The Top Five Causes of Coating Failure

Most coating failures seen in the field come not from the paint but from the steps before and after it. The five most common causes, their symptoms and how they are prevented.

Short answer: the five leading causes of coating failure are inadequate pretreatment, incorrect film thickness, a faulty oven regime, part design unsuited to coating, and a powder chosen for the wrong service environment. What they share is that the fault appears not at delivery but months later.

1. Inadequate pretreatment

Symptom: corrosion creeping under the coating, blistering from the edges, film lifting easily in a tape test.

Cause: oil, salt, scale or oxide left on the surface. On such a surface the film sits mechanically but cannot form a chemical bond. Coating life is decided by the conversion layer underneath, not by the paint.

Prevention: a multi-stage pretreatment line covering degreasing, rinsing, conversion coating and drying, with regular monitoring of bath concentration and rinse-water conductivity. Blasting first for rusty or previously painted parts.

2. Incorrect film thickness

Symptom: early corrosion and edge break-up with a thin film; orange peel, colour shift and cracking on impact with a thick one.

Cause: gun settings, line speed or part geometry pushing thickness outside the target range. Film naturally thins on sharp edges.

Prevention: measuring dry film thickness at several points on the part, edges included, and agreeing the target range in writing at the start of the job.

3. A faulty oven regime

Symptom: under-cure gives a soft film that marks when wiped with solvent and adheres poorly. Over-cure gives yellowing and brittleness.

Cause: polymerisation depends on the part's own temperature being held for a set time. Even with correct air temperature, a thick-walled part reaches regime late.

Prevention: monitoring oven temperature and line speed from a single point, and lowering line speed for heavy sections.

4. Part design unsuited to coating

Symptom: uncoated areas in deep corners, liquid seeping out in the oven from closed volumes, internal corrosion in profiles without drainage.

Cause: the Faraday cage effect stops powder reaching deep corners; without drainage, pretreatment solution is trapped and escapes in the oven, ruining the film.

Prevention: drainage and hanging holes designed in, sharp edges broken, deep narrow channels avoided.

5. A powder that does not match the environment

Symptom: loss of gloss, chalking and colour fade outdoors within one to two years.

Cause: an epoxy-based powder made for indoor use, used outdoors. Epoxy resists chemicals but not UV.

Prevention: stating where the part will be used at enquiry stage; polyester or polyurethane-based powder for outdoor service.

The common denominator

Four of the five causes concern decisions made before the part enters the booth. When assessing a coating supplier, the most productive question is not "which paint do you use" but "how many stages does your pretreatment line have, and how do you monitor the oven regime".

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