Showing posts with label Repair. Show all posts
Showing posts with label Repair. Show all posts

Monday, December 24, 2007

Removing / Replacing Alternator (Zetec)

Removal of the alternator may be done when you need to upgrade to a higher output alternator, or to install an underdrive pulley such as the AEM or Focus Central Kit, which requires replacement of the alternator pulley.

Time Required:
1 Hour

Tools Needed:

  • Socket Set
  • Prying tools
  • Torque Wrench (Optional)

    Procedure:

    1. Disconnect the battery ground cable.

    2. Remove the accessory drive belt. Information can be obtained from the Underdrive Pulley How-To

    3. Remove the alternator electrical connector cover.

    4. Disconnect the alternator electrical connectors.

    5. Remove the coolant expansion tank bolt.

    6. Detach the coolant expansion tank from the clip and secure to one side.

    7. Detach the power steering reservoir and secure to one side.

    8. Detach the engine wiring loom bracket and secure to one side.

    9. Detach the ground cable.

    10. Detach the evaporative emission canister purge valve and secure to one side.

    11. Remove the first bolt.

    12. Note:

  • The second bolt must be fully disengaged from the bracket although it is not possible to remove the second bolt at this stage.
    Unscrew the second bolt fully.

    13. Remove the alternator.

    Install in reverse order.
  • Instrument cluster light bulb replacement

    As some foci get older, lights in the instrument cluster may start to burn out. The odometer bulb is the most obvious, but other bulb burning out will appear as darker areas on the gauge face as well.

    Time Required:
    30-45 minutes

    Tools Needed:

  • Torx drivers
  • stubby philips screwdriver

    Procedure:

    1) Remove the three Philips screws in the upper part of the sweeping dash. Pull it loose.

    2) Pull the wire harness off of the trunk release button behind the dash insert.

    3) Disconnect the rubber top of the steering column cover from the dash insert. Put the dash insert in the back seat.

    4) use a 7mm hex bolt driver to remove the 4 bolts on the top and bottom corners of the gauge unit

    5) Using a small screwdriver, pry black lever open to release the cluster from the electrical connector.

    6) Remove the cluster from the Dash

    7) On the back of the cluster, there are several grey knobs, each of which holds a light bulb. If you know which one is burned out, open the knob behind that bulb. In the below photo, the instrument cluster is updside down and the odometer is the one that's all alone surrounded by white plastic near the upper and slightly right part of the photo:

    8) Remove the bulb from this carrier, and put a new bulb in its place.

    9) re-assemble in reverse order.

  • Replacing the thermostat and/or thermostat housing

    The thermostat housing (also called the water outlet) has a nasty habit of cracking internally and letting water flow past the gasket. The thermostat is also a commonly replaced part. Here's how to replace them.

    Time Required:
    45 to 60 minutes

    Tools Needed:

  • Adjustable Wrench
  • Bucket
  • Jack
  • Jack Stands
  • Ratchet
  • 13mm Socket
  • 10mm Deep-well Socket
  • 10mm Open-end Wrench
  • Slip-notch Pliers
  • T25 Torx Driver
  • Finger Ratchet (Optional)
  • Small Rubber Hose (Optional)

    Procedure:


    1) Let engine cool down for at least 1 hour before beginning.
    2) Follow the instructions in this article to drain the cooling system
    3) Un-plug the coilpack wiring harness. The retaining clip is on the bottom of the plug. Press it upwards while pulling the plug toward you. (see diagram below)
    4) Unbolt the EGR tube brackets with a 13mm socket and a 10mm open-end wrench (see diagram below)

    5) Push the EGR tube down a little bit to give you working room to access the bolts on the thermostat housing
    6) Using pliers, squeeze the clip on the upper hose, and slide it away from the end of the hose. Release pressure on the clip, then pull the hose straight away from the thermostat housing to remove it. (see diagram below)
    7) Using the ratchet and a 10mm deep well socket, remove the 3 bolts holding the thermostat housing to the cylinder head. Use a finger ratchet if needed. (see diagram below)

    8) Using pliers, squeeze the clip on the rear hose, and slide it away from the end of the hose. Remove this hose the same way you removed the hose in step 6.
    9) Once the rear hose is removed, you can push the thermostat housing -- still attached to two more hoses -- down and under the hard, black A/C tube. This will help you remove the remaining two hoses on the front of the thermostat housing. Again, remove these hoses the way you did in steps 6 and 8. The housing will be completely removed at this point.

    You can see the damaged housing in the picture below. This is very common:

    10) Using a TORX T25 driver, remove three the screws attaching the thermostat retainer.

    11) Pull the thermostat out of the housing.

    * During re-assembly, you will need to re-use the old thermostat and thermostat retainer. The new housing does not come with these parts.

    Assemble in reverse, and Follow the instructions in this article to re-fill the cooling system

  • Inner Tie Rod Replacement

    Tie rod bent? You can do it yourself without taking apart the whole front end of the car like the shop manual instructs you to do!

    Time Required:
    1-2 Hours

    Tools Needed:

  • Pipe Wrench
  • Screwdriver
  • Lug Wrench
  • Jack
  • Jack Stand
  • Wheel Chocks

    Procedure:

    Lift Car with a floor jack. use a jack stand to hold it up. chock all wheels that are left on the ground, because this can be a pretty dangerous way to do your own tie rod. I've done two this way so far, though, with no problems.

    Remove wheel

    Get on the lock nut of the tie rod end, and turn it clockwise 1 turn. It will be difficult to start, but once free, will turn easily. This will back it off from the tie rod end.

    Remove the tie rod end from the wheel knuckle. I can't remember if there's a cotter pin holding the nut on or not on the Focus. If there is, remove it before undoing the nut. It's self explanatory.

    unscrew the tie rod end from the tie rod. Count the number of turns it took to remove it, and write that number down for later.

    Remove the lock nut that you backed off.

    Cut the Tie rod dust boot clamps with shears, or pull them off with a screwdriver, pliers, or whatever. You will need to replace them. I used screw-tighten hose clamps to replace them, because my boot clamp tool would not fit in there.

    Remove the dust boot. There is a hose connecting both sides of the steering, it runs between the two dust boots. Nothing but air in there, just make sure you keep track of it and hook it back up when you're done.

    Turn the steering wheel as far away from the side you're working on as possible. If you're working on the driver's side tie rod, turn the steering all the way to the right. Vise versa for the passenger side.

    That guy up there was right. there are no flats for getting on the ball joint with a wrench. snap onto it with a pipe wrench instead. It will work. You may need to firmly kick or apply foot pressure to the pipe wrench to back it off.

    When it comes out, replace it. I used blue-color (medium) thread lock on the part that goes into the steering rack. Tighten it well, with the pipe wrench or an open-end wrench on the flats.

    Replace the tie rod dust boot. Place the hose clamps on the boot beforehand. Make sure the air hose that connects the two boots together is connected properly on both ends.

    Tighten the hose clamps. Yes, I know, it's a pain in the ass.

    Put the tie rod lock nut on the tie rod, move it pretty far down the tie rod threads.

    Replace the tie rod end. Only screw it on the same number of turns you used to remove it.

    back the lock nut against the tie rod end, firmly. NOTE: DO NOT USE THREAD LOCK COMPOUND ON THE OUTER TIE ROD END, THE TIE ROD LOCK NUT, OR THE TIE ROD END ATTACHMENT NUT!

    Put the wheel back on, and go get an alignment.

  • Door latch fix

    On some Foci, the door latch starts to act flaky. The outer handle will either become reluctant to snap back into place or will completely fail to open the door. Also, the door may not latch properly without slamming it several times. These are both caused by the same problem, and it's easy to fix yourself!

    Time Required:
    30-45 minutes

    Tools Needed:

  • Can of lubricating catalyst such as PB B'laster (recommended) or WD-40
  • Torx T-20 driver
  • 1/4" Nut driver or deep socket
  • small flat-head screwdriver or pry tool
  • window crank removal tool (if manual windows)

    Procedure:

  • Make sure the window on the affected door is rolled up
  • Follow the instructions for Removing your door trim
  • Pull back the upper rear corner of the foam-like lining on the inside of the door.
  • Locate the vertical (up and down) rod attached to the inside of the outer door handle. It attaches to a flipper-like device at the top, and vanishes into a plastic enclosure at the bottom.
  • Liberally lubricate both visible ends of the metal latch rod
  • Grasp the rod and the outer door handle, and manually open and close the door latch while making sure the metal rod doesn't stick or bind. Keep spraying both ends and checking for smooth operation until it works properly.
  • Replace the inner door liner to it's original position
  • Re-assemble the door trim.
  • Air Conditioner re-fill and service

    It's going to be summer soon, and in many parts of the world, things are going to be heating up. Make sure your A/C is running at its best. If the AC isn't quite as cool as it used to be, the solution might be as simple as recharging the system. You can do it without even getting under the car or popping the hood!

    Time Required:
    30 minutes to 2 hours

    Tools Needed:

  • Air Conditioner pressure gauge
  • Torx T30 screwdriver
  • Philips head screwdriver
  • R134a Refrigerant
  • Kitchen thermometer capable of reading at least 40-100*F (optional: for judging performance of your A/C system)
  • AC System Leak UV indicator dye (optional: some R134a refills have this dye in them)
  • UV Light (optional: for highlighting UV leak indicator dye)

    Procedure:

    Note: The A/C system is under high pressure. Also, while R134a isn't as bad for the environment as the older R12, there is still a heavy fine for venting R134a into the atmosphere. You should never take apart your A/C system without proper training and refrigerant recovery equipment. Wear protective glasses at all times while servicing your A/C. Also, you will be working under or near the car while it is running. Please observe all safety precautions and refer to our disclaimer on the front page.

    Initial troubleshooting

    If you have access to a thermometer, run your A/C on high with recirculate, and leave the thermometer stuck in one of the vents. After driving around for a while, the air coming out should probably be between 40*F and 50*F unless it's very hot outside. If the air coming out is much warmer than this, your A/C is probably not functioning properly.

    With the car running and A/C on Max, pop the hood and listen for or watch the A/C compressor pulley. It has a clutch, so the center of the pulley may spin intermittently. It should start and spin for 30 seconds or longer.

    If after 90 seconds it never spins, make sure your A/C is turned on. If it spins for just a few seconds, stops, then starts again after a few seconds, it is short cycling. Either of these could be caused by low refrigerant levels. There may be a leak or something more serious at fault. You may try recharging the A/C system with a leak-indicator additive refrigerant. See advanced troubleshooting information at the end of this article for more information.

    Pressure test and recharge

    1) Get some tools and supplies together.
    This kit, made by Interdynamics, contains 2 fairly large containers of R134a Refrigerant, one with UV dye, as well as a trigger-actuated refrigerant dispenser nozzle that has an integrated pressure gauge. To top it off, this kit also came with a UV-emitting LED pen-light, which makes the UV dye extremely visible to the naked eye without any need for special UV glasses. This kit is available at most auto-parts stores, and the dispenser nozzle and gauge are re-useable, and fit most R134a canisters. You'll also need the other tools mentioned above. If the A/C recharge kit requires assembly, follow the instructions that come with the kit.
    A/C Recharge kit and tools

    2) With a Torx T30 driver, un-fasten the front part of the wheel well liner on the passenger side of the car.
    Wheel Well Liner

    3) With a Philips head screwdriver, un-fasten the 2 body snaps holding the wheel well liner. Then let the wheel well liner fall out of the way and rest on the tire.
    Wheel Well Liner

    4) Locate the Low-pressure A/C recharge port, which is on top of the reciever dryer (metal canister).
    Recharge port

    5) Attach the hose to the service port and examine the pressure. I've been told that while the car is off, a rule of thumb is that the pressure should be about the same as the ambient temperature in Fahrenheit. If it's 80 degrees outside, the pressure at this service port should be somewhere around 80 PSI.
    Recharge hose attached

    6) Start the car and run the A/C on high with recirculation as shown below. This will make sure that the A/C pump is running as hard as possible. If the A/C compressor isn't running (you can usually hear it), the pressure may read high. If the A/C compressor never starts, or if it's short-cycling, the readings could be off.
    A/C System on max

    7) If the system needs recharging, start adding refrigerant to the system per the instructions that came with the recharge kit. For this Interdynamics kit, you simply read the pressure, then momentarily hold the trigger down to add regrigerant. Release the trigger, and check the pressure again.
    Recharge

    8) Once the pressure looks right, replace the plastic body snaps and torx screw that hold the wheel well liner in, and take the car for a drive with the A/C Cranked. If all went well, it should be nice and cool!

    Advanced Troubleshooting

    Once complete, you may want to check the A/C components for leaks; especially if your A/C seems to gradually become less effective. If you filled up with a UV-Dye refrigerant, you simply use a blacklight such as the pen light that comes with this kit, and shine it on all A/C the components that you can access from under the car and under the hood, looking for the telltale bright yellow glow. The dye is harder to spot in daylight, so you may wait until the evening or pull into a dim garage to examine some of the brighter areas of the A/C System. The service port will naturally have some dye on it after feeding dye into the system, so I've used it as an example to show what the dye looks like under U/V. Dye on the service port is usually benign. If in doubt, clean the U/V dye off and drive around for a while longer, and see if the dye returns. The most common places for leaks are at unions and connectors, and from the A/C compressor itself. Check those areas thoroughly.
    Leak Test

    If there are any small leaks, you may try buying a canister of compressor-safe A/C leak sealer. This can usually be added to your system the same way you recharge it, so you shouldn't need to buy another hose if you bought a system like the one I used. If you encounter a large, hissing leak, or if your leak persists after adding stop-leak, you should see a professional mechanic.

    There is a high-pressure service port under the hood (covered with a plastic cap, near the radiator). A high pressure gauge hooked up to this port, combined with the low pressure guage in the recharge kit, can point out a failure with the expansion valve or the compressor. These high-pressure gauges use a different size of connector, and are not usually sold with the "do-it-yourself" style A/C recharge kits. If you get one though, you should be able to watch the high pressure rise and the low pressure fall when the compressor kicks on. When the compressor is not running, the two gauges should start to equalize after a little while.

    There are components of the A/C System (both electrical and mechanical) that don't leak when they stop working. There is also quite a bit of A/C plumbing and several components inside the car that can't be easily tested with dye. U/V dye can't troubleshoot all the problems! Here is a very small symptom chart with possible problems listed. Most of these problems require professional service, however.


    Compressor never turns on:
    * A/C Not running
    -- Make sure fan is on HIGH, temperature selector is turned all the way to COLD, and that the A/C and recirculate light indicators are on (recirc doesn't work in defog mode)
    * Electrical connector to compressor clutch is disconnected, or the circuit is bad (short/open/blown fuse)
    -- Check connectors, fuses, and wiring for the compressor
    * Refrigerant Pressure is too low
    -- Check refrigerant pressure, add if needed
    * A/C Pressure sensor, or the wiring to it is damaged or disconnected.
    -- Visually inspect wiring going to the sensor (on my Focus, it's near the reciever/dryer, a "T" coming off the A/C hard line)
    -- Check pressure sensor with a continuity tester or ohm meter, if circuit is open but system pressure is okay, the pressure switch may be faulty.
    -- If switch tests okay, make sure its connector is plugged in firmly to the wiring harness.
    -- May require a mechanic
    * A/C Compressor clutch mechanism has failed
    -- See a professional mechanic


    Compressor short-cycles (on and off very quickly):
    * Refrigerant Pressure is too low
    -- Check refrigerant pressure, add if needed
    * A/C Pressure sensor, or the wiring to it is damaged
    -- Visually inspect wiring going to the sensor (it's near the reciever/dryer, a "T" coming off the A/C hard line)
    * Expansion valve damaged
    -- See a professional mechanic
    * Compressor damaged
    -- See a professional mechanic


    Compressor is running but pressure stays very high
    * Refrigerant pressure too high (overfilled)
    -- See a professional mechanic. DO NOT VENT THE A/C LINES!
    * Expansion valve damaged
    -- See a professional mechanic
    * Compressor damaged
    -- See a professional mechanic


    Compressor is running, pressure is good, but the system is not blowing cool air
    * Temperature control malfunction
    -- Check the HVAC temperature knob, the cables going to it, and the other end of the cable down in the center console in the driver's side foot well.
    --These components should move when you change the temperature selector. If not, a cable may have become disconnected or may have broken. Re-attach or replace as needed
    * Frozen or blocked evaporator
    -- See a professional mechanic


    Blower fan does not run or only runs on certain settings
    * Blown fuse
    -- Check the HVAC Fan fuse (see owner's manual)
    * Damaged HVAC fan switch (common failure)
    -- Test the switch with a multimeter, replace if needed
    * Burned up HVAC fan resistor
    -- Test the resistor going to the HVAC fan, replace if needed

    As you can see, it's worth noting that mobile A/C service can be a very complex task, and quite often requires the use of expensive diagnostic equipment. HVAC technicians are usually licensed to handle refrigerants properly. They're also trained to troubleshoot and repair a whole variety of problems with air conditioner systems and they have all the right tools for the job. A lot of times a pair of cheap gauges, a blacklight and a kitchen thermometer simply don't cut it. Leaks inside the cabin usually require an expensive refrigerant detector (often called a "sniffer"). This is only one of many specialty tools that the pros use. Air conditioner systems are also very expensive, so if you're in doubt or worried about damaging something, take it to a pro.

  • Zetec Valve Cover Gasket Replacement

    As our Zetec engines get up there in miles and age, the valve cover gasket loses its elasicity and turns into a harder, brittle plastic type compound. Particularly when used with thinner oils and syntetics, a worn valve cover gasket can cause pretty alarming oil leaks. Fortunately, it's an easy fix that we can show you here!

    Time Required:
    30 Minutes

    Tools Needed:

  • 8mm Socket (5/16" Works too)
  • Ratchet
  • Socket Extension
  • Rag
  • Emery Cloth or fine grit sandpaper (optional)

    Procedure:

  • Pop the hood. My Cam gear cover and header heat shield are missing, but you get the idea.

  • Unhook the spark plug wires, move the throttle (and cruise, if equipped) cable out of the way, and unhook the breather tube from the back corner of the valve cover

  • With a socket, extension, and ratchet, remove the 10 bolts holding the valve cover on. Below is a diagram of the bolt locations:

  • Lift the valve cover up. It's likely that it will be stuck to the head pretty well. Don't break anything, but pull up firmly if you're sure all the bolts have been removed.

  • Clean the head-to-valve-cover mating surfaces with a clean rag, being careful not to let anything fall down into the head. Very carefully, use emery cloth or fine-grit sandpaper to remove stubborn residue on the mating surface. My engine didn't require anything more than a rag and some hard rubbing.

  • Remove the old gasket from the valve cover. It may crack or tear. Be sure to get ALL the gasket material out of the grooves.

  • Properly orient the new valve cover gasket (it can only be installed one way and fit properly), and press it firmly into the grooves. Take great care near the corners and where it routes around the bolt holes. Then rub a light coat of oil onto the mating surface of the gasket. I just dipped my finger in some of the used motor oil sitting exposed on top of my cylinder head for this.

  • Replace the valve cover onto the cylinder head, making sure the holes line up.

  • Starting at the four outer corners, replace the valve cover bolts and get them started on the threads only. Don't tighten yet. Then replace all the bolts.

  • Use the ratchet to tighten the bolts snugly but not really cranked down too much.

  • Replace the valve cover breather tube, spark plug wires, and throttle cables to their original position. Clean up any oil messes near the valve cover gasket, this makes leaks easier to spot.

  • Start the engine and let it run for a few mintes while you examine the area around the gasket for leaks.
  • Cleaning the Mass Air Flow Sensor (MAFS)

    The MAF Sensor can get fouled with atomized oil from the breather tube, and other particles that are small enough to get through the air filter. It can often be cleaned instead of replaced, if you do it carefully. Here's how!

    Time Required:
    10-15 minutes

    Tools Needed:

  • Secure Torx T20 Screwdriver (or bit)
  • CRC Quick Drying (QD) Electronic Parts Cleaner

    Procedure:

    1) Grasp MAFS Connector, depress upward-facing button with thumb and pull connector off (towards front of the car)

    2) Using the Secure Torx T20 screwdriver (It's a Torx T20 with a hole in the center), unscrew the 2 screws holding the MAFS to the intake.

    3) Pull the MAFS upward, out of the intake

    4) Using Electronic Parts cleaner over a surface that won't get damaged (such as sidewalk or pavement), carefully spray out the inside of the Mass Air Flow Sensor, until the liquid that flows out of the sensor is clear and clean. Make sure to hit all the surfaces and spray liberally through all MAFS openings.

    5) Allow the MAFS to dry completely. With CRC QD cleaner, it shouldn't take very long. It evaporates rapidly at room temperature, and almost instantly in the summer heat.

    6) Place MAFS back onto intake, making sure that it's orientation is correct. Assembling it incorrectly may cause your car to operate poorly.

    7) Replace the 2 Secure Torx screws.

    8) Replace the MAFS wiring connector, snap it firmly into place.

  • Handbrake adjustment

    The emergency brake, e-brake, hand brake, or whatever you wish to call it, sometimes gets to feeling loose, where it will no longer hold the car steady in your driveway or provide any semblance of "emergency" stopping power. It's easy to tighten, though. Here's how.

    Time Required:
    10 minutes

    Tools Needed:

  • Ratchet
  • 10mm deep socket
  • 3" ratchet extension
  • Philips screwdriver

    Procedure:

    First off, I need to mention something. When the handbrake isn't grabbing like it should, you really should first check the handbrake cable to make sure it's still intact and connected properly, and you should also check your rear brake pads. This is genuinely a "ghetto" way to get a few extra miles out of your rear pads if they're worn down, but this hack also comes in handy if your brake cable has stretched a bit. This site has a disclaimer notice on every page, so I'll save my breath (Er, fingers)

    First, remove the front cupholder inserts (if equipped), exposing two philips-head screws

    Next, firmly grasp the rear cupholder and coin-holder as shown below, and pull upwards. If you have a center console arm-rest, the procedure may be vastly different.

    Then, with the ratchet, 10mm socket and extension, remove the 3 nuts holding the rear of the center console down

    Remove the philips screws in the front cupholders

    Next, make sure the shifter boot is disconnected. You can try to do it the way it's shown in the photo below, or you can simply remove the knob by twisting it counter-clockwise, and the boot will stay on the console but slide off of the shifter.

    Pull the handbrake lever up as far as you can, which is probably really far if you're reading this article

    The center console should lift up and out with a little maneuvering. pull the handbrake boot up over the handle while removing the console.

    Once the console is removed, you'll see a nut attached to a threaded spindle on the driver's side of the handbrake. Get on it with the 10mm deep socket and start tightening. Righty-tighty, lefty loosey! Put your finger under the handbrake cable that's exposed behind the lever to feel how loose it is. When it starts putting pressure on your finger, you've probably got it tight enough, or close. Over-tightening it will result in damage to your braking system and you might actually lock your rear wheels up, making it impossible to drive. Use common sense.

    Here's a picture of my spindle after I tightened mine. My handbrake was almost completely ineffective before I tightened it, your mileage may vary

    You might want to test the brake before putting everything back together. When adjusted properly, somewhere between 5-8 clicks will provide a good hold on the brakes. If it's hard to pull after just one or 2 clicks, you're way too tight. Re-assemble everything in reverse order once you're satisfied.

    Closing note: If you tighten the handbrake, you may have to take it apart again to loosen it before you can replace the rear brake pads or drums.

  • DPFE Sensor and EGR Information

    DPFE sensor failure is a fairly common problem on the Focus, and as more and more older foci get more and more miles, the failures are becoming a lot more common. The symptoms are a "stumble" and what feels like an erratic loss of power when cruising around at partial throttle. This article addresses DPFE and EGR concerns, and is a compilation of information that has been posted on the Focaljet.com forums on the subject.

    Definitions:

  • EGR means "Exhaust Gas Recirculation", the process of sucking exhaust gases back into the engine to re-burn them. It is a technique that reduces the pollutants emitted by the engine.
  • DPFE means "Delta Pressure Feedback of EGR", Delta means "difference" or "change", so the DPFE Sensor reads changes in the pressure of the EGR system.

    Description of the EGR and DPFE system:

    There's a vacuum line coming off the intake manifold to the EGR actuator. The actuator is on the firewall and it's an electric device controlled by the PCM that modulates how much vacuum pressure gets past it. From there, another hose goes to the EGR Valve. Vacuum pressure opens the EGR Valve, allowing exhaust gases to be pulled from the exhaust manifold, past the DPFE tubes, then back into the intake manifold.

    When gas flows through the EGR tube, the two tubes leading to the DPFE Sensor get pressurized. There's a differential in the pressure, one tube has more pressure than the other one. The DPFE registers the amount of pressure difference and can tell how much exhaust gas is flowing through the EGR system. It tells the PCM how much is flowing, and The PCM uses this reading to control the actuator.

    DPFE Sensor Failure

    When the DPFE Sensor starts failing, it gives the PCM bad information. The DPFE Sensor is less sensitive, and the PCM thinks less recirculated gas is being burned than is actually so. Trying to compensate, the PCM opens up the actuator too much. This excessive amount of EGR combined with the air coming in via the throttle body leans out the fuel mixture, causing a lean misfire, which is the "stumble" or "hesitation" that is common as the DPFE Sensor fails. The DPFE sensor in the Focus is not very robust, requiring frequent (every 30k miles or sometimes less) replacement or a work around. Note that complete DPFE sensor failure is a very slow process, and the check engine light won't come on until the DPFE sensor is pretty much done for.

    If you're experencing stumble or hesitation while cruising, and think that it might be related to DPFE sensor failure, try one of the workarounds listed toward the end of this article. If the stumble goes away, then your DPFE sensor is more than likely failing. Of course, replacement of the bad DPFE sensor is the official recommended fix for this problem. However, workaround #2 listed in this article takes a while longer to perform but makes for a nice semi-permanent solution that won't cause any damage or check engine light warnings if the DPFE Sensor hasn't completely died. Workaround #1 only takes a few seconds but is good for making a quick diagnosis to see if the EGR system is leaning out and causing problems.

    Identification of EGR system components

    On most Foci, the DPFE Sensor is a "Winged" Black box bolted to the firewall pretty much in the top middle, with 2 rubber hoses coming down off of it, and a 3-wire plug going into it perpendicular to the firewall. The 2 rubber hoses go down to the EGR Pipe, which is the 1/2" or so diameter tube you see coming off the driver's side of the exhaust manifold and going around the driver's side of the engine under the coilpack.

    Photo of the more common style DPFE Sensor:

    On some '01 foci, the DPFE sensor is a more squarish black box with a 3-wire plug in the top and 2 hoses coming off the bottom, it sits almost on top of the EGR pipe, and is located somewhat under the air intake tube. It also connects to the EGR pipe via rubber hoses, but the hoses just stand straight up and they're short. There are actually 2 different DPFE sensors for this location, but they are both located in the same place, and look similar. Yours may not look exactly like the one in this photo, though.

    Photo of the '01 replacement DPFE Sensor (thanks to Jaspo from the FocalJet forums):

    Basically, follow the EGR pipe until you see 2 metal tubes next to each other split off from it, then follow those to the rubber hoses and those hoses to the DPFE sensor.

    The EGR Actuator is an electric device that allows small amounts of vacuum pressure to pass on to the EGR Valve.
    Photo of EGR Actuator (DPFE Sensor wiring and a hose removed for clarity):

    The EGR Valve is a vacuum-operated gate that opens up to allow exhaust gases to travel from the exhaust manifold to the intake manifold for recycling.
    Photo of EGR Valve with vacuum hose attached to the top:

    Replacement of DPFE Sensor

    You replace the DPFE sensor by un-bolting it from the firewall with a 10mm socket (unless you have the less common '01 DPFE Sensor), pulling the old one off the rubber hoses, disconnecting the wire harness from it, putting the new one back onto the rubber hoses (the same way it came off), re-attaching the wire harness and bolting it back to the firewall.

    If you hook the rubber hoses up wrong, you'll get a CEL. Nothing harmful, but you'll need to swap them. :)

    DPFE Sensor Failure Workarounds

    Keep in mind that these work-arounds might not be 100% legal depending on emissions laws in your state. You should probably go "back to stock" for emissions testing if your state requires certification. No one but you will be held liable for legal trouble you get in by using these troubleshooting methods to determine EGR and DPFE malfunction.

    Work around #1 (Temporary) : http://www.focushacks.com/index.php?modid=66 All this does is stops your EGR Valve from being able to open. If your car is running like crap, try this first. If this fixes the problem, then you know it's likely your DPFE sensor, or less likely, some other EGR Malfunction. All EGR malfuctions I've ever seen on the Focus (a LOT of them) were DPFE related. This method will eventually cause a check engine light (CEL) due to "insufficient EGR flow"

    Photo of EGR Block-off. Shown: a vacuum line splitter with caps on it. A plastic golf tee, screwdriver bit or anything that fits snugly inside the tube to block off air will work as well:

    Work around #2: Take the hose off the EGR Valve like shown above, except then pull both hoses off the DPFE Sensor, and re-attach the hose that used to go to the EGR Valve, to the "Ref" hose port on the DPFE Sensor. This only works if your DPFE sensor is starting to fail but hasn't gone completely kaput yet. What this does is instead of opening the EGR valve when the PCM says to, it will now apply vacuum to the "Reference" sensor for the DPFE, and thus, the "Hi" sensor will see more pressure than the reference sensor sees, so the PCM is tricked into thinking that the EGR valve is working properly. If the DPFE sensor is completely shot, you'll get an "Insufficient EGR flow" CEL either way, hooked up this way or the original way, so it doesn't really hurt anything. The bonus here is that hot exhaust gases aren't destroying the DPFE sensor when it's hooked up this way, so the DPFE sensor will likely last longer. Remember to plug the 2 metal tubes that come off the larger metal EGR pipe. Failure to do so will result in hot exhaust fumes being released under the hood. This is not only noisy, but could possibly result in carbon monoxide getting inside your car while driving.

    Photo of DPFE workaround, using the older style DPFE sensor. Notice that the vacuum line that used to go into the top of the silver EGR Valve is now hooked up to the "REF" port, the port on the passenger side, of the DPFE sensor, and the other DPFE hose has been removed.

    Work-around #3: FocusSport/SCT chip with EGR system disabled. Ovbiously an expensive route, but if you were looking at a chip anyways, you can leave everything hooked up like stock, even if your DPFE sensor is totally done for, and just order your FS/SCT program(s) with the EGR disabled. Basically, you can save the hassle of buying a DPFE sensor AND a performance chip, by just getting the chip and having the EGR system disabled.

    A thread on Focaljet with a lot of members comments on the DPFE problem

  • Jacking: Raising and supporting your Focus

    It's often necessary to get your car off the ground so that you can work under it. Here's how!

    Time Required:
    5-15 minutes

    Tools Needed:

  • A real floor jack
  • Jack stands
  • Wheel Chocks (Optional)

    Procedure:

    Jacking and supporting must be performed on a level surface. Never use a jack to raise a vehicle that is not on level ground, such as an inclined driveway.

    Jacking points are very important. Look under the rocker panels, and look for the double-seam-welded sections. They're about 8 inches from the back of the front wheel wells, and 6 inches from the front of the rear wheel wells. You may also use the area on the front subframe where the lower transmission mount bolts up. The jack must be on one of these reinforced areas when lifting the car.

    After lifting the car, you should support the car. Both sides should be supported in most situations. The acceptable jack stand locations are the reinforced areas of the rocker panels (the same locations for jacking), the rear subframe, and the rear-most mounts of the front control arms. The front subframe lifting point is unacceptable for support with a jackstand due to being off-center.

  • Make sure vehicle is in Park (Automatic) or Reverse (Manual) with the engine stopped and keys out of the ignition. Set parking brake.
  • Locate a jack point and carefully begin to raise vehicle.
  • Once at the desired height, place jackstands in an acceptable location as shown in the diagram above.
  • Slowly and carefully lower the jack and remove it from under the vehicle. If the jack or jack stand(s) shift, or if something does not look right, immediately stop the jack. If needed, re-raise the vehicle and reposition the jack stand(s).
  • Repeat above steps for each jack stand location desired.
  • To lower, place the jack at a jack point and raise the vehicle high enough to remove the jack stand. Remove jack stand from under the vehicle, then lower the vehicle to the ground. Repeat for each jack stand to be removed.

    Example Photos


    Double jackstand support at rear subframe:

    Jack at front subframe, jack stand inserted at the back of driver's side control arm:

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