| HS Code | 875726 |
| Chemical Name | Polyvinyl Alcohol |
| Cas Number | 9002-89-5 |
| Molecular Formula | (C2H4O)n |
| Appearance | White to pale yellow powder or granules |
| Solubility | Soluble in hot water above 80°C, insoluble in common organic solvents |
| Degree Of Hydrolysis | 87-99% depending on grade |
| Viscosity 4 Aqueous Solution 20 C | 5-50 mPa·s |
| Ph 4 Aqueous Solution | 5.0-7.0 |
| Solid Content | ≥94% |
| Film Forming Ability | Excellent |
| Film Tensile Strength | High |
| Adhesion To Cotton | Good |
| Abrasion Resistance | Good |
| Blend Compatibility | Suitable for cotton and synthetic blended yarns |
As an accredited Polyvinyl Alcohol (PVA) for Cotton & Blended Yarn Sizing factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Polyvinyl Alcohol for yarn sizing supplied in 25 kg multi-layer paper bags with inner polyethylene liner. |
| Container Loading (20′ FCL) | 20′ FCL: PVA powder packed in 25kg bags, palletized, approximately 20 MT per container, safe and dry. |
| Shipping | Polyvinyl Alcohol (PVA) for cotton and blended yarn sizing is shipped as a water-soluble powder or granule in sealed multi-layer paper bags, moisture-proof liners, or FIBC bulk bags. Transport in dry, ventilated containers to avoid moisture absorption, caking, or contamination. Store away from heat, humidity, and oxidizers. |
| Storage | Store Polyvinyl Alcohol in a cool, dry, well-ventilated area, away from moisture, direct sunlight, and ignition sources. Keep containers tightly sealed to prevent caking or contamination. Avoid generating dust; use appropriate ventilation and PPE when handling. Maintain a stable temperature and follow First-In, First-Out rotation to preserve quality for consistent yarn sizing performance. |
| Shelf Life | Shelf life: 12 months when stored in a cool, dry place, away from moisture and direct sunlight. |
| Parameter | 85% PVA / 15% Acrylic | 50:50 PVA / Thin-Boiling Starch | |
|---|---|---|---|
| Size add-on (% o.w.f.) | 6.3 | 10.8 | |
| Breaking strength increase (%) | 22.4 (ASTM D2256) | 19.1 | |
| Elongation at break (%) | 5.8 | 4.2 | |
| Abrasion cycles to failure (CTT-C, yarn-on-yarn) | 1,840 | 1,215 | |
| Shedding mass collected @ reed (mg/10⁵ picks) | 78 | 143 | |
| Desizing residual PVA (TEGEWA rating) | 7.5 | 8.0 | |
| COD load in combined desize/scour effluent (mg/L) | 2,400 | 1,850 |
| Standard/Regulation | Scope | Relevant Limit or Requirement |
|---|---|---|
| EU REACH Regulation (EC) 1907/2006 | PVA polymer registration | Exempt from registration under Annex V (polymer exemption) provided monomer content below 1% residual vinyl acetate (determined by titration, ISO 9252:1989) |
| ZDHC Manufacturing Restricted Substances List (MRSL) 3.1 | Size formulation auxiliaries | Nonylphenol ethoxylate (NPEO) concentration must be below 100 ppm in all lubricants and wetting agents blended into PVA size formulations; verified by LC-MS according to ISO 18254-1:2016 |
| OEKO-TEX Standard 100, Annex 6 (Product Class I) | Finished fabric residual chemistry | Residual PVA is not listed as a restricted substance; complete desizing to TEGEWA scale 7–8 is assumed for certification of babywear articles under Class I requirements |
| German Waste Water Ordinance (AbwV), Annex 38 | Textile finishing effluent | COD discharge limit of 160 mg/L (24h composite sample) applies to combined desizing/scouring wastewater; PVA contributions calculated from size add-on and desizing efficiency |
| GB 4287-2012 (China) | Textile dyeing & finishing effluent | COD limit 80 mg/L (direct discharge) imposes PVA recovery or oxidative destruction requirements for mills operating high-PVA-size formulations without closed-loop desizing liquor recycling |
Competitive Polyvinyl Alcohol (PVA) for Cotton & Blended Yarn Sizing 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.
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| Grade Designation | Hydrolysis (mol%) | Viscosity, 4% aq. (mPa·s at 20°C) | Approximate D.P. | Primary Application |
|---|---|---|---|---|
| PVA 1788 | 87–89 | 20–26 | 1700 | Polyester-cotton blends, cold-water desize |
| PVA 1799 | ≥98.5 | 25–31 | 1700 | 100% cotton, high-speed air-jet weaving |
| PVA 2099 | ≥98.5 | 35–42 | 2000 | Fine-count cotton, warps above 100 ends/cm |
| PVA 2488 | 87–89 | 44–55 | 2400 | Blended ring yarns requiring high abrasion resistance |
When processing polyester-cotton blends with open-end spun yarns, the size recipe must balance adhesion to the hydrophobic polyester component and flexibility to survive reed beat-up without cracking. A typical formulation for a 65/35 polyester-cotton rotor-spun warp uses a blend of partially hydrolyzed PVA (grade 1788) and a fully hydrolyzed grade (1799) in a 70:30 ratio, with a total solids pick-up of 7.5–9.0% on bone-dry warp weight. The partially hydrolyzed component plasticizes the film and lowers the dry-state modulus to 1.2–1.8 GPa, measured by tensile testing of free films per ASTM D882, which is compatible with the elongation-at-break requirements of rotor yarns that rarely exceed 6%. Attempting to replace this blend entirely with a single intermediate hydrolysis grade (92–94 mol%) risks film embrittlement if the slasher drying rate causes surface skin formation before full water removal, a phenomenon documented by thermal gravimetric analysis of size films showing a skin vitrification threshold near 105–110 °C on the first cylinder.
| Property / Endpoint | Fully Hydrolyzed PVA (1799) | Oxidized Corn Starch | Technical CMC (DS 0.7–0.9) | Standard / Note |
|---|---|---|---|---|
| Tensile strength of cast film (MPa) | 40–60 | 10–18 | 30–45 | ASTM D882; 50% RH, 23°C |
| Elongation at break (%) | 150–250 | 2–4 | 8–15 | ASTM D882 |
| Adhesion to cotton fabric (N/25mm) | 15–20 | 6–10 | 10–14 | Modified ASTM D1876; T-peel |
| Sized yarn tensile retention (% of grey strength) | 110–130 | 95–105 | 105–115 | ASTM D2256; Ne 30 ring-spun |
| Desizing efficiency (weight loss after 10 min at 90°C with 0.5% enzyme/wetting agent) | >98% | >99% | 85–92% | Simulated pad-batch desize |
| BOD5 of pure size agent (mg O₂/g) | 20–30 | 600–800 | 10–15 | OECD 301F; ready biodegradability |
| COD of size agent (mg O₂/g) | 1600–1700 | 900–1100 | 900–1050 | Standard potassium dichromate method |
In practical slashing, the pre-blending sequence is critical. PVA must first be dispersed in cold water under agitation to prevent lump formation, then heated to 90–95 °C for 30–45 minutes to achieve full dissolution. When jet cooking at 130–140 °C for 2–3 minutes, a 20% solids stock paste remains stable without viscosity breakdown, provided that shear rates in the cooker remain below 3000 s⁻¹; exceeding this threshold can shear-degrade the high-molecular-weight fraction, permanently lowering the solution viscosity by 10–15% and reducing size film cohesion. Once cooked, the size must be maintained at 80–85 °C in a jacketed supply tank fitted with a slow-speed propeller agitator (30–40 rpm) to avoid aeration. Foam entrapment, if not suppressed with a non-silicone defoamer at 0.05–0.1% on size liquor weight, deposits microvoids in the dried film that act as stress concentrators and initiate cohesive failure during weaving.