| HS Code | 398607 |
| Chemical Name | Polyvinyl Alcohol |
| Cas Number | 9002-89-5 |
| Molecular Formula | (C2H4O)n |
| Appearance | White to off-white granular powder |
| Solubility | Soluble in hot water, insoluble in organic solvents |
| Viscosity 4 Solution 20 C | 5-50 mPa·s depending on grade |
| Degree Of Hydrolysis | 87-99 mol% |
| Degree Of Polymerization | 500-2500 |
| Ph 4 Aqueous Solution | 5.0-7.0 |
| Film Forming Ability | Excellent, forms tough and flexible films |
| Tensile Strength | High, approximately 30-100 MPa depending on plasticizer content |
| Elongation At Break | Flexible, 100-400% depending on humidity and plasticizer |
| Adhesion To Fibers | Good adhesion to cotton, polyester, and blends |
| Thermal Stability | Decomposes above 200°C; stable up to 150°C |
| Humidity Sensitivity | Plasticized by water; film properties vary with relative humidity |
| Biodegradability | Biodegradable under aerobic and anaerobic conditions |
| Toxicity | Non-toxic and environmentally friendly |
As an accredited Polyvinyl Alcohol (PVA) for Textile Finishing Agents factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Packaged in 25 kg moisture-proof laminated kraft bags with PE inner liner, ensuring safe transport and handling. |
| Container Loading (20′ FCL) | 20′ FCL container loaded with palletized PVA powder bags/drums, secured and ventilated for safe textile chemical transport. |
| Shipping | Polyvinyl Alcohol (PVA) for textile finishing is shipped in sealed multi-layer paper bags or fiber drums to prevent moisture absorption. Transport in dry, ventilated containers, avoiding direct sunlight and extreme heat. Non-hazardous, but handle carefully to minimize dust; store away from ignition sources. Ensure secure stacking to prevent damage. |
| Storage | Store Polyvinyl Alcohol (PVA) in a cool, dry, well-ventilated area away from direct sunlight, heat sources, and open flames. Keep containers tightly sealed to prevent moisture absorption and contamination. Avoid contact with strong oxidizers and acids. Maintain stable temperatures; the shelf life is typically 12–24 months under proper conditions. |
| Shelf Life | Shelf life is typically 2 years when stored in a cool, dry place in sealed containers. |
In continuous dyeing and finishing ranges for cotton shirting and curtain lining, partially hydrolysed polyvinyl alcohol (degree of hydrolysis 87–89 mol%, 4 % aqueous solution viscosity at 20°C of 4.5–6.0 mPa·s) is formulated with a dimethyloldihydroxyethyleneurea (DMDHEU) resin precursor and a Lewis acid catalyst to impart durable, crosslinked stiffness. The pad liquor is held at 50–60°C to prevent gelation during processing and typically contains PVA at 60–100 g/L, modified DMDHEU at 30–50 g/L, and magnesium chloride hexahydrate at 6–10 g/L. Fabric pick-up on a two-bowl horizontal pad mangle set to an expression of 70–80 % delivers a dry add-on of 4.2–8.0 % PVA on weight of fabric. The wet web is dried on a multi-cylinder contact dryer at 105–115 °C to a residual moisture content below 8 % before entering a curing chamber set to 150–155 °C for a dwell of 2.5–3.5 minutes. Process excursions above 160 °C induce acid-catalysed dehydration of the polyvinyl alcohol backbone, yielding conjugated double bonds that cause irreversible yellowing and a measurable loss in flexural rigidity. Compliance with Oeko-Tex Standard 100 annex 4 for articles in product class II requires that free formaldehyde on the cured fabric remains below 16 mg/kg when analysed by the Japanese Law 112 extraction method; formulations that replace DMDHEU with 1,2,3,4-butanetetracarboxylic acid eliminate formaldehyde release but demand a curing temperature above 175 °C, which narrows the process window for cotton substrates. The finished textile is deployed as crisp curtain heading tape, bed valance stiffening, and interlining for export-quality liturgical vestments.
| PVA grade description | Degree of hydrolysis (mol%) | Stiffness retention by ASTM D4032-08 (%, warp direction) |
|---|---|---|
| Partially hydrolysed, low DP | 87–89 | 62–68 |
| Partially hydrolysed, medium DP | 87–89 | 74–81 |
| Fully hydrolysed, medium DP | 98–99 | 83–88 |
| Fully hydrolysed, high DP | 99 + | 86–90 |
Polyester and polyester-cotton single-jersey fabrics destined for schoolwear and athletic apparel are finished with a polyvinyl alcohol film that binds protruding fibre ends into the yarn body to elevate pill rating under ISO 12945-2:2020. A fully hydrolysed PVA of viscosity 5.0–7.0 mPa·s (4 % solution at 20 °C) is selected because its higher glass transition temperature (ca. 85 °C) and reduced water sensitivity, relative to grades of hydrolysis below 92 mol%, confer greater resistance to mechanical dislodgement during domestic tumble-drying cycles. The finish is applied by a single-bath pad process from an aqueous solution containing 2.0–4.0 % owf PVA solids together with a polyethylene softener 0.3–0.8 % owf and a trace of a non-rewetting surfactant. Padder expression is maintained at 80–90 % to limit liquor migration after nip. Drying is staged through a 6-bay hot-air stenter programmed with a ramped thermal profile from 110 °C to 175 °C; the final two bays function as a curing zone where the PVA chains partially crystallise, anchoring the coating. An add-on exceeding 4.5 % owf raises the bending length beyond 2.8 cm on the Shirley Stiffness Tester, degrading the handle to an objectionable boardy feel and increasing seam pucker. Regulatory conformance for children’s garments requires that the finished article pass EC No. 1907/2006 (REACH) Annex XVII restrictions on any residual monomer and that the softener component be listed on a ZDHC MRSL V3.1 compliant formulation inventory. End-uses include varsity jackets, pleated skirts, and corporate uniform polo shirts where a pill rating of grade 4 or higher after 7,000 rubs is a contractual specification.
In the manufacture of air-laid and carded-thermobonded nonwoven webs for single-use surgical drapes and absorbent core wrap, partially hydrolysed polyvinyl alcohol with a degree of hydrolysis between 87 mol% and 89 mol% is airless-sprayed or foamed onto the fibre batt as the primary chemical binder. The application rate is controlled by mass flow meters to deliver a solid add-on of 3.0–8.0 % based on fibre weight; foam density is held at 80–120 g/L with a blow ratio of 8:1 to 12:1 to prevent binder strike-through. A twin-wire through-air drum set to 135 °C evaporates water and triggers film coalescence; the dwell time of 40–90 seconds is adjusted against belt speed to reach a web exit moisture content below 2.5 %. Where subsequent gamma-sterilisation at 25 kGy is required, a photostabilised PVA grade rated for radiation tolerance is substituted to avoid chain scission that would depress tensile energy absorption below the 1.2 J/g threshold. The finished nonwoven is tested to ISO 9073-2 for MD dry tensile and to ISO 9073-4 for tear resistance; products for the European medical market meet EN 13795-1 performance classes and carry a Type Examination Certificate. Typical articles produced with this binder include reinforced back-table covers, fenestrated surgery drapes, and capillary underpad acquisition distribution layers.
Resin-finished interlinings for gentleman’s shirt collars and cuff stiffeners are coated with a crosslinkable PVA compound on a knife-over-roll line using a 0.25–0.40 mm gap setting to achieve a dry coat weight of 18–25 g/m². The base web is a 30 g/m² polyester spunbond, and the coating formulation consists of a fully hydrolysed PVA (DP 1,700–2,000) dissolved at 14 % solids, blended with 5–8 % (on PVA weight) of a melamine-formaldehyde resin etherified with methanol, plus 2.5 % ammonium chloride catalyst and 3 % glycerol as internal plasticiser. Coated fabric is dried in a flotation oven at 95–105 °C and then calendered to planarise the surface for subsequent hot-melt lamination at 140–150 °C and 3.5 bar nip pressure onto the face fabric. Peel adhesion measured per ISO 2411:2017 must exceed 6 N/5 cm after five dry-cleaning cycles in perchloroethylene. Certification to Oeko-Tex Standard 100 product class II restricts extractable formaldehyde to < 75 mg/kg before washing, a value achievable only when the coated substrate is post-cured and off-gassed for a minimum of 48 hours in a ventilated conditioning room. The resultant fused interlining is die-cut into collar stays, top-centre placket reinforcements, and cuff interliners for mass-market and formal dress shirts.
Heavy-weight polyester webbing for cargo lashing straps and seatbelt harnesses receives a chafe-resistant finish by padding through a bath containing 80–120 g/L of partially hydrolysed PVA (viscosity 12–18 mPa·s) and 40–60 g/L of a butylated melamine-formaldehyde resin, catalysed with 0.8 % p-toluenesulfonic acid on weight of resin solids. The 2-dip-2-nip impregnation on a vertical padder is followed by a 3-zone tenter drying profile: 90 °C, 110 °C, and a final cure zone of 145 °C for 3.5 min. Circumferential abrasion resistance assessed on a Wyzenbeek oscillatory cylinder tester (ASTM D4157-13, 12 kPa tension, No. 10 cotton duck abradant) must record a cycle count beyond 15,000 before visible thread breakage. The melamine crosslinker elevates dry crease recovery but imparts a measurable stiffness that imposes a clamp-force upper limit: if the bending resistance of the webbing exceeds 550 mg·cm (Shirley tester), precision cam-buckle release performance degrades. Conformance with European regulation ECE R16 for safety belts demands that the finish not reduce the breaking strength below 27 kN for a 47 mm wide strap after heat-ageing at 80 °C for 168 hours. End-products range from motor vehicle occupant restraints to polyester round slings for construction lifting rated at a 7:1 safety factor.
High-efficiency cellulose filter cartridges for hydraulic fluid service are upgraded with a PVA saturant that boosts burst strength and controls pore-size shift under cyclic pressure loading. A bath containing 2.5 % solids of fully hydrolysed PVA and 0.6–0.9 % glyoxal (on PVA weight) as the crosslinker, pH-adjusted to 3.5–4.0 with citric acid, is applied by immersion to resin-free wet-laid filter sheets of 140 g/m² base weight. Saturation is followed by a vacuum extraction slot at −40 kPa to normalise wet add-on to 120–140 %, after which the sheet passes through a serpentine float dryer with air impingement at 120–130 °C; residence time is tuned to 8–12 seconds to achieve a degree of crosslinking that raises the wet tensile index to 12–14 N·m/g without embrittlement. Filtration efficiency and dirt-holding capacity are validated against ISO 16889:2022 at a base upstream gravimetric level of 10 mg/L ISO medium test dust; a retention efficiency of β₁₀ = 200 must be maintained after a 10,000-cycle pressure pulse at 0–0.8 MPa. The saturated paper is creped or pleated and assembled into spin-on lube-oil canisters and return-line hydraulic filter elements for off-highway mobile equipment operating at a maximum continuous temperature of 105 °C.
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| Property / Test Method | PVA 5-88 (partial) | PVA 20-99 (full) | Oxidized Corn Starch | Sodium CMC | Acrylic Copolymer Binder |
|---|---|---|---|---|---|
| Film tensile strength (ASTM D882), MPa | 40–55 | 60–80 | 22–34 | 50–70 | 8–15 |
| Film elongation (%), ASTM D882 | 150–250 | 50–80 | 2–5 | 10–20 | 400–650 |
| Adhesion to cotton, N/mm (EN 13780) | 0.8–1.2 | 0.3–0.6 | 1.5–2.0 | 1.0–1.5 | 0.5–0.8 |
| BOD₅ (OECD 301F), mg O₂/g | 5–10 | 5–10 | 400–600 | 10–30 | <5 |
| COD (ISO 6060), mg O₂/g | 1,600–1,800 | 1,600–1,800 | 800–1,200 | 1,200–1,500 | 1,500–2,000 |
| Warp breaks / 100,000 picks, 20 Ne cotton, 850 rpm air-jet | 0.5–1.0 | not recommended | 2.0–5.0 | 1.0–3.0 | <0.5 |
| Regulation / Standard | Test Method or Clause | PVA Compliance Status |
|---|---|---|
| ZDHC MRSL Version 3.1 | Substance detection in raw material | Meets all limits; PVA not listed as restricted |
| OEKO-TEX Standard 100, Annex 4 | Extractable heavy metals, formaldehyde | Certifiable for product class I (infants) when ash <0.3% |
| REACH (EC) No 1907/2006 | SVHC candidate list, Annex XVII | No restrictions; registration as polymer under Article 2(9) |
| FDA 21 CFR 177.1670 | Polyvinyl alcohol film for food contact | Compliant with extractives <4 % in water and heptane |
| EC 10/2011 Plastics FCM | Migration limits for vinyl acetate monomer | Monomer <2 mg/kg food simulant (10x below SML) |
| GOTS Version 7.0 | Chemical inputs criteria | Approved for sizing and finishing with biodegradation plans |