| HS Code | 988830 |
| Product | VAE Emulsion CW 40-907 |
| Chemical Type | Vinyl acetate ethylene (VAE) copolymer emulsion |
| Appearance | White milky liquid |
| Solid Content | 55 ± 1% |
| Viscosity | 3000 ± 1500 mPa·s |
| Ph | 4.5 - 5.5 |
| Density | 1.05 - 1.10 g/cm³ |
| Glass Transition Temperature | 0°C |
| Minimum Film Forming Temperature | 0°C |
| Particle Size | 0.5 - 2.0 µm |
| Surface Tension | 30 - 35 mN/m |
| Residual Vinyl Acetate | < 0.1% |
As an accredited VAE Emulsion CW 40-907 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | VAE Emulsion CW 40-907: supplied in 200 kg drums or 1,000 kg IBC totes, securely sealed for transport. |
| Container Loading (20′ FCL) | 20′ FCL: VAE Emulsion CW 40-907 loaded in palletized drums or flexitanks, secured, with temperature protection against freezing. |
| Shipping | VAE Emulsion CW 40-907 is shipped in lined drums, IBC totes, or bulk tankers to maintain product integrity. Protect from freezing, extreme heat, and contamination during transit. It is generally classified as non-hazardous, but standard chemical handling, secure loading, and adequate ventilation should always be observed. |
| Storage | Store VAE Emulsion CW 40-907 in original, tightly closed containers in a cool, dry, well-ventilated area away from direct sunlight and heat sources. Maintain temperatures between 5°C and 35°C; protect from freezing, as this can damage the emulsion. Keep containers upright and sealed when not in use. Stir gently before use if separation occurs. |
| Shelf Life | Shelf life is 6 months from manufacture when stored in sealed containers, protected from frost, below 35°C. |
CW 40-907, a vinyl acetate-ethylene copolymer dispersion with a solids content of 55±1% and a Brookfield RVT viscosity of 2500–4500 mPa·s (spindle 4, 20 rpm, 25°C), provides a balanced profile of wet tack and heat resistance when formulated into D3 and D4 wood-adhesive grades under EN 204. The dispersion is typically compounded with a plasticiser (butyl benzyl phthalate or a phthalate-free alternative at 5–15 parts per hundred dry resin) to reduce open time sensitivity and with a polyvinyl alcohol solution (degree of hydrolysis 88%, added at 2–6 wt% on wet dispersion) to stabilise viscosity under high-speed roller application. Where hot-press lamination of beech lamellas is employed for load-bearing exterior glulam, 1–3 wt% of a polyfunctional aziridine crosslinker is post-blended immediately before coating; the pot life drops to 4–6 hours at 23°C once the crosslinker is incorporated. Coating weight is controlled at 120–160 g/m² per single glue line applied via a finger-roll coater with a nip pressure of 0.3–0.6 MPa. Panel assemblies are cold-pressed for 30–60 minutes at 0.7–1.0 MPa and subsequently post-cured for 7 days at 20°C/65% RH before testing. When cured under these conditions, the adhesive bond meets the EN 302-1 Type I lap-shear threshold of ≥10 MPa on beech. Terminal applications include laminated stair treads, finger-jointed window scantlings, and interior veneered furniture frames where compliance with EN 16516 formaldehyde emission class E1 is mandatory. A known processing limitation is that at ambient relative humidity exceeding 70%, the substrate moisture content must be preconditioned below 12% to prevent micro-foaming during heat-cured pressing schedules.
In spiral paper tube and convolute composite can manufacturing, the adhesive is applied to 180–250 g/m² virgin or recycled kraft by a grooved steel roll turning at 60–120 m/min line speed. CW 40-907 delivers immediate fibre-tear wet tack when formulated with 0.2–0.5 wt% of a modified polyacrylate thickener (alkali-swellable emulsion type, adjusted to pH 6.0–6.5 with aqueous ammonia) and 10–20 wt% calcium carbonate filler (d50 ≤5 µm). The thickened viscosity is held between 12 000–18 000 mPa·s (Brookfield RVT, spindle 6, 20 rpm) to avoid sling-out and to guarantee full transfer onto the paper web. The adhesive’s rapid skin-over time—measured at 8–12 seconds on 65 g/m² release paper under mill-floor airflow—prevents delamination inside the winding belts. Tubing passed through a heated mandrel at 80–100°C achieves a split-second coalescence that permits immediate cutting. Compliance with FDA 21 CFR 175.105 and EU 10/2011 is achieved when the compounded formulation contains no substances that exceed migration limits, making the product suitable for cores in direct food-contact packaging such as stretch film rolls for fresh produce. Finished laminate tubes exhibit burst strength retention above 85% after conditioning at 40°C/90% RH for 48 hours, as assessed per ISO 11093-4. It is critical to avoid amine-based defoamers at levels above 0.1%; these disrupt the associative thickening mechanism and cause viscosity collapse in the recirculation tray.
When applied as a froth or direct-coated backing on tufted polypropylene carpet, CW 40-907 benefits from its high wet tack and compatibility with calcium carbonate fillers at ratios up to 80:20 by dry weight. The froth formulation is generated by whipping air into an aqueous compound containing the emulsion, a frothing stabiliser (sodium stearate or disodium N-octadecyl sulfosuccinate at 1.5–3.0 parts per hundred resin), and variable filler loadings, to a target density of 0.4–0.7 g/cm³. The froth is metered onto the carpet backside through a traversing paraboloid applicator nozzle and levelled by a doctoring blade set to a gap of 0.8–1.5 mm. After passage through a three-zone gas-fired drying oven (maximum air temperature 140°C, dwell time 4–7 minutes), the film coalesces into a flexible, non-blocking layer that anchors the tufts to the primary backing. Anchorage durability is quantified according to ASTM D3936: tuft bind strength typically exceeds 4.5 kg for cut-pile constructions with a 500 g/m² face weight. The backing compound meets the volatile organic compound emission limits of AgBB (AgBB evaluation scheme, 28-day chamber test, toluene equivalent <200 µg/m³) when benzoate-ester coalescents are employed instead of glycol ethers. Suitable end products include contract hotel broadloom, bath mat secondary backing, and layered acoustic underlays where flexural endurance under ISO 24343 rolling-chair cycles is required. Formulation records must document that the filler moisture content stays below 0.3%; higher values cause uncontrolled froth collapse and pinhole defects in the dried film.
CW 40-907 acts as a polymeric binder modifier in two-component cementitious waterproofing slurries designed for below-grade concrete retaining walls. The powder component is a blend of ordinary Portland cement (CEM I 42.5R), silica fume (5–8 wt% on cement), quartz sand (0.1–0.4 mm), and an active crystalline admixture (calcium sulphoaluminate-based). The liquid component is prepared by diluting the VAE dispersion with water to a 1:1.5 weight ratio, yielding a polymer-to-cement mass ratio (p/c) of 0.15–0.25. The two parts are mixed with a slow-speed paddle mixer (300 rpm) for 3 minutes and applied by a stiff brush or notched trowel at 2.0–2.5 kg/m² in two coats. In this system, the VAE contributes to adhesion enhancement, while the crystalline chemistry provides self-healing of microcracks up to 0.4 mm. Capillary water absorption tested under EN 13057 must not exceed 0.1 kg/(m²·h0.5) after 28 days of standard cure. Adhesion strength to damp concrete, evaluated by pull-off per EN 1542, is maintained above 1.2 MPa and the failure mode remains cohesive in the substrate, a critical requirement for basement tanking durability. CW 40-907-based slurry is also formulated with 0.3–0.5 wt% of a hydrophobic organosilane additive (n-octyltriethoxysilane on binder solids) to reduce water uptake without blocking the vapour permeability required under EN 1504-2 film-formation criteria. In external tanking installations exposed to sulphate-bearing groundwater (class XA2), the mix must incorporate sulfate-resistant cement (CEM I 52.5N SR0) because free polyvinyl alcohol in the dispersion can plasticise the cement paste and increase sulfate ingress, a documented failure mode in EN 206-conforming concrete structures. End products are certified under ETA 16/0948-type assessments for flexible cementitious coatings in negative-side waterproofing of elevator pits and underground parking slabs.
In polyvinyl acetate-based cold-emulsion bookbinding adhesives, CW 40-907 serves as the primary binder for spine gluing of perfect-bound paperback books with hot-melt side glue. The formulation is compounded with 20–30 parts of an aliphatic hydrocarbon resin dispersion (softening point 70–90°C, 55% solids) to extend open time to 30–45 seconds and to improve adhesion to coated stock. The blend is further modified with 1.5 parts of a non-ionic paraffin wax emulsion (50% active) for anti-blocking in the trimming knife section. Viscosity is adjusted to 3000–5000 mPa·s (Brookfield RVT, spindle 5, 20 rpm) to enable roller application at 120–150 g/m² on the spine via a disc-type applicator on a perfect binding line running at 6 000–10 000 cycles per hour. During the 10-second nip station dwell, the pages must resist pull-out forces above 6.0 N/cm when tested according to Fogra-PTS page-pull method for 80 g/m² uncoated offset paper. The ultimate tensile strength of the adhesive film after 72-hour ambient cure—typically 1.8–2.5 MPa when measured on a 200 µm cast film per ISO 527-3—enables the finished book to survive a 4-point flex test of the spine without cracking at −10°C. Compliance with EN 71-3 migration limits for children’s books is obtained by selecting plasticisers with molecular weight above 400 g/mol to suppress migration. One processing caution is the sensitivity of the dispersion to hydrated aluminium chloride commonly used in wet-end papermaking; residual salts in recycled fibre can cause progressive thickening during machine recirculation, making a weekly flush with alkaline cleaning solution mandatory on fast-running lines. The primary end products are perfect-bound educational workbooks, automotive service manuals, and catalogue printing where lay-flat performance is specified.
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| Parameter | Value | Test Method |
|---|---|---|
| Solids content | 54.0 – 55.5 % by mass | ISO 3251:2019 (105 °C, 3 h) |
| Brookfield viscosity (LV, spindle 3, 20 rpm, 23 °C) | 2000 – 3500 mPa·s | ISO 2555:2018 |
| pH | 4.0 – 5.0 | ISO 976:2021, combination electrode |
| Residual vinyl acetate monomer | < 500 mg/kg | ISO 13741‑1:2023, static headspace GC |
| Density at 23 °C | 1.07 – 1.09 g/cm³ | ISO 2811‑2:2011, pycnometer |
| Mechanical stability (Klaxon test, 10 min) | < 0.02 % coagulum | Wacker internal method KLAX‑01, sieve 125 µm |
| Surface tension | 38 – 42 mN/m | ISO 304:2011, du Noüy ring |
| Attribute | VAE CW 40-907 | PVAc homopolymer (typical) |
|---|---|---|
| Tg (mid‑point, DSC) | −12 °C | +30 °C |
| MFFT | 0–2 °C | 15–18 °C (requires coalescent) |
| Elongation at break | >600 % | 10–25 % |
| Wet strength after 24‑h water soak | ~40 % retention | <10 % retention; film disintegrated |
| Heat resistance (static load, 60 °C) | >72 h | 4–6 h |
| Alkali resistance (pH > 12) | Moderate; slow saponification | Rapid saponification, embrittlement |