Test Description
WARNING: This page is about a different car, the 2010 Pontiac G5 and 2010 Chevrolet Cobalt. However, it is still accessible from the selected car via links, so may be relevant.
The numbers below refer to the step numbers on the diagnostic table.
- 5: Obtaining rotational speed for the components rotating at tire/wheel speed is critical to systematically eliminating specific vehicle component groups. These component rotational speeds can be generated by using the J-38792-VS: Vibrate Software, or through calculating them manually.
- 10: NOTE: Be certain to OBSERVE for disturbances that match the customer's description FIRST, then look at the J-38792-A: Electronic Vibration Analyzer 2 (EVA 2) frequency which corresponds with that disturbance.
- 11: Accelerate to a speed high enough above the speed of the disturbance to allow for the time needed to shift into NEUTRAL and for the engine to decrease in RPM to idle speed, before coasting down through the disturbance range.
- 12: This test will either eliminate or confirm the engine as a contributing cause of the customer concern.
| Step | Action | Yes | No |
|---|---|---|---|
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WARNING:
Refer to Road Test Warning
.
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| 1 | Did you review the Diagnostic Starting Point - Vibration Diagnosis? | Go to Step 2 | Go to Vibration Diagnosis, Starting Point, and Correction |
| 2 | Did the customer concern indicate that the vibration occurs ONLY while the vehicle is standing still? | Go to Step 6 | Go to Step 3 |
| 3 | Visually inspect the tire and wheel assemblies, steering components and suspension components for any possible faults. Are the tire and wheel assemblies, steering components and suspension components in good working condition? |
Go to Step 5 | Go to Step 4 |
| 4 |
NOTE:
Do NOT operate the vehicle until the faults are corrected. Correct the faults with the tire and wheel assemblies, steering components, and/or the suspension components before proceeding.Did you correct the faults with the tire and wheel assemblies, steering components, and/or the suspension components? |
Go to Step 5 | Go to Step 3 |
| 5 |
|
Go to Step 6 | - |
| 6 |
|
Go to Step 7 | Diagnostic Starting Point - Vehicle |
| 7 | Using the J-38792-A:
Electronic Vibration Analyzer 2 (EVA 2), is the preferred method for gathering necessary vibration frequency data. If the J-38792-A: Electronic Vibration Analyzer 2 (EVA 2) is not available, the necessary vibration frequency data will have to be obtained based on symptoms observed during testing. Review Symptoms - Vibration Diagnosis and Correction to become familiar with the possible frequency ranges. Review Symptoms - Vibration Diagnosis and Correction, as necessary throughout the remainder of diagnostics. Is the J-38792-A: Electronic Vibration Analyzer 2 (EVA 2) available for use? |
Go to Step 8 | Go to Step 9 |
| 8 | Install the J-38792-A:
Electronic Vibration Analyzer 2 (EVA 2). Is the J-38792-A: Electronic Vibration Analyzer 2 (EVA 2) operating properly? |
Go to Step 9 | Go to Electronic Vibration Analyzer (EVA) Description and Operation |
| 9 | Did the customer concern indicate that the vibration occurs ONLY while the vehicle is standing still? | Go to Vibration Analysis - Engine | Go to Step 10 |
| 10 |
|
Go to Step 11 | Go to Vibration Diagnostic Aids |
| 11 |
NOTE:
If the vehicle is equipped with an automatic transmission, let the vehicle coast to a stop before shifting back into gear.
|
Go to Step 13 | Go to Step 12 |
| 12 |
|
Go to Vibration Analysis - Hub and/or Axle Input | Go to Vibration Analysis - Engine |
| 13 | If the J-38792-A:
Electronic Vibration Analyzer 2 (EVA 2) is not available, refer to Symptoms - Vibration Diagnosis and Correction . Did the J-38792-A: Electronic Vibration Analyzer 2 (EVA 2) detect a dominant frequency? |
Go to Step 14 | Go to Symptoms - Vibration Diagnosis and Correction |
| 14 |
|
Go to Vibration Analysis - Tire and Wheel | Go to Symptoms - Vibration Diagnosis and Correction |