Case Study: Fisheyes Every Morning After Booth Cleaning — Silicone Source Hunt and Surface Prep That Cleared the Finish
Cold Painting - Junior

Case Study: Fisheyes Every Morning After Booth Cleaning — Silicone Source Hunt and Surface Prep That Cleared the Finish

Every Monday morning the cold paint booth produced fisheyes on the first batches: 9 percent of parts rejected, and the fault vanished by Tuesday. The pattern pointed to the weekend cleaning, and the hunt found silicone polish used on the booth walls.

This case study covers the silicone source audit, the water-break test that found it, and the cleaning and surface prep routine that cut fisheye rejects to 0.3 percent. The same steps apply to any cold paint booth after cleaning or maintenance.

Fisheye rejects
9% to 0.3% in one week
Contamination source
Silicone furniture polish
Booth cleaner
Silicone-free, water-rinsed
Surface gate
Water-break test per batch
Viscosity window
18-22 s on Ford cup 4
Case Study: Fisheyes Every Morning After Booth Cleaning — Silicone Source Hunt and Surface Prep That Cleared the Finish
Case Study: Fisheyes Every Morning After Booth Cleaning — Silicone Source Hunt and Surface Prep That Cleared the Finish
An industrial machine that appears to be an oven, as suggested by the open door and the visible interior, w...
An industrial machine that appears to be an oven, as suggested by the open door and the visible interior, w...
Liquid processing machine with tubes and valves on production line
Liquid processing machine with tubes and valves on production line

Common Mistakes and How to Avoid Them

MistakeWhy It HappensPractical Fix
1. Silicone polish near the boothSilicone becomes airborne and lands on partsUse silicone-free cleaners only
2. Cleaner residue on wallsResidue breaks the film on the next batchRinse walls and floor with water
3. No tack cloth before sprayingDust and a thin oil film stay on partsTack wipe every part before spraying
4. Mold release on plastic partsRelease agents are silicone-basedDegrease and wash plastic parts first
5. Compressor air contaminatedOil mist from the compressor breaks the filmCheck filters and air drier per shift
6. Paint too thickPoor flow forms crater-like defectsHold 18-22 s on Ford cup 4
7. Booth airflow too weakMist settles onto the wet filmKeep booth exhaust balanced
8. Cleaning rags reusedSilicone is spread, not removedUse fresh rags for every booth cleaning
9. No water-break testContamination is invisible until cureTest a panel before every batch

Best Practices

  • Use only silicone-free products inside the booth
  • Rinse cleaned walls and floors with water
  • Tack wipe every part before spraying
  • Run the water-break test before each batch
  • Check compressor air filters and drier daily
  • Log cleaning products, batches and fisheye counts

Implementation Roadmap

StepFrequency
Clean the booth silicone-freeWeekly
Run the water-break testPer batch start
Check air filters and drierPer shift
Tack wipe partsEvery part
Review the fisheye recordPer shift handover

Fisheye prevention flow

  1. Clean - Silicone-free cleaner, water rinse. (Polished surfaces spread silicone.)
  2. Test - Water-break on a test panel. (A clean look can still carry silicone.)
  3. Tack - Wipe every part before spraying. (Skipped wipes reintroduce dust and oil.)
  4. Spray - 18-22 s Ford 4 at 20-25 cm. (Contaminated air ruins the batch.)

Fisheyes mean surface energy is broken by silicone or oil. | The water-break test finds contamination before paint is applied.

Cold paint booth working data

Reference values for solvent cold painting of hardware.

ParameterReferenceWhy It Matters
Viscosity18-22 s, Ford cup 4 at 20°CThick paint flows poorly and craters
Thinner share10-20% by volumeOver-thinning runs; under-thinning craters
Booth temperature20-28°CCold paint is thick; hot paint dries fast
Booth humidity40-70% RHHigh humidity blushes and weakens film
Spray distance20-25 cmClose distance pools film
Air dry to tack30-45 minEarly handling damages the film
Water-break gateContinuous film on panelBreak means silicone or oil

Booth cleaning check card

StepProductCheck
WallsSilicone-free cleanerNo polish used
RinseClean waterNo residue streaks
FloorWater rinseDry before spraying
Air filtersReplace per scheduleNo oil smell

Fisheye cause map

SymptomLikely causeFirst fix
Fisheyes after cleaningCleaner or polish residueWater-break test, silicone-free cleaner
Fisheyes on plasticMold release agentDegrease and wash parts
Fisheyes mid-shiftCompressor oil mistCheck filters and drier
Craters in thick paintViscosity too highThin to 18-22 s Ford 4

Case 1 - Monday fisheyes traced to booth polish in a hardware plant

Scenario. A hardware plant in southern China rejected 9 percent of Monday-morning batches with fisheyes, and the fault disappeared by Tuesday; cleaning crews had been polishing the booth walls and floor with silicone furniture polish.

Action. The polish was removed from the cleaning cabinet, walls were re-cleaned with a silicone-free degreaser and rinsed with water, and a water-break test panel became the batch-start gate.

Result. Fisheye rejects dropped to 0.3 percent within one week, and the cleaning log now lists every product used in the booth.

Case 2 - fisheyes on plastic zipper pulls from mold release in Vietnam

Scenario. A cold paint line in Vietnam sprayed plastic zipper pulls that showed fisheyes on every batch, even with a clean booth; the parts carried silicone mold release from the molding shop.

Action. A degreasing wash with a silicone-removing agent was added before painting, and parts were tack wiped at the booth entry.

Result. Fisheyes on plastic parts fell from 7 percent to under 0.5 percent, and the wash step became a written gate for molded parts.

Frequently Asked Questions

Why do fisheyes appear after cleaning?

Polish and cleaners leave silicone films that break the surface tension of the paint.

How do I find the silicone source?

Run the water-break test and audit every cleaning product that enters the booth.

What cleaner should the booth use?

Silicone-free degreasers, always rinsed with water afterward.

Why use a tack cloth?

It removes dust and the thin oil film before the paint lands.

What viscosity for cold paint?

18-22 seconds on a Ford cup 4 at 20°C.

Why do plastic parts fisheye?

Mold release agents are silicone-based and stay on the surface.

How do I check compressed air?

Blow a panel and look for craters; check filters and the air drier.

What if fisheyes persist?

Audit everything that touches the parts: rags, gloves, release agents and booth products.

What booth conditions?

20-28°C and 40-70% RH for solvent-borne cold paints.

What Would You Like to Solve?

Describe when fisheyes appear, which booth cleaning products are used and which parts fail; a technical review can isolate the silicone source and set the prep gates.

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