Case: Thin Spots on Every Corner Fixed by Gun Setup and First-Pass Powder Application
Powder Coating Technician - Junior

Case: Thin Spots on Every Corner Fixed by Gun Setup and First-Pass Powder Application

Corner thin spots forced a plant to recoat 15 percent of its steel brackets, and each recoat doubled the labor. Corners read 40-50 μm while flats ran 80 μm.

This junior case guide sets the electrostatic voltage, gun distance, powder flow and first-pass technique that build 60-80 μm on corners the first time.

Voltage
60-90 kV corona gun
Gun distance
15-25 cm to part
Film target
60-80 μm cured
Grounding
Hook resistance below 1 MΩ
First pass
Corner-first coverage
Case: Thin Spots on Every Corner Fixed by Gun Setup and First-Pass Powder Application
Case: Thin Spots on Every Corner Fixed by Gun Setup and First-Pass Powder Application
A large stainless steel industrial appliance
A large stainless steel industrial appliance
An industrial oven, which appears to be a large, high-temperature oven, likely used for baking or cooking p...
An industrial oven, which appears to be a large, high-temperature oven, likely used for baking or cooking p...

Common Mistakes and How to Avoid Them

MistakeWhy It HappensPractical Fix
1. Gun too closeBack-ionization thins cornersHold 15-25 cm
2. Voltage too high on cornersCorona repels powderDrop to 60-70 kV near corners
3. Poor part groundingPowder falls offCheck hook contact and resistance
4. Fast passesLight film everywhereSlow the first pass
5. Flats coated firstCorners starvedCover corners in the first pass
6. Film never measuredThin spots unnoticedMeasure corners with a gauge
7. High atomizing airPowder bounces offReduce atomizing air
8. Gun distance variesPatchy film buildKeep distance steady
9. Recoat without cureFilm defects pile upCure before a second coat

Best Practices

  • Check grounding before the first part
  • Set voltage 60-90 kV by part shape
  • Keep gun distance steady at 15-25 cm
  • Cover corners and edges on the first pass
  • Measure film on corners, not just flats
  • Cure fully before any recoat pass

Implementation Roadmap

StepFrequency
Check groundingHook contact, below 1 MΩ
Set the gunVoltage, distance, air
First passCorners and edges first
MeasureFilm on corners and flats
Cure and re-check60-80 μm after cure

First-pass powder flow

  1. Ground - Resistance below 1 MΩ. (Poor grounding drops powder.)
  2. Set - 60-90 kV, 15-25 cm. (High voltage repels corner powder.)
  3. First pass - Corners and edges first. (Flats-first starves corners.)
  4. Measure - Corner film per part. (Flats-only readings lie.)

Corona guns repel powder at very short range. | A slow first pass beats two fast ones.

Powder gun setup data

Reference values for corona gun powder application.

ParameterReferenceWhy It Matters
Voltage60-90 kVLower near corners and recesses
Gun distance15-25 cmToo close causes back-ionization
Film target60-80 μm curedBelow 50 μm coverage fails
Atomizing air1-3 barHigh air bounces powder off
GroundingBelow 1 MΩ to hookWeak ground drops first-pass yield
First-pass speedSlow and evenCorners first, then flats
Film checkCorners plus flatsGauge after cure

Thin spot fault map

SymptomCauseFix
Thin cornersHigh voltage repulsion60-70 kV near corners
Thin flatsFast passesSlow the first pass
Patchy filmDistance variesSteady 15-25 cm
Powder falling offPoor groundClean hook contact

Voltage by part shape

PartVoltageDistance
Flat panels80-90 kV20-25 cm
Brackets with edges70-80 kV15-20 cm
Recessed parts60-70 kV15-20 cm

Case 1 - 15 percent corner recoat on steel brackets

Scenario. A bracket plant recoated 15 percent of parts for thin corners; corners measured 40-50 μm while flats passed at 80 μm.

Action. Voltage was lowered to 70 kV near corners, gun distance was fixed at 15-20 cm, and the first pass started on corners with a film gauge check.

Result. Corner film reached 65-75 μm on the first pass, and recoat dropped below 2 percent.

Case 2 - powder falling off hooks with weak grounding

Scenario. An Australian fabricator saw powder falling off parts at the booth exit; hooks carried cured powder and grounding was intermittent.

Action. Hooks were stripped to bare metal, contact resistance was checked below 1 MΩ, and grounding was verified before every rack.

Result. First-pass yield rose from 78 to 95 percent within a week.

Frequently Asked Questions

Why are corners thin?

Corona guns repel powder at short range, and corners curve the electric field.

What voltage should I use?

60-90 kV by shape; use lower voltage near corners and recesses.

What gun distance?

15-25 cm; closer causes back-ionization that thins the film.

Why check grounding?

A weak ground drops the powder before it sticks, wasting the first pass.

What film thickness?

60-80 μm cured; below 50 μm coverage and protection fail.

Why cover corners first?

The first pass carries the powder; corners starved early stay thin.

How fast should I pass?

Slow enough for one even pass; two fast passes build uneven film.

How to measure corners?

Use a film gauge on the corner radius, not only on the flat face.

Can I recoat thin spots?

Yes, but cure first; uncured recoat traps defects between layers.

What Would You Like to Solve?

Share your part shapes, gun settings and film readings, and a grounding and gun-distance check usually explains thin corners.

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