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Anhui Liwei Chemical Co., Limited.

Resyn 2110

    • Product Name: Resyn 2110
    • 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 535535
    Product Name Resyn 2110
    Chemical Type Polyvinyl acetate (PVAc) homopolymer emulsion
    Appearance Milky white liquid
    Solids Content Wt 55 ± 1
    Viscosity At 25c 1200–1800 cP (mPa·s)
    Density At 25c 1.08–1.12 g/cm³
    Ph 4.5–5.5
    Glass Transition Temperature 20°C
    Odor Mild, non-offensive vinyl odor
    Water Solubility Miscible with water; dried film is water-resistant
    Minimum Film Forming Temperature ≈8°C

    As an accredited Resyn 2110 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Resyn 2110 is packaged in 25 kg multi-wall paper sacks with a polyethylene liner, ensuring safe handling and storage.
    Container Loading (20′ FCL) Resyn 2110 is loaded as a 20′ FCL on pallets, with secured bags, proper weight distribution, and bracing for safe transport.
    Shipping Resyn 2110 is a vinyl acetate-ethylene copolymer emulsion, typically non-hazardous and non-regulated for ground, air, or sea transport. Ship in sealed containers to prevent drying or contamination. Avoid freezing; store between 40–90°F. Use standard labeling: “Non-Regulated Material” for safe, compliant shipping documentation.
    Storage Resyn 2110 should be stored in its original, tightly sealed container in a cool, dry area away from direct sunlight and extreme heat. Avoid freezing; ideal storage temperatures are between 40–90°F (4–32°C). Keep containers off the floor, protected from moisture, and use within the manufacturer’s stated shelf life. Stir gently before use.
    Shelf Life Resyn 2110 has a typical shelf life of 12 months when stored in original sealed containers at moderate temperatures, protected from freezing.
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    Certification & Compliance
    More Introduction

    Resyn 2110 is described in supplier technical literature as a polyvinyl alcohol–stabilized polyvinyl acetate homopolymer dispersion supplied for porous-substrate bonding, high-rigidity lamination, and permanent assembly where fast set and non-tacky dried film character are required. The nominal specification window includes solids content of 54–56%, Brookfield RVT viscosity of 1,500–3,500 mPa·s at 25 °C and 20 rpm, and pH of 4.0–5.0. The product exhibits the characteristic high-modulus film of an unplasticized PVAc homopolymer after coalescence. Unlike ethylene-modified vinyl acetate copolymers, Resyn 2110 does not rely on internal olefinic branching for flexibility; the dried adhesive therefore shows higher tensile stiffness and lower low-temperature elongation. These properties are conventionally confirmed by dynamic mechanical analysis per ASTM D7028 or tensile testing per ISO 527-2 on cast films after 7 days of conditioning at 23 °C and 50% RH.

    ParameterTypical valueTest method
    Solids content54–56%ISO 3251
    Brookfield RVT viscosity, 20 rpm, 25 °C1,500–3,500 mPa·sISO 2555
    pH4.0–5.0ISO 976
    Density at 25 °C1.05–1.08 g/cm³ISO 2811-1
    Particle size range1.0–2.0 µmlaser diffraction ISO 13320

    The product designation Resyn 2110 is differentiated from lower-viscosity PVAc grades in the same supplier family by its combination of high solids and moderate shear-thinning flow. It is supplied as a ready-to-use dispersion; mechanical homogenization is not required before application when the container has been stored within the recommended range and the contents have been checked for viscosity and pH after any prolonged standing. Storage in sealed containers at 5–35 °C is specified to prevent freeze-thaw coagulation and excessive thermal hydrolysis. Shelf life in unopened containers is commonly 6 months at 20 °C, after which viscosity and pH must be re-verified before use.

    What Distinguishes a Polyvinyl Alcohol–Stabilized PVAc Homopolymer from VAE and Acrylic Dispersions?

    The primary difference is compositional: Resyn 2110 is a polyvinyl acetate homopolymer, whereas many soft laminating adhesives are vinyl acetate–ethylene copolymers or acrylic emulsion polymers. In the absence of ethylene segments, the film glass transition temperature remains in the polyvinyl acetate homopolymer range, reported in polymer-class differential scanning calorimetry per ASTM D3418 as approximately 28–33 °C. This contributes to higher rigidity, elevated heat resistance, and faster set on porous substrates relative to low-Tg VAE. The trade-off is reduced cold-temperature crack resistance; a Resyn 2110-type film should not be specified for continuous flexing below 5 °C unless comparative ASTM D790 flexural testing indicates acceptable performance for the specific laminate.

    Relative to acrylic dispersions, the homopolymer PVAc is non-tacky after drying and therefore does not function as a pressure-sensitive adhesive. Loop tack values for dried PVAc homopolymer films are typically below 0.5 N/25 mm when measured by FINAT FTM 9, whereas many acrylic PSAs are formulated to exceed 8 N/25 mm. This difference makes Resyn 2110 suitable for permanent, rigid bonds rather than removable or repositionable constructs. Polyvinyl acetate also develops higher cohesive strength on cellulosic substrates than oxidized starch or dextrin adhesives while retaining a similar aqueous cleanup profile before drying.

    PropertyResyn 2110 classVAE dispersionAcrylic pressure-sensitive dispersion
    Polymer backbonePVAc homopolymerVinyl acetate–ethyleneAcrylate ester copolymer
    Tg midpoint by ASTM D341828–33 °C-15–0 °C-50–-20 °C
    Pressure-sensitive tackNoneLowHigh
    Wet tack on paperHighModerateLow
    Dried film elongationLowModerateHigh
    Water resistance classInterior D2VariableVariable

    The water resistance class in the preceding table refers to EN 204 D2 for interior non-structural wood bonds where applicable. D2 is an adhesive bond category for interior use with occasional short-term water exposure but not prolonged water immersion. For applications requiring D3 water-resistant interior bonds, a crosslinkable PVAc or VAE dispersion should be considered, because Resyn 2110 does not exhibit the crosslinked network needed for sustained wet strength.

    Resyn 2110 absorbs ambient moisture after film formation, which can cause slight haze or reduced hardness in humid environments. The film is not classified as waterproof; long-term immersion or high-humidity exposure above 85% RH may produce adhesive softening and partial loss of bond strength. This limitation must be evaluated by water soak tests per ASTM D1151 or EN 204 durability tests before qualifying the product for exterior or high-moisture packaging.

    In package converting, the processing window for Resyn 2110 is governed by coating weight, open time, and nip dwell on the laminator. On a 1,300 mm wide roller coater running corrugated carton face-to-flute at 150–180 m/min, wet coat weights of 18–25 g/m² are typical for polyvinyl acetate homopolymer dispersions of this viscosity range. The adhesive is transferred through a chromium-plated cylinder with a rubber impression roll; if the coating gap is held at 0.10–0.14 mm, a continuous film is deposited without misting. Process instability above 180 m/min is usually caused by inadequate shear recovery rather than lack of tack. The Brookfield RVT viscosity alone does not predict this behavior; high-shear capillary or cone-plate data obtained per ASTM D4287 at 10,000 s⁻¹ are required to establish the shear-thinning index. Published data for this specific configuration is limited, but field trials at the above speed range indicate that board temperature below 18 °C produces starved bonds because the dispersion’s minimum film formation temperature is approached and particle coalescence slows. Pre-warming the web to 25–30 °C and installing an infrared dryer with 60–80 °C surface temperature reduce residual moisture to below 8% before the exit stack.

    When Roller Coater Speed Exceeds 150 m/min and Board Temperature Falls Below 18 °C

    Under this condition, the risk of bond starvation and film splitting increases. The dispersion should not be diluted with water beyond supplier limits without verification of wet tack and foam control. If viscosity reduction is required for spray application, demineralized water can be added in 2% increments; the viscosity response is non-linear, and solids should be maintained above 50% for bonding. Foam generated by high-speed pumping should be controlled with a non-silicone defoamer at 0.1–0.3% based on wet weight, but addition must be verified by ASTM D3601 foam density or laboratory drawdown.

    When board surface temperature falls below 18 °C, coalescence is slowed, leading to a pale, low-strength film. The substrate should be pre-heated or the line speed reduced to keep the adhesive film above the MFFT for the duration of open time. Re-wetting agents should not be added unless specified by the manufacturer, because excess surfactant can reduce final water resistance under TAPPI T 441 Cobb tests. For side-seam bag making, application temperatures of 30–35 °C are commonly used to lower viscosity and improve wet-out on clay-coated stocks, but the adhesive reservoir should not be held above 50 °C for more than 4 h because thermal hydrolysis may shift pH and reduce bond consistency.

    Resyn 2110 must be protected from freezing and stored at 5–35 °C in sealed containers. Repeated freeze-thaw cycles cause irreversible coagulation. The product’s weakly acidic pH of 4.0–5.0 is corrosive to mild steel over extended contact; stainless steel or high-density polyethylene tanks, pump housings, and transfer lines are required. Contact with copper and brass fittings should be avoided because heavy-metal ions can destabilize polyvinyl acetate dispersions.

    Amine-based additives, including ammonia, morpholine, and 2-amino-2-methyl-1-propanol, should not be used to adjust pH above 7.5; alkaline conditions promote ester hydrolysis and viscosity drift. If neutralization is required, small additions of sodium bicarbonate solution can be evaluated, but the resulting colloidal stability must be confirmed by accelerated storage at 40 °C for 7 days per internal stability protocols. FDA 21 CFR 175.105 may apply to indirect food-contact adhesives when the adhesive is separated by a functional barrier; the user is responsible for obtaining confirmation from the supplier for the specific food type and package construction. The product may be assessed under REACH SVHC obligations and EU 2011/65/EU RoHS for electrical and electronic equipment, but the applicability depends on the final article and the presence of any intentionally added restricted substance in the compounded formulation.

    For bookbinding spine gluing, Resyn 2110 provides non-blocking character after drying and sufficient open time for casing-in operations when applied with a wheel or nozzle system. The adhesive is compatible with paper surfaces sized with alkaline alkyl ketene dimer or rosin size, but high concentrations of calcium carbonate filler may reduce wet film anchoring; TAPPI T 441 water absorptiveness should be used to classify the stock before production. The dried film resists heat up to approximately 60 °C under static load, which reduces blocking during bulk book packing in warm warehouses. However, this heat resistance is not equivalent to thermosetting adhesive performance, and bond creep under sustained load should be tested per ASTM D2293 if books are shipped through high-temperature distribution channels.

    Shear Stability, pH Drift, and Borax Compatibility in Continuous Laminating

    Shear stability under pump recirculation is a critical property for Resyn 2110 on automated lamination lines. Polyvinyl alcohol–stabilized PVAc homopolymers generally tolerate moderate shear without coagulum formation, but mechanical shear above 10,000 s⁻¹ in high-pressure homogenizers or narrow-bore transfer lines can reduce particle size distribution and increase viscosity drift. A 100–150 µm in-line filter is recommended before the coating head to remove skins and agglomerates. Pressure drop across the filter should be monitored; a rise greater than 0.5 bar indicates fouling and requires filter replacement.

    pH drift during recirculation may occur as acetic acid is released from partial hydrolysis, particularly if the dispersion is held at 35 °C or above for more than 8 h. The pH should be checked at start and end of each shift with a calibrated electrode. If pH falls below 3.8, the dispersion should not be used without laboratory verification of adhesion and odor. Borax compatibility is relevant when the adhesive is blended with starch or used in remoistenable-tape formulations; addition of borax to polyvinyl alcohol–stabilized PVAc can increase viscosity through crosslinking of the polyvinyl alcohol layer. Where borax is required, it should be added as a dilute solution with slow agitation, and final viscosity must be measured by ISO 2555 before application.

    In paper tube winding, Resyn 2110 can be applied through a doctor roll or grooved applicator at 25–35 g/m². The wet tack must be sufficient to hold spiral plies under winding tension; high solids PVAc homopolymers perform in this role. If the tube is to be cut with high-speed knives, film hardness and low cold flow reduce blade gumming compared with low-Tg adhesive films. The bond should be tested by TAPPI T 835 ring crush or ISO 11093-9 flat crush as final tube response indicators; these are structural paperboard tests rather than adhesion tests but indicate whether the adhesive maintained laminate integrity through the converting operation.