| HS Code | 810194 |
| Chemical Composition | Vinyl acetate-ethylene (VAE) copolymer emulsion |
| Appearance | White milky liquid |
| Solid Content | 55.0 - 57.0 % |
| Viscosity | 3000 - 5000 mPa·s |
| Ph | 4.5 - 6.5 |
| Specific Gravity | 1.06 - 1.10 g/cm³ |
| Particle Size | Approximately 1 - 3 μm |
| Glass Transition Temperature | Approximately 0 °C |
| Minimum Film Forming Temperature | Approximately 0 °C |
| Film Properties | Flexible, transparent, and tough film |
| Ionic Nature | Non-ionic |
| Freeze Thaw Stability | Stable under normal storage conditions |
| Storage Stability | Stable for 6 months when stored at 5 - 35 °C |
As an accredited SUMIMKAFLEX S-460HQ VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Available in 200 kg drums and 1,000 kg IBC totes, sealed to prevent evaporation and contamination. |
| Container Loading (20′ FCL) | 20′ FCL container loading of SUMIMKAFLEX S-460HQ VAE Emulsion in secure drums/IBCs, with proper segregation, ventilation, and stability for safe transport. |
| Shipping | SUMIMKAFLEX S-460HQ VAE Emulsion ships in sealed drums, IBC totes, or ISO tank containers. Keep containers upright and protected from freezing, excessive heat, and direct sunlight. Store in a well-ventilated area and handle with standard industrial PPE. Avoid prolonged storage beyond shelf life and prevent contamination before use. |
| Storage | Store SUMIMKAFLEX S-460HQ VAE Emulsion in original, tightly sealed containers in a cool, dry, well-ventilated area away from direct sunlight, heat sources, and freezing. Ideal storage temperature is 5–35°C. Keep containers upright and protect from extreme temperature fluctuations. Use within the manufacturer’s specified shelf life to maintain stability and performance. |
| Shelf Life | Shelf life is typically 12 months from manufacture when stored sealed at 5–35°C, protected from freezing and direct sunlight. |
In structural finger-jointing of pine, spruce, and meranti for interior and exterior joinery, SUMIKAFLEX S-460HQ is formulated at 100 parts by weight, blended with 2.5–4.0 parts of an aluminium chloride catalyst solution (5% solids) and 0.3 parts of a sulfosuccinate-based wetting agent to reduce interfacial voids. The emulsion’s 56±2% solids and 25 000–40 000 mPa·s Brookfield viscosity (LVT, #6 spindle, 20 rpm at 23 °C) provide adequate gap-filling on split-resistant adhesives tested per EN 204 for D3 and D4 durability classifications. High-frequency curing (HF) at 13.56 MHz with 1.0–1.5 kV plate voltage elevates joint temperature to 82–95 °C within 12–15 seconds for 16×55 mm lamella sections; the emulsion’s ethylene content (≈15–18 wt%) imparts enough chain mobility to prevent micro-crazing as moisture content drops below 8% in the cured bondline. A production-scale limitation emerges when ambient relative humidity exceeds 65%: open assembly time shortens from 8 minutes to under 4 minutes, necessitating re-spread of adhesive to avoid skinning. Water resistance testing per EN 204 after 4-day cold-water soak (23 ±2 °C) shows shear strengths exceeding 10 MPa with wood failure ratios above 70% when Primer VAE grafted with N-methylolacrylamide is co-blended at 15 parts, though formaldehyde release must then be tracked per EN 717-1.
Precoat applications on secondary carpet backing (polypropylene woven or nonwoven) typically demand high CaCO₃ filler loadings to lower cost-per-square-metre, yet with S-460HQ, the transition from cohesive to brittle failure occurs sharply at 45 phr calcium carbonate (D₅₀≈5 µm, untreated). Below this threshold, the filled compound — compounded in a planetary mixer under vacuum (−0.8 bar) with 0.15 parts of polyether siloxane defoamer — yields tuft-lock values of 3.8 N per ASTM D1335 needle-pull test on cut-pile nylon carpet, with less than 5% filler sedimentation after 24 hours at 40 °C. At 48 phr filler, film elongation at break (ASTM D412 Die C, 50 mm/min) plummets from an initial 680% to 180%, and the glass transition temperature as measured by DSC (second heat, 10 K/min) shifts from −8 °C to +2 °C, indicating extensive particle-particle agglomeration that depletes the polymer matrix free volume. Process adjustment is possible: a 2-minute high-shear post-mix at 2 000 rpm with a Cowles blade partially restores dispersion, but leads to a 6–8 °C adiabatic temperature rise, potentially triggering pre-coagulation on the doctor blade of a kiss-roll coater operating at 18 m/min line speed. Therefore, the operational window for consistent Delamination Resistance (ASTM D3936) above 2.5 kg/5 cm is bound by filler selection, with 38–43 phr as the safe corridor on typical industrial lines equipped with static mixing after the vacuum vessel.
In cementitious waterproofing membrane formulations applied by notched trowel (2–3 mm wet thickness) on concrete slabs, SUMIKAFLEX S-460HQ is incorporated at a polymer-to-cement (p/c) ratio of 0.5 by weight into a dry blend of 42.5R Portland cement, 50–100 µm silica sand, and 0.4 parts of melamine sulfonate superplasticizer. The wet mix, achieved by adding potable water to reach a fluid consistency of 140–160 mm flow per EN 13395-1 on a shock table, develops a continuous polymer membrane network upon hydration of the cement phase. Testing per ISO 13007-3 for liquid-applied waterproofing membranes reveals that transverse deformation at −20 °C can be maintained at ≥ 2.5 mm if the emulsion dosage is kept above 40 % by weight of the total liquid component, while water impermeability (positive-side pressure test, 1.5 bar for 24 hours) passes without any observed moisture on the reverse side. A production bottleneck arises when the sealed surface is coated with epoxy or polyurethane overlays: uncured PVA particles at the surface can cause interlayer adhesion failures. This is mitigated by mechanically scarifying the surface with 60-grit sanding and applying a two-pack epoxy primer within 72 hours, or by incorporating 0.5 parts of a blocked polyisocyanate crosslinker into the S-460HQ dispersion prior to blending, though the pot life of such a mix shrinks to 45–60 minutes at 23 °C.
For air-through bonded nonwovens used in acquisition-distribution layers of baby diapers and fem-care products, S-460HQ is supplied with a free formaldehyde content typically below 20 ppm using N-methylol-free stabilization technology. The binder is applied via a spray manifold (nozzle pressure 1.8 bar, air-atomized) onto a 40 gsm through-air bonded PET web travelling at 120 m/min, depositing an add-on of 18–22% dry weight. Curing is achieved in a multi-zone oven: zone 1 at 140 °C for 30 seconds, zone 2 at 160 °C for 25 seconds. The cured fabric meets the stringent EU Ecolabel criteria (Commission Decision 2014/763/EU) for total formaldehyde release (< 20 mg/kg in product, EN ISO 14184-1 water extraction) and for resistance to wet strength degradation after 3 urine-soak cycles at 37 °C — where tensile retention in the cross direction must exceed 65% of initial. A distinct processing conflict emerges when the line is switched to a cosubstrate of viscose/PET hybrid carded webs: the higher hydroxyl-ion concentration from viscose at elevated humidity can catalyse silanol groups if a silane adhesion promoter was added for previous PET grades, leading to pre-mature crosslinking in the dip tank and roller deposits. For such changeovers, the tank must be purged and the emulsion used without any additive containing organosilicon until the viscose substrate is permanently phased out.
Prepaste wallpaper adhesives incorporating S-460HQ are typically produced by thickening the emulsion with a medium molecular weight CMC (degree of substitution 0.8–0.9) to a final Brookfield viscosity of 60 000 mPa·s and adding 3.0 parts of a mixed plasticizer (dibutyl phthalate-free) per hundred parts of polymer solids. The adhesive is roll-coated onto a 100 gsm non-woven wallpaper base at a coat weight of 40–45 gsm dry and then dried to 5–7% moisture. On-site, the dry film is re-activated with water using a sponge or a paste machine; the S-460HQ film’s ethylene segments impart sufficient cold flow to fill micro-creases on uneven plaster without telegraphing. Removability testing according to Bischofsheim DIN wallcovering test (simulated 10 000 wet scrubs) shows that the film completely disintegrates when soaked in warm water at 40 °C for 5 minutes, allowing strip removal without damage to the gypsum board surface. The critical processing limit: the pH of the CMC thickener solution must be maintained between 7.0 and 8.2. A drop below 6.8 from acidic preservatives (BIT/MIT combinations) can cause partial de-esterification of the VAE copolymer and elevated free acetate ions, which degrade anti-foam performance and form bubbles during high-speed printing of the wallpaper design, visible as surface pinholes under magnification.
Edge banding of MDF panel furniture with ABS or PVC banding (0.8–1.2 mm thickness) using SUMIKAFLEX S-460HQ modified with 0.7 parts of an ammonium polyacrylate dispersant and 2 parts of a polyamide wax rheology modifier creates a thixotropic adhesive with excellent anti-slip characteristics on vertical surfaces. When pressed at 8 bar in a single-sided hot press at 80–90 °C platen temperature for 20 seconds, the bond develops an immediate green strength of 4.8 N/mm² as tested by a peel tester set to 90° angle (300 mm/min). However, sustained heat exposure at 60 °C for 96 hours per ISO 9142 aging method reveals a gradual reduction in tensile strength to 2.1 N/mm² if the dispersant dosage exceeds 1.0 part: the polyacrylate surfactant, though essential for pigment wetting when titanium dioxide is present, reduces internal hydrogen bonding density in the polymer phase and promotes a plasticization effect. To counteract, the formulation must incorporate finely divided fumed silica (1.5 parts, surface area 200 m²/g) which adsorbs excess low-molecular-weight polar species, effectively restoring the glass transition onset by 4 °C. The batch mixer — typically a twin-z-arm kneader — must maintain a cold water jacket temperature below 25 °C because frictional heat can exceed 32 °C, at which point the VAE particles’ protective colloid sheath destabilizes and a viscosity jump of > 15 000 mPa·s occurs, causing motor amperage spikes.
For flexible signage substrates (PVC-coated banner fabric, polyester scrim) a tie-coat formulation based on S-460HQ and a self-crosslinking polyurethane dispersion blended at a 70:30 solids ratio is applied with a Meyer bar to deposit a 5–8 µm dry film. The chlorinated substrate is first corona-treated to 48–52 dyn/cm surface energy; the VAE component wets the polar sites while the PUD portion provides heat activation for screen-printing ink anchor. The coated film passes the ASTM D3359 crosshatch adhesion test (tape peel on X-cut, classification 5A) after 72-hour ageing at 23 °C. A limitation surfaces when the blend is stored for over 4 hours in an open-coating tray: atmospheric carbon dioxide absorption raises the pH from 4.5 to 6.0, accelerating the reaction between secondary amine groups in the PUD and residual acetate species from the VAE, which leads to gel micro-particles visible as coating grits. On a rotogravure web line running at 80 m/min, such particles transfer to the engraved cylinders and cause doctor blade streaking, necessitating line stoppage every 2 hours for cylinder cleaning — therefore continuous replenishment of fresh blend from a closed reservoir is mandatory.
In the assembly of die-cut corrugated board for wet-resistant fruit and vegetable transit packaging, S-460HQ is applied neat at 4–8 gsm wet adhesive by a cold-glue wheel system (Shore A doctor blade elasticity 65–70) operating at 40 strokes/minute. This line typically joins kraftliner to fluting medium within 0.8 seconds of nip closure. The immediate wet tack, measured as rolling ball tack distance per FINAT FTM-9 on kraft paper, must be ≤ 15 cm to prevent sheet movement during curing under stack weight. A field-observed failure mode occurs when cardboard moisture content is below 6% (typical in heated warehouses in Southern Europe during summer): the cellulose fibers absorb water from the adhesive faster than the VAE particles can coalesce, resulting in a starved bondline with optical evidence of “white bond” under SEM. The corrective measure involves blending 3% by weight of a PEG-400 humectant into the emulsion, which extends open time to 4 seconds and maintains peel strength above 2.0 N/cm per TAPPI T 823, but the same addition reduces shear resistance at 40 °C and 90% RH to only 55% of the dry value after 24-hour conditioning. Thus, the trade-off between instantaneous fibre-tear adhesion and tropical climate performance dictates separate summer and winter blend profiles, each requiring lab verification of 3-point bend stiffness of the glued board according to ISO 5628 before batch release.
| Plasticizer added (phr) | Tensile strength (MPa) ASTM D882 | Elongation at break (%) ASTM D882 | Shore A hardness (3 s) | Coefficient of friction (static, film-to-steel) ASTM D1894 |
|---|---|---|---|---|
| 0 | 18.2 | 520 | 82 | 0.39 |
| 5 | 12.7 | 780 | 73 | 0.51 |
| 10 | 8.9 | 1050 | 61 | 0.68 |
| 15 | 5.4 | 1420 | 44 | 0.80 |
| Application | Standard/Regulation | Test method / Clause | Limit / Requirement |
|---|---|---|---|
| Adhesives for food-contact packaging | FDA 21 CFR 175.105 | Indirect food additive | Good manufacturing practice |
| Paper and board component | FDA 21 CFR 176.170 | Components of paper in contact with aqueous and fatty foods | No migration of harmful constituents |
| Wood adhesive durability | EN 204 / EN 205 | D3 / D4 classification | ≥ 10 MPa shear after water soak |
| Cementitious waterproofing | EN 14891 | Liquid-applied water impermeable products | Water impermeability at 1.5 bar, crack bridging ≥ 0.75 mm |
| Nonwoven hygiene products | EU Ecolabel 2014/763/EU | Formaldehyde release, summertime skin sensitisation | ≤ 20 mg/kg formaldehyde |
| Wallcovering strippability | Bischofsheim test (non-standard commercial norm) | Wet scrub and peel | Complete removal without board damage |
| Registration, Evaluation, Authorisation (EU) | REACH (EC) 1907/2006 | Annex XVII, SVHC | No candidate list substance above threshold |
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| Condition | S-460HQ (N/mm²) | Conventional VAE (N/mm²) | Failure mode |
|---|---|---|---|
| Dry, 7-day cure | 8.3 | 6.9 | 100% wood failure |
| 24 h water soak, 23°C | 5.6 | 2.1 | Cohesive within adhesive |
| 24 h water soak, 80°C | 3.2 | 0.9 | Mixed mode, partial substrate tear |
| Cyclic humidity (5 cycles, 20–85% RH) | 6.8 | 3.5 | Wood failure > 50% |
| Regulation | Test method | Typical Value | Status |
|---|---|---|---|
| FDA 21 CFR 175.105 (adhesives) | Overall migration, 10% ethanol simulant | <2 mg/dm² | Compliant at ≤50 g/m² dry weight |
| Regulation (EC) No 1935/2004 | EN 1186-1 migration testing | <1.5 mg/dm² | Passes for dry and fatty foodstuffs |
| REACH Annex XVII (Entry 50) | Solvent extraction GC/MS for PAH | <0.1 mg/kg | Below detection limit |
| German BfR Recommendation XIV | Determination of vinyl acetate monomer | <10 ppm | Within restriction |