| HS Code | 182115 |
| Product Name | Dairen DA-201 VAE Emulsion |
| Chemical Type | Vinyl Acetate Ethylene (VAE) Copolymer Emulsion |
| Appearance | Milky white liquid |
| Solid Content | 55 ± 1% |
| Viscosity | 1500 ± 500 cps (Brookfield, 25°C) |
| Ph | 5.5 ± 1.0 |
| Glass Transition Temperature Tg | 0°C |
| Minimum Film Forming Temperature Mfft | 0°C |
| Particle Size | 0.2 - 1.0 μm |
| Density | 1.05 - 1.10 g/cm³ |
| Surface Tension | 40 ± 5 dyn/cm |
| Residual Vinyl Acetate Monomer | < 0.1% |
As an accredited Dairen DA-201 VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Dairen DA-201 VAE Emulsion is supplied in 200 kg net drums, ensuring safe storage, handling, and consistent adhesive performance. |
| Container Loading (20′ FCL) | Load 20′ FCL with palletized drums/IBCs of Dairen DA-201 VAE Emulsion; secure bracing, protect from moisture, maintain moderate temperature. |
| Shipping | Dairen DA-201 VAE Emulsion ships in sealed drums, totes, or ISO tanks to prevent contamination and evaporation. Protect from freezing, heat, and direct sunlight; store between 5–40°C. Use ventilated transport, secure containers upright, and avoid prolonged storage before use. |
| Storage | Store Dairen DA-201 VAE Emulsion in a clean, dry, well-ventilated area away from direct sunlight, heat, and ignition sources. Keep containers tightly sealed. Maintain storage temperature between 5°C and 40°C to prevent freezing or coagulation. Avoid prolonged exposure to air. Use within recommended shelf life and stir gently before use. |
| Shelf Life | Shelf life is 6 months from manufacture when stored sealed at 5–35°C, protected from freezing and direct sunlight. |
| DA-201 Dry Coating Weight (g/m²) | Heat Seal Temperature (°C) | Peel Strength (N/25mm) ASTM F88 | Fibre Tear (%) |
|---|---|---|---|
| 1.5 | 130 | 11.2 | 70 |
| 2.0 | 130 | 16.8 | 95 |
| 2.5 | 120 | 19.4 | 100 |
| 2.0 | 110 | 13.1 | 60 |
Competitive Dairen DA-201 VAE Emulsion prices that fit your budget—flexible terms and customized quotes for every order.
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Dairen DA-201 is a carboxylated, medium-ethylene vinyl acetate-ethylene (VAE) copolymer emulsion supplied as a 55 ± 1% solids, surfactant-stabilized aqueous dispersion. Its glass transition temperature (Tg) by differential scanning calorimetry falls in the range of 0–5 °C, conferring room-temperature film formation without external plasticizer addition. This product is specifically engineered for water-based adhesive applications requiring D2 and D3 durability classifications under EN 204:2016, particularly for wood-to-wood bonding in interior and limited-exposure exterior joinery. The absence of alkylphenol ethoxylate (APEO) surfactants and intentionally added formaldehyde donors aligns with REACH Annex XVII restrictions and the requirements of Germany’s ChemVerbotsV for end-use articles. Typical pH at delivery is 4.5–5.5, buffered with a low-odor volatile organic acid system, and Brookfield viscosity (spindle 3, 20 rpm, 23 °C) is maintained between 1,500 and 3,500 mPa·s. The minimum film formation temperature, measured per ASTM D2354, is ≤ 2 °C, enabling assembly at workshop temperatures as low as 10 °C without the rheological instability associated with coalescing-agent-loaded dispersions.
Polyvinyl acetate homopolymers, while economical, inherently yield rigid adhesive films with a Tg near 30 °C and poor resistance to moisture. Dairen DA-201 incorporates approximately 12–16 wt% ethylene units within the polymer backbone, a structural difference that permanently reduces polymer chain stiffness, depresses Tg, and introduces hydrophobic moieties that slow water ingress. In D2 resistance testing according to EN 204, specimens bonded with unmodified PVAc often delaminate after the cold-water immersion cycle, whereas joints prepared with DA-201 consistently exceed the minimum shear strength of 2.5 N/mm² without the addition of external crosslinkers. When directly compared under identical open assembly time conditions (EN 205 method), DA-201 delivers 40–60% higher wet wood failure percentage than a standard homopolymer plasticized with dibutyl phthalate at a 5% loading. The permanent plasticization achieved through internal ethylene units avoids the migration, exudation, and long-term embrittlement risks documented for external plasticizer systems in ASTM D1203 volatile-loss tests. For D3 classification (cold-water soak plus additional humid-condition exposure), DA-201 formulations typically require a secondary crosslinking component, which is further detailed in the formulation guidance section.
Adhesion testing per ASTM D905 on hard maple assemblies reveals a pronounced dependence on substrate moisture content (MC). Laboratory data from a high-frequency edge-gluing line equipped with a GreCon MR 200 moisture analyzer indicate that maximum shear strength of 18.5 ± 1.1 N/mm² is achieved when MC is held between 8 and 10%. Below 6% MC, the rapid absorption of free water from the emulsion into wood cell walls during open time leads to an internal-penetration deficit and film-starved bondlines; shear strength drops to ≤ 11 N/mm², with 85% adhesive failure at the interface. Above 14% MC, partial-phase inversion at the bondline prolongs setting time and can generate steam blisters during hot pressing at 95 °C platen temperature. In continuous lamination of high-density fiberboard to decorative foil at line speeds exceeding 25 m/min, DA-201’s rapid grab is notable, but application viscosity must be adjusted with a pseudoplastic thickener—typically a methyl hydroxyethyl cellulose with a 2% solution viscosity of 3,000–6,000 mPa·s—to a target of 8,000–12,000 mPa·s (Brookfield RV, spindle 6, 20 rpm). Incorrect thickener selection that shifts the emulsion’s rheology toward Newtonian behavior results in splatter at the roll-coating nip and starved edges, as recorded by a laser-based coat-weight scanner on a Hebach laminating line.
Compatibility with aluminum salt accelerators, often employed to gain D3 performance, demands pH management outside the emulsion’s inherent stability window. The aluminum chloride hexahydrate (1.0–2.5 wt% of wet adhesive) must be predissolved in water and post-added under high-shear mixing at 500–800 rpm. Immediate pH measurement after incorporation typically reads 2.8–3.3. At this acidity, the carboxylated VAE latex is metastable, and pot life is limited to 4–6 hours at 23 °C; beyond this window, detectable microflocculation, measured by a change in Hegman grind from 4 to ≤ 1, leads to a loss of adhesive strength of up to 30% in subsequent D3 testing. Alternative crosslinking with polymeric methylene diphenyl diisocyanate (pMDI) at 3–5% addition by wet weight avoids the pH shock but introduces a shorter pot life of 30–45 minutes and requires dedicated mixing equipment to prevent moisture-curing of residues. Published data for the specific combination of DA-201 with commercial pMDI grades under controlled relative humidity of 65% indicates a final joint shear strength exceeding 7.0 N/mm² after the full D3 cycling protocol, outperforming systems based on a comparable solids, non-carboxylated VAE where interphase crosslinking density is significantly lower.
| Property | Typical value | Method / instrument |
|---|---|---|
| Solids content | 55 ± 1% | ISO 3251-1:2019 (120 °C, 2 h) |
| pH | 4.5 – 5.5 | ISO 976:2018 |
| Brookfield viscosity (LVF, spindle 3, 20 rpm, 23 °C) | 1,500 – 3,500 mPa·s | ISO 2555:2018 |
| Minimum film formation temperature | ≤ 2 °C | ASTM D2354-10 (MFFT-bar) |
| Particle size (median) | 0.8 – 1.2 μm | Laser diffraction (Malvern Mastersizer) |
| Mechanical stability | No coagulum after 5 min at 3,000 rpm | Klaxon stirrer test |
| Free monomer content (vinyl acetate) | ≤ 300 ppm | GC headspace |
| Preservative system | CMIT/MIT-free, MIT/BIT combination | — |
Optical clarity of the cured adhesive film is demanded for edge-banding of high-end solid wood panels where visible glue squeeze-out must be imperceptible. DA-201, being an internally plasticized VAE with a refractive index approximating that of cellulose, produces a dry film that is translucent to transparent depending on bondline thickness. In a layered construction of ash veneer onto a plywood core pressed at 0.8 N/mm² and room temperature, the glue line after 24-hour conditioning was evaluated with a micro-TRI-glossmeter (BYK-Gardner) at a 60° angle. The gloss level of the bondline did not statistically deviate from the adjacent wood surface (ΔGU ≤ 1.5), indicating optical continuity. This property differentiates DA-201 from many filled EVA-based hot melts and from PVAc adhesives requiring high loadings of calcium carbonate or silica extenders that produce an opaque, whitish line. However, it must be noted that waterborne contact-cement applications utilizing DA-201 will retain a slightly hazy appearance until moisture is fully evacuated; forced-air drying at 40 °C for 90 seconds prior to bonding eliminates this transient effect.
Comparative shear-strength data under different environmental exposures, compiled from a laboratory screening program using beech test specimens (Fagus sylvatica) according to EN 205, are presented in the following table. The formulations were prepared at a constant 55% solids and applied at 150 g/m² with a notched trowel. All values are averages of 10 replicates, conditioned per EN 12765 prior to exposure.
| Adhesive system | Dry shear strength (N/mm²) / WF% | D2 cold-water soak (N/mm²) / WF% | D3 / EN 204 (N/mm²) / WF% |
|---|---|---|---|
| DA-201 (un-crosslinked) | 16.4 ± 1.2 / 85% | 4.3 ± 0.5 / 70% | 2.1 ± 0.3 / 30% |
| DA-201 + 1.5% AlCl₃·6H₂O | 17.8 ± 1.5 / 92% | 5.2 ± 0.6 / 88% | 3.2 ± 0.4 / 65% |
| DA-201 + 4.0% pMDI | 20.6 ± 1.8 / 98% | 8.7 ± 0.7 / 100% | 7.4 ± 0.6 / 95% |
| Plasticized PVAc homopolymer (D2-rated) | 13.2 ± 1.0 / 82% | 2.9 ± 0.4 / 40% | 0.8 ± 0.2 / 5% |
| Non-carboxylated VAE (medium ethylene, 55% solids) | 15.0 ± 1.4 / 84% | 3.6 ± 0.5 / 55% | 1.7 ± 0.3 / 20% |
These results illustrate the specific value of DA-201’s carboxylated functionality in amplifying the crosslinking response with pMDI, a response that is substantially muted in non-functional VAE types. The pMDI-crosslinked variant also meets the D4 requirement for 4-hour boiling-water resistance when the bonding pressure is increased to 1.2 N/mm² and press time is extended to 2 hours, a demanding condition under which the plasticized PVAc and the non-carboxylated VAE both exhibit gross cohesive failure.
In high-volume joinery plants, DA-201 is stored in 1,000‑liter intermediate bulk containers with recirculation loops. A peristaltic pump set to a flow rate of 5–10 L/min and a cycle of 15 minutes every 4 hours prevents skin formation without introducing excessive mechanical shear that could destabilize the dispersion. Accelerated ageing tests at 50 °C for 14 days (simulating approximately 6 months at ambient conditions) indicate a viscosity increase of less than 300 mPa·s, far within the process window defined by gear-driven metering pumps on a Bürkle laminating line. Freeze–thaw stability, however, is a recognized limitation: the product is not classified as freeze–thaw recoverable. Exposure to temperatures below 0 °C results in irreversible coagulation; insulation and trace heating of outdoor storage tanks to 5 °C minimum are mandatory. In facilities where steam-injection hot pressing is used adjacent to adhesive application stations, localized ambient temperatures above 35 °C were recorded to reduce open time by approximately 30%, a shift that must be compensated by dynamic adjustment of the spreader roll speed rather than by addition of humectants, which can compromise water resistance.
In contrast to dextrin-stabilized PVAc adhesives that are often tolerant of aluminum-alloy wetted parts, DA-201, under acidic activation conditions (pH 3.0), can initiate pitting corrosion on uncoated aluminum pumping components within 72 hours of continuous contact. All dosing lines downstream of the accelerator injection point should be manufactured from 316L stainless steel or polypropylene. Published data for this specific configuration is limited to plant-specific failure reports; nevertheless, the replacement of a aluminum gear pump with a magnetically coupled polypropylene pump eliminated particulation issues in one window-frame production line running DA-201 with 2.0% aluminum chloride.