Waterborne direct-to-metal basecoat additives must support substrate adhesion, film build and the topcoat interface. They cannot replace metal preparation, corrosion pigment design or cure. Separate wetting, leveling and process air before screening D547, 3345 or D9904BR.
Screen D547.
Screen 3345.
Screen D9904BR.
Define the DTM layer
State whether the basecoat is the first metal-contacting layer, a colored build coat or part of a primerless multi-layer system. Specify substrate, pretreatment, corrosion requirement, topcoat and recoat window. Direct-to-metal does not mean preparation-free.
Prepare metal first
Define degreasing, abrasive profile or conversion coating, soluble salts, dust, flash rust and maximum time before coating. Oil, silicone, condensed water and salts can look like an additive failure. Use cleaned witness panels and record the preparation lot.
Compare supported routes
| Itinéraire | Published facts | First use | Boundary |
|---|---|---|---|
| WD-D547 | 100% active; 0.1–0.5%; water/solvent/solvent-free/UV | Retraction, craters or poor metal entry | Does not provide preparation or corrosion protection |
| 3345 | 100% active; 0.1–1.0%; water/solvent/UV | Wetting/leveling and appearance | Must preserve sag, adhesion and topcoat compatibility |
| D9904BR | 30% active in DPM; water-based; 0.1–1.0% | Air from pigment grind/high shear | Co-solvent premix and high-shear grind addition; no post-addition |
Use D547 for interface wetting
Screen within 0.1–0.5% at fixed preparation, viscosity, spray settings and film build. Measure retraction, craters, edge coverage and adhesion. Its page describes qualitative leveling, defoaming and recoat benefits, but those claims need confirmation in the actual filled basecoat.
Use 3345 for controlled flow
Compare low, middle and high levels at equal viscosity and thickness. Record orange peel, gloss, sag and crater tendency. Reject a smoother surface if it reduces metal adhesion, corrosion performance, sanding or topcoat adhesion.
Use D9904BR for grind-stage air
Premix with co-solvent and add under high shear during the grind. Measure wet density, foam decay, microbubbles and pinholes. Its DPM carrier and 30% active content must be included in formulation and VOC calculations. Post-addition is not recommended.
Run one variable at a time
| Set | Change | Primary measure | Release gate |
|---|---|---|---|
| A | Control | Wetting, flow, air, cure and adhesion | Corrosion/recoat |
| B–D | D547 low/mid/high | Metal entry and craters | Adhesion and water resistance |
| E–G | 3345 low/mid/high | Flow, gloss and sag | Adhesion and topcoat |
| H–J | D9904BR low/mid/high | Density, foam and pinholes | Crater, storage and corrosion |
Prepare uniform panels
ASTM D823 describes uniform film preparation. Fix metal, profile, applicator or spray settings, wet/dry film build, temperature, humidity, airflow and cure. Include edges, welds or geometry relevant to production.
Check adhesion and impact
ASTM D3359 provides tape adhesion methods. Document failure location. ASTM D2794 covers rapid-deformation impact resistance. Test the full stack and inspect cracking/delamination after fixed recovery.
Measure dry film thickness near edges and flat areas before comparing failures. Thin edge coverage can resemble an additive or corrosion problem, while excessive local build can change cure, impact and topcoat response.
Validate corrosion as a system property
ASTM B117 describes salt-spray apparatus/operation but not a universal exposure or service-life prediction. Define scribe, duration and acceptance. Compare blistering, rust, undercut and adhesion retention after recovery.
Include a prepared control from every metal lot. A formulation improvement cannot be separated from mill oil, flash rust, pretreatment drift or profile variation when the substrate history changes between panels.
Approve the topcoat interface
Apply the intended topcoat at minimum, target and extended intervals. Check intercoat adhesion, lifting, wrinkling and appearance. Surface-active additives can improve basecoat flow while narrowing the recoat window. Repeat after water or humidity aging.
Control flash, water release and cure
Record substrate temperature, relative humidity, airflow, wet film build and flash time. Water trapped below a surface skin can create microbubbles, soft cure or poor topcoat adhesion that resembles additive failure. Prepare panels at target and upper production film builds and do not force-dry one trial differently from the control.
If the binder is two-component, record mix ratio, induction and pot life and prepare panels at early, middle and late pot-life points. A wetting or foam result obtained immediately after mixing may not persist as viscosity and chemical reaction change.
Inspect edges, welds and holidays
DTM performance often fails first at sharp edges, welds, fasteners or recesses. Include representative geometry, measure local film build and inspect for pullback, pinholes and early rust. Flat drawdowns remain useful controls but cannot establish coverage or corrosion resistance on production parts.
Set release criteria before testing
Define maximum crater and pinhole counts, film-build tolerance, adhesion, impact, corrosion exposure and recoat acceptance before ranking panels. Use replicate specimens and more than one prepared metal lot. Predefined limits prevent a cosmetic flow improvement from masking a meaningful loss of protection.
Decision rules
- Correct preparation before using D547.
- Use 3345 only for measured flow at controlled build.
- Use D9904BR only through its grind-stage process.
- Release after adhesion, corrosion, impact and topcoat tests.
Information to send
Provide metal, preparation/profile, binder, pigment volume, pH, viscosity, solids, application/build, cure, recoat, corrosion/impact requirements, foam source and photographs.