LEMON Manuals: Even more car manuals for everyone
Home >> Mazda >> 2005 >> B4000 SE, Automatic >> Repair and Diagnosis >> External Pages >> Different car >> Section 160 (Rear Suspension System) >> Noise, Vibration & Harshness (NVH) >> Component Tests >> Checking Tooth Contact Pattern and Condition of the Ring and Pinion

Checking Tooth Contact Pattern and Condition of the Ring and Pinion

WARNING: This page is about a different car, the 2004 Mazda Tribute, 2003 Mazda Tribute, and 2002 Mazda Tribute. However, it is still accessible from the selected car via links, so may be relevant.

There are two basic types of conditions that will produce ring and pinion noise. The first type is a howl or chuckle produced by broken, cracked, chipped, scored or forcibly damaged gear teeth and is usually quite audible over the entire speed range. The second type of ring and pinion noise pertains to the mesh pattern of the gear pattern. This gear noise can be recognized as it produces a cycling pitch or whine. Ring and pinion noise tends to peak in a narrow speed range or ranges, and will tend to remain constant in pitch.

  1. Raise and support the vehicle.
  2. Remove the differential housing cover. Refer to DIFFERENTIAL HOUSING COVER .
  3. Inspect the gear set for scoring or damage.
    Fig 1: Example Of Ring Gear Scoring Or Damage (1 Of 2)
    G00987083Courtesy of MAZDA MOTORS CORP.
    Fig 2: Example Of Ring Gear Scoring Or Damage (2 Of 2)
    G00987084Courtesy of MAZDA MOTORS CORP.
  4. In the following steps, the movement of the contact pattern along the length is indicated as toward the" heel" or "toe" of the differential ring gear.
    Fig 3: Identifying Ring Gear Heel & Toe
    G00987085Courtesy of MAZDA MOTORS CORP.
  5. Apply a marking compound to a third of the gear teeth on the differential ring gear. Rotate the differential ring gear several complete turns in both directions until a good, clear tooth pattern is obtained. Inspect the contact patterns on the ring gear teeth.
  6. A good contact pattern should be centered on the tooth. It can also be slightly toward the toe. There should always be some clearance between the contact pattern and the top of the tooth.
    • Tooth contact pattern shown on the drive side of the gear teeth.
      Fig 4: Identifying Tooth Contact Pattern
      G00987086Courtesy of MAZDA MOTORS CORP.
  7. A high, thick contact pattern that is worn more toward the toe.
    • Tooth contact pattern shown on the drive side of the gear teeth.
    • The high contact pattern indicates that the drive pinion is not installed deep enough into the carrier.
    • The differential ring gear backlash is correct, a thinner drive pinion shim is needed. A decrease will move the drive pinion toward the differential ring gear.
    Fig 5: Identifying A High, Thick Contact Pattern
    G00987087Courtesy of MAZDA MOTORS CORP.
  8. A high, thin contact pattern that is worn toward the toe.
    • Tooth contact pattern shown on the drive side of the gear teeth.
    • The drive pinion depth is correct. Increase the differential ring gear backlash.
      Fig 6: Identifying A high, Thin Contact Pattern
      G00987088Courtesy of MAZDA MOTORS CORP.
  9. A contact pattern that is worn in the center of the differential ring gear tooth toward the heel.
    • Tooth contact pattern shown on the drive side of the gear teeth.
    • The low contact pattern indicates that the drive pinion is installed too deep into the carrier.
    • The differential ring gear backlash is correct. A thicker drive pinion shim is needed.
    Fig 7: Identifying Center Of Differential Ring Gear Tooth Toward Heel Contact Pattern
    G00987089Courtesy of MAZDA MOTORS CORP.
  10. A contact pattern that is worn at the top of the differential ring gear tooth toward the heel.
    • Tooth contact pattern shown on the drive side of the gear teeth.
    • The pinion gear depth is correct. Decrease the differential ring gear backlash.
    Fig 8: Identifying Top Of Differential Ring Gear Tooth Toward Heel Contact Pattern
    G00987090Courtesy of MAZDA MOTORS CORP.