Products

Products

Anhui Liwei Chemical Co., Limited.

Dairen DA-125 VAE Emulsion

    • Product Name: Dairen DA-125 VAE Emulsion
    • Factroy Site: Lingwu, Yinchuan, Ningxia, China
    • Price Inquiry: sales2@liwei-chem.com
    • Manufacturer: Anhui Liwei Chemical Co., Limited.
    • CONTACT NOW
    Specifications
    HS Code 492171
    Appearance Milky white liquid
    Solid Content 55 ± 1 wt%
    Viscosity 4000 ± 2000 cps (Brookfield, 25°C)
    Ph 4.5–6.0
    Glass Transition Temperature -5°C
    Minimum Film Forming Temperature 0°C
    Particle Size Approx. 1 μm
    Density 1.06 g/cm³
    Surface Tension 36 mN/m
    Residual Vinyl Acetate ≤ 1.0 wt%

    As an accredited Dairen DA-125 VAE Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Supplied in 200 kg drums, sealed to prevent drying, with proper labeling for safe handling and storage.
    Container Loading (20′ FCL) Load 20′ FCL with palletized drums/IBCs of Dairen DA-125 VAE Emulsion; secure properly, keep dry, avoid freezing or excessive heat.
    Shipping Dairen DA-125 VAE Emulsion ships in sealed drums or totes, protected from moisture and contamination. Keep upright during transit to prevent leakage. Avoid freezing and excessive heat; store between 5–35°C. Use covered, dry transport with adequate ventilation. Standard non-hazardous chemical handling applies.
    Storage Store Dairen DA-125 VAE Emulsion in tightly sealed, original containers in a cool, dry, well-ventilated area. Avoid direct sunlight, heat sources, and freezing temperatures. Maintain storage conditions between 5°C and 35°C. Keep away from incompatible materials, and use proper rotation to ensure the product is used within its shelf life before separation or degradation occurs.
    Shelf Life Shelf life is typically six months from manufacture when stored sealed, protected from frost, and kept below 30°C.
    Application of Dairen DA-125 VAE Emulsion

    Diluting Dairen DA-125 VAE emulsion to 50% solids content with deionised water and combining it with 3–5 parts of a water-dispersible aliphatic polyisocyanate per hundred parts of wet emulsion produces a two-component structural wood adhesive that cures at ambient temperature and meets the D3 durability classification under DIN EN 204. The polydiene-free backbone of DA-125, exhibiting a glass transition temperature near 0 °C and a minimum film-forming temperature below 5 °C, eliminates the need for coalescing solvents, keeping the formulation compliant with CARB phase 2 and ECH 91/2008 emission limits. The polyisocyanate crosslinks the pendant hydroxyl sites on the partially hydrolysed VAE chain; a pot life of 45–60 minutes at 23 °C is typical before measurable viscosity doubling occurs, mandating static mixer dispensing or dual-stream roller application to avoid gel particles in the adhesive film. In cold-press lamination of beech lamellas for staircase treads and load-bearing finger joints, a wet-film coat weight of 120–150 g/m² applied with a precision roll coater, followed by 0.8–1.2 MPa press pressure for 90–120 minutes and a 7-day post-cure at 20 °C/65% RH, yields tensile shear strengths exceeding 4.0 MPa after 4 days of 20 °C water soak when tested according to EN 205. Formulators must avoid the addition of amines or ammonia beyond 0.1 wt% as buffering agents, because increased pH accelerates deactivation of the isocyanate crosslinker and reduces the crosslink density in the cured film. The finished assembly—solid wood edge-glued panels for interior door stiles—survives three hot-cold cycles at 80 °C/20 °C without delamination, a practical threshold that plant QC departments in Southeast Asian finger-joint export lines regularly validate with DA-125-based systems.

    In flexible packaging lamination, what governs substrate wet-out on corona-treated LDPE?

    A laminating adhesive prepared from 100 parts DA-125, 15–25 parts of a stabilised rosin ester dispersion having a ring-and-ball softening point of 85–95 °C, and 0.3 parts of a polyether siloxane defoamer is coated onto 12 µm polyester or 30 µm low-density polyethylene film at a dry coat weight of 2.5–4.0 g/m² using a 200-line anilox roller gravure station running at 80–120 m/min. DA-125’s surface tension, depressed to approximately 37 mN/m after tackifier addition, permits wetting of corona-treated substrates that maintain a surface energy above 40 dyn/cm; an in-line dyne-pen check is essential because corona decay on LDPE slows lamination speeds below 70 m/min within 48 hours of treatment. The laminator oven temperature profile from 60 °C to 85 °C across three zones dries the waterborne adhesive without skinning, and the hot-nip roll at 70–80 °C with 2–4 bar pneumatic pressure activates the rosin ester for immediate green tack of 0.8–1.2 N/15 mm before 24-hour ambient further crystallisation of the tackifier. Compliance with FDA 21 CFR §175.105 and EU Regulation (EC) No 1935/2004 for indirect food contact is documented through migration testing per EN 1186-1; DA-125 grades manufactured without alkylphenol ethoxylate surfactants meet the Nordic Swan Ecolabel restriction. The terminal package—snack food pillow pouches with a PET/DA-125/LDPE structure—achieves a 180° peel strength of 2.5–3.5 N/15 mm on ASTM D903 with film tear propagation as the failure mode, an outcome that confirms the adhesive film remains elastomeric enough to survive drop tests at 4 °C without rupturing the composite.

    In nonwoven medical drapes and surgical gowns constructed from parallel-laid viscose-polyester webs of 30–60 g/m² basis weight, DA-125 is applied as a saturation binder via a two-roll padding mangle set to a nip pressure of 0.3–0.5 MPa and a wet pickup of 120–160%. A binder bath composed of 100 parts DA-125, 2–5 parts of a low-formaldehyde melamine-formaldehyde crosslinker, 0.5 parts of an ammonium chloride latent acid catalyst, and sufficient deionised water to achieve 20% solids provides a shelf-stable impregnant that penetrates the fibre interstices uniformly when the web rewet speed is kept below 15 m/min. The saturated web enters a three-zone stenter oven where temperature ramps from 100 °C to 140 °C to 150 °C; dwell times of 2–4 minutes allow water removal and condensation of the methylol groups onto cellulosic hydroxyls without embrittling the polyester fraction. Finished fabric tensile strength, measured in the machine direction per ISO 9073-3, registers 35–50 N/5 cm, while the hydrostatic head after five wash cycles at 95 °C according to EN 13795 remains above 30 cm H₂O, demonstrating the crosslinked DA-125 film’s resistance to delamination in hospital laundering. Because the formulation avoids vinyl chloride copolymers, incineration of the single-use product does not generate dioxin precursors; the binder system is recognised under DIN CERTCO scheme for compostable nonwoven components when the viscose content exceeds 90%.

    DA-125 as the sole binder in exterior masonry paints without coalescent addition

    A high-elongation elastomeric wall coating formulated with 35–40 wt% DA-125 on a total wet formula basis, 25–30 wt% of a 2 µm median particle size calcium carbonate filler, 10–15 wt% of titanium dioxide pigment (ISO 591-1 classified as R2), 0.5 wt% of a modified cellulose ether thickener targeting a Stormer viscosity of 90–110 KU, and 0.2 wt% of a carbendazim-free in-can preservative is processed in a high-speed disperser with a Cowles blade diameter 1/3 the tank diameter at a tip speed of 18–22 m/s for 15–20 minutes, followed by a lower shear let-down to avoid foam entrapment. The ambient film formation of DA-125 at a PVC (pigment volume concentration) up to 35% permits elongation at break greater than 300% on ASTM D6083 Type 1 without the addition of volatile coalescents, enabling the paint to comply with EU Directive 2004/42/EC subcategory A/c limits for exterior mineral substrates. Accelerated weathering per ISO 16474-2 for 1000 hours of xenon-arc exposure with 102 min light/18 min water spray cycles produces ΔE values below 3.0 when assessed spectrophotometrically, while a 24-hour water uptake by capillary action per EN 1062-3 remains under 0.1 kg/(m²·h⁰·⁵), attributable to the dense polymer film that resists surfactant exudation after curing. Plant-applied sprayers using airless equipment with 0.021–0.025 inch tip orifices and 150 bar fluid pressure achieve a uniform dry film thickness of 150–250 µm on roughcast concrete in a single coat, a productivity factor that commercial applicators in Baltic renovation projects rely on when bridging settlement cracks up to 0.5 mm.

    For heavyweight (500 g/m²) prepasted wallcoverings, DA-125 is diluted to 35% solids and applied via a Meyer rod coater to the backside at 8–10 g/m² dry add-on; the film’s ability to regenerate adhesion when re-moistened with a household sponge eliminates separate adhesive buckets on site and meets BS 3046 adhesion requirements when tested on gypsum plasterboard.

    When DA-125 replaces EVA hot melt in round-backed bookbinding spines

    A cold emulsion adhesive formulated from 100 parts DA-125, 2 parts of an aziridine crosslinker that is active below 40 °C, and 0.2 parts of a wetting agent based on dioctyl sulfosuccinate is applied through a nozzle extruder to the gathered signatures at a bead diameter of 1.5–2.0 mm immediately before three-knife trimming. Unlike hot melt polyurethane or EVA, the DA-125 system requires no pre-melting and permits restarts on a Kolbus binder without purging, as the adhesive remains liquid at ambient temperature for 8 hours. The aziridine crosslinker raises the glass transition of the cured film to approximately 25 °C after 48 hours conditioning at 25 °C/50% RH, providing page-pull values of 5.0–7.0 N/cm and a flexural crack resistance that survives 500 open-flat cycles on ISO 11897 without hinge splitting. Endpapers adhered with the same formulation exhibit 0% fibre tear after 72 hours exposure to 40 °C and 90% RH, satisfying the archival durability demands of hardcover publishers who specify alkaline paper and synthetic adhesives. The absence of volatile diisocyanates during application lowers the workplace air concentration of total isocyanates to below 5 ppb, a metric that simplifies compliance with EU-OSHA Directive 98/24/EC.

    Carpet precoat filler-loading limits and doctored-foam stability

    In tufted carpet manufacturing, a precoat compound is prepared by mixing 100 parts DA-125 with 150–200 parts of 200-mesh calcium carbonate filler in a high-shear Cowles disperser, adding 2 parts of a sodium lauryl sulfate frothing agent, and mechanically whipping to a froth density of 0.4–0.6 g/cm³ with a Hobart-type planetary mixer before doctoring onto the secondary backing at 400–600 g/m² wet weight. DA-125’s colloidal stabilisation system tolerates filler loading up to 60% by dry weight of the total compound without catastrophic viscosity breakdown; Brookfield RV #6 spindle readings at 20 rpm remain between 30 000 and 50 000 mPa·s after 24 hours, sufficient to hold the tuft bundle in place before oven gelation. Foam collapse during the 90-second transit to the infrared pre-gel zone is suppressed by maintaining a bath temperature below 30 °C and avoiding polyvalent metal salt catalysts that destabilise the anionic emulsifier. After curing in a three-pass oven at 120–150 °C with 2-minute dwell per pass, tuft bind strength exceeds 30 N per loop on ISO 4919, while the use of DA-125 without APEO surfactants aligns with the GUT (Gemeinschaft umweltfreundlicher Teppichboden) label for low-emission textile floor coverings.

    Free Quote

    Competitive Dairen DA-125 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

    Inquiry

    Get Free Quote of Anhui Liwei Chemical Co., Limited.

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction
    A 55 ± 1 % solids carboxylated vinyl acetate–ethylene copolymer emulsion, Dairen DA-125 delivers a formaldehyde concentration consistently below 1 ppm (EN 717‑1:2004) and a low minimum film‑formation temperature of 0 °C (ISO 2115), eliminating the need for volatile coalescing solvents in interior architectural coatings and adhesives applied at substrate temperatures ≥10 °C. The emulsion is stabilized with a polyvinyl‑alcohol protective colloid and exhibits a milky‑white liquid appearance with a specific gravity of 1.07 g/cm³ at 25 °C. Residual vinyl acetate monomer content is maintained below 0.1 % by gas chromatography (ISO 13741‑1), and the product is free of alkylphenol ethoxylates. Continuous‑stirred‑tank reactor manufacturing under Dairen’s proprietary monomer‑feed control limits batch‑to‑batch solids drift to ±0.5 %, ensuring reproducible thickening response with cellulosic and associative rheology modifiers across tank‑farm transfers and tint‑dispensing operations. Typical physical properties of DA-125 measured under quality‑control protocols are listed below.
    Typical physical properties of Dairen DA‑125 VAE emulsion
    PropertyValueTest method
    Solids content55 ± 1 %ISO 3251 (150 °C, 30 min)
    pH4.5 – 5.5ISO 976
    Brookfield viscosity, 25 °C800 – 2 000 mPa·s (spindle 3, 20 rpm)ISO 2555
    Mooney viscosity, ML 1+4, 100 °CNot applicable (emulsion)
    Particle size (d50, laser diffraction)0.35 – 0.50 µmISO 13320 (Mastersizer 3000)
    Minimum film‑formation temperature0 °CISO 2115 (MFFT‑bar instrument)
    Glass transition temperature (DSC midpoint)5 °CISO 11357‑2 (20 K/min)
    Formaldehyde content<1 ppmEN 717‑1:2004
    Density at 25 °C1.07 g/cm³ISO 2811‑2 (pyknometer)
    When formulating for low‑odour interior paints under Green Label or Blue Angel criteria, the low‑MFFT profile of DA‑125 permits crack‑free film formation at 10 °C and 55 % RH without external plasticizer addition, whereas conventional vinyl acetate‑ethylene grades with MFFT above 12 °C demand coalescent loads around 2–4 % on binder solids to avoid mud‑cracking. Coalescent‑free formulations around 75 % PVC and 45 % volume solids can be produced on a pilot‑scale Cowles high‑speed disperser (tip speed 18 m/s) with a letdown step that keeps emulsion temperature below 35 °C to prevent thermally induced pre‑coalescence. Sag resistance (ASTM D4400) at wet film thicknesses up to 400 µm is maintained when the mid‑shear viscosity is built with a combination of hydroxyethyl cellulose (HEC, 0.3–0.5 % on total formula) and a non‑associative urethane thickener (0.1 % active), yielding a Stormer viscosity of 95–105 KU (ASTM D562) and an ICI cone‑and‑plate viscosity of 1.2–1.5 P (ISO 2884). In contrast, an all‑acrylic latex of similar Tg (10 °C) often requires coalescent up to 3 % and builds a different low‑shear network via HASE‑type thickeners, requiring rebalancing of dispersant demand to avoid in‑can syneresis. What differentiates DA-125 from conventional vinyl acetate homopolymer dispersions is the ethylene‑derived internal plasticization, which depresses the glass transition without the migratory potential of external esters. The homopolymer poly(vinyl acetate) homopolymer exhibits a Tg near 30 °C and an MFFT exceeding 18 °C, necessitating 8–12 % dibutyl phthalate or benzoate coalescent to achieve film integrity at 20 °C. DA‑125 reduces volatile organic compound emission to <1 g/L (ASTM D6886) in the wet state, fully meeting the EU Directive 2004/42/CE, Phase II (cat A/a) limit of 30 g/L for interior matt paints with zero‑VOC tint bases. Further, the carboxylate functionality built into the polymer backbone of DA‑125 promotes substrate‑anchoring on alkaline mineral surfaces. Wet‑adhesion testing over cured alkyd‑primed gypsum board (ASTM D3359, Method B, cross‑hatch after 30‑minute water immersion) routinely yields 4B to 5B ratings, superior to carboxyl‑free VAE grades that drop to 3B under identical conditions. Adhesive applications exploit the rheological tolerance of DA‑125 in high‑shear roller‑coater lines for paper‑to‑plastic lamination. A production‑scale roller coater (Nordmeccanica Super Simplex, 180 m/min line speed, gravure roll 40 LPI) applying DA‑125 modified with 0.8 % fumed silica shows no ribbing instability or misting at nip loads up to 150 N/cm. The wet‑on‑wet laminating bond strength to corona‑treated polypropylene film (DIN EN 1464, 180° peel after 24‑hour conditioning at 23 °C/50 % RH) reaches 3.2 N/15 mm, equaling that of solvent‑based polyurethane laminating adhesives while reducing solvent‑related explosion hazards. The low‑pH nature of the latex (pH 4.5–5.5) requires, however, that caustic‑sensitive pigment slurries such as indanthrone blue be pre‑wetted in a weakly basic mill base; direct addition of the pigment powder to a DA‑125‑based letdown can cause shock coagulation and a spike in grit >150 µm (filter retention per ISO 4576). Compliance Profile — Formaldehyde Abatement and VOC Credit Eligibility highlights the product’s fit within multiple eco‑label frameworks. DA‑125 meets the “formaldehyde‑free” criterion (≤1 ppm) of the German AgBB scheme and the French AFSSET protocol for indoor air quality. In a 1 m³ emission test chamber (ISO 16000‑9), a single‑coat paint of 85 % PVC containing DA‑125 emitted formaldehyde at <3 µg/m³ after 3 days, far below the 24 µg/m³ AgBB threshold. The emulsion carries a REACH registration number compliant with Annex V of Regulation (EC) No 1907/2006 and is free of substances listed in the Candidate List of SVHCs above 0.1 % w/w. Its European Waste Catalogue code is 08 01 12 (waste from MFSU of water‑based paints). In the Chinese GB 18582‑2020 mandatory standard for architectural interior wall coatings, formaldehyde emission from a DA‑125‑containing finish is quantifiable at <5 mg/kg, well under the 30 mg/kg ceiling, allowing access to “Children’s Room Paint” certification tiers.
    Comparison of DA‑125 with a higher‑Tg VAE grade and a common interior styrene‑acrylic binder
    ParameterDA‑125Dairen DA‑101 (VAE, Tg 12 °C)Typical styrene‑acrylic (Tg 20 °C)Test method
    Solids, %555550ISO 3251
    MFFT, °C01218ISO 2115
    Tg (DSC), °C51220ISO 11357‑2
    Coalescent need for crack‑free film at 10 °C0 %3 % Texanol on solids5 % Texanol on solidsVisual, 100 µm knife film
    Tensile strength (dry, 23 °C), MPa4.26.89.5ASTM D638, Type IV, 200 mm/min
    Elongation at break (dry), %650480310ASTM D638
    Water uptake (24‑h immersion), %18148ISO 62, film 0.3 mm thickness
    Wet adhesion to aged alkyd (cross‑hatch, 30‑min soak)4B2B1BASTM D3359‑B
    Formaldehyde, ppm<1<5<1EN 717‑1