| HS Code | 975954 |
| Product Name | CW40-707H High-Bond-Strength VAE Emulsion for Weather-Resistant Applications |
| Appearance | Milky white liquid |
| Solid Content | 55.0% |
| Viscosity | 3000–6000 mPa·s |
| Ph | 4.5–6.0 |
| Density | 1.06 g/cm³ |
| Particle Size | 1–2 μm |
| Glass Transition Temperature | -5 °C |
| Minimum Film Formation Temperature | 0 °C |
| Film Appearance | Transparent and flexible |
| Bond Strength | High |
| Weather Resistance | Excellent |
| Residual Vinyl Acetate Content | <0.5% |
| Protective Colloid | Polyvinyl alcohol |
As an accredited CW40-707H High-Bond-Strength VAE Emulsion for Weather-Resistant Applications factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Packaged in 200 kg steel drums or 1,000 kg IBC totes; sealed, labeled, and protected for weather-resistant applications. |
| Container Loading (20′ FCL) | 20′ FCL shipment of CW40-707H VAE emulsion, palletized, secured, and loaded for safe, weather-resistant container transport. |
| Shipping | Ship in sealed, corrosion-resistant containers to prevent leakage. Protect from freezing and temperatures below 5°C; ideal storage 5–35°C. Avoid prolonged heat exposure. Ensure proper labeling for industrial chemical. Not classified as dangerous goods under transport regulations. Keep upright during transit to prevent spillage. |
| Storage | Store CW40-707H in original, tightly sealed containers in a cool, dry, well-ventilated area. Avoid direct sunlight, heat, and freezing; recommended storage temperature is 5–35°C. Keep away from moisture and contaminants. Stir gently before use. Under proper conditions, shelf life is typically six months from manufacture date. |
| Shelf Life | Shelf life is typically 12 months when stored tightly sealed at 5–30°C, protected from frost and direct sunlight. |
In externally bonded reinforcement systems for aged concrete infrastructure, CW40-707H VA E emulsion functions as a particle coalescence modifier within two-pack epoxy-CMA hybrid bonding pastes evaluated under EN 1504-4:2004. The emulsion is metered at 12–15% by mass of the resin component to relieve interfacial shrinkage stress without compromising compressive shear transfer across the bonded joint. Full-scale mixing employs a planetary dual-blade mixer operating at 45–55 rev/min under a −0.09 MPa partial vacuum for 180 seconds, eliminating entrapped air that otherwise nucleates micro-cracks at the bond line. The finished product is a sag-resistant structural adhesive paste, gun-applied through notched trowel units with 6 mm × 8 mm trapezoidal ribs, and used to bond CFRP strips onto bridge pier caps, silo walls, and industrial cooling tower shells. Adhesion is quantified by direct pull-off testing (EN 1542) on grit-blasted C40/50 concrete substrates after cyclical QUV-A ageing per ISO 16474-3; values below 1.5 MPa after 2000 hours are rejected for traffic-bearing retrofits. A process-critical boundary is the hydroxyl ion concentration in the concrete pore solution: when [OH⁻] exceeds 0.8 mol/L (pH >13.5), the vinyl acetate ester linkage undergoes gradual alkaline saponification, reducing effective polymer content by 0.3% per year under sustained dampness. Pre-neutralisation of the substrate with 1% oxalic acid solution and application of a silane-based pore liner are mandatory when existing concrete records show > 65% relative humidity at the bonding face.
Alkali-resistant nonwoven glass-mat-faced gypsum underlayment panels destined for external sheathing in high-wind-load timber-frame construction are produced by a continuous belt lamination process wherein CW40-707H is introduced as a fabric-to-core bonding agent at 18–22% of the wet gypsum paste mass. The emulsion is injected post-screw tumble mixing directly onto the moving fibrous matt surface via a slot-die coater maintaining a 0.38–0.42 mm wet-film thickness, calibrated gravimetrically to 210 ± 10 g/m² dry add-on. Compliance is verified against ASTM C1177/C1177M-17 for glass-mat gypsum sheathing and supplementary adhesion tests under ASTM C1528-02 after 14-day water immersion. The panel product, typically 12.7 mm thick, achieves a lateral nail pull-through resistance exceeding 400 N, owing to the emulsion’s ability to interlock with gypsum dihydrate crystal needles. An observed production failure mode is the accumulation of recirculated emulsion on the forming belt edge guides, which carbonises during dryer residence at 175–195°C for 75 minutes and dislodges as dark brittle flakes into the panel back-face. Only continuous 0.5 mm wire edge-scrapers and daily post-shift cleaning cycles at 55°C with an isothiazolinone biocide solution eliminate the defect.
Cold-fluid-applied waterproofing membrane systems that cure by physical coalescence in permanently shaded plenum walls and underground elevator pits are compounded with CW40-707H as the dominant film former at 42–48% wet formulation weight, corresponding to a dry polymer volume concentration of 22–27% after coalescence. The manufacturing sequence in a 2000-litre anchor-paddle blending vessel starts with a high-molecular-weight associative polyurethane thickener pre-swollen in 15°C deionised water for 45 minutes, followed by sequential addition of defoamer, coalescent (texanol ester alcohol at 1.8% on binder solids), and the VAE emulsion fed at a controlled rate of 15 kg/min to avoid local shear gradients exceeding 500 s⁻¹. The terminal product is a single-component, thixotropic, brick-red liquid membrane meeting EN 14891:2017 requirements for crack-bridging at −15°C (≥0.75 mm static crack) and watertightness under 250 kPa dynamic pressure for 24 hours. On-site application via airless spray equipment (Graco Mark X, 0.025-inch tip, 207 bar fluid pressure) achieves a 2.0–2.2 mm wet-film thickness in a single pass without pinholes when the relative humidity is maintained below 85%. A well-documented operational limit is the sudden loss of intercoat adhesion if the first layer skins over before the second spray pass, which occurs at substrate temperatures below 4°C or wet-bulb depression of <2°C; mitigation requires installation of portable dehumi-dification units maintaining a 3°C margin between the substrate temperature and the dew point throughout the open time window of 90 minutes.
Moisture-cure isocyanate-terminated polyurethane sealants for vehicular expansion joints in airport apron slabs are often plasticised with a non-reactive hydrocarbon diluent, yet field records show that substituting 7–10% of the plasticiser mass with CW40-707H improves early green strength by 0.25 MPa at 4 hours post-tooling without altering the ISO 11600 F 25 HM movement capability. The VAE emulsion is pre-dehydrated under azeotropic distillation using n-butyl acetate to a water content below 0.05% Karl Fischer before blending into the isocyanate component under dry nitrogen. Production is carried out in a horizontal sigma-blade kneader (Werner & Pfleiderer, 95-litre working volume, 200:1 L/D blade ratio) at 60°C jacket temperature. The hybrid sealant, gunned warm at 40°C through a 10:1 ratio pneumatic caulking gun, is specified for joint cuts in continuously reinforced concrete pavement where it must resist jet-fuel spillage (JRF Type A, 72-hour immersion at 23°C) with <±5% volume swell. Incompatibility with stannous octoate catalysts leads to delayed gelation if residual tin exceeds 3 ppm in the emulsion’s biocidal stabiliser package, a condition documented for batches employing dibutyltin dilaurate as a PU catalyst at 0.15%.
Hand-applied, polymer-modified cementitious repair mortar formulated for overhead and vertical reinstatement of concrete spalls on 80-m hub-height wind turbine tower foundations uses CW40-707H as a liquid polymeric modifier at an addition ratio of 0.10–0.13 litres of emulsion per kg of dry prepacked mortar powder. The dry blend, composed of 0–3 mm graded quartz, ordinary Portland cement CEM I 42.5R, microsilica (7% by cement weight), and a powdered polycarboxylate superplasticizer, is mixed with the emulsion and additional gauging water in a forced-action pan mixer (Eirich R05, 120 rpm rotor speed) to a total water-to-binder ratio of 0.35. The pasty mortar meets EN 1504-3 R3 requirements for structural repair, demonstrating adhesive bond strength by slant-shear (EN 12615) exceeding 25 MPa on a high-pressure water-jetted concrete substrate with a roughness amplitude Rₐ >2.0 mm. The finished repair layer, applied by hawk and trowel in lifts of 15–20 mm, cures under wet burlap for 7 days and then receives a polysiloxane sealer to retain internal moisture. A distinct processing hazard arises from the competitive adsorption of sand fines on the emulsion particle surface: when the aggregate fraction below 75 µm exceeds 4% of total aggregate mass, the polymer fails to coalesce uniformly, causing a tensile strength reduction of up to 30% compared to mixes with washed aggregates. Ingesting pre-washed sands with an MB value below 0.6 mg/g (ASTM C1777) eliminates this deficiency.
Rigid PVC window profile laminates coated with a heat-activated copolymer adhesive for inline foil wrapping are produced on high-speed profile wrapping lines (Simimpianti R 210, 40 m/min line speed) where CW40-707H is blended with an aqueous aromatic polyester dispersion at 60:40 dry-weight ratio to obtain a heat-activation onset temperature of 58–62°C. The mixture, at 52% total solids, is coated onto 0.20 mm thick PMMA-acrylate décor foil using a reverse gravure cylinder (engraving depth 85 µm) and dried in a three-zone impingement oven with zone temperatures of 60/85/105°C. Maximum hot-press peel adhesion measured per ASTM D903 at 180° peel angle on a conditioned PVC substrate of 1.5 mm thickness reaches 5.2 N/cm after 24-hour climatisation at 23°C/50% RH. A recurring line-stop issue is the accumulation of dried emulsion flakes on the dancer rollers; installers maintain a continuous 0.15 mm thick fluoropolymer tape on roller surfaces, replaced every 8 operating hours, to prevent foil breakage.
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| Property | CW40‑707H | Carboxylated Acrylic Emulsion (Tg ‑25 °C) | SBS Dispersion (60 % solids) |
|---|---|---|---|
| 180° Peel to stainless steel (N/25 mm) – initial | 9.2 | 7.8 | 10.1 |
| 180° Peel after QUV‑B 300 h (N/25 mm) | 8.7 (‑5.4 %) | 5.1 (‑34.6 %) | 3.2 (‑68.3 %) |
| Loop tack (N/25 mm) – conditioned 24 h at 4 °C | 6.9 | 4.3 | 8.0 (adhesive transfer failure) |
| SAFT to Mylar® (°C) | 128 | 146 | 87 |
| Standard / Directive | Applicable Clause or Test Method | Status |
|---|---|---|
| U.S. FDA 21 CFR | §175.105 (Adhesives) – clearance for dry food contact | Compliant, subject to extraction limits defined in §175.300(d) table‑1 |
| EU Regulation (EC) No. 1935/2004 | Article‑3 – overall migration limit < 10 mg/dm² | Passed with simulant C (20 % ethanol, 40 °C, 10 days); migration < 2.8 mg/dm² |
| German BfR Recommendation XIV | Dispersion adhesives for paper and board | Positive listing for fatty food simulants up to 40 °C |
| REACH (EC) No. 1907/2006 | Annex XVII restricted substances | No SVHC above 0.1 % w/w; residual vinyl acetate ≤ 50 ppm (GC‑headspace) |
| OSHA 29 CFR 1910.1200 | HazCom classification – skin sensitization | Not classified; formaldehyde content below 10 ppm (UV‑Vis MBTH method) |