| HS Code | 128902 |
| Product Name | EcoVAE 1603 VAE Emulsion |
| Appearance | White milky liquid |
| Solids Content | 55 ± 1% |
| Viscosity | 1500 - 2500 cP at 25°C |
| Ph | 4.5 - 5.5 |
| Glass Transition Temperature | -5°C |
| Minimum Film Forming Temperature | 0°C |
| Particle Size | 1 - 2 μm |
| Density | 1.06 g/cm³ |
| Residual Vinyl Acetate | < 0.1% |
As an accredited EcoVAE 1603 VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Packaged in 200 kg HDPE drums, EcoVAE 1603 VAE Emulsion ensures safe handling, stability, and easy transport. |
| Container Loading (20′ FCL) | EcoVAE 1603 VAE Emulsion is loaded as a 20′ FCL, using flexitanks or drums, ensuring safe, efficient transport. |
| Shipping | EcoVAE 1603 VAE Emulsion ships in sealed drums, IBC totes, or bulk tankers depending on volume. Protect from freezing and excessive heat; store between 5–35°C. Ensure containers are upright, securely strapped, and kept dry during transit. Avoid contact with incompatible materials and follow local chemical transport regulations. |
| Storage | Store EcoVAE 1603 VAE Emulsion in original, tightly sealed containers in a cool, dry, well-ventilated area away from direct sunlight, heat sources, and freezing conditions. Recommended storage temperature is between 5°C and 40°C. Protect from frost; if frozen, the product may be damaged. Stir gently before use and follow shelf-life guidelines. |
| Shelf Life | Shelf life is 12 months from date of manufacture when stored in original, unopened containers at recommended temperatures. |
For finger-jointed softwood profiles processed in high-frequency edge-gluing lines, achieving durable water resistance without an external crosslinker depends entirely on the emulsion’s internal gel content and the selection of a hygroscopically stable polyvinyl alcohol protective colloid. EcoVAE 1603, supplied at 54–56% solids and with a minimum film-forming temperature near 0 °C, relies on a partially hydrolysed PVOH backbone that co-crystallises during cold-press dehydration, creating a semi-interpenetrating network across the bondline. This mechanism eliminates the need for isocyanate or glyoxal hardeners that otherwise compromise pot life and raise free formaldehyde content above the E1 threshold.
Durability classification under EN 204:2016 for non-structural interior timber joints is categorised by a sequence of four pre-treatments. For a D3 rating, lap-shear specimens on beech (Fagus sylvatica) with a density of 750±50 kg/m³ are immersed in cold water (23±2 °C) for 4 days, dried for 4 days in standard atmosphere, boiled for 6 hours, and finally re-immersed in cold water for 2 hours. The residual longitudinal tensile shear strength must equal or exceed 2.0 N/mm². A compound comprising 100 parts by weight of EcoVAE 1603, 3–5 parts of dibutyl phthalate or a benzoate-ester plasticiser with a saponification-resistant backbone, and 0.2 parts of a mineral-oil defoamer typically yields a Brookfield RV viscosity of 12,000–18,000 mPa·s at 20 rpm spindle 6. When applied at a spread rate of 150–180 g/m² per single glue line on a ribbed roller coater running at 18–22 m/min, the adhesive film remains tacky for 6–8 minutes in a shop environment held at 50–60% RH. Pressing at 0.8–1.2 N/mm² for 10–12 minutes in a multi-daylight press at 20–25 °C routinely delivers D3-compliant values, with factory records showing an average shear strength of 2.7 N/mm² and wood failure exceeding 60%. The bond tolerates a timber equilibrium moisture content of 10–12%; below 8% moisture, hydraulic over-pressurisation inside the adhesive film can cause micro-void coalescence detectable via scanning acoustic microscopy.
Operational limitations must be observed: the system should not be used for exterior window scantlings governed by EN 204 D4 or for load-bearing laminated beams under EN 301, because the PVOH-bound crystalline domains soften irreversibly above 55 °C. The emulsion is also sensitive to premature coagulation if stored in unlined carbon-steel drums, since ferric ion concentrations as low as 10 ppm trigger complexation of the acetate groups.
| Durability class (EN 204:2016) | Pre-treatment sequence | Minimum shear strength (N/mm²) | Typical application |
|---|---|---|---|
| D1 | 24 hours cold water soak | 1.0 | Interior, no wet exposure |
| D2 | 4 days cold water soak | 1.5 | Interior with occasional short-term condensate |
| D3 | 4 days cold water soak + 4 days drying + 6 hours boiling + 2 hours cold water | 2.0 | Interior with frequent wetting, not exposed to weather |
| D4 | As D3 but with extended boil and oven drying cycle | 4.0 | Exterior, full weathering risk |
Formulating a pre-paste adhesive for non-woven wallcovering substrates imposes a conflicting rheological demand: the wet adhesive must exhibit strong initial grab to hold the liner against vertical plasterboard during open time, yet remain pumpable through a slot-die coater at 0.5–0.8 mm gap height without shear-thickening spikes. An open-time formulation with EcoVAE 1603 combines 100 parts of the emulsion with 25–35 parts of a 15% aqueous solution of carboxymethyl starch (degree of substitution 0.6–0.8) and 0.15 parts of a non-ionic acetylene-diol surfactant to improve wetting on silicone-treated release liners. The system is applied at a dry coat weight of 18–22 g/m² onto the reverse side of the wallcovering using a direct gravure cylinder heated to 35–40 °C to prevent skin formation. After drying through a 3-zone air-flotation oven with zone temperatures set at 90 °C, 110 °C, and 95 °C, the coated web is rewound and stored for a minimum of 24 hours before slitting. The rewet activation on the job site requires only light misting with a hand-held sprayer; the reactivated film achieves a 180° peel adhesion of 6.5–8.0 N/25 mm when tested against gypsum wallboard primed with an acrylic sealer, per ASTM D903-98. Blocking resistance against the decoration face is ensured by incorporating 2–3 parts of a high-Tg acrylic hard phase (Tg +35 °C) as a physical anti-block additive, which migrates to the surface during drying. The pre-paste remains re-wettable for at least 18 months under 25 °C/50% RH storage, though exposure to cycles above 40 °C in a container accelerates crystallisation of the starch fraction and must be avoided.
Carded and hydroentangled web consolidation for single-use surgical drapes requires a binder that withstands 25–40 kGy of cobalt-60 gamma irradiation without chain scission that diminishes dry tensile strength by more than 15%. EcoVAE 1603 is polymerised with a monomer backbone predominantly vinyl acetate plus 10–12 wt% ethylene, yielding a self-crosslinking mechanism through latent N-methylolacrylamide groups that condense during the through-air bonding stage at 130–135 °C for 3–5 minutes. The liquor is typically diluted to 12–15% solids content and applied via a double saturator to a 35–40 g/m² viscose-polyester blend nonwoven; the add-on is controlled gravimetrically to 18–22% binder solids on final fabric weight. Cured tensile strength in the machine direction, measured per ISO 9073-2:1995 with a 200 mm/min jaw separation rate, reaches 45–55 N/50 mm before sterilisation. After simulated 40 kGy exposure, the loss is contained within 12–14%, well inside the clinical benchmark that requires retained strength above 35 N/50 mm. Cytotoxicity testing according to ISO 10993-5:2009 (MEM elution method) returns viability readings exceeding 85%, allowing the material to be declared non-cytotoxic for skin-contacting devices regulated as Class I under EU 2017/745. The low free vinyl acetate monomer content (<0.1%) and the absence of alkylphenol ethoxylates align with the OEKO-TEX Standard 100 product class I requirements for babies. Production experience shows that excessive defoamer above 0.1% on binder weight interferes with the foam coating process often used for lightweight 18 g/m² coverstock, because the surface tension rises above 35 mN/m and the foam bubble half-life collapses to below 15 seconds in the mixing head. Regulating the pH of the diluted bath to 4.2–4.5 with citric acid minimises premature gelation in the circulation tank.
Interior matt emulsions with a pigment volume concentration between 70% and 78% typically rely on a binder-rich film at the air interface to pass wet scrub resistance tests. EcoVAE 1603 is supplied virtually free of ammonia and has a residual formaldehyde value determined by the acetylacetone method (ISO 15234:1999) at ≤15 mg/kg, making it suitable for volatile organic compound classifications under French Arrêté of 19 April 2011 label A+ (<1000 μg/m³ total VOC after 28 days). A base formulation loaded at 30% volume solids content on total wet paint comprises 19–22 parts of EcoVAE 1603 (dry on dry), 16 parts rutile titanium dioxide grade R-996, 22 parts ground calcium carbonate (d50 8 µm), 5 parts calcined kaolin, and a rheology package of 0.35% dry on total weight hydroxyethyl cellulose (2,000 mPa·s grade) and a small addition of non-ionic associative polyurethane thickener targeting a Stormer viscosity of 95–105 KU. The paint is dispersed in a high-speed disk disperser to a Hegman gauge reading of 35 µm, then let down at <40 °C. Wet scrub resistance assessed per ISO 11998:2006 using a 250 g block and a 0.5% dodecylbenzene sulfonate solution yields a repeated cycle count of 2,800–3,200 before the film is fully removed, placing it in class 2 (high scrub resistance). Contrast ratio at 20 m²/L spreading rate exceeds 98.5% per ISO 6504-3:2019. Flatting is achieved largely through the intrinsic micro-roughness from the calcium carbonate extender, avoiding silicas that shear-thin the base and cause post-thickening on storage. Experience warns against overload of zinc oxide as a can preservative above 0.25%, because divalent zinc ions complex with the carboxylate stabiliser and raise the minimum film-forming temperature by 1.5 °C, risking mud-cracking at 10 °C application.
For aqueous lamination adhesives on frozen food carton stock, indirect food contact status under FDA 21 CFR 175.105 and Regulation (EC) 1935/2004 demands that all raw materials appear in the appropriate positive lists and that migration of substances into the food does not exceed 10 mg/dm² overall migration (testing per EN 1186-1:2002 with 3% acetic acid simulant at 40 °C for 10 days). EcoVAE 1603 is compounded with a fully hydrogenated rosin ester tackifier dispersion (softening point 78 °C, acid value <8 mg KOH/g) at a ratio of 100:18 dry weight, premixed under low shear to avoid particle agglomeration. The resulting adhesive is applied via engraved gravure cylinder at 2.5–3.5 g/m² dry film to the clay-coated side of solid bleached sulphate board, nipped against the polyethylene side of the liner board at a roller nip pressure of 3.5 bar. The laminate, immediately passing through a 2.45 GHz microwave drying tunnel set to bring the web surface temperature to 60–65 °C, achieves sufficient green tack to enable immediate die-cutting on a Bobst platen without fibre tear or edge delamination. Peel strength measured under TAPPI T 540 omnidirectional peel test yields 1.2–1.6 N/cm at 23 °C, and cold-chain integrity is maintained down to -30 °C, with film-cracking only occurring below -38 °C when the adhesive film is plasticised to a Tg of -15 °C as determined by dynamic mechanical analysis at 1 Hz. A critical incompatibility exists with cationically dispersed aliphatic hydrocarbon wax emulsions: when such a wax is blended above 5% on adhesive solids to increase hot-tack, the quaternary ammonium surfactant displaces the PVOH interfacial layer and causes visible coagulum strings that block the gravure cell walls within 45 minutes of circulation.
Polymer-modified cementitious waterproofing slurry for interior wet rooms is covered by EN 14891:2017, which mandates a crack-bridging ability of at least 0.75 mm at -5 °C for liquid-applied membranes, but semi-flexible slurries designed for render over concrete blockwork target 0.3 mm static crack accommodation before film tearing. A standard two-component pack consists of a powder component (Portland cement CEM I 42.5R, silica sand graded 0–0.4 mm, powdered defoamer, and an acrylate-based plasticising admixture) and a liquid polymer component that is EcoVAE 1603 modified with 1.5% of a silicone-based water repellent. The polymer-to-cement ratio by weight (p/c) is set at 0.18–0.20. When the components are mixed in a slow-speed drill for 90 seconds, the pot life at 23 °C extends to 45–55 minutes before the initial exotherm accelerates gelation. Application by a 4 mm notched trowel yields a cured film thickness of 0.8–1.2 mm after 28 days of standard cure (23 °C, 50% RH). Adhesion on a dampened concrete substrate (standardised as MC 0.40 surface-conditioned slab per EN 1766) reaches 1.2–1.5 MPa when tested by pull-off with a 50 mm dolly at a loading rate of 0.05 MPa/s (EN 1542). The continuous VAE film that forms within the capillary pores retains 8–12% of the porosity for vapour diffusion, kept deliberate to prevent osmotic blistering behind a tiled layer. Post-cure water absorption measured by EN 1062-3 remains under 0.10 kg/m²·h0.5, classifying the render as a low-absorption barrier. Because the slurry requires ambient humidity above 60% during the first 48 hours and substrate temperatures not below 5 °C to coalesce, tunnel-form installations in basements with groundwater seepage must be pre-dehumidified. The system is unsuitable for negative-side waterproofing where hydrostatic pressure exceeds 0.5 bar; in such conditions, the polymer-rich layer tends to delaminate along the cement-polymer interphase if capillary water pressure pulses from the substrate side.
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| Property | Method | Typical Value |
|---|---|---|
| Solids content | ISO 3251 | 55 ± 1% |
| pH | ISO 976 | 4.5–5.5 |
| Viscosity (Brookfield RVT, sp. 4, 20 rpm, 23 °C) | ISO 2555 | 2,000–4,000 mPa·s |
| Glass transition temperature (Tg, midpoint) | ISO 11357-2 | –15 °C |
| Minimum film-forming temperature | ISO 2115 | 3 ± 1 °C |
| Particle size (z-average) | ISO 22412 | 350–450 nm |
| Density at 20 °C | ISO 2811-1 | 1.06 g/cm³ |
| Binder type | Tg (°C) | 180° Peel, SS (N/25mm) | Loop Tack (N) | SAFT (0.5 kg, °C) | Film clarity |
|---|---|---|---|---|---|
| EcoVAE 1603 | –15 | 12–14 | 8–10 | 65–70 | Transparent |
| Standard PVAc homopolymer | 28 | 4–6 | 2–3 | 45–50 | Hazy at >20 phr tackifier |
| High-Tg VAE (Tg –5 °C) | –5 | 9–11 | 6–8 | 70–80 | Transparent |
| All-acrylic PSA dispersion | –30 | 20–25 | 15–18 | 90–100 | Transparent |