Ürünler

Ürünler

Anhui Liwei Chemical Co., Limited.

Wanwei PVA 19-99 (L) (PVA 100-30)

    Spesifikasyonlar
    HS Kodu 186749
    Kimyasal Formül (C2H4O) n
    Cas Numarası 9002-89-5
    Tekrarlama Biriminin Moleküler Ağırlığı 44,05 g /mol
    Dış Görünüş Beyaz ila açık sarı toz veya granüller
    Ortalama Polimerizasyon Derecesi 1900 ± 100
    Hidroliz Derecesi % 99.0 ila 100.0 mol
    Viskozite 4 Sulu çözüm 20 C 19.0 ila 23.0 mPa·s
    Ph 4 Sulu çözüm 5.0 ila 7.0
    Uçucu İçerik ≤ %5,0
    Kül Içeriği ≤ %0,5
    Yoğunluk 1.19 ila 1.31 g /cm³
    Yığın Yoğunluğu 0,4 ila 0,6 g /cm³
    Erime Noktası 180 ila 220 ° C (bozulma ile)
    Çözünürlük Sıcak suda çözünür; soğuk suda hafifçe çözünür; Ortak organik çözücülerde çözünmez
    Kırılma İndeksi 1.49 ila 1.53

    Akrediteli bir Wanwei PVA 19-99 (L) (PVA 100-30) fabrikası olarak, sıkı kalite protokolleri uyguluyoruz - her seri tutarlı etkinlik ve güvenlik standartlarını sağlamak için sıkı testlerden geçiyor.

    Paketleme ve Depolama
    Paketleme Wanwei PVA 19-99 (L) (PVA 100-30) iç bir polietilen astarı ile 25 kg çok katmanlı kağıt torbalarda paketlenmiştir.
    Konteyner Yükleme (20' FCL) 20 'FCL: paketli PVA paletli, güvenli, kapasiteyi en üst düzeye çıkarmak için yüklenmiş konteyner, güvenli taşıma ve istikrarı sağlar.
    Nakliye Kapalı, nem geçirmez çantalarda veya paletlerde davullarda kara kargo yoluyla gemi. Ne, yağmur ve aşırı ısıdan koruyun. PVA 19-99(L) standart taşıma için tehlikeli mallar olarak düzenlenmemektedir. Doğru etiketleme, güvenli yükleme ve transit sırasında kuru, havalandırılmış depolama sağlayın.
    Depolama Wanwei PVA 19-99 (L) serin, kuru, iyi havalandırılmış bir alanda, ısıdan, kıvılcımlardan ve açık alevlerden uzakta saklayın. Nem emilmesini ve toz oluşturmasını önlemek için konteyneri sıkıca mühürleyin. Güçlü oksidatörlerle temas etmekten kaçının. Doğrudan güneş ışığından ve fiziksel hasardan korunan orijinal ambalajda saklayın. Optimum istikrar için oda sıcaklığını ve düşük nemi koruyun.
    Raf ömrü Raf ömrü, serin ve kuru bir yerde açılmamış olarak saklandığında üretim tarihinden itibaren 2 yıldır.
    Wanwei PVA 19-99 (L) (PVA 100-30) Uygulaması
    Yüksek bükülme 40-80 Ne taralı pamuk ve polyester/pamuk karışımı ipliklerinin boyutlanması sırasında 1200 m/dakika 'yi aşan tikme ekleme hızlarında çalışan rapier ve hava jet dokuma makineleri için tasarlanmıştır, film öncesinin seçimi döngüsel aşınma altında döküntü istikrarını belirler. Wanwei PVA 19-99 ((L), tamamen hidroliz edilmiş bir sınıf 2834 mPa·s ve hidroliz derecesi ≥99.0 mol% olan bir çözüm viskozitesi ile, kuru filmin çekme enerjisi emim endeksini arttıran yapısal bir omurga olarak boyut karışımına girilir. Bir 60 Ne taralı pamuk warp için tipik bir boyut formülasyonu, kuru katı maddeler temelinde, yerel mısır nişastası (60–70 wt%), poliakrilik boyut (10–15 wt%) ve balmum bazlı bir yağlayıcı (0.3–0.5 wt%) yanında 6.0–9.0 wt% PVA 19-99(L) içerir. İki silindirli ölçüm makinesinin (örneğin Karl Mayer veya Tsudakoma modelleri) kapalı devre boyutu kutusunda 93–97 °C üzerinde tutulan pişirilmiş boyut likörü, 12–18 kN üzerinde ayarlanmış daldırma silindiri basıncıyla, 65 ve 85 mPa·s arasında bir daldırma viskozitesini korur. 60 rpm ve 95 °C ASTM D2196-20'ye göre bir Brookfield LV #2 mili ile ölçüldüğünde. Boyut alımı olarak ifade edilen uygulanan eklenti, 11.5-13.5% için 700-900 darbe · dakika'da kumaşın düşüşüne karşı kağızın dövdüğü dokuma kulübelerine giren warp iplik için kontrol edilir ⁻ ¹. Dokumadan sonra, boyut filmi 80-85 °C'de α-amilaz kullanılarak ve ardından 95 °C'de sıcak suyla yıkanır; Grege kumaşındaki kalan PVA içeriği, AATCC 81-2016'ya göre UV spektroskopisi ile 0.15% altında kalmak için izlenir. Uyumluluk, teknik tekstil yardımcı cihazları için OEKO-TEX Standartı 100 Ek 6 sınırlarına ve denim bitirme birimlerine tedarik edilen boyut formülasyonları için ZDHC MRSL v3.1'e göre rutin olarak karşılaştırılır. Duvar ucu dokuma çıkışları poplin gömlekler, chino twills ve OEKO-TEX sertifikalı iş giysisi kumaşları içerir. Boyut kutusu buhar ceketi drenaj valfinin yakınında soğuk bir nokta geliştirdiğinde tekrarlanan bir işleme sıkıntısı ortaya çıkar, bu da PVA retrogradasyonuna neden olur ve bu da likör yüzeyine jelatinli bir cilt depoza eder; Bu cilt, nip'e taşınırsa, filamentasyonlara ve warp uç kırılma sayısının 0.8 başlangıç ​​çizgisinden 3.2 başına yükselmesine neden olur. ⁵ Yüksek hızlı Sulzer mermi dokumalarında seçmeler. Aşağıdaki tablo, üç karışım tipi için karşılaştırmalı boyut tariflerini ve iplik mekaniklerini birleştirir.
    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
    Designated internally as Wanwei PVA 19-99(L) and alternatively supplied under the export code PVA 100-30, this polyvinyl alcohol resin is a fully hydrolyzed grade characterized by a nominal degree of polymerization between 1900 and 2100 and a residual acetyl content below 1.0 mol%. The “L” suffix denotes a low‑ash, low‑methanol variant refined through a proprietary saponification washing process, yielding a product with markedly reduced mineral residue and volatile organic profile relative to standard 19‑99 grades. The grade is produced as white, free‑flowing granules with a bulk density of 0.45–0.60 g/cm³ and is soluble only in hot water under controlled heating conditions. Its high molecular weight and near‑complete hydrolysis place it in the crystallinity‑dominated segment of PVA materials, translating into films with elevated tensile modulus, minimal swelling in cold water, and inherent oil and solvent resistance.

    Molecular Architecture and the Significance of the (L) Designation

    Polyvinyl alcohol is a semi‑crystalline polymer whose physical behaviour is governed by the interplay of chain length, stereo‑regularity, and residual acetyl groups. In the 19-99(L) grade, the ≥99.0 mol% degree of hydrolysis ensures that fewer than one acetyl residue per hundred vinyl alcohol units remains, promoting dense inter‑chain hydrogen bonding. The degree of polymerization (1900–2100) situates the grade in the medium‑high DP range, balancing solution processability against film toughness. The (L) designation introduces a quantitative limit on ash content (as Na₂O) of ≤0.5%, a threshold achieved through post‑saponification counter‑current washing with demineralized water. This low ionic load becomes critical in applications where residual sodium acetate or sodium hydroxide would catalyse gelation, corrode metallic machine parts, or impair optical clarity.

    Typical Physical and Chemical Specification Profile

    Routine lot‑release testing conforms to the methods described in ISO 15023‑1:2017 (Plastics — Poly(vinyl alcohol) (PVAL) materials) and ASTM D2364‑18. The following ranges represent 3‑sigma production boundaries for PVA 19-99(L) /PVA 100‑30.

    PropertyTest MethodSpecification RangeUnit
    Degree of hydrolysisISO 15023‑1 (saponification‑back titration)99.0–99.8mol%
    Viscosity (4% aq. sol., 20°C)ISO 15023‑1 /ASTM D2364 (Brookfield)25.0–31.0mPa·s
    pH (4% solution)ISO 15023‑15.0–7.0
    Ash (as Na₂O)ISO 15023‑1 (muffle furnace, 700°C)≤0.5wt%
    Volatile matter (105°C, 3 h)ISO 15023‑1≤5.0wt%
    Retention on 80 mesh (180 µm)ASTM D1921 (sieving)≤0.1%
    Methanol contentHeadspace GC (method TM‑108)≤0.8wt%

    In continuous sizing operations using a Benninger‑Sucker twin‑box machine processing 40s cotton warp yarn at 80 m/min, the low ash residue of PVA 19‑99(L)—typically below 0.5% as Na₂O—minimises the formation of calcium carbonate scale on pre‑drying cylinders and size‑box rollers. The grade’s 4% aqueous solution viscosity of 25.0–31.0 mPa·s at 20°C allows target size add‑on levels of 8–12% to be achieved with a 10% solids formulation without excessive migration onto the yarn surface. Size kitchen operators report that a jet‑cooking profile of 130°C for 5 min at 2 bar steam pressure yields a fully solubilised, speck‑free liquor that exhibits <5% viscosity drift over an 8‑hour holding period at 85°C, a stability characteristic attributed to the near‑absence of alkaline residues and the narrow molecular weight distribution inherent to the (L) process. Desizing downstream with an α‑amylase bath at 60°C and pH 6.5 achieves >95% removal within 20 min, leaving no insoluble gel particles on the finished fabric. In high‑speed weaving on air‑jet looms operating at 800 ppm, the film formed by the 19‑99(L) grade delivers a hairiness reduction of 40–60% compared to unsized yarn, measured by Uster Zweigle G 567 instrumentation in accordance with ASTM D5647‑07. This application scenario exploits the fully hydrolyzed structure to provide high film strength and abrasion resistance on cellulosic fibres while maintaining re‑solubility under enzymatic desizing conditions.

    What Limits the Addition Rate of Fully Hydrolyzed PVA in Emulsion Polymerization?

    In the semi‑batch production of polyvinyl acetate (PVAc) homopolymer and copolymer emulsions, PVA 19‑99(L) functions as a protective colloid. The grade is charged at 2–4 wt% on total monomer and dissolved in the aqueous phase at 90–95°C prior to initiator addition. During the subsequent radical polymerisation at 70–75°C, the fully hydrolyzed backbone participates in grafting reactions, generating a non‑ionic steric layer that controls latex particle size in the range of 1.0–2.5 µm. Attempts to exceed 4.5 wt% PVA loading without step‑wise addition lead to a rapid, non‑linear viscosity increase above 10,000 mPa·s (Brookfield RVT, spindle 6, 20 rpm), as measured per ISO 2555:2018, causing loss of heat transfer in jacketed glass‑lined reactors of 2,000 L capacity. The low‑methanol profile of the (L) variant additionally reduces headspace VOC concentration in the reactor by 30–50% compared to standard 19‑99, a value quantified through photoionisation detector monitoring. The final adhesive dispersion, when formulated with a crosslinker such as glyoxal at 0.5%, achieves D3 durability class under EN 204:2016 for interior wood joints subjected to short‑term water exposure. Film clarity and water resistance are superior to those obtained with partially hydrolyzed (88 mol%) PVA colloids, owing to the higher density of inter‑chain crystallites in the fully hydrolyzed protecting shell.

    Paper Surface Sizing: A Single‑Step Application

    At a size press operating at 60–80°C, a 2–5% aqueous PVA 19‑99(L) solution increases surface strength measured by IGT pick resistance (ISO 3783:2006) by 15–25% over oxidized starch alone; the low foaming tendency, a consequence of reduced ash and methanol content, ensures uninterrupted runnability on high‑speed paper machines exceeding 1200 m/min.

    Comparative Viscosity and Film Property Gradients Across Adjacent DP Grades

    The performance of a fully hydrolyzed PVA is acutely sensitive to DP. PVA 19‑99(L) occupies a niche between the lower‑DP 17‑99 (DP 1700) and the higher‑DP 20‑99 (DP 2000) or 24‑99 (DP 2400). When cast into films and conditioned at 23°C and 50% RH for 48 h and tested per ASTM D882‑18, 19‑99(L) film exhibits a tensile strength of 55–65 MPa and elongation at break of 150–200%, compared with 45–55 MPa for 17‑99 and 65–75 MPa for 24‑99. The incremental gain in strength achieved by moving to a 2400 DP grade is offset by a 60% increase in solution viscosity, necessitating lower solids content in size or coating formulations and elevating energy demand for dissolution. The (L) variant further differentiates itself from a standard 19‑99 by delivering the above mechanical properties with an ionic impurity level 40% lower, a margin that becomes decisive in transparent water‑soluble packaging films where ash‑induced haze must remain below 1.5% (ASTM D1003). In contrast, partially hydrolyzed grades such as 17‑88 (88 mol% hydrolysis) dissolve in cold water but yield films with >300% elongation, lower modulus, and virtually no water resistance, excluding them from applications requiring barrier performance or dimensional stability under humid conditions.

    When Pre-Drying Becomes a Processing Mandate

    The 19‑99(L) granulate is hygroscopic. Upon exposure to ambient air at relative humidity above 60%, surface moisture adsorption accelerates rapidly, reaching 2–4 wt% within 2 h. Feeding undried resin into a dissolution vessel using a loss‑in‑weight feeder results in clogging of the pneumatic conveying lines and erratic slurry viscosity. The prescribed pre‑drying protocol requires a forced‑air tray dryer set to 80°C for 2 h with an air velocity of 1.5 m/s, reducing moisture content below 0.5%. The dried granules are then slurried in deionised water at 20–25°C before being pumped into a cooking vessel. Direct addition of dry granules into water at >90°C is not recommended as it causes instantaneous surface gelation and the formation of insoluble “fish‑eyes” that persist in the final solution.

    Regulatory Compliance Inventory

    Regulation /StandardScopeTest RequirementStatus
    FDA 21 CFR 175.105Adhesives for indirect food contactExtractable content limitsCompliant
    EU 10/2011 and amendmentsPlastic materials and articles intended to come into contact with foodOverall migration ≤10 mg/dm²Compliant (as component)
    BfR Recommendation XXXVIPaper and board for food contactPurity requirements for wet‑strength agentsCompliant
    REACH (EC) 1907/2006Registration, Evaluation, Authorisation of ChemicalsSubstance registeredPre‑registered
    RoHS (Directive 2011/65/EU)Restriction of hazardous substancesPb, Hg, Cd, Cr(VI), PBB, PBDE below thresholdsCompliant
    EN 71‑3:2019Migration of certain elements from toy materialsAntimony, arsenic, barium, cadmium, chromium, lead, mercury, selenium limitsComplies

    Operational Boundaries and Known Incompatibilities

    The dissolution vessel must be equipped with an anchor or helical ribbon agitator and a jacket capable of maintaining the solution at 90–95°C without hot spots. Prolonged heating above 100°C, particularly under acidic conditions (pH <4), initiates chain scission and a permanent drop in viscosity. PVA 19‑99(L) is incompatible with borax (sodium tetraborate) at alkaline pH; even 0.1 wt% borax on PVA induces immediate gelation through didiol cross‑linking, making such combinations unfit for pump‑fed coating lines. Concurrent use with amine‑based epoxy hardeners or aldehyde‑reacting additives at elevated temperatures can trigger premature gelation or discolouration. Storage conditions should be maintained at 10–30°C and relative humidity below 60% in sealed original packaging. Under these conditions, the shelf life extends to 12 months from the date of manufacture without measurable shift in viscosity or hydrolysis degree.