Ürünler

Ürünler

Anhui Liwei Chemical Co., Limited.

Sundy PVA 092-20 (Sinopec PVA 092-20)

    Spesifikasyonlar
    HS Kodu 190380
    Ürün Adı Güney PVA 092-20
    Üretici Sinopec'in
    Cas Numarası 9002-89-5
    Kimyasal Formül (C2H4O) n
    Dış Görünüş Beyaz granül toz
    Hidroliz Derecesi 92.0-94.0 mol%
    Viskozite 4 Sulu çözüm 20 C 20.0-24.0 mPa · s
    Ph 4 Sulu çözüm 5.0-7.0
    Uçucu İçerik ≤%5,0
    Kül Içeriği ≤%0,5
    Beyazlık ≥%90
    Yığın Yoğunluğu 0,4-0,6 g/cm³
    Parçacık Boyutu 20-80 örgü
    Çözünürlük Sıcak suda çözünür; çoğu organik çözücüde çözünmez

    Akredite edilmiş bir Sundy PVA 092-20 (Sinopec PVA 092-20) fabrikası olarak, sıkı kalite protokolleri uyguluyoruz - her seri tutarlı etkinlik ve güvenlik standartlarını sağlamak için sıkı testlerden geçiyor.

    Paketleme ve Depolama
    Paketleme Sundy PVA 092-20 (Sinopec), güvenli taşıma için paletli ve stretch-wrapped, iç polietilen astarlı 25 kg net çok duvarlı kağıt torbalarda tedarik edilir.
    Konteyner Yükleme (20' FCL) 20' FCL: Sundy PVA 092-20 için güvenli taşıma ve koruma sağlayan kuru, temiz konteynerde yüklenen ve güvenli tutulan paletli torbalar.
    Nakliye Sundy PVA 092-20 (Sinopec), genellikle her biri 25 kg'lık iç polietilen astarlı nem geçirmez kraft kağıt torbalarda serbest akıcı beyaz toz olarak gönderilir. Tehlikeli olmayan; Kuru, nemden uzak depolayın. Yeterli havalandırma ile temiz, kuru konteynerlerde taşıma, aşırı ısı ve doğrudan güneş ışığından kaçınma.
    Depolama Sundy PVA 092-20'yi doğrudan güneş ışığı, ısı ve ateşme kaynaklarından uzak, serin, kuru, iyi havalandırılmış bir alanda saklayın. Nemin emilmesini ve kirlenmesini önlemek için orijinal konteyneri sıkıca mühürleyin. Güçlü oksidatörler ve asitlerle temas etmekten kaçının. Orta nem koruyun ve güvenli kullanım ve depolama için yerel düzenlemelere uyun.
    Raf ömrü Soğuk, kuru ve kapalı bir konteynerde saklayın. Raf ömrü genellikle üretim tarihinden itibaren iki yıldır.
    Sundy PVA 092-20 (Sinopec PVA 092-20) Uygulaması

    Yüksek hızlı hava jetli dokuma makineleri 2.000 m/dakika'yı aşan takım ekleme hızlarında çalışır depo açılışı sırasında 3-5% döngülü uzanma altında esneklik ve film bütünlüğünü koruyan ve kamın dövme kuvvetlerine fibrilasyon olmadan dayanan boyutlama filmleri talep eder. Sinopec Sundy PVA 092-20 91.0-93.0 mol% hidroliz derecesi ve 18.0-24.0 mPa · s (GB /T 12010.3 başına 20 °C suda 4% suda sulu çözüm olarak ölçülür, 60 rpm üzerinde 1 numaralı mili) -boyut karışımı formülasyonuna 15-25 wt% toplam katı maddelerde 40 MPa (ASTM D882) üzerinde kuru film çekme mukavemetini yükseltmek için modifiye edilmiş nişasta yerine getirilir. Boyut formülasyonu, kalan monomerler için OEKO-TEX Standartı 100 Ek 4'e ve ZDHC MRSL Seviye 3'e uygun olmalıdır ve harcanan boyut likörünün 500 mg/L COD'nin altındaki boşaltma sınırlarını karşılamak için aktif çamur sistemi veya ultrafiltrasyon geri kazanması yoluyla tedavi edilmesini gerektirir. Üretim ekipmanları genellikle tam çözünme için 105–110 °C çalışan bir jet sobası, çift sıkıştırma boyutu kutusu (örneğin 40–80 kN/m sıkıştırma basıncında kauçuk kaplı sıkıştırma ruloları olan Sucker Müller tipi) ve 120–130 °C yüzey sıcaklıklarında tutulan çok silindirli kurutma kutuları içerir. Bitmiş mallar, iş giysileri ve ev tekstillerinde kullanılan pamuk /polyester karışımı dokuma kumaşlar için boyutlu warp ipliklerdir; Anahtar bir operasyonel sınır, besleme hoperlerinde aglomerasyonu önlemek için RH> %60 ve uygulamadan önce jelasyonu önlemek için 70-80 °C da hazır karışım boyutunun depolanmasıdır.

    Ücretsiz Alıntı

    Bütçenize uygun rekabetçi Sundy PVA 092-20 (Sinopec PVA 092-20) fiyatları - her sipariş için esnek şartlar ve özelleştirilmiş teklifler.

    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

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    Sertifikasyon ve Uyumluluk
    Daha fazla tanıtım

    Sundy PVA 092-20, a partially hydrolyzed polyvinyl alcohol grade manufactured by Sinopec under the Sundy trademark, is defined by a nominal alcoholysis degree of 92 mol% and a 4% aqueous solution viscosity ranging from 20.0 to 28.0 mPa·s at 20 °C (Brookfield LV, 60 rpm, as per GB/T 12010.2-2017). The grade is supplied as a white, free-flowing granular powder with a bulk density of approximately 0.45–0.60 g/cm³, and it finds broad use across water-soluble film, adhesive, paper sizing, textile, and emulsion polymerization sectors where an intermediate balance between cold-water solubility and film mechanical integrity is required.

    Deriving the Grade Code from Molecular Structure

    The “092” identifier in the product designation corresponds to the target alcoholysis degree—the mole percentage of vinyl alcohol units remaining after partial hydrolysis of the polyvinyl acetate precursor. In the case of PVA 092-20, the residual acetate group content sits in the range of 7–9 mol%, measured by saponification back-titration under GB/T 12010.3. The suffix “20” reflects the nominal dynamic viscosity of a 4% aqueous solution at 20 °C, expressed in millipascal-seconds. This viscosity correlates with the weight-average molecular weight, typically falling between 80,000 and 100,000 g/mol (determined by size-exclusion chromatography in DMSO mobile phase with polyethylene oxide narrow standards). The controlled degree of residual acetate disrupts stereoregularity, suppresses crystallinity to about 25–30% (X-ray diffraction), and imparts cold-water dispersibility without requiring the full chemical destruction of interchain hydrogen bonds that characterizes fully hydrolyzed counterparts.

    What Numerical Specifications Define PVA 092-20?

    Sinopec’s release certificate data for PVA 092-20 conforms to the following typical ranges, verified through lot-to-lot statistical process control on a continuous saponification belt line:

    Parameter Specification Range Reference Test Procedure
    Alcoholysis degree 91.0–93.0 mol% GB/T 12010.3
    Viscosity (4% solution, 20 °C) 20.0–28.0 mPa·s GB/T 12010.2 (Brookfield LV, 60 rpm)
    Volatile matter ≤5.0% GB/T 12010.4 (105 °C, 3 h)
    Ash content (as Na₂O) ≤0.5% GB/T 12010.5
    pH value (4% solution) 5.0–7.0 GB/T 12010.6
    Purity ≥93.5% Calculation from volatiles and ash

    Deviations from these limits during upstream saponification—particularly an alcoholysis degree dipping below 91.0 mol%—cause the polymer to transition into a cold-water-dispersible but cold-water-soluble regime that exhibits excessive swelling without full molecule disentanglement. A viscosity exceeding 28.0 mPa·s under the specified conditions elevates coating die pressures beyond the design envelope of narrow-gap slot-die heads (typically rated for 0.3–0.5 MPa at 50 °C), risking streaking and non-uniform film thickness on production-width webs.

    In remoistenable adhesive coating operations run at line speeds above 200 m/min on a 1.8 m-wide slot-die coater, PVA 092-20 develops full surface tack within 3–4 seconds after re-moistening with cold tap water at 15 °C. This rapid rehydration, absent in grades with >95% hydrolysis, arises from the interrupted crystallite network that permits rapid water ingress and chain mobility. The grade’s 92% hydrolysis retains sufficient hydroxyl density to achieve a Z-strength exceeding 450 N/m (T-peel, ASTM D1876) on uncoated kraft paper when formulated with 2–3% glycerol as plasticizer, while avoiding the irreversible insolubility observed with PVA 100-27 films exposed to ambient water at <40 °C.

    When Cold-Water Tack Is Paramount, 092-20 Outperforms Fully Hydrolyzed Alleles

    Film re-wettability is governed by the depressurization of the surface layer’s glass transition temperature through intercalated acetate groups. For PVA 092-20, differential scanning calorimetry reveals a dry-state Tg of 65–70 °C that drops to below 20 °C upon uptake of 8–10% moisture. This plasticization window is sufficiently broad to allow cold-water activation, whereas a fully hydrolyzed grade such as PVA 100-27 requires water temperatures exceeding 40 °C for measurable tack development within a 10-second contact window, a limitation documented in automatic envelope sealing lines where warm-water feed systems are absent. However, the water resistance of the dried adhesive film—quantified by the water contact angle after 24‑hour immersion—remains limited: 55–60° (Krüss DSA100) compared to 75–80° for a 99%-hydrolyzed PVA film. The table below summarizes trade-offs across the hydrolysis spectrum.

    Performance Attribute PVA 088-20 (86–89 mol%) PVA 092-20 (91–93 mol%) PVA 100-27 (99–100 mol%)
    Cold-water solubility (film, 15 °C) Dissolves within 60 s; excessive swelling Complete dissolution 90–120 s Requires >45 °C water; only swelling at 15 °C
    Tensile strength (dry, 50% RH) 40–45 MPa (ISO 527-3) 50–58 MPa 65–75 MPa
    Elongation at break (dry) 300–400% 250–300% 150–200%
    Water contact angle (after 24 h immersion) 45° 55–60° 75–80°
    Protective colloid grafting tendency (VAc emulsion) High grafting, high viscosity Moderate grafting, stable viscosity Low grafting, low emulsion viscosity

    Operators of continuous adhesive lamination lines should note that switching from PVA 088-20 to 092-20 raises the minimum drying temperature required to avoid blocking from 40 °C to 55 °C due to the higher Tg, yet it reduces cold flow under stacking pressure of 2 kg/cm² by approximately 25% as measured by static shear creep tests (ASTM D2293). Pre-drying the raw powder at 80 °C for 2 hours is recommended whenever storage conditions exceed 60% RH, because excess moisture catalyzes acetate hydrolysis during hot-melt compounding and can increase the degree of insolubles by 3–5%.

    Predicting Long-Term Creep Under Cyclic Humidity Exposure

    When PVA 092-20 films are deployed in packaging closures that experience diurnal humidity swings between 30% and 80% RH, the film passes through its glass transition quasi-daily, leading to progressive creep. Dynamic mechanical analysis at 1 Hz shows a storage modulus drop from 3.2 GPa at 30% RH to 1.1 GPa at 70% RH. Under a static load of 0.5 MPa, creep compliance after 100 humidity cycles increases by a factor of 2.8 relative to initial compliance, data obtained on a TA Instruments Q800 DMA in humidity-controlled film tension mode. In contrast, the same formulation with PVA 100-27 shows a factor of only 1.3 increase, but it fails the cold-water open-time specification. This trade-off dictates that for applications requiring permanent structural adhesion under variable ambient conditions—such as re-moistenable tape tabs on polycoated kraft—a bilayer construction using a 092-20 top coat over a 100-27 sub-layer is employed to decouple tack initiation from long-term creep resistance.

    How Does the Grafting Efficiency of 092-20 Influence Emulsion Viscosity Stability?

    In vinyl acetate emulsion polymerization conducted in 20 m³ jacketed reactors equipped with twin axial-flow impellers, PVA 092-20 serves as a protective colloid at typical dosages of 4.0–5.5% on monomer weight. The residual acetate sequences on the backbone provide radical transfer sites that lead to a grafting efficiency of 12–18%, determined by soxhlet extraction of ungrafted PVA with DMF/water (80:20) at 70 °C for 48 hours. This moderate grafting level avoids the runaway viscosity rise observed with 88%-hydrolyzed grades—where grafting can exceed 30% and latex viscosity escalates to 12,000–15,000 mPa·s (Brookfield LVT, 12 rpm)—yet provides sufficient colloidal stability to keep coagulum below 0.1%. When the same reactor formulation uses PVA 100-27, grafting drops to <5% and shelf-life sedimentation exceeds 2% after six months at 40 °C accelerated storage, necessitating post-addition of nonionic surfactants. The 092-20 grade thus occupies the process window where viscosity stays within the pumpable range of 3,000–6,000 mPa·s while maintaining freeze-thaw stability (−5 °C to +25 °C, 5 cycles) without serum separation layers exceeding 0.5 mm.

    In textile warp sizing on high-speed air-jet looms operating at insertion rates above 900 ppm, the size liquor prepared with PVA 092-20 and corn starch (1:2 ratio) at a total solids of 10% maintains a steady-state viscosity of 18–22 mPa·s at the sizing box temperature of 85 °C. This viscosity level is critical: values below 15 mPa·s cause excessive penetration and weak surface film, increasing hairiness after weaving by 30–40% (Zweigle G566 test), while values above 30 mPa·s lead to size splitting and yarn-to-yarn adhesion on lease rods, generating warp stops at a rate exceeding 1 per 10,000 picks. The partial hydrolysis of 092-20 provides the desizing advantage of requiring only cold-water enzyme desizing, eliminating the need for oxidative boil-off that is mandatory for fully hydrolyzed sizes, thereby reducing the utility load in the finishing range by approximately 15% of steam consumption.

    In twin-screw compounding of water-soluble laundry bags with a co-rotating extruder (L/D 40, screw diameter 25 mm), PVA 092-20 is pre-plasticized with 15 phr glycerol and 5 phr sorbitol at a barrel temperature profile of 160–185 °C. The melt torque measured at the die plate remains below 85 N·m as long as the powder moisture content is kept under 1.5%; excursions above 2.0% moisture generate steam voids and degrade film clarity, visible as haze values rising beyond 15% (ASTM D1003). The 092-20 grade is incompatible with amine-based polyamide blending because residual vinyl acetate sequences undergo transamidation at processing temperatures, producing crosslinked domains that elevate die pressure and cause melt fracture at take-off speeds above 12 m/min. This limitation is circumvented by selecting a pH 5–6 processing window and limiting acid scavenger levels to ≤0.2% calcium stearate. The melt-extruded film exhibits a water-soluble time of 45–60 seconds in a 25 °C dissolution bath when gauge is 35 µm, a performance metric that positions it between the excessively rapid dissolution of PVA 088-20 film (<20 s) and the incomplete disintegration of PVA 100-27 film at the same temperature, which leaves insoluble particulate fragments exceeding 1 mm.