LEMON Manuals: Even more car manuals for everyone
Home >> Ford >> 2000 >> Taurus LX, 3.0 2, AX4N >> Repair and Diagnosis >> External Pages >> Different car >> Section 1671 (Driveline System - General Information) >> General Procedures >> Driveline Angle Measurement >> Special Tool(s)

Special Tool(s)

WARNING: This page is about a different car, the 2011 Mercury Milan, 2011 Lincoln MKZ, and 2011 Ford Fusion. However, it is still accessible from the selected car via links, so may be relevant.
SPECIAL TOOL(S)

G07780198
Anglemaster II Driveline Inclinometer/Protractor
164-R2402 or equivalent
NOTE: This procedure does not apply to CV joints, flex couplers or double cardan joints that are used in some driveshafts. This check is for single-cross and roller-style joints found in the driveshafts.
NOTE: Prior to checking driveline angularity, inspect the U-joints for correct operation.
NOTE: An incorrect driveline angle can cause a vibration or shudder. For additional information, refer to NOISE, VIBRATION & HARSHNESS article.
NOTE: Driveline angularity is the angular relationship between the engine crankshaft, the driveshaft and the rear axle pinion. Factors determining driveline angularity include ride height, rear spring and engine mounts.

All vehicles 

  1. Carry out the following preliminary setup steps:
    • Inspect the U-joints for correct operation.
    • Park the vehicle on a level surface such as a drive-on hoist, or back onto a front end alignment rack.
    • Verify the curb position ride height is within specifications with the vehicle unloaded and all of the tires are inflated to their normal operating pressures.
    • Calibrate the Anglemaster II Driveline Inclinometer/Protractor by placing it on a clean, flat level section of the frame rail and press the ALTZERO button.

    Vehicles with flat-flanged, split-pin or slip-flanged U-joints 

  2. NOTE: If equipped, remove the snap ring to allow access to the base of the U-joint cup. Make sure the Anglemaster II Driveline Inclinometer/Protractor is seated against the U-joint cup.
    NOTE: Rotate the driveshaft until the flange U-joint cup is parallel with the floor. This will simplify taking measurements.
    Fig 1: Checking U-Joint Operating Angle Using Anglemaster II Driveline Inclinometer/Protractor (1 Of 2)
    G07780199Courtesy of FORD MOTOR CO.
    Fig 2: Checking U-Joint Operating Angle Using Anglemaster II Driveline Inclinometer/Protractor (2 Of 2)
    G07780200Courtesy of FORD MOTOR CO.
  3. To check the U-joint operating angle, install the Anglemaster II Driveline Inclinometer/Protractor. Check and record the flange angle as angle A.
  4. Using the Anglemaster II Driveline Inclinometer/Protractor, measure the slope of the connecting component. Record the measurement of the component angle as angle B.
    Fig 3: Measuring Slope Of Connecting Component Using Anglemaster II Driveline Inclinometer/Protractor
    G07780201Courtesy of FORD MOTOR CO.

    Multiple piece driveshafts

  5. NOTE: Repeat this step for each center support bearing on the driveshaft.
    NOTE: It is not necessary to remove the U-joint snap ring, if equipped, for these measurements.
    Fig 4: Locating Center Support Bearing U-Joint Measuring Areas
    G07780202Courtesy of FORD MOTOR CO.
  6. Using the Anglemaster II Driveline Inclinometer/Protractor, measure the slope of the components in front and behind the center support bearing U-joint in the area indicated. Record the front component as angle A and the rear component as angle B.

    All vehicles 

  7. NOTE: When 2 connected components slope in the same direction, subtract the smallest number from the larger number to find the U-joint operating angle. When 2 connected components slope in the opposite direction, add the measurements to find the U-joint operating angle.
  8. Calculate the difference in the slope of the components to determine the U-joint operating angle.
    • The U-joint operating angle is the angle formed by 2 yokes connected by a cross and bearing kit. Ideally, the operating angles on each connection of the driveshaft must:
      • be equal or within one degree of each other.
      • have a 3 degree maximum operating angle.
      • have at least one-half of one degree continuous operating angle.
  9. If the angle is not within specifications, repair or adjust to obtain the correct angle. Inspect the engine mounts, transmission mounts, center support bearing mounting, rear suspension, rear axle, rear axle mounting or the frame for wear or damage.