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Anhui Liwei Chemical Co., Limited.

CW-705 PVAc Emulsion

    • Product Name: CW-705 PVAc 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 384608
    Appearance milky white liquid
    Solid Content Percent 55 ± 1
    Viscosity Mpa S 8000 - 12000
    Ph 4.5 - 6.0
    Density G Cm3 1.05 - 1.10
    Particle Size Um 0.5 - 2.0
    Glass Transition Temperature C 28 - 32
    Minimum Film Forming Temperature C 15
    Film Appearance transparent and flexible
    Tensile Strength Mpa > 5.0
    Elongation At Break Percent 300 - 500
    Open Time Minutes 10 - 20
    Water Resistance Rating moderate

    As an accredited CW-705 PVAc Emulsion factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing CW-705 PVAc Emulsion is packaged in 20 kg pails, 200 kg drums, or 1,000 kg IBC containers, securely sealed.
    Container Loading (20′ FCL) Load 20′ FCL with CW-705 PVAc Emulsion in drums/IBCs, secure tightly, protect from freezing, and avoid contamination.
    Shipping CW-705 PVAc Emulsion ships in sealed drums or totes via ground freight in dry, well-ventilated conditions. Protect from freezing and excessive heat, keeping containers upright and out of direct sunlight. Use appropriate lifting equipment and secure loads properly. Generally not regulated as dangerous goods, but always follow the Safety Data Sheet.
    Storage Store CW-705 PVAc Emulsion in its original, tightly sealed container in a cool, dry, well-ventilated area. Avoid direct sunlight, excessive heat, and freezing; recommended storage temperature is 5–35°C. Keep away from oxidizing agents and moisture. Stir gently before use if separation occurs, and use within the manufacturer’s shelf life.
    Shelf Life Shelf life is typically 12 months from manufacture when stored sealed, avoiding freezing, between 5–35°C.
    Application of CW-705 PVAc Emulsion

    In spiral-wound core lamination and multiwall sack side-seam gluing, the selection of CW-705 is governed by the competing requirements of fast wet tack and low moisture addition to the paper web. The emulsion is adjusted with demineralised water to a Brookfield RVT viscosity of 1800–2500 mPa·s at 25°C, spindle 4, 20 rpm. At line speeds between 80 m/min and 200 m/min, a slot nozzle deposits 4–8 g/m² dry adhesive onto the ply interface. Nip pressure is held at 0.2–0.4 N/mm², giving a compression belt contact time of 1.0–2.5 s. Insufficient wet tack within this contact interval causes seam opening on the mandrel, especially with springback-prone recycled coreboard. A hot-air tunnel at 50–70°C removes edge moisture before rewinding; residual moisture above 8% in the outer plies promotes blocking in the finished roll. Filtration through 100 μm mesh screens is required before the delivery head. Alkaline sizing with surface pH above 8.5 may retard coalescence, while acidic kraft with surface pH below 4.5 accelerates viscosity drift in the return tank. Because the emulsion is anionically stabilised, it must not be combined with cationic wet-strength agents or aluminium sulfate in the same mixing tank.

    Compliance for dry food packaging side seams is evaluated under FDA 21 CFR 175.105 and EC 1935/2004. The dried film functions behind a paper or board functional barrier. Organic tin catalysts are not used in the polymerisation of this grade; APEO and phthalate plasticisers should not be added. The end products include spiral-wound cores for BOPP film, multiwall sacks for non-greasy powders, and folding carton side seams. Machine operators should monitor viscosity every 4 h with an inline cup measurement correlated to the Brookfield value; an upward drift greater than 300 mPa·s indicates fibre contamination, low emulsion temperature, or return-tank coagulum formation.

    What Limits Open Assembly Time on Flat-Pressed Beech When CW-705 Is Used?

    Flat-pressed lamella bonding with CW-705 requires the adhesive film to wet fibre without drying before press closure. Open assembly time on beech at 20°C and 60% RH is commonly 8–15 min. At workshop temperatures above 35°C or under forced air, open time falls below 5 min. Solids content is measured by ISO 3251:2019 at 105°C for 3 h; batch values outside 50–55% alter spread rate and press time. The film is applied with a single-sided roll coater at 120–180 g/m² wet. Lower spread rates starve the joint in gap-filling furniture panels; higher spread rates extend clamp time and increase moisture-related dimensional movement. Wood moisture should be 8–12%, and the emulsion temperature should not fall below 15°C to avoid excessive viscosity.

    Press pressure is set at 0.5–1.0 N/mm² for cold pressing at 20°C. Clamp time under these conditions is 20–40 min for softwood and 30–60 min for beech. Heated platen pressing at 55–70°C reduces clamp time to 2–5 min. Radio-frequency curing on continuous automatic lines shortens holding time at the joint to 90–180 s for 30 mm lamella, but moisture distribution must be uniform; localised dry zones cause thermal runaway because PVAc does not absorb RF energy as efficiently as water. Dry shear strength after conditioning for 7 days at 23°C and 50% RH is evaluated to ASTM D905-08. D3 wet strength is assessed under EN 204 after the specified cold-water immersion sequence; the pass value is stated in EN 204 clause 5. The emulsion is not rated D4 and should not be used alone in exterior joinery.

    End products include edge-glued pine panels, finger-jointed window frame fillers, and veneer layup on cabinet doors. Batch-to-batch viscosity variation must be tracked with a Brookfield RVT spindle 5 at 20 rpm, 25°C. Viscosity outside 2000–4000 mPa·s may require changes in roll-coater gap or press cycle. Because the polymer is thermoplastic, creep resistance is lower than crosslinked PVAc; the component should not be exposed to continuous load above 50°C in service.

    On case-making lines running 20–40 cases/min with hot-melt side glue, CW-705 is used in hinge and board-to-cloth lamination rather than spine gluing. The adhesive is applied by a disc roller at 150–250 g/m² on board, with the emulsion warmed to 18–25°C. Open time on 145 g/m² book cloth must remain above 20 s at 50% RH. Nip pressure is 0.3–0.5 N/mm² for 30–60 s. The water-based system adds moisture to the cover board; a drying tunnel at 40–55°C for 5–10 min is required to prevent cover curl and hinge warpage. Adhesive pH between 4.0 and 6.0 is compatible with most case-making board; alkaline board with surface pH above 8.0 may delay wet set and cause cloth staining through paper permeability.

    The main failure mode observed on case-making lines is low-temperature film formation. CW-705 should not be applied below 10°C unless the board is preheated to 20°C and the adhesive is stored at 15–25°C. Viscosity for disc application is adjusted to 2500–4000 mPa·s; dilution with more than 5% water can cause strike-through on uncoated cloth. End products include hardcover case books, presentation folders, magnetic closure boxes, and tray covers. A synthetic thickener should not be used unless the neutraliser is pH-adjusted, because alkali-swellable thickeners may shift the emulsion pH above 6.0 and reduce wet tack. The emulsion is not compatible with cationic antistatic sprays; a nonionic polyether treatment should be applied after the drying tunnel if static control is required.

    When Portland Cement Is Modified with a 10% Latex Solids Addition

    In cementitious patching and repair mortars, CW-705 is added to the mixing water as an anionic polymer dispersion. The polymer-cement ratio is set between 0.05 and 0.20 on a dry solids basis; a starting point of 0.10 is used for interior non-structural patches. The emulsion must be added after the cement-water paste has formed to avoid flocculation from high pH. A two-stage mixing sequence at 300–500 rpm with a paddle mixer is used: first cement and aggregate are mixed with 80% of the water for 90 s, then the emulsion mixed with the remaining water is added and mixed for 120 s. Final slump is adjusted with a water reducer rather than additional water; excess water raises the water-cement ratio and negates compressive strength. Operators should filter the diluted emulsion through a 250 μm screen before adding it to the mix to remove any skin formed during storage.

    Polymer-cement ratio (dry)0.100.05–0.20
    Mixing water pH6.56.0–8.0
    Paddle speed400 rpm300–500 rpm
    Final slump140 mm120–160 mm

    Pull-off adhesion is measured to EN 1015-12 after 28 days. The film contributes flexibility and reduces dusting at the feather edge. However, uncrosslinked PVAc re-emulsifies under prolonged wet service; the product is therefore limited to interior patch mortars, skim coats, and gypsum board joint fillers not exposed to immersion. For exterior or below-grade exposure, the formulation must include a hydrophobic or crosslinked copolymer. Compliance for cosmetic patching may reference EN 998-1 for general-purpose mortar; structural repair under EN 1504-3 is not claimed. The emulsion is not compatible with water hardeners containing multivalent metal salts; pre-testing with the specific cement batch is required because high alkali content can destabilise the dispersion before film formation.

    Air-Laid Dispersible Nonwoven Binding at 140°C Without Formaldehyde

    CW-705 is foam-applied to air-laid or carded webs where the finished fabric must lose tensile strength in water. Binder add-on is controlled between 10% and 18% dry weight on fibre. The emulsion is diluted with demineralised water to 10–15% solids and delivered through a foam generator; foam density is held near 80–120 g/L to avoid strike-through. Drying and film formation take place in a through-air oven at 130–150°C for 10–30 s depending on web weight. Since the cure is coalescence rather than chemical crosslinking, the binder remains water-sensitive; this is intended for dispersible nonwoven applications. Do not add cationic antistatic agents to the binder; the positive charge causes localised coagulum. If antistatic treatment is required, a nonionic polyether may be applied after the drying tunnel.

    Dry tensile strength measured by ISO 9073-3 is used as a line-control parameter, but the principal qualification is dispersibility after water immersion. EDANA GD 4 or an equivalent slosh-box procedure is used to measure wet strength retention. Commercial dispersible webs with this binder class typically fall below 30% wet strength retention within 5 min of agitation, though published data for CW-705 in this exact configuration is limited. A slosh-box calibration should be performed before line qualification. The absence of formaldehyde and APEO is required by REACH Annex XVII and voluntary wet-wipe labels; the homopolymer PVAc backbone generally complies when no post-added biocide conflicts with the end-use certification.

    End products include dispersible hard-surface wipes, flushable packaging pads, and vacuum cleaner bag intermediary layers. Viscosity in the foam line is maintained at 400–900 mPa·s; foam generators with coarse filter stacks require a defoamer addition below 0.1% to prevent cell collapse on the web. The use of a wetting agent is substrate-dependent; an anionic sulfosuccinate at 0.2–0.5% on emulsion solids improves distribution on hydrophobic synthetic fibre, but the same additive can reduce water resistance of the dried film. Immersion service longer than 5 min exceeds the intended boundary for uncrosslinked CW-705 film.

    Nip Pressure Above 0.4 N/mm² Is Required Before Paper Adheres to HDF

    The emulsion is metered through a three-roller applicator at 60–100 g/m² wet onto the reverse side of 70–120 g/m² printed paper. The HDF panel is pre-sanded with 180–240 grit and conditioned to 8–10% moisture. Nip pressure is set at 0.4–0.8 N/mm²; line speed is limited to 20–40 m/min to allow the water to wet the paper without causing surface breaks. After lamination, panels are stacked cold with interleaving paper and dried under forced air for 24–48 h before trimming. Edge curl is measured by warpage across a 600 mm diagonal after conditioning at 23°C and 50% RH; acceptable flatness for cabinet production is ≤ 1.0 mm. The adhesive must be filtered through 100 μm mesh before the coating head to prevent anilox or roller staining.

    Adhesion is evaluated as 180° peel on a tensile tester with a crosshead speed of 100 mm/min; typical paper-to-MDF with PVAc homopolymer systems fails in paper fibre or MDF subsurface at 2–4 N/mm peel force, but laboratory correlation for CW-705 on the specific HDF grade is required before a warranty limit is set. The bond is moisture-sensitive at high humidity; indoor furniture panels should not be exposed to continuous RH above 85% unless the cut edges are sealed with a melamine edgeband. End products include laminated cabinet backs, drawer bottoms, and flat-pack furniture panels. The emulsion is not suitable for continuous exterior exposure or for direct contact with oiled surfaces commonly found on decorative laminates.

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    Certification & Compliance
    More Introduction
    CW-705 PVAc emulsion is a waterborne polyvinyl acetate homopolymer dispersion supplied for bonding porous, absorbent substrates such as wood, paper, corrugated board, and cellulosic laminates. The emulsion polymer is produced by free-radical polymerisation of vinyl acetate monomer in the presence of a polyvinyl alcohol protective colloid; the resulting dispersion is white to off-white and remains water-thinnable before drying. Representative quality-control values for CW-705 include a non-volatile solids content of 50 ± 2 % by mass when tested at 105 °C for 2 h under ISO 3251:2019, a Brookfield apparent viscosity of 9 000–18 000 mPa·s at 20 rpm and 25 °C using spindle 6 per ISO 2555:2018, and a pH of 3.0–5.0 per ISO 976:2013. Density is 1.07–1.10 g/cm³ at 20 °C per ISO 2811-1:2016. These values are lot-dependent and do not replace a certificate of analysis for final machine validation. CW-705 is used primarily for interior furniture assembly, paper lamination, and packaging adhesive lines where high wet tack and short compression time are required.

    How does CW-705 differ from lower-solids D1 PVAc and ethylene-vinyl acetate dispersions?

    Under EN 204:2016, non-structural thermoplastic wood adhesives are assigned to durability classes D1, D2, D3, or D4 according to bonded-joint resistance to water immersion and temperature cycles. CW-705 is classified as a D2-type interior emulsion; D3 and D4 water-resistance claims are not supported by published supplier data for this product. A D1-grade homopolymer of lower solids content forms a weaker fibre-tearing bond and requires longer press time, whereas CW-705 develops fibre-tearing adhesion within 15–20 min at 23 °C on absorbent wood. Compared with an ethylene-vinyl acetate dispersion of similar solids, CW-705 forms a harder dry film and shows better static creep resistance on beech, but lower elongation at break and poor adhesion to non-porous polymer films. The absence of ethylene comonomer limits low-temperature flexibility; CW-705 is not suitable for bonded joints that must flex below 5 °C. In rigid wood-to-wood joints, CW-705 also has a sharper increase in dry shear strength during the first 24 h than equivalent-solids EVA dispersions, but at the cost of a higher modulus and more brittle failure in peel geometry. Where water-resistant glue lines are specified, a D3-grade EVA or modified PVAc should be used.
    ParameterCW-705 PVAcReference D2 homopolymer PVAcEVA dispersion
    Non-volatile solids, % by mass (ISO 3251:2019)50 ± 248–5245–55
    Viscosity at 25 °C, 20 rpm, mPa·s (ISO 2555:2018)9 000–18 0008 000–20 0002 000–8 000
    Minimum film formation temperature, °C (ISO 2115:1996)5–102–80–5
    Dry film characterRigid, high modulusRigidFlexible
    Water resistance under EN 204:2016D2D2D2/D3 depending grade
    Adhesion to corona-treated polypropylene filmPoorPoorModerate
    On a 900 mm wide roller-coater line operating at 35–45 m/min, CW-705 is applied to fluted paper at a coating weight of 18–25 g/m² using a chrome-plated gravure roller with cell depth of 70–90 µm. The adhesive transfers uniformly at 23 °C and 50 % RH; open time on unprimed 0.3 mm corrugated kraft is 8–12 s. Nip compaction at 1.5–2.5 bar produces fibre-tearing failure within 15 min when tested by a hand tear panel. A processing conflict occurs when line speed falls below 20 m/min: the exposed wet film skins over before the second substrate reaches the nip, producing dry-bond defects that are visible as unbonded streaks after slitting. Below 12 m/min, the addition of 1–2 % water by weight can extend open time, but dilution also lowers final shear strength. Above 60 m/min, foam entrainment and centrifugal slinging increase, requiring a silicone-free defoamer at 0.1–0.2 % by weight and a closed coater-pan cover. At application temperatures below 15 °C, the viscosity of CW-705 increases by a factor of 1.8–2.2 relative to 25 °C; this can overload gear pumps calibrated for lower-viscosity adhesives. Heated tracing of feed lines to 25–30 °C is recommended for winter production, but local heating above 40 °C should be avoided because it accelerates colloidal destabilisation and can form skin in the return line. At 35 °C, open time decreases to 5–8 s; therefore, bonders should reduce open assembly time proportionally. The pH of 3.0–5.0 is mildly acidic; contact with carbon steel storage vessels for more than 24 h can cause flash rust that discolours the adhesive and destabilises the emulsion. Stainless steel 316L, HDPE, or PTFE-wetted parts are used for long-term contact.

    When CW-705 is applied through air-assisted spray systems, deposition and rheology parameters require verification

    CW-705 can be sprayed without water addition if the nozzle is sized for its viscosity. At 25 °C, the product exhibits pseudoplastic flow; apparent viscosity falls from 12 000 mPa·s at 20 rpm to 6 500 mPa·s at 100 rpm under ISO 2555:2018 measurement geometry. Air-assisted spray systems require a nozzle orifice of at least 1.8 mm and atomising air pressure of 1.0–2.0 bar. For pressure-pot supply, fluid pressure of 0.5–1.0 bar prevents shear-induced coagulation in the pump. Water thinning should not exceed 2 % by weight; higher dilution lowers wet tack and can destabilise the emulsion. Deposition uniformity on vertical cabinet panels should be checked with a wet-film comb because sagging occurs at wet-film thickness above 200 µm. When spraying is interrupted for more than 10 min, the nozzle should be flushed with ambient water to prevent dried polymer skin from blocking the orifice. Mixing must avoid high-shear blades. A low-shear anchor agitator at 30–60 rpm is sufficient; faster agitation or Cowles dispersers entrain air and produce microfoam, which lowers wet film density and can create pinholes on paper lamination. If foam appears, the product should be allowed to stand for 12 h before machine start; silicone-free defoamer addition above 0.3 % by weight can cause fish-eye defects. For adhesive recirculation loops, diaphragm pumps with double stroke are used instead of centrifugal pumps to reduce shear history. Film formation is controlled by the minimum film formation temperature, which for CW-705 is 5–10 °C per ISO 2115:1996. The practical minimum substrate temperature for a continuous film is 8 °C; below that threshold, discrete emulsion particles remain instead of coalescing, and the dried bond appears white and fails by interfacial delamination under hand stress. A forced-drying oven must maintain the substrate surface at 10–25 °C and relative humidity below 70 % until the film clears. At 23 °C and 50 % RH, open time is 8–12 s on corrugated kraft, and closed assembly time is 30–45 s at 1.5 bar pressure. Full bond strength development requires 24 h at 23 °C; initial fibre-tearing adhesion is typically achieved within 15–20 min. If the substrate moisture content exceeds 12 % by dry mass, pre-drying is required because interfacial water saturation retards coalescence and reduces final shear strength.
    PropertyTest methodRepresentative value
    Non-volatile solids contentISO 3251:201950 ± 2 % by mass
    Apparent viscosity at 20 rpm, 25 °CISO 2555:20189 000–18 000 mPa·s
    pHISO 976:20133.0–5.0
    Density at 20 °CISO 2811-1:20161.07–1.10 g/cm³
    Minimum film formation temperatureISO 2115:19965–10 °C
    Average particle sizeISO 22412:20170.5–1.5 µm
    Residual vinyl acetate monomerHeadspace gas chromatography≤0.5 % by mass
    Storage stability in sealed HDPE containers at 5–35 °CSupplier protocol6–12 months

    Regulatory acceptance under food-contact and toy safety directives

    CW-705 may be used in packaging applications that require selected food-contact status. Because regulatory status is lot-specific and depends on raw material sourcing, the current supplier statement should be obtained before use. For non-food packaging, the product is assessed against EU REACH and RoHS 2011/65/EU as amended; the formulation does not contain intentionally added lead, cadmium, mercury, hexavalent chromium, PBB, or PBDE above the maximum concentration values. For toy assembly, migration of elements and oral-contact suitability are evaluated under EN 71-3:2019+A1:2021 and EN 71-9:2005+A1:2007 where applicable. For food packaging adhesives, compliance with FDA 21 CFR 175.105 may be required; published documentation for CW-705 should be confirmed with the supplier. Volatile organic compound content for water-based adhesives is below the relevant EU 2004/42/EC limit category where declared. Batch-to-batch viscosity variation is a known bottleneck on high-speed metering pumps. CW-705 is stabilised to retain viscosity within ± 2 000 mPa·s during 6-month storage at 20 °C in sealed HDPE totes. At 40 °C, heat-ageing for 28 days can increase viscosity by 10–20 %; this shift is partially reversible with gentle agitation but may require a viscosity set-point adjustment on metering pumps. Freeze–thaw stability is limited: exposure to 0 °C for more than 24 h can produce irreversible grit formation. The product should be stored at 5–35 °C and protected from direct sunlight. During high-shear circulation, rotary lobe pumps are preferred over gear pumps to limit mechanical shear and microfloc formation. Microbiological spoilage is controlled by the acidic pH and preservative package, but storage in open containers should not exceed 7 days at workshop humidity.

    Wet tack and creep resistance differences are measurable in starch-modified wood glues

    When blended with starch-modified wood adhesives, CW-705 increases initial wet tack but reduces open time. A blend containing 20 wt% CW-705 and 80 wt% starch adhesive exhibits fibre-tearing adhesion within 10 min on corrugated board, compared with 30 min for the starch adhesive alone. The blend also shows lower viscosity stability after 4 h, because the starch fraction continues to hydrate; therefore, blend pot life should be limited to 4–6 h. This blend is useful on manual assembly benches where early handling strength is required. Unlike two-component PVAc systems catalysed with aluminium chloride or formalin-based crosslinkers, CW-705 is a single-part emulsion and does not require a separate hardener at the point of use. The absence of a reactive crosslinker simplifies pot life and cleanup but caps its water resistance at D2. Addition of a crosslinker to CW-705 is not recommended because the stabilisation system is not buffered for the pH drop that accompanies aluminium chloride addition; coagulation can occur before the adhesive reaches the application head. In edge-banding and profile wrapping lines with rapid hot-air activation, CW-705 can be applied as a pre-applied adhesive if the line includes a drying tunnel at 60–80 °C and radio-frequency or hot-air reactivation before pressure rolls. The dry film should be reactivated within 72 h of application; longer storage at 20 °C and 65 % RH may reduce tack because of progressive polymer film densification. Application weight on 0.4 mm PVC edge banding is 30–50 g/m²; however, adhesion to unprimed PVC remains inferior to that of PUR hot-melt systems. For high-speed lines above 25 m/min, the reactivation zone must maintain a surface temperature of 80–90 °C; below 70 °C, incomplete film softening produces poor squeeze-out and edge lift within 48 h. Published data for CW-705 in this specific profile-wrapping configuration are limited; line qualification on the actual substrate is required.