| HS Code | 841214 |
| Product Name | SUMIMKAFLEX S-7400HQ VAE Emulsion |
| Chemical Family | Vinyl Acetate Ethylene (VAE) Copolymer Emulsion |
| Appearance | White milky liquid |
| Solid Content | 54.5 - 55.5% |
| Viscosity | 1500 - 3000 mPa·s (Brookfield, 25°C) |
| Ph | 4.0 - 5.5 |
| Glass Transition Temperature Tg | 0°C |
| Minimum Film Forming Temperature Mfft | 0°C |
| Particle Size | 0.5 - 2.0 µm |
| Density | 1.05 - 1.10 g/cm³ |
| Residual Vinyl Acetate Monomer | ≤ 0.1% |
| Surfactant Type | Non-ionic / protective colloid system |
| Film Property | Flexible, clear, and water-resistant film |
| Storage Shelf Life | 6 months from date of manufacture (below 30°C) |
As an accredited SUMIMKAFLEX S-7400HQ VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | SUMIMKAFLEX S-7400HQ VAE Emulsion is supplied in 200 kg drums, 1,000 kg IBC totes, or bulk tankers. |
| Container Loading (20′ FCL) | 20′ FCL loaded with SUMIKAFLEX S-7400HQ VAE Emulsion in drums/IBCs, secured, weighed, sealed, and documented for safe transit. |
| Shipping | SUMIMKAFLEX S-7400HQ VAE Emulsion is a water-based, non-hazardous latex. Ship in closed drums, IBCs, or tanks. Protect from freezing, extreme heat, and sunlight. Maintain temperatures between 5–35°C, avoid contamination, and use within shelf life. No dangerous goods classification applies, but standard safe handling and spill prevention are required. |
| Storage | Store SUMIMKAFLEX S-7400HQ VAE Emulsion in tightly sealed, original containers in a cool, dry, well-ventilated area. Maintain temperature between 5°C and 40°C to prevent freezing or heat degradation. Protect from direct sunlight, moisture, and incompatible materials. Keep away from open flames and strong oxidizers. Use within shelf life. |
| Shelf Life | Shelf life is 6 months from manufacture when stored sealed at 5–35°C, protected from freezing and direct sunlight. |
The emulsion serves as a primary binder in two-component PVA-catalyzed laminating adhesives for birch plywood and hardwood finger joints, where the crosslinking reaction with a polymeric MDI-type isocyanate generates a D4-rated water-resistant bond according to DIN EN 204/205. A typical ratio is 100 parts emulsion to 10–12 parts isocyanate dispersion, mixed in a low-shear paddle mixer at 120–300 rpm for 15–20 minutes. The open time at 23°C and 50% RH drops to approximately 30 minutes once the isocyanate is incorporated, demanding cold pressing within 45 minutes to avoid pre-cure. Assembly pressure of 0.7–1.5 N/mm² is maintained for 45–120 minutes, depending on wood species porosity. The finished furniture component or laminated beam passes cycle testing involving 4-hour boiling, 20-hour drying at 60°C, and another boiling cycle per EN 391 without delamination exceeding 5% of bond line. Because the isocyanate reaction liberates CO₂ upon contact with water from the emulsion, viscosity increases non-linearly over pot life; plant practice limits batch size to what can be consumed within 60 minutes. Tertiary amine catalysts must be excluded entirely—they accelerate the gel point to under 15 minutes at 25°C, rendering the mixed adhesive unspreadable on a roll coater. Filler addition of calcium carbonate up to 30 phr is permissible but reduces the final lap-shear strength by 15–20%, a trade-off frequently accepted in edge-gluing of softwood panels for non-structural interior doors.
In modular carpet backcoating lines, the emulsion is pre-compounded with 600–800 phr (parts per hundred resin) of limestone filler (CaCO₃, particle size 10–50 µm) using a Cowles disperser at tip speeds of 15–20 m/s, yielding a pre-coat with a Brookfield RV viscosity of 12,000–18,000 mPa·s at 25°C. This compound is applied via knife-over-roll onto the tufted primary backing at a coat weight of 900–1200 g/m², then passed through a forced-draft infrared-zone oven where air temperatures reach 140–165°C and web surface temperatures are held below 95°C to prevent foam collapse. SUMIKAFLEX S-7400HQ in this configuration delivers initial hot tack immediately upon exiting the oven, allowing inline roller engagement without pick-up. Compliance benchmarks include ASTM D1335 for tuft bind (>4.5 kg) and ASTM D418-89 for edge curl where shrinkage must remain under 0.5% after 24-hour water soak. The heavy filler load buffers acid gases from PVC-tile substrate layers, a critical function in institutional buildings with strict indoor air quality targets. However, secondary backing lamination with polyethylene sheet requires an additional tie-coat of a higher-ethylene VAE or acrylic to prevent interfacial failure when floor temperatures drop below 15°C—a limitation well-documented in cold storage application post-mortems. Extender plasticizers such as diisononyl phthalate are incompatible above 2% because they exude to the yarn interface and cause a measurable drop in tuft bind after 90 days at 40°C.
Extrusion-coated polyethylene has been partially replaced by water-based dispersion coatings for hot beverage cups to meet recyclability targets under PTS-RH 021/2018 (cat. II). SUMIKAFLEX S-7400HQ is often letdown with an acrylic emulsion at a ratio of 70:30 (dry/dry) to raise the Cobb value to <3 g/m² at 60°C water (per ISO 535). The blend is applied on a multi-roll curtain coater or grooved rod coater at a coat weight of 6–10 g/m² (dry) on 200–240 g/m² kraft board. Drying is carried out in a hot-air convection tunnel at 120–140°C, with dew point controlled below −10°C to suppress skinning. A subsequent heat-sealing step bonds the side seam at 180–220°C bar temperature and 0.3 MPa pressure, forming a liquid-tight joint that passes the 30-minute hot-water hold test at 90°C without blistering. FDA 21 CFR 176.170 compliance for aqueous and fatty food contact is achieved because both components are listed, provided residual vinyl acetate monomer remains below 5 ppm in the dried film. Industrial operators report that offline ink adhesion testing per ISO 2409 (cross-cut) requires surface treatment at the coating head when the paperboard’s moisture content exceeds 8%, otherwise delamination at the ink interface during hot filling becomes a recurring failure mode. In high-speed cup-forming machines running above 200 units/min, the coating must also resist blocking at stacking temperatures up to 50°C; a 2–3% addition of carnauba wax dispersion is used to lower the coefficient of friction below 0.35 (static) without compromising heat-seal integrity.
Two-component flexible cementitious waterproofing slurries under EN 14891 (CM01P class) utilize VAE emulsions to bridge static and dynamic cracks. The liquid component is SUMIKAFLEX S-7400HQ blended with a defoamer based on mineral oil (0.3–0.5% on liquid weight) and a retarder such as sodium gluconate (0.1–0.2%). This liquid is mixed with a powder blend of ordinary Portland cement, silica sand (0.1–0.5 mm), and cellulose ether in a ratio of 1:3 to 1:4 liquid-to-powder by volume. A key processing constraint arises: mortar open time falls below 90 minutes when ambient temperature exceeds 30°C, limiting application to cooler shifts in Middle Eastern construction. Curing under polyethylene sheeting at >95% RH for 48 hours allows the copolymer film to coalesce, developing a crack-bridging ability of >0.75 mm at −10°C (tested per EN 1062-7). The cured membrane also demonstrates a water impermeability >0.5 MPa under YBB 0020-2005 conditions. However, continuous alkaline attack (pH 12.5–13.0) from fresh concrete partially hydrolyzes the acetate groups over 3–6 months, producing a gradual increase in water uptake; hence, for permanent buried applications, a protective bituminous topcoat or incorporation of a silane coupling agent is advised to extend service life. Experimental series with varying liquid-to-powder ratios reveal a steep reduction in crack bridging when the ratio falls below 1:3.5, as the polymer-cement co-matrix loses continuous film formation over microcracks.
| Liquid : Powder ratio (vol.) | Crack bridging at −10°C (EN 1062-7) | Water impermeability at 0.5 MPa |
|---|---|---|
| 1 : 2.5 | 1.05 mm | 0.48 MPa |
| 1 : 3.0 | 0.85 mm | 0.65 MPa |
| 1 : 3.5 | 0.62 mm | 0.75 MPa |
| 1 : 4.0 | 0.38 mm | >0.80 MPa |
Airlaid nonwoven webs for adult incontinence pads require low-viscosity binder sprayable at 15–25% solids dilution. SUMIKAFLEX S-7400HQ is diluted with deionized water to a spray bath viscosity of 80–150 mPa·s (Brookfield LV, spindle #2, 60 rpm) and metered through air-atomized nozzles at a line speed of 80–120 m/min. Wet adhesive add-on is controlled to 5–8 g/m² on the absorbent core, followed by through-air drying at 120°C where core temperature peaks at 75°C for 8–12 seconds. The emulsion’s low odor and absence of alkylphenol ethoxylates conform to OEKO-TEX Standard 100 product class I (baby articles). Finished pad integrity is assessed by wet-strength retention: after 1-minute immersion in saline solution (0.9% NaCl), a CD tensile strength of >1.2 N/50 mm (per EDANA 20.2-89) must be maintained to prevent core rupture. Emulsion pH of 4.0–5.0 can cause corrosion on standard 304 stainless steel nozzles if idle for more than 4 hours; therefore, production stoppages mandate a purge cycle with a 1% sodium bicarbonate solution. Fluff pulp compatibility requires that the surfactant system does not increase rewet beyond 0.5 g in the strike-through test (EDANA 150.5-02), a balance achieved by maintaining calcium ion tolerance above 500 ppm CaCO₃ in the diluted binder. Co-formulation with a high-acid acrylic improves adhesion to superabsorbent polymer particles but must be limited to 10% of total binder solids to avoid excessive modulus increase that leads to edges curling at the diaper assembly line.
Competitive SUMIMKAFLEX S-7400HQ VAE Emulsion prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please contact us at +8615380400285 or mail to sales2@liwei-chem.com.
We will respond to you as soon as possible.
Tel: +8615380400285
Email: sales2@liwei-chem.com
Flexible payment, competitive price, premium service - Inquire now!
| Property | Test Method | S-7400HQ | Conventional VAE (55 % solids) | Acrylic Emulsion (50 % solids) |
|---|---|---|---|---|
| MFFT | ISO 2115 | 0 °C | 0 °C | +5 °C |
| Film tensile strength | ASTM D638 | 4.8 MPa | 3.1 MPa | 6.2 MPa |
| Elongation at break | ASTM D638 | 630 % | 720 % | 380 % |
| Heat-seal activation | Internal, 1 s/bar | 68 °C | 72 °C | 82 °C |
| Plasticizer demand (to achieve 500 % elongation) | — | 0 % | 7 % | 9 % |
| Regulation / Standard | Applicable Limit / Requirement | S-7400HQ Status |
|---|---|---|
| FDA 21 CFR 175.105 | Adhesives for indirect food contact | Compliant |
| EU 10/2011 (Amendment 2020/1245) | Overall migration < 10 mg/dm² | Certified by migration testing |
| REACH (EC 1907/2006) | Substances of Very High Concern absent | Confirmed |
| RoHS (2011/65/EU) | Pb, Cd, Hg, Cr⁶⁺ below 1000 ppm | < 10 ppm each |
| ASTM D6868 | Compostable plastics adhesive primer | Suitable when cured at 85 °C |