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A quick note about oil changes. All good techs will clean the mating surface on the oil filter housing. Furthermore they will also lube the oil filter gasket with oil. Almost no techs I have met will pre-fill the oil filter. By filling the filter with oil, you are reducing the time it takes for the engine to achieve oil pressure. A minor detail, but a detail I wish more techs took the time to perform. If you are using BG’s MOA, it’s an easy solution to add the MOA to the filter.

Wet Oil Filter

So the next time you go in for an oil change, ask them for a “wet filter”. They should know what you want, and if they don’t, maybe you need a new mechanic.

The first thing you must know in regards to a vehicle over heating is that most modern cars use dummy gauges. A dummy gauge is a type of gauge that only generally reflects the actual data. For example, the coolant temperature gauge will show cold, normal and hot, but will not show the many temperature fluctuations an engine goes through while driving. The problem with this type of gauge is that by the time the temperature gauge shows a hot reading, the engine has already reached a very high temperature, and has in many cases caused major damage to the engine.

Next you must understand the anatomy of a modern engine. Modern engines consist of a cylinder block, and one or two cylinder heads, depending on whether the motor is an in-line motor or a V’ed motor. Generally, an inline four-cylinder engine looks like this:

Head gasket diagram

The cylinder head sits on top of the engine block and a cylinder head gasket seals the space between them.
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So you have a battery that keeps going dead. You have checked all the connections and the cables. They are clean and in good condition. You have replaced the battery or tested it, and it is o.k. and it’s full of water.

You’ve gone on to check or replace the alternator. It charges over 13.5 D/C volts even with a load on it. The A/C ripple is less than a volt (Put a test lead from a volt meter on the positive terminal and the main power output on the back of the alternator, switch the volt meter to A/C. ) If the alternator and the battery are both o.k., and the cables are in good condition, you most likely have a draw. A draw occurs anytime something that should turn of, doesn’t.
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Cold Engine Enrichment

A common complaint, especially when temperature start to drop is, “My car runs poorly cold, or my car is hard to start cold”. Both of these complaints are generally caused by a problem with cold start enrichment. In order for an engine to start and run cold, it requires more fuel than when it is hot. This condition where the engine needs more fuel cold is called cold start enrichment. Enrichment meaning a higher ratio of fuel to air.

If the car does not get the proper enrichment when cold, it will have trouble starting, or run poorly until the engine warms up. These complaints are mysterious at first, but once you learn the common causes, you can often cure them with little to no trouble.

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Whenever I recommend a new timing belt and water pump, I am often asked, “Can i do that myself?”. My short answer is, “No”. I would not recommend your average vehicle owner to attempt replacing their timing belt and water pump. We often see cars come in here with minor to major problems stemming from another shop installing a timing belt wrong.

That being said, here are some tips to help ensure the proper installation of a timing belt and water pump.
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Every repair order should include the four C’s. The four C’s of automotive repair are, complaint (or concern), cause, correction, confirm. As a technician, utilizing the four c system will ensure you repair a vehicle properly. Similarly, as a customer, looking to see that the four C’s are on your invoice will help ensure you are using a mechanic who knows the proper steps to repairing a vehicle.

We will use the example of a car overheating to demonstrate how to use the four c method. The repair order would say something in the realm of: “Customer states vehicle runs hot, please advise”. As a technician, your first step is to replicate the complaint. Whenever possible, quantify the complaint. Test drive the vehicle and watch the coolant temperature sensor. You can record the data, and add to the repair order, “Test drove vehicle, engine coolant temperature reaches 230 degrees Fahrenheit”.
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A frequent cause of heartache for technicians, and car owners alike, is the failed E-test. Truth be told, just about any properly running vehicle will pass emission testing. This post will not be a laundry list of cheats. Rather, this post will be a comprehensive list of repair information, to aid in actually repairing the vehicle so it is in accordance with emission standards.

Pre-Test Tips

First and foremost, make sure your catalytic converter (cat) is hot before you go to emission testing. A cat is just a honeycomb of metal that becomes so hot it burns any left over fuel the motor was unable to burn. In order to incinerate the left-overs, the cat must become extremely hot.

The best way to ensure your cat is hot, is to cruise your car down the highway for 15 to 20 minutes before you go to test the vehicle. The exhaust temperature is the hottest during light throttle cruise. Running the car down the highway will heat soak the cat, to ensure it will “lite off” during testing.

A good old fashioned top end de-carb is always a good idea before emission testing a vehicle. If you can get a full injector purge, that is best. Simply adding BG’s 44k to the gas tank and sucking a bottle of de-carb through a vacuum line also works well. The carbon in a motor becomes hotter than the normal parts of the motor, which can lead to detonation, misfire, or high NOX due to elevated combustion chamber temperatures.

Check your cooling system. A faulty cooling system can cause pre-detonation, and high nox. Let your car cool down, and make sure the coolant is full. Low coolant levels can casue multiple problems. As recommended here replace your radiator cap every spring.

Catalytic Converter

Emission Failures – Rules of thumb:

Understanding emission fialures requires undersanding the 5 gases that result from internal combustion. The 5 gases we measuer are HC, CO, CO2, O2 and NOX.

5 Gas Analyzer Specifications at 2000 RPM extended hold, in neutral or park.

  • HC = 100 PPM or less
  • CO = Less than 0.3 %
  • CO2 = Over 13.5 %
  • O2 = Less than 1 %
  • NOX = 100 – 700
  • Lambda, will vary, depending on if you are under load.

Nox is a result of high combustion chamber temperatures.

Common causes of high nox are:

  • a lean condition
    • a vacuum leak
    • a failed O2 sensor
    • a failed MAF (mass air flow) sensor
    • a failed MAP (manifold absolute pressure) sensor
  • Incorrect timing; either ignition or camshaft / crankshaft sync
    • too much ignition timing (too advanced)
    • improper crankshaft/ camshaft timing
  • a faulty cooling system
    • a failed coolant temperature sensor
    • low coolant level
    • inoperable cooling fans
  • a failed EGR (exhaust gas recirculation) system
    • Failed EGR Valve
    • Failed EGR Valve Solenoid
    • Clogged EGR Ports
  • a failed secondary air system.
  • a failed catalytic converter
  • a high compression motor

HC is from unburned or partially burnt fuel.

HC is generally a sign of misfire, but can also be that the engine is just way too rich. Common causes of HC are:

  • a rich or lean misfire
    • a failed O2 sensor
    • a failed MAF sensor
    • a failed coolant temperature sensor
    • a vacuum leak
    • dirty or sticking injectors
  • an ignition misfire
    • old or faulty ignition parts (plugs, wires, coils)
    • improper crankshaft/ camshaft timing
    • Improper ignition timing
  • a failed catalytic converter
  • a failed secondary air system

** A fuel leak (even a fuel vapor leak) near the tail pipe can also cause HC failure. The machines that suck the exhaust in and test it will also suck in the raw fuel and cause a HC failure.

High CO occurs when a car is too rich.

Common causes include

  • a failed O2 sensor
  • a failed MAF sensor
  • a failed MAP (manifold absolute pressure) sensor
  • leaking or sticking injectors
  • a failed coolant temperature sensor
  • a fuel pressure regulator leaking fuel into the vacuum port
  • too little ignition timing
  • a failed catalytic converter
  • a failed secondary air system

O2 is an indicator of air fuel metering

An O2 level over 1% indicates a lean condition.

CO2 is an indicator of over all engine health.

If CO2 is not over 13.5 % you have a general engine performance problem. Low compresion, poor ignition, faulty air fuel metering or the like.

You’ve probably noticed a pattern here. Honestly, there are a handful of systems which keep the car running properly, and the emissions low. As long as all the systems are working properly, you should be fine, the trick is determining which systems have failed.

You have to look at all five gasses to get an idea of what is going on. For example, if NOX and HC are both high, CO are low, and the idle is too high, I’d check for a vacuum leak causing lean misfire. To really hone in on the problem, you will also need a proper scan tool to watch data streams, and a 5 gas analyzer.

Correcting Emission Failures

automotive repair scan tool

This is a relatively inexpensive scan tool made by autolink. It pulls codes as well as reads and displays your basic drive-ability data. I would recommend this to anyone who wants to repair any modern car (1996 or newer). I have one, and i use it all day long.

Check your easy stuff first. Plug in a scan tool and run through your basic data, engine coolant temperature, MAF grams per second, baro pressure, intake air temperature, etc. and make sure nothing is out to lunch. For example, is the coolant temperature stuck at 0 degrees Celsius, causing the vehicle to permanently stay in cold start enrichment?

Check the Air and Fuel Metering

Make sure your vehicle is in fuel control. Modern cars have two fuel control modes, closed loop and open loop. When the car is in open loop, it is simply running a pre-made map, and makes little to no changes to the amount of fuel it delivers. When a vehicle is in closed loop, it is closely monitoring the engine and adjusting fuel and timing to create the proper air fuel ratio, and a good clean burn.

Learn more about closed loop Vs. Open loop by understnading how check engien lights work.

Watch your front oxygen sensor/s. The sensors should switch back and forth between high and low values. Many oxygen sensors are one volt systems, and will therefore switch between .02 and .98 volts. Other systems are five volt, some are 1.5 volt. The main thing to look for is rapid switching (every second or so) between low and high values. If the oxygen sensor is switching, then the ECU (engine control unit) is adjusting fuel. If an oxygen sensor is switching slowly, or sticking at a value, then there is a gross failure in the fuel control system (MAF, engine coolant temperature sensor, Oxygen sensor, etc.)

If the car is equipped with a MAF, check to make sure it is clean. A dirty MAF can cause a lean condition.

If you have an old style MAF, such as this:

mass airflow sensor

You can actually open these old MAF’s up and tune them. They are a simple flapper door that swings open as the engine draws more air in. The main downfall of these early MAF’s is that the spring wears out. As the spring wears out, the door will open further than it should, and the car will run rich. Watch your five gas analyzer and adjust it one click at a time. If you don’t have a five gas, you can always adjust a few clicks and then run it back through emission testing, it’s just far more time consuming. Generally speaking, you will need to tighten the spring two or three clicks per 100,000 miles.

Look for Ignition Problems

If you have a distributor on the car, set your timing. Ignition timing that is too far advanced will result in high NOX. Ignition timing that is too far retarded may result in high HC or CO.

While you are at it, also inspect your spark plugs to ensure they are new. Always, make sure you have the proper spark plug in your vehicle. Teh factory spark plug is always the best spark plug. If you are not sure what plugs to use, get a set form the dealership.

You can sometimes find a faulty ignition system by soaking the engine with water. The water will make it easier for the ignition system to arc to ground rather than going through the spark plug. If your car has coil on plug ignition, you can stress test the coils by making them jump a gap before the spark plug.

Ingnition Tester

This is a tester you can put in line in your ignition system. By making the spark jump a gap, you can stress the ignition system and find a failing system. Very handy.

As a last ditch effort, you can also check and ensure the crankshaft/ camshaft timing is correct. I have heard rumor of a new timing belt bringing a NOX failure back in line, once, but that would be fairly rare.

Check Emission Specific Components

You can also test your cat to verify it is working properly. First, you can install a back pressure tester in a pre-cat oxygen sensor bung. Rev the motor while in park or neutral and ensure the back pressure is low enough. If the back pressure is too high, you car is plugged, and requires replacement. You can also watch the front and rear O2 sensors to get an idea if the cat is working.

Further more, watch your five gas analyzer to verify the cat is working. Watch the five gas as the car warms up. Once the cold start enrichment has leveled off, drive the vehicle and watch the emissions. Before the cat is hot enough to light off, you will see all the emissions the car produces. At a certain point, if the cat is working, you will see the emissions drop as soon as the cat lites off.

Check your EGR system (if equipped), which recirculates exhaust gas to lower combustion chamber temperatures, and mainly lower NOX. Most EGR valves are opened by engine vacuum and a solenoid. With the engine running, apply vacuum to the EGR valve. If the valve works and the ports are clear, the engine should stumble and die. If the engine remains running, you have a faulty EGR system. If the Valve holds vacuum, but the engine doesn’t die, the ports are most likely clogged. If the EGR valve doesn’t hold vacuum, the valve is most likely bad. Certainly, the valve can be bad AND you have clogged ports.

Similarly, check the vacuum supply going into the EGR solenoid. if the solenoid has proper engine vacuum going into it, check the power and ground at the solenoid. Also, supply power and ground to the solenoid with the engine running. If the solenoid works, it will open and send vacuum over to the EGR valve.

Also check your secondary air system, if equipped. Secondary air system pumps air into pre-cat exhaust to help the cat light off. If your secondary air pump is electric, power it up and check to make sure it flows air. If your air pump is mechanical, let the engine idle and check to see if the air pump works. Mechanical air pumps often also utilize a solenoid which opens when the secondary air is required. Power up this solenoid and ensure it is working.

See also: Check engine light causes.

A sadly common problem we see around here is that the Ford gasoline motors will spit spark plugs out. Looks and sounds a bit like this.

Fortunately for us, and the owners of the effected motors, there is a easy and convenient repair. This kit allows us to cut new threads into the head with out removing it from the vehicle. An insert is then installed, and presto! the vehicle can once again accept an spark plug. Generally speaking, you will also need a new coil pack, as the retaining bracket will be broken. We also toss in the other seven spark plugs while we are at it. After the repair, it runs about as smooth as a Ford Triton motor could.

This is a list of Generic trouble codes. To see manufacturer specific codes, click the name of the manufacturer.

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Acura Trouble Codes 1100-1199

P1106 BARO Sensor Circuit Range/Performance Malfunction
P1107 BARO Circuit Low Input
P1108 BARO Circuit High Input
P1121 Throttle Position Lower Than Expected
P1122 Throttle Position Higher Than Expected
P1128 MAP Lower Than Expected
P1129 MAP Higher Than Expected

Acura Trouble Codes 1200-1299

P1259 VTEC System Malfunction
P1297 ELD Circuit Low Input
P1298 ELD Circuit High Input

Acura Trouble Codes 1300-1399

P1300 Random Misfire
P1336 Crankshaft Speed Fluctuation Sensor Intermittant Interruption
P1337 Crankshaft Speed Fluctuation Sensor No Signal
P1359 Crankshaft Position/TDC/Cylinder Position Sensor Connector Disconnection
P1361 TDC Sensor Intermittent Interruption
P1362 TDC 1 Sensor No Signal
P1366 TDC 2 Sensor Intermittent
P1367 TDC 2 Sensor No Signal
P1381 Cylinder Position Sensor Intermittant Inturruption
P1382 Cylinder Position Sensor No Signal

Acura Trouble Codes 1400-1499

P1456 EVAP System Leak Detected (Fuel Tank System)
P1457 EVAP Control System Leak Detected (Control Canister System)
P1491 EGR Valve Lift Insufficient Detected
P1498 Voltage Problem In EGR Valve Position Sensor Circuit

Acura Trouble Codes 1500-1599

P1508 Idle Air Control Valve Circuit Failure
P1519 IAC Valve Circuit Failure

Acura Trouble Codes 1600-1699

P1607 ECM/PCM Internal Circuit Failure
P1656 Automatic Transaxle System Malfunction
P1660 A/T FI Data Line Failure
P1676 FPTDR Signal Line Failure
P1678 FPTDR Signal Line Failure
P1681 A/T FI Signal A Low Input
P1682 A/T FI Signal A High Input
P1686 A/T FI Signal B Low Input
P1687 A/T FI Signal B High Input

Acura Trouble Codes 1700-1799

P1705 Automatic Transaxle System Malfunction
P1706 Automatic Transaxle System Malfunction
P1709 Automatic Transaxle System Malfunction
P1710 Automatic Transaxle System Malfunction
P1713 Automatic Transaxle System Malfunction
P1738 Automatic Transaxle System Malfunction
P1739 Automatic Transaxle System Malfunction
P1740 Automatic Transaxle System Malfunction
P1753 Automatic Transaxle System Malfunction
P1758 Automatic Transaxle System Malfunction
P1768 Automatic Transaxle System Malfunction
P1773 Automatic Transaxle System Malfunction
P1778 Automatic Transaxle System Malfunction
P1786 Automatic Transaxle System Malfunction
P1790 Automatic Transaxle System Malfunction
P1791 Automatic Transaxle System Malfunction
P1792 Automatic Transaxle System Malfunction
P1794 Automatic Transaxle System Malfunction