Waterborne epoxy clearcoat additives should be selected only after epoxy identity, hardener, mix ratio, induction, pot life, film thickness and cure are verified. Clear-film defects can come from incomplete mixing, amine blush, moisture, trapped air or surface contamination; a leveling additive cannot correct the wrong cure chemistry.
Ratio, induction, pot life and conditions.
Air, blush, haze, gloss and craters.
Adhesion, abrasion and chemicals.
Establish the epoxy baseline
Record resin type and epoxy equivalent, hardener chemistry and equivalent, supplied solids, mix ratio by weight and equivalents, induction, pot life, dilution water, substrate preparation, wet/dry film, temperature, humidity and cure time. Compare candidates at the same elapsed time after mixing.
Use current product paths and facts
| Itinerario | Published facts | Possible use | Boundary |
|---|---|---|---|
| D9904BR | 30% active in DPM; 0.1–1%; water-based | Measured mixing/application air | Grind-stage high shear; no post-addition |
| 3467 | 100% active; waterborne 0.5–5%; OH ≤85 | Compatibility/leveling screen | OH does not make it epoxy-reactive |
| 3166 | 100% active; 0.05–1%; water compatible | Secondary surface study only | Pinholes, whitening and foam stabilization |
Fix cure before surface adjustment
Check mix accuracy, cure response, blush, tack, solvent or chemical resistance and hardness development at defined times. If the control is under-cured or outside pot life, stop the additive study. Keep water, co-solvent and film build balanced because each changes cure and clarity.
Use D9904BR only for demonstrated air
D9904BR requires premixing into co-solvent and high-speed dispersion in the grind; post-addition is not recommended. Locate air entry in mixing, pumping, spray or roll application. Measure wet density, foam decay, microbubbles and pinholes after the full cure. Reject crater, haze, adhesion or chemical-resistance losses.
Do not call 3467 epoxy-reactive
3467’s page discusses hydroxyl functionality and polyurethane modification. It is not reactive with epoxy merely because it contains OH. The OH ≤85 mg KOH/g value is an upper limit, not an exact value. Any separate polyurethane route needs exact batch OH, resin OH, isocyanate equivalent, solids and NCO/OH. In an epoxy clearcoat, treat 3467 as a non-stoichiometric surface-modifier trial unless a documented reaction route is supplied.
Keep 3166 outside the first clarity screen
3166’s own warnings—pinholes, whitening and foam stabilization—conflict with clear-film priorities. Do not use it as the first response to craters or air. Consider it only for a remaining, defined feel or wear target after cure, air and clarity are controlled.
Use a staged matrix
| Stage | Variants | Primary measure | Stop gate |
|---|---|---|---|
| Baseline | Correctly mixed control | Cure, blush, air, clarity | Cure not reproducible |
| Air | D9904BR low/mid/high | Foam, bubbles, pinholes | Crater or haze |
| Flow | 3467 after compatibility review | Leveling and craters | Cure or adhesion loss |
| Surface | 3166 only after justification | Defined feel/wear target | Whitening, foam, pinholes |
Measure adhesion, gloss and wear
ASTM D3359 provides tape-adhesion screening on metal with limited resolution. Identify the failure plane and condition. ASTM D523 measures specular gloss. ASTM D4060 provides comparative Taber abrasion on plane, rigid surfaces; report wheel, load, cycles and endpoint.
Test chemical resistance after full cure
Use agreed water, cleaner, solvent, acid, alkali or process-chemical exposures only after defined cure. Record contact time, temperature, covered/open condition and recovery. A surface that looks clear at 24 hours may continue curing or develop blush later.
Distinguish blush from additive haze
Inspect the control and candidates immediately after application, after surface dry, after full cure and after water exposure. Note whether cloudiness sits at the surface, through the film or at the substrate interface. Repeat at controlled humidity and temperature. If the control changes with cure conditions, solve that before attributing the appearance to a surface additive.
Check pot-life drift
Apply panels at the beginning, middle and end of the stated pot life while holding film thickness constant. Record viscosity, temperature, gloss, haze, bubbles and cure response. An additive may look acceptable in a fresh mix but destabilize as the epoxy/amine dispersion advances. Production approval needs the full application window.
Test recoat and repair
Apply the intended next layer or repair coat at minimum and maximum intervals. Identify intercoat failure separately from substrate adhesion. Include sanding where the process requires it. Reject a surface improvement that narrows the recoat window, reduces bond or prevents a field repair.
Require replicated panels
Prepare multiple randomized panels from at least two fresh mixes. Condition them together and blind appearance ratings. Report the spread, not only the best specimen. Retain an untouched control and the exact batch records for resin, hardener and additive so a later plant result can be traced.
Decision rules
- Stop if mix ratio, pot life or cure is uncontrolled.
- Use D9904BR for measured air with its required process.
- Do not infer epoxy reactivity from 3467’s OH.
- Keep 3166 outside the first clarity-critical shortlist.
Information to send
Provide resin and hardener identities/equivalents, mix ratio, induction, pot life, solids, pH, film build, cure, first defect and limits for clarity, gloss, adhesion, abrasion and chemical resistance.
Ask Longchang for an epoxy-clearcoat study built around your exact cure chemistry.