs between cylinders 2 and 3. Ah ha! The misfire moved to cylinder number 2. I installed a set of spark plugs and the problem was solved. The customer was antici-pating an expensive transmission repair and was very happy paying for the diagnosis and spark plug replacement instead.
A closer look revealed the culprit spark plug was fouled with deposits as shown in figure 3. The other spark plugs were showing excess deposits as well. The customer was informed the deposits could be caused by fuel additives or excessive oil consumption, and the customer did acknowledge the engine was using some oil between changes.
A Not-So-Happy StoryAnother Corolla came in with an
obvious misfire. This one had the MIL lit, with DTC P0302 in memory: cylin-
der 2 misfire detected. Uneven crank-ing pointed toward a serious mechani-cal failure of the engine.
A compression test showed no compression on cylinder 2. Removing
the cylinder head revealed a burned exhaust valve and the pistons were all very clean around the edges, indicat-ing heavy oil consumption and poor piston ring oil control (figure 4). The engine had over 200,000 miles on it. The customer agreed it wasn’t worth doing a valve job and opted to install a used engine.
A misfire can have many possible causes: fuel delivery, spark/ignition, and mechanical engine failure to name the more common ones. Taking the time and knowing how to connect and use high tech test equipment is impor-tant when you need to verify the failure of an expensive component or track down an elusive problem in a circuit. But on many occasions the basics can be covered by applying some quick tests or substitutions like the ones we went over here.
Sometimes it helps to think simple first before moving on to the more com-plicated or high tech approach.
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Figure 4: A burned exhaust valve was the final straw on this engine. The pistons are clean around the edges, indicating oil consumption from bad rings.
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