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Anhui Liwei Chemical Co., Limited.

Dairen DA-391 VAE Emulsion

    • Product Name: Dairen DA-391 VAE Emulsion
    • Factroy Site: Lingwu, Yinchuan, Ningxia, China
    • Price Inquiry: sales2@liwei-chem.com
    • Manufacturer: Anhui Liwei Chemical Co., Limited.
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    Specifications
    HS Code 550963
    Product Name Dairen DA-391 VAE Emulsion
    Appearance White milky liquid
    Solid Content 55 ± 1%
    Viscosity 500 - 1500 cps
    Ph 4.5 - 6.0
    Glass Transition Temperature -5 °C
    Minimum Film Forming Temperature 0 °C
    Particle Size 1 - 2 μm
    Density 1.06 - 1.07 g/cm³
    Surface Tension 35 - 40 dynes/cm

    As an accredited Dairen DA-391 VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Dairen DA-391 VAE Emulsion is supplied in 200 kg sealed drums, ensuring safe handling, stable storage, and protection from contamination.
    Container Loading (20′ FCL) 20′ FCL loaded with Dairen DA-391 VAE Emulsion in sealed drums/IBCs, properly secured, ventilated, and protected from heat.
    Shipping Dairen DA-391 VAE Emulsion ships in sealed drums, totes, or bulk tankers, protected from freezing and excessive heat. It is typically non-hazardous for transport, but should be kept upright, dry, and well-ventilated. Use standard handling precautions to prevent spills and ensure stable, safe delivery.
    Storage Store Dairen DA-391 VAE Emulsion in its original, tightly sealed containers in a cool, dry, well-ventilated area away from direct sunlight, heat sources, and freezing temperatures. Ideal storage range is 5–35°C. Prevent contamination by moisture or foreign materials. Use within six months of receipt to maintain optimal performance. Do not stack excessively.
    Shelf Life Shelf life is typically 12 months from manufacture when stored in sealed containers at 5–40°C, protected from freezing.
    Application of Dairen DA-391 VAE Emulsion

    Edge Bonding of Hardwood Laminates for Interior Door Components

    In solid wood door stile and rail assembly, a one-component waterborne adhesive based on a vinyl acetate-ethylene (VAE) copolymer emulsion must reliably transfer shear stresses across finger joints and edge-glued panels under fluctuating indoor humidity. The Dairen DA-391 emulsion is formulated with a glass transition temperature (Tg) near 0 °C and a minimum film-forming temperature below 4 °C, permitting cold-press bonding at workshop temperatures as low as 12 °C without forced heating. During continuous operation on a glue spreader equipped with an engraved roller No. 40 (depth 0.35 mm), the wet coating weight is maintained at 130–150 g/m² on planed beech lamella. The line operator encounters a viscosity drift of 400–800 mPa·s over an 8-hour shift when the open feed reservoir is not covered, driven by evaporative water loss that raises solids from 55% to above 60%; this drift narrows the open time to under 4 minutes from an initial 8–10 minutes at 20 °C and 50% RH. Process monitoring therefore enforces a closed-circuit delivery system with a viscosity setpoint of 3,200 ± 200 mPa·s (Brookfield RV #4, 20 rpm). Compliance is anchored to EN 204 durability class D3, which demands a tensile shear strength exceeding 6.0 N/mm² after 4 days immersion in cold water, tested per EN 205 on beech substrates. Additionally, ANSI/HPVA EF-1 Type II water-resistance criteria and JIS K 6852:1994 bond durability standards govern export to North America and Japan. The joint undergoes cold pressing under 0.7–1.0 MPa for 45–90 minutes at 20–30 °C; when a radio-frequency press is employed, the cycle is shortened to 3–5 minutes but the adhesive must tolerate a rapid temperature ramp to 75 °C without pre-cure at the bond line. A formulation guide places DA-391 at 70–85 parts per hundred parts of total adhesive compound, combined with 3–5 phr of a non-phthalate coalescent (e.g., triethylene glycol bis(2-ethylhexanoate)), 10–20 phr calcium carbonate filler for sag resistance, and a polyurethane thickener to achieve a pseudoplastic index of 2.5–3.5. Alkaline fillers that push the emulsion pH above 6.5 cause micro-coagulation and are excluded; zinc stearate or amine-neutralised dispersants must be avoided. The final products include engineered interior door stiles, laminated stair treads, and solid wood tabletops with a formaldehyde-free bond line that qualifies for CARB Phase 2 and EPA TSCA Title VI exempt status.

    In a high-speed laminating line that combines reverse-printed 20 µm BOPP film with 300 g/m² single-face corrugated board, aqueous VAE emulsion functions as the functional barrier tie layer between the ink system and the cellulose substrate. The adhesive is transferred through a chambered doctor blade system to a 300-line hexagonal-ceramic anilox roll and deposited at a dry coat weight of 2.8–4.0 g/m². Drying occurs in a three-zone arch dryer with air temperatures set to 95–115 °C, reducing residual moisture to below 0.5% before the nipping station. For indirect food-contact packaging, the construction must comply with FDA 21 CFR §175.105 (adhesives intended to be separated from food by a functional barrier), EU Regulation 10/2011 overall migration limit of 10 mg/dm², and GB 9685-2016 positive list. DA-391 constitutes 92–98% of the dry adhesive mass; a small fraction of a rosin ester dispersion (2–5% dry weight) may be incorporated to boost hot-tack to at least 4.5 N/15 mm measured with a spring-loaded tack tester at 0.3 s dwell. The critical processing window exists at the dryer exit: board surface temperature must reach 77–85 °C to ensure adequate film coalescence, yet exceeding 90 °C causes blistering when the laminate passes through the chill rolls. In a documented failure mode on a Comexi flexo-laminator running at 230 m/min, residual ethyl acetate from the earlier solvent-based printing stage exceeded 12 mg/m², plasticising the VAE film and reducing peel strength below the 2.5 N/15 mm threshold (determined by ASTM F904 at 23 °C). This dictates a hold period of at least 48 hours after printing or forced ventilation on the unwind. Treated polyester to paperboard laminates produced in this manner meet the BS 5609:1986 Section 3 peel adhesion after salt-water immersion and serve as drum labels, frozen food carton outer layers, and detergent box windows. The formulated adhesive must remain free of polyvalent metal ions (particularly Zn²⁺ and Ca²⁺) above 50 ppm to avoid bodying and subsequent transfer voids.

    A zero-VOC flat wall paint targeting Blue Angel RAL-UZ 102 certification relies on the VAE dispersion to deliver wet-scrub resistance exceeding 5,000 cycles (ISO 11998 test with 200 µm wet film on Leneta chart) while preserving wet adhesion over aged alkyd primer. The binder is formulated at a pigment volume concentration (PVC) between 55% and 70%, where DA-391 solids account for 12–18% of total paint weight. During let-down on a high-speed disperser, the emulsion is added slowly to a paste containing titanium dioxide (10–15% by weight), calcined kaolin, and a hydroxyethylcellulose thickener pre-swollen at pH 8.2; the final pH is adjusted to 8.5–9.0 with ammonia. Compliance requires indoor air emissions below 30 µg/m³ total VOCs as tested by ISO 16000-3:2022 and formaldehyde below 10 µg/m³ under EN 717-1. The film formed after 28 days curing exhibits an elongation at break of >300% at 23 °C (ISO 37), preventing mud cracking over fibrous plaster. A limitation arises when the paint is applied to substrates previously cleaned with quaternary ammonium disinfectants: residual surfactant reduces wet adhesion to a degree that drop-test failure (EN 13300 class 2) occurs within 200 cycles instead of the expected 1,000 cycles. Warehouses supplying both hospital renovation and residential markets must therefore segregate batch preparation to avoid cross-contamination with amine-containing cleaning agents. The end-use products are interior matte finishes in residential housing, hotel corridors, and schools where LEED v4.1 low-emitting materials credit is pursued.

    Why Does Foam Collapse Occur Below 2.0% VAE Addition in High-Filler Pre-coat Formulations?

    Carpet pre-coat foam formulations for tuft-lock consolidation are built around a VAE emulsion loaded with 250–400 phr ground calcium carbonate (median particle size 5–8 µm). The emulsion-to-filler ratio critically influences froth stability during mechanical foaming on a Hansa Mixer or Oakes continuous foamer. When the dry VAE content dips below 2.0% of the total wet compound mass, bubble Ostwald ripening accelerates: the Laplace pressure differential between bubbles of 0.1 mm and 0.5 mm radius drives gas diffusion across the lamellae, causing the foam to collapse within 30 seconds of doctoring. The stable operating window is defined by a solids-adjusted VAE fraction of 2.5–4.0%, yielding a wet foam density of 350–550 g/L. After knife-over-roll coating onto polypropylene primary backing at a gap of 1.2–1.8 mm, the foam is gelled in a dual-zone oven at 120–140 °C for 4–6 minutes. Tuft withdrawal force measured per ISO 10361:2015 (head speed 100 mm/min) must exceed 18 N for loop-pile construction; at 1.8% VAE addition, values routinely drop to 9–12 N, rendered unacceptable for commercial grade “heavy contract” use. Compliance frameworks include ASTM D1335-21, BS 5287:1988 for flammability, and the GUT (Gemeinschaft umweltfreundlicher Teppichboden) emission protocol. DA-391 is introduced at 100 phr (dry on dry binder) in the pre-coat, with a co-binder of 5–10 phr sodium polyacrylate dispenser to retard filler sedimentation. Finished articles are cut into 50 × 50 cm carpet tiles for office raised-access-floor systems and automotive main floor mats meeting FMVSS 302 horizontal burn rate below 100 mm/min.

    When Sterilisation by Ethylene Oxide Demands Intact Lamination Bonds in SMS Gown Fabric

    The lamination of a spunbond-meltblown-spunbond (SMS) polypropylene nonwoven stack for single-use surgical gowns employs a spray-applied VAE tie-coat at 2.0–3.0 g/m² dry weight, deposited from a 10% solids dilute solution through air-atomising nozzles at 0.3 MPa air pressure. The wetted webs are brought together over a heated steel drum at 105 ± 3 °C and nipped at a linear load of 40 N/cm, followed by a cooling pin roller. The bond must withstand ethylene oxide sterilisation at 55 °C and 60% RH for 6 hours without delamination; peel resistance measured by EN 868-2:2017 Section 5.2.8 should remain above 1.5 N/25 mm. Regulatory conformance spans EN 13795-1:2019 (performance level “high”), ANSI/AAMI PB70:2022 barrier classification Level 3, and biocompatibility evaluated by ISO 10993-5:2009 (cytotoxicity, L929 cell line, extract dilution 1:4). DA-391 occupies 100% of the adhesive layer, obviating the need for external crosslinkers that could stiffen the joint and generate audible crinkle. The narrow processing temperature window is dictated by the meltblown layer, which begins to shrink above 112 °C, causing puckers; thermocouple probes on the drum surface therefore trigger an alarm when deviation exceeds ±2 °C from setpoint. Batches that absorb atmospheric humidity above 65% RH during warehouse storage prior to coating exhibit micro-bubble formation and must be re-dried at 40 °C for 24 hours. The end article is a surgical gown meeting Class II medical device requirements in the EU and cleared for ethylene oxide or gamma sterilisation cycles, with full traceability of adhesive raw material lot numbers per 21 CFR Part 820.

    Polymer-to-Cement Ratio and Flexural Strength Retention under Hydrostatic Pressure

    Flexible cementitious waterproofing slurries for submerged structures rely on a polymer-to-cement (p/c) ratio carefully balanced to impart crack-bridging ability without collapsing compressive strength. DA-391 is supplied as a ready-to-disperse liquid component mixed on-site with a Portland cement Type I 42.5R powder and graded silica sand (0–0.5 mm) in a forced-action paddle mixer at 300 rpm for 5 minutes, then left to slake for 3 minutes before application by notched trowel at 2.0 mm wet thickness. The core regulatory benchmark is EN 1504-2:2004 surface protection systems for concrete, requiring a crack-bridging ability at -20 °C of at least 0.5 mm and capillary water absorption below 0.1 kg/(m²·h0.5). Additionally, JC/T 984-2011 (China) and ANSI A118.10-2022 (waterproofing membrane for thin-set ceramic tile) dictate performance thresholds. A p/c ratio of 0.08–0.12 (polymer solids to cement mass) delivers a 28-day flexural strength of 6.5–8.0 MPa (ISO 679) and an adhesive pull-off strength exceeding 2.0 MPa on pozzolanic concrete substrate. However, increasing the p/c above 0.15 leads to a steep decline in compressive strength from 32 MPa to below 18 MPa, a consequence of polymer films interrupting the cementitious matrix continuity under confined compression. The pot life of the mixed slurry is limited to 45–60 minutes at 20 °C before a rise in viscosity from 1,500 to over 4,000 mPa·s impedes trowelling. Field experience on a slurry mixing station has identified that unwashed sand containing >0.1% chloride ions induces progressive corrosion of mild steel reinforcement beneath the membrane, a failure mode averted by specifying aggregate compliant with EN 12620 chloride Class CL <0.01. The waterproofing membrane is applied over hairline cracks up to 0.3 mm and covered with protective screed in basement parking garages, water treatment tank internals, and lift pits.

    Polymer/Cement Ratio (p/c) Flexural Strength (ISO 679, 28 d) Compressive Strength (28 d) Crack-Bridging at -20 °C (EN 1504-2) Capillary Absorption (kg/m²·h0.5)
    0.05 4.2 MPa 38 MPa 0.2 mm 0.18
    0.10 7.1 MPa 28 MPa 0.8 mm 0.06
    0.15 7.9 MPa 19 MPa 1.1 mm 0.04
    0.18 8.3 MPa 14 MPa 1.3 mm 0.03
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    Certification & Compliance
    More Introduction

    Dairen DA-391 is a carboxylated vinyl acetate–ethylene (VAE) copolymer emulsion supplied at 54–56 wt% solids and a Brookfield viscosity of 2 000–4 000 mPa·s (ISO 2555, spindle 3, 20 rpm, 23 °C). The product is stabilised with a polyvinyl alcohol protective colloid system and exhibits a glass transition temperature (Tg, DSC midpoint) near 5 °C, corresponding to a minimum film-forming temperature (MFFT, ISO 2115) of approximately 2 °C without coalescing solvent. The ethylene comonomer content provides permanent internal plasticisation, eliminating the plasticiser migration seen in homopolymer PVAc adhesives. Applications span waterborne wood assembly, paper and packaging lamination, tissue and towel core winding, and carpet secondary backing, where a balance of flexibility, wet tack, and heat resistance is required.

    What Differentiates the DA-391 from Conventional Vinyl Acetate Homopolymer Emulsions?

    The incorporation of ethylene at a level of 10–20 wt% on the polymer backbone depresses the Tg by approximately 30 °C relative to a comparable molecular-weight PVAc homopolymer. This compositional feature removes the need for dibutyl phthalate, benzoate esters, or other external coalescents that can volatilise or migrate to the bond line, causing embrittlement and loss of adhesion over thermal cycling. In D3 wood adhesive formulations tested per EN 204:2016, DA-391 retains a shear strength above 7 N/mm² after 7 days of storage in standard atmosphere, and after 4 days of immersion in cold water the wet strength remains above 4 N/mm², meeting the D3 durability classification without the use of crosslinking isocyanates. In contrast, a typical PVAc homopolymer of similar viscosity and solids will deliver wet adhesion below 1 N/mm² under identical exposure unless formulated with a separate crosslinker. The lower free monomer residual of DA-391 (<0.1 wt% vinyl acetate monomer per headspace GC) also simplifies compliance with the German AgBB scheme for indoor air quality.

    Unplasticised films cast from DA-391 and a standard PVAc homopolymer (Tg ≈ 28 °C) were compared for elongation at break using ASTM D638-14 Type V specimens. The table below summarises the mechanical response.

    PropertyDA-391 VAEPVAc Homopolymer
    Solids (ISO 3251)55 ± 1 %50 ± 1 %
    Tg (DSC)5 °C28 °C
    MFFT (ISO 2115)2 °C18 °C
    Elongation at break (ASTM D638)≥ 600 %≤ 10 %
    Water absorption (24 h, DIN EN ISO 62)12–15 %25–30 %

    High-speed lamination of porous substrates on a roller coater running at 120 m/min line speed demands a wet pressure-sensitive tack duration of at least 8 seconds to accommodate web alignment before the nip. DA-391, when formulated with 1.0–2.5 wt% of a hydrophobically modified ethoxylated urethane (HEUR) rheology modifier, develops an open time of 10–12 seconds on 80 g/m² kraft liner under 50 % RH and 23 °C conditions. Production experience on a Kroenert PAK 610 roll coater with a 300 mm engraving roll at a gap setting of 0.15 mm shows that the emulsion’s shear stability, quantified by a ≤ 0.05 % coagulum formation after 30 min of stirring at 3 000 rpm (Cowles blade), prevents screen blinding and reduces cleaning downtime. However, the carboxylation level that imparts adhesion to aluminium foil also elevates the risk of viscosity drift when ammonia is used as a fugitive neutraliser; pH must be maintained between 4.5 and 6.0 using a fixed-buffer system, and mixing with zinc ammonium carbonate-based crosslinkers must occur within 4 hours of application to avoid premature gelation.

    In cold-setting wood edge-glueing operations with a pneumatic press applying 0.7 MPa pressure for a minimum of 45 minutes, the emulsion composition’s ethylene segments contribute sufficient backbone mobility that joints on hard maple exhibit a dry shear strength exceeding 10 N/mm² after 24 hours of conditioning at 20 °C. One recurrent processing bottleneck observed on mass-production clamping carousels is the onset of skinning at the nozzle tip when ambient conditions surpass 35 °C and 30 % RH, reducing working life to less than 6 hours; retrofitting application heads with a water-jacketed reservoir maintaining the emulsion at 18–22 °C restores the open assembly time to the target 12 minutes.

    Viscosity, pH, and Particle Size Thixotropic Landscape

    DA-391 exhibits a low-shear pseudoplastic behaviour; the Brookfield viscosity at 1 rpm may climb to 12 000–15 000 mPa·s, while at 100 rpm the reading drops below 2 000 mPa·s. This profile is beneficial in non-drip vertical applications such as wall panel adhesive but mandates positive-displacement pumping with a Waukesha Universal 2 series pump run below 200 rpm to minimise mechanical shear. The mean volume particle size, as determined by dynamic light scattering (ISO 22412), is 0.8–1.2 μm, conferring deep penetration into low-grammage paper stocks without strike-through at coat weights between 20 and 40 g/m² wet. Freeze–thaw stability is absent; storage below +2 °C will cause irreversible coagulation, and the drum must be brought to 15 °C under slow mixing before transfer.

    Bonding polyethylene terephthalate (PET) film to corrugated board for point-of-purchase displays represents a technically demanding application because of the low surface energy of PET. Incorporation of 1.5 phr of an aromatic isocyanate trimer and 3 phr of a chlorinated polypropylene adhesion promoter into a DA-391-based adhesive yields a peel strength of 2.8 N/25 mm (ASTM D1876) after 72 hours of cure at 23 °C. Published data for isocyanate-free VAE formulations on untreated PET typically remain below 1.0 N/25 mm, underscoring the utility of the carboxyl functionality in crosslink reactivity.

    Test StandardParameterDA-391 Typical Value
    ISO 2115MFFT2 °C
    ISO 2555Brookfield Viscosity (sp. 3, 20 rpm)2 000–4 000 mPa·s
    ISO 976pH5.0–6.0
    ISO 3251Solids content55 ± 1 %
    FDA 21 CFR 175.105Indirect food additive (adhesive component)Compliant
    REACH (EC) 1907/2006SVHC contentNegative

    When High-Speed Case Sealing Demands Immediate Handling Strength

    Automated case and carton sealing lines operating at 80 cycles/min impose a requirement for rapid green strength development. DA-391 formulated with 8 wt% of a rosin ester tackifier dispersion (softening point 85 °C) and 0.3 wt% of a polyacrylamide-based flocculant produces a fibre-tear bond on Kraft within 1.5 seconds of compression at 2 bar. However, this combination reduces the system’s pot life to 3 hours due to shear-induced destabilisation; continuous circulation through a static mixer and a progressive-cavity pump maintains homogeneity but demands purging of the entire fluid path if the line stops for more than 15 minutes. Plant-scale data from a 6‑head Nordson ProBlue® adhesive melter retrofitted for waterborne dispersions confirmed that nozzle stagnation at idle positions can generate agglomerates exceeding 150 μm, which block the 0.4 mm orifice if the system is not gravity-flushed during changeovers.

    In spiral-wound paper tube manufacturing, DA-391 competes directly with higher-Tg VAE grades such as DA-101 (Tg ca. 18 °C). The lower Tg of DA-391 improves ply adhesion to recycled linerboard with high post-consumer content, requiring 15 % less coat weight to achieve a burst-strength retention above 90 % per TAPPI T 810. Yet the softer polymer raises the risk of roll-blocking under summer storage conditions exceeding 40 °C core temperature; a practical mitigation is blending DA-391 with 15–20 phr of DA-101 to lift the apparent Tg of the blend to approximately 10 °C while preserving sufficient specific adhesion.

    The emulsion is supplied without APEO or alkylphenol ethoxylate surfactants, a feature that aligns with the Nordic Swan Ecolabel criteria for adhesives and with the EC Regulation 1907/2006 Annex XVII entry 46a restriction on nonylphenol ethoxylates. Container sizes include 1 000 L IBCs, 200 L internally coated steel drums, and 20 ton road tanker shipments, each with a recommended shelf life of 6 months from the date of manufacture when stored at 5–30 °C in sealed original containers. Prior to use, a 100 μm in-line filter bag is advised downstream of the drum pump to capture any surface skin that may have formed during storage.

    Thermal analysis of films blended with 5 wt% of a 50 % solids rosin ester emulsion reveals a single DSC tan δ peak at 12 °C, confirming miscibility across the measurement range and the absence of phase separation that might compromise cohesive strength at low temperatures. This homogeneity is particularly relevant for freezer-grade case and carton adhesives where bond performance must be maintained at −20 °C; lap-shear values on clay-coated newsback at this temperature remain above 1.2 N/mm², while many competitive VAE emulsions with a higher crystalline fraction exhibit brittle fracture below 0.5 N/mm².