A hardware line rejected 12% of every e-coat batch for bare spots on lower edges, and the paint passed every supplier test. Racking contacts and the preliminary rinse were both at fault, and the rejects stopped within three days of the fix.
This junior guide covers contact cleaning, hang position, the preliminary rinse and the first-article check that keeps a whole batch from failing the same way.
Common Mistakes and How to Avoid Them
| Mistake | Why It Happens | Practical Fix |
|---|---|---|
| 1. Contacts never cleaned | Oxide film blocks current | Clean tips per shift |
| 2. Rack tips bare | Anode shadow on the part | Recoat or strip tips on schedule |
| 3. Preliminary rinse skipped | Oil film repels paint | Spray rinse 1-2 minutes |
| 4. Rinse water hard | Scale on the part surface | Monitor rinse conductivity |
| 5. Part hangs too low | Shadow from the rack bar | Set hang height per part |
| 6. Rack overloaded | Parts touch, current blocked | Load per the rack layout |
| 7. Surfactant carryover | Foam and bare edges | Check drain time |
| 8. No first-article check | Whole batch wasted | Inspect first part before the run |
| 9. Drip-off ignored | Water drag-in | Add a drip station |
Best Practices
- Clean racking tips every shift and record it
- Hang parts clear of rack bars and each other
- Run the preliminary rinse 1-2 minutes with clean water
- Check the first article before the line runs
- Monitor rinse conductivity daily
- Log rack, rinse and result per batch
Implementation Roadmap
| Step | Frequency |
|---|---|
| Clean contacts | Per shift |
| Check hang position | Per load |
| Verify preliminary rinse | Daily |
| First-article check | Per batch |
| Rack tip rework | Per schedule |
Bare spot prevention flow
- Clean - Rack tips per shift. (Oxide film blocks current.)
- Hang - Clear of bars and parts. (Touching parts shadow each other.)
- Rinse - 1-2 minute preliminary. (Skipped rinse repels paint.)
- Verify - First-article check. (Late checks waste the batch.)
A bare spot means no current or no clean surface. | The rack and the rinse act together.
E-coat bare spot reference data
Reference values for cathodic e-coat racking and rinse control.
| Parameter | Reference | Why It Matters |
|---|---|---|
| Bath solids | 15-20% | Low solids thin the film |
| Bath pH | 5.8-6.4 | Drift changes throw power |
| Conductivity | 25-60 µS/cm | Check against the product target |
| Voltage | 120-250 V | Set by part geometry |
| Dip time | 60-180 s | Short times starve recesses |
| Rack contact | Clean per shift | Oxide blocks deposition |
| Preliminary rinse | 1-2 min spray | Removes oils and surfactants |
| First article | Check each batch | Catches faults early |
Bare spot quick map
| Symptom | Likely cause | First check |
|---|---|---|
| Spot at the contact point | Dirty tip | Clean and re-run |
| Stripes on lower edge | Rinse carryover | Check drain time |
| Large bare patch | Rack shadow | Reposition the part |
| Whole part thin | Low solids | Check bath solids |
Preliminary rinse check card
| Check | Target | Action |
|---|---|---|
| Spray time | 1-2 min | Set the timer |
| Water conductivity | Per target | Change the water |
| Drain time | Per part | Add a drip station |
Case 1 - 12% bare spot rejects stopped by contact and rinse fixes
Scenario. A hardware line rejected 12% of every e-coat batch for bare spots on the lower edges; operators blamed the paint, but the paint passed its own tests.
Action. Rack tips were cleaned per shift, the preliminary rinse was restored to 1-2 minutes with monitored water, and a first-article check was added before each run.
Result. Bare spots fell below 1% within three days; the rework rack went back into storage and the rinse log became part of shift hand-over.
Case 2 - automotive brackets with oil carryover after a degreaser change
Scenario. An automotive bracket supplier changed degreaser, and bare patches appeared on stamped edges, worst on the lowest parts of the rack.
Action. The team found surfactant carryover from the new chemistry; drain time was extended and the preliminary rinse spray pressure was raised.
Result. Bare patches disappeared, and the drain time was written onto the loading card.
Frequently Asked Questions
Why bare spots at rack contacts?
An oxide film on the tip blocks current, so the part area next to it deposits thin or nothing.
What does the preliminary rinse do?
It removes oils and surfactant films that repel paint before the part enters the bath.
How long should the rinse run?
1-2 minutes of spray with clean water, matched to part shape and soil level.
Why check rinse conductivity?
High conductivity means drag-in or hard water scale that upsets the bath.
How full can a rack be?
Parts must not touch each other or the rack bar; load per the approved layout.
Why the first-article check?
One part inspected before the line runs saves a whole batch of rework.
What if bare spots follow a pattern?
Map the spot position to the rack position; patterns point to contacts or hang geometry.
How often clean contacts?
Per shift on production racks, more often with high current or heavy soil.
Is the paint ever the cause?
Rarely alone; check rack and rinse first, then bath solids, pH and conductivity.
What is the fastest check?
Inspect the first article and measure a spot location against the rack layout.
What Would You Like to Solve?
Describe your part, rack layout, rinse time and where the bare spots appear. We can help you map the cause and set the contact and rinse routine.

