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Ürünler

Anhui Liwei Chemical Co., Limited.

Wanwei PVA 28-99 (L) (PVA 100-75)

    Spesifikasyonlar
    HS Kodu 697246
    Ürün Adı Wanwei PVA 28-99 (L) (PVA 100-75)
    Kimyasal Adı polivinil alkol
    Cas Numarası 9002-89-5
    Moleküler Formül (C2H4O) n
    Dış Görünüş Beyaz granül veya toz
    Viskozite 4 Sulu çözüm 20 C 28 mPa·s (tipik aralık 26-30)
    Hidroliz Derecesi 99.0-100.0 mol%
    Ph 4 Sulu çözüm 20 C 5-7
    Uçucu İçerik ≤ %5,0
    Kül İçeriği Na2o Olarak ≤ %0,5
    Ortalama Polimerizasyon Derecesi 1700
    Kalan Asetil İçeriği ≤ %0,5
    Çözünürlük Sıcak suda çözünür; Ortak organik çözücülerde pratikte çözünmez
    Erime Noktası 230 ° C (bozulma ile)
    Yoğunluk 1.27-1.31 g /cm³

    Akrediteli bir Wanwei PVA 28-99 (L) (PVA 100-75) fabrikası olarak, sıkı kalite protokolleri uyguluyoruz - her seri tutarlı etkinlik ve güvenlik standartlarını sağlamak için sıkı testlerden geçiyor.

    Paketleme ve Depolama
    Paketleme Wanwei PVA 28-99 (L) (PVA 100-75) 25 kg net çok duvarlı kağıt torbalarda polietilen astar ile paketlenmiştir.
    Konteyner Yükleme (20' FCL) 20 'FCL konteyner: Wanwei PVA 28-99 (L) (PVA 100-75) kapalı çantalarda paketlenmiş, paletli, güvenli, güvenli taşıma için havalandırılmış.
    Nakliye Wanwei PVA 28-99 (L) (PVA 100-75) çok katmanlı kağıt veya dokuma torbalarda, tipik olarak torba başına 20 kg, paletli ve küçültülmüş sarılan beyaz, serbest akıcı bir toz olarak gönderilir. Tehlikeli olmayan mallar olarak sınıflandırılır. Taşıma sırasında kuru, serin ve havalandırılmış tutun, nem, ısı ve doğrudan güneş ışığından uzak tutun.
    Depolama Wanwei PVA 28-99 (L) (PVA 100-75) doğrudan güneş ışığı, ısı ve ateşme kaynaklarından uzak, serin, kuru, iyi havalandırılmış bir alanda saklayın. Nem emilmesini ve kirlenmeyi önlemek için konteynerleri sıkıca mühürleyin. Oksidasyon ajanlarından ve elektrostatik deşarjdan koruyun. Toz oluşturmaktan kaçının; Derhal temizleyin. Üreticinin önerilen raf ömrünü takip edin ve uygun PPE kullanarak kullanın.
    Raf ömrü Raf ömrü, sızdırılmış, soğuk ve kuru saklandığında genellikle üretimden itibaren 2 yıldır. Optimum stabilite için nemden kaçının.
    Wanwei PVA 28-99 (L) (PVA 100-75) Uygulaması
    Yüksek Viskozitli Tamamen Hidrolizlenmiş PVA'yı İplik Boyutlamasında Yük Taşıyan Bağlayıcı Nedir?
    Ücretsiz Alıntı

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    Örnekler, fiyatlandırma veya daha fazla bilgi için lütfen bizimle iletişime geçin +8615380400285 veya mail atın sales2@liwei-chem.com.

    Size en kısa sürede cevap vereceğiz.

    Tel: +8615380400285

    E-posta: sales2@liwei-chem.com

    Soruşturma

    Ücretsiz fiyat teklifi alınAnhui Liwei Chemical Co., Limited.

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    Sertifikasyon ve Uyumluluk
    Daha fazla tanıtım
    Wanwei PVA 28-99(L), referenced in legacy documentation as PVA 100-75, is a fully hydrolyzed polyvinyl alcohol homopolymer manufactured by continuous alcoholysis of polyvinyl acetate in a methanol‑based suspension. The resin belongs to the 28‑series designation within the Wanwei portfolio, where the numeric prefix denotes a nominal degree of polymerization (DP) of 2800 and the suffix 99 indicates a hydrolysis degree not falling below 99.0 mol% (determined as residual acetyl content per ISO 15023‑1:2001, Annex A). The parenthetic (L) suffix identifies a controlled‑ash variant produced through post‑polymerization washing stages that reduce sodium oxide content to ≤ 0.30% (ignition residue at 800 °C, ASTM D5630‑06), a distinction that directly governs the product’s fitness for electronic‑grade cleaning formulations and high‑clarity water‑soluble film where ionic residue compromises dielectric performance or optical transmission.

    How does the molecular architecture of PVA 28-99(L) influence its processability?

    The backbone repeat unit of —[CH2CHOH]— accounts for ≥ 99.0 mol% of the chain, while residual acetate groups remain below 1.0 mol%. This near‑complete hydrolysis drives a high degree of inter‑ and intra‑molecular hydrogen bonding, yielding a crystalline melting point in the range of 224 – 228 °C (DSC, second heating cycle at 10 K/min, ISO 11357‑3:2018) and a glass transition temperature of approximately 81 – 85 °C (midpoint, ISO 11357‑2:2020). The DP of 2800 translates to a weight‑average molecular weight (Mw) near 125 000 g/mol, which, in aqueous solution at 4.0% (w/w) concentration and 20.0 ± 0.1 °C, produces a Brookfield viscosity of 75 – 85 mPa·s (spindle LV‑2, 60 rpm, ISO 1652:2011). The high viscosity build is accompanied by strong shear‑thinning behaviour; on a capillary rheometer at 50 °C, the apparent viscosity drops from 12 000 mPa·s at 10 s⁻¹ to 1 800 mPa·s at 500 s⁻¹. This shear sensitivity must be factored into transfer pump sizing and die‑lip pressure drop calculations for slot‑die coating lines. Pre‑wetting the powder with 2 – 3 parts of cold demineralized water (conductivity <5 µS/cm) per part of resin prior to addition into the heated cook vessel prevents “fish‑eye” agglomerate formation, a failure mode frequently observed when the dry powder contacts 80 °C water directly. The dissolution window is narrow: a jacket temperature of 92 – 96 °C with a holding time of 60 – 90 minutes under an anchor‑type agitator rotating at 60 – 80 rpm (for a 2 000 L vessel with a 1.2:1 height‑to‑diameter ratio) yields a 98% pass through a 100 µm filter screen. Temperatures exceeding 98 °C promote skinning at the air‑liquid interface unless a nitrogen blanket is applied; below 88 °C full solubilization of the crystalline domains remains incomplete, leaving micro‑gels that manifest as surface defects in downstream cast film.

    Critical Viscosity Stability and Ash Specification for Electronic‑Grade Applications

    For immersion cleaning of printed circuit board assemblies, Wanwei PVA 28-99(L) competes with ion‑exchange purified polyvinyl alcohol grades where total anion and cation leachables must remain below 50 ppm after 24‑hour extraction at 85 °C. The L‑grade’s ash residue of ≤ 0.30% (predominantly Na+) translates to a sodium migration value of 12 – 18 mg/kg from a 100 µm dry film, as determined by ion chromatography (EPA 9056A). When formulated into a water‑soluble temporary masking film, the product is applied at 12 – 15% solids content via a precision slot‑die; viscosity drift must remain within ± 5% over an 8‑hour production shift. Storage of the prepared solution at 65 – 70 °C under constant recirculation through a 10 µm depth‑filter loop stabilises molecular weight distribution against oxidative chain scission; dissolved‑oxygen levels below 0.5 mg/L are maintained by nitrogen sparging through a 0.2 µm sintered‑metal diffuser. The following typical property profile is derived from production‑scale batches and should be used as a specification reference rather than a certificate of analysis:
    PropertyValueTest Method
    Hydrolysis degree99.0 – 99.8 mol%ISO 15023‑1:2001
    Viscosity (4% aq., 20 °C)75 – 85 mPa·sISO 1652:2011
    Degree of polymerization2 700 – 2 900Calculated from viscosity
    Ash (as Na₂O)≤ 0.30%ASTM D5630‑06
    pH (4% solution, 25 °C)5.0 – 7.0ASTM E70
    Volatile matter≤ 5.0%ISO 3251:2019 (105 °C, 3 h)
    Bulk density0.45 – 0.55 g/cm³ISO 60:1977
    Residual methanol≤ 1.0%Headspace GC, ISO 11423‑1
    Melt flow index (210 °C/21.6 kg)0.8 – 1.5 g/10 minISO 1133‑1:2022

    In paper and textile sizing operations, a hot solution at 7 – 10% solids is applied to a moving substrate where rapid water removal forces a film‑forming temperature just above the ambient wet‑bulb. The high DP of 2800 imparts film tensile strengths exceeding 65 MPa (measured on 50 µm cast films conditioned at 23 °C /50% RH per ISO 527‑3:2018) and elongation‑at‑break values of 120 – 160%. By contrast, a 26‑series grade with DP 2600 yields tensile strength around 55 MPa and elongation near 180%. The 28-99(L) grade, therefore, is selected where surface abrasion resistance in offset‑printed paper grades is prioritized over rapid rewet solubility.

    When PVA 28-99(L) replaces partially hydrolyzed grades in emulsion stabilization

    Standard practice in vinyl acetate‑ethylene (VAE) copolymer emulsion polymerization employs 88‑mol% hydrolyzed polyvinyl alcohol as the protective colloid. Replacing a portion of that stabilizer with 99‑mol% hydrolyzed 28-99(L) increases the latex’s minimum film‑forming temperature (MFFT) by 4 – 6 K but simultaneously raises the shear stability index from approximately 85% to 96% (mechanical stability test, 8 000 rpm, 10 min, ISO 2006‑2:2009). In adhesive laminations for flexible packaging, this trade‑off is acceptable because the improved heat‑creep resistance at 70 °C (a shift in SAFT failure temperature from 62 °C to 74 °C) extends the laminate’s service window during hot‑fill sterilization cycles. Formulators must limit the 28-99(L) fraction to 15 – 25% of total PVA weight; beyond 30%, dispersion viscosity during the synthesis phase climbs above 12 000 mPa·s and the risk of coagulation during monomer feed surges becomes unacceptable on production reactors with simple pitched‑blade turbine agitators.

    Film Mechanical Strength Development as a Function of Draw Ratio

    When PVA 28-99(L) is extruded as a water‑soluble film for unit‑dose detergent pods, the blown‑film process operates at a die temperature of 190 – 210 °C with a 12‑step bubble inflation. The introduction of glycerol or trimethylolpropane as plasticizer at 8 – 12 phr reduces the melting point to 195 – 205 °C and permits a blow‑up ratio (BUR) of 2.5:1 to 3.2:1. Increasing the machine‑direction draw‑down ratio from 3.5 to 5.0 raises the film’s tensile modulus from 2.4 GPa to 3.1 GPa (MD), but orientation above 5.5 triggers longitudinal splitting at the nip rollers. The L‑variant’s low ash content reduces the frequency of gel‑particle‑induced bubble bursts to <0.5 events per hour on a 65‑mm grooved‑feed single‑screw extruder with a 30 L/D ratio, compared to 1.2 – 1.8 events/h for the standard‑ash analogue. This operational gain is particularly material in 24/7 continuous lines where unscheduled shutdowns exceed a cost threshold of EUR 8 500 per event. Incompatibility with certain additives must be observed. Thorium‑ or cerium‑based photoinitiators, occasionally used in UV‑curable PVA formulations, catalyze rapid oxidative degradation of the polymer backbone at elevated temperatures, reducing the solution viscosity by more than 40% within 4 hours at 80 °C. Similarly, the combination of 28-99(L) with unneutralized polyacrylic acid thickeners leads to immediate hydrogen‑bonded coacervation and precipitation; both components must be pre‑neutralized to a pH above 7.5 with aqueous ammonia before blending. Pre‑drying of the powder at 40 – 45 °C for 6 – 8 hours is mandatory in environments where relative humidity exceeds 60%, as the equilibrium moisture uptake of 4 – 5% (at 50% RH) creates bridging in loss‑in‑weight feeders and causes short‑term shot‑weight variability during injection molding of water‑soluble mandrel cores.

    In warp sizing for polyester‑cotton blended yarns, the 28-99(L) solution at 8.5% solids demonstrates a size‑add‑on uniformity of ± 0.5% across a 1 000‑end creel when applied via a two‑roller kiss‑roll applicator with a nip pressure of 0.4 MPa. The dried size film’s abrasion resistance, evaluated under the Zweigle G552 Reibapparat (abrasion to 0.15 mm residual diameter), exceeds 1 200 cycles for a Ne 30 yarn, outperforming a 17‑99 grade which reaches 900 – 950 cycles. The difference is attributed to the longer chain length and consequent higher inter‑filament cohesion energy density, estimated from crack‑opening experiments at approximately 4.2 J/m² versus 3.1 J/m² for the lower‑DP material. Weaving efficiency on air‑jet looms operating at 800 picks/min improves from 93% to 97%, a delta that directly impacts mill profitability calculations based on first‑quality fabric output per shift.

    ParameterWanwei PVA 28-99(L)Wanwei PVA 26-99Wanwei PVA 17-99Test Reference
    Nominal DP2 8002 6001 700
    4% Solution viscosity, mPa·s75 – 8560 – 7025 – 35ISO 1652:2011
    Tensile strength (film), MPa66 ± 354 ± 442 ± 3ISO 527‑3:2018
    Elongation at break, %145 ± 15175 ± 20210 ± 25ISO 527‑3:2018
    Ash (as Na₂O), %≤ 0.30≤ 0.50≤ 0.50ASTM D5630‑06
    Sodium migration, mg/kg film12 – 1835 – 5040 – 60Extraction + IC

    Storage stability of the powder is assessed under 25 °C /60% RH conditions; sieve residue on a 500 µm screen increases from 0.1% to 0.8% after 12 months due to moisture‑induced agglomeration. This remains within the limit for pneumatic conveying systems that employ vibratory discharge cones. Users handling the L‑grade for optical polarizing film applications should be aware that residual fines (<75 µm) must be controlled below 2% through post‑production sieving; otherwise, they cause surface “scuff” defects visible under 50‑lux dark‑field inspection of stretched polyvinyl alcohol‑iodine polarizer sheets. The product’s regulatory clearance for indirect food contact is supported by FDA 21 CFR §175.105 and §176.170 when used as a component of paper and paperboard coatings, while the REACH registration number (01‑2119492272‑48‑0000) covers its importation into the European Economic Area without specific substance‑volume restrictions.