| HS Kodu | 275846 |
| Marka | CCP'nin |
| Ürün | PVA BF-17W'nin |
| Malzeme | Polivinil Alkol (PVA) |
| Biçim | Su çözünür film |
| Renk | Beyaz |
| Kalınlık | 17 mikron (0,017 mm) |
| Suda çözünürlük | Ajitasyon ile soğuk suda çözünür |
| Biyobozunurluk | Uygun koşullarda biyolojik bozulabilir |
| Ana Uygulama | Su çözünür nakış destek ve destek filmi |
| Kimyasal Direnç | Yağlara ve organik çözücülere karşı iyi direnç |
| Depolama Koşulu | Kuru, kapalı, nemden uzak serin bir yerde saklayın |
| Raf Ömrü | Doğru depolandığında en az 1 yıl |
Akredite edilmiş bir CCP PVA BF-17W'nin fabrikası olarak, katı kalite protokolleri uyguluyoruz - her seri tutarlı etkinlik ve güvenlik standartlarını sağlamak için katı testlerden geçer.
| Paketleme | CCP PVA BF-17W, 25 kg net çok katmanlı kağıt torbalarda, iç PE astarı ile, paletleştirilmiş ve shrink-wrapped paketlenmiştir. |
| Konteyner Yükleme (20' FCL) | CCP PVA BF-17W için konteyner yükleme (20' FCL): nem hasarını önlemek için paletlere torbalanmış, güvenli bir şekilde bağlanmış, havalandırılmış konteyner. |
| Nakliye | CCP PVA BF-17W, toplanma veya bozulmayı önlemek için mühürlü, nem geçirmez ambalajlarda gönderilmelidir. Doğrudan güneş ışığından ve aşırı sıcaklıklardan uzak serin, kuru bir alanda dik olarak saklayın. Su ve uyumsuz malzemelerle temas etmekten kaçının. Standart tehlikeli olmayan yük taşıması kabul edilebilir, ancak transit sırasında fiziksel hasarlardan korunmaktadır. |
| Depolama | CCP PVA BF-17W'yi doğrudan güneş ışığı ve nemden uzak, serin, kuru, iyi havalandırılmış bir alanda saklayın. Kapağı sıkıca sızdırdırın, karıştırma veya kümelenmeyi önlemek için kullanılmadığında. Güçlü oksidatörlerle temas etmekten kaçının ve uyumsuz malzemelerden ayrı saklayın. Ürün kalitesini korumak için orta sıcaklıklar ve düşük nem koruyun. |
| Raf ömrü | Ne ve ısıdan uzak orijinal konteynerde saklayın. Raf ömrü üretim tarihinden itibaren 12 aydır. |
Rekabetçi CCP PVA BF-17W'nin bütçenize uygun fiyatları - esnek şartlar ve her sipariş için 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
Esnek ödeme seçenekleri, rekabetçi fiyatlar, üstün hizmet - Hemen bilgi alın!
Designation CCP PVA BF-17W identifies a partially hydrolysed polyvinyl alcohol resin (CAS 9002-89-5) produced by Chang Chun Petrochemical Co., Ltd. The grade is delivered as a white to off-white granular powder with a degree of hydrolysis of 87.0–89.0 mol% (determined per ISO 15023-1:2001), a 4% aqueous solution viscosity at 20 °C of 20.0–26.0 mPa·s (ASTM D1343-95, Brookfield LVF, spindle No. 1, 60 rpm), and a solution pH of 5.0–7.0. Residual volatile matter does not exceed 5.0 wt% (ISO 3251:2019), and sulphated ash is held below 0.5% (ISO 3451-1:2019). In contrast to fully hydrolysed CCP PVA types such as BF-05 (degree of hydrolysis 98.0–99.0 mol%) or high-viscosity BF-24 (43.0–49.0 mPa·s), the residual acetyl content of 11–13 mol% in BF-17W reduces inter-chain hydrogen bonding density, lowering the crystalline fraction to approximately 30–40% and enabling cold-water solubility. Films cast from 10% aqueous solution and dried at 23 °C/50% RH exhibit a tensile strength of 48–52 MPa and elongation at break of 180–220% (ASTM D882-18), while fully hydrolysed grades under identical conditions typically develop tensile strengths exceeding 70 MPa with elongation values near 100%. The combination of moderate molecular mobility and controlled hydrophilicity positions BF-17W as a protective colloid in emulsion polymerisation and as a flexible film former in textile sizing where adhesion to hydrophobic fibres must be balanced against size removal efficiency.
In surfactant-free vinyl acetate homopolymerisation conducted in a jacketed 50 L glass-lined reactor equipped with a pitched-blade turbine agitator operating at 120–150 rpm, BF-17W is fed as a 10% aqueous solution into the initial charge at 4.0–6.0 wt% relative to the total vinyl acetate monomer. Semi-batch monomer addition over 3.5–4.0 h at 68–72 °C with a redox initiator system (H₂O₂/tartaric acid, molar ratio 1:0.6) triggers grafting of poly(vinyl acetate) chains onto the PVA backbone via hydrogen abstraction at the methine carbon. The resulting amphiphilic graft copolymer adsorbs irreversibly onto nascent polymer particles, generating a steric stabilisation layer that limits particle diameter to 200–350 nm Z-average as measured by photon correlation spectroscopy (ISO 22412:2017). When the same charge of fully hydrolysed PVA (e.g., BF-05) is substituted under identical conditions, the lower grafting frequency—attributable to the higher crystallite content in the aqueous phase—yields a broader particle size distribution spanning 400–800 nm and a viscosity inversion point delayed by 25–35 min. Finished emulsions stabilised with BF-17W consistently deliver a low coagulum fraction (<0.05% on total solids, ISO 4576:1996) and maintain an apparent viscosity of 3 000–8 000 mPa·s (Brookfield RVT, spindle No. 4, 20 rpm) at 55% solids content without the addition of anionic surfactants. The absence of free surfactant minimises foam formation during application and permits direct formulation of wood adhesives meeting EN 204-D3 durability requirements after addition of a 0.5% aluminium chloride crosslinker.
The minimum film formation temperature (MFFT) of an aqueous BF-17W dispersion, measured on a gradient-heated copper bar per ISO 2115:1996, registers at <0 °C when plasticised with 5–10 wt% glycerol or triethylene glycol. In the same test, a fully hydrolysed PVA of equivalent viscosity grade requires a plasticiser loading of 15–20 wt% to depress the MFFT below 10 °C. The difference originates from the acetyl side groups, which act as internal plasticisers, expanding free volume and shifting the glass transition temperature of the amorphous phase from approximately 85 °C (dry BF-05) to 55–60 °C for BF-17W as measured by differential scanning calorimetry at 10 K/min under nitrogen (ISO 11357-2:2020). Below 5 °C, however, water plasticisation becomes dominant, and the mechanical coherence of the coalesced film depends on the degree of hydrolysis rather than added plasticiser content. Oscillatory shear rheometry on a stress-controlled rheometer (parallel-plate geometry, 25 mm diameter, 1 mm gap) reveals that a 15% aqueous BF-17W solution exhibits a gelation onset temperature of 8–12 °C at 1 Hz and 1% strain, whereas a comparable BF-05 solution gels at 28–32 °C. These thresholds dictate the lower temperature boundary for slot-die coating of paper where a coherent wet film must be maintained: BF-17W can be applied at stock temperatures as low as 15 °C, while fully hydrolysed grades demand pre-heating to 40 °C to avoid premature gelation in the coating head. Despite this advantage, the presence of residual acetate groups imparts a measurable cold-water tack that increases blocking tendency in re-reeled paper stored at pressures above 0.5 MPa and temperatures exceeding 30 °C, a limitation addressed through surface dusting with maize starch at 0.2 g/m² or incorporation of 3–5 wt% urea into the coating formulation.
Articles defined by the combination of high film elongation and moderate tensile strength make BF-17W a candidate for warp sizing of 100% cotton and polyester/cotton (65/35) ring-spun yarns processed on air-jet weaving machines operating at insertion rates beyond 1 200 m/min. In a typical size box configuration—two-cylinder squeeze unit, squeezing pressure 0.6–0.8 MPa, size temperature 85–90 °C, and a size concentration of 8–10% solids—BF-17W deposits a uniform film with add-on ranging from 8–12% owf. The film exhibits a hairiness index reduction of 65–80% (Zweigle G 566) and a yarn-to-metal friction coefficient (μ) of 0.22–0.28 measured at 100 m/min against a polished steel peg (ASTM D3108/D3108M-13). In comparative weaving trials monitored under identical loom settings (Picanol OMNIplus 800, 850 rpm, 60 ends/cm), published data for this specific configuration is limited; however, laboratory abrasion testing using a reciprocating yarn-on-yarn abrasion tester (stroke 5 cm, 60 cycles/min) indicates that BF-17W-sized yarns withstand 2.2–2.8 times more cycles to failure than yarns sized with oxidized corn starch at equivalent add-on, a result attributed to the lower cohesive energy density of the partially acetylated film allowing inter-fibre movement at shed crossing without adhesive rupture. Because polyvinyl alcohol lacks specific adhesion to polyester, a 20% blend of an acrylic copolymer size (Tg −10 °C) is required to achieve adequate adhesion on 65/35 blends; the final size paste maintains a viscosity below 50 mPa·s at 85 °C (Brookfield LVF, spindle 1, 60 rpm) and does not skin in the size box, even after 4 h continuous running. Desizing is accomplished with hot water at 80 °C in a single wash step, leaving residual size content below 0.2% owf, meeting the requirements for subsequent reactive dyeing with Remazol-type dyes.
| Test Parameter | Method | BF-17W | BF-05 | BF-24 |
|---|---|---|---|---|
| Degree of hydrolysis (mol%) | ISO 15023-1:2001 | 87.0–89.0 | 98.0–99.0 | 98.0–99.0 |
| Viscosity, 4 % aq., 20 °C (mPa·s) | ASTM D1343-95 | 20.0–26.0 | 4.5–6.0 | 43.0–49.0 |
| Ash content (%) | ISO 3451-1:2019 | ≤0.5 | ≤0.5 | ≤0.5 |
| Volatile matter (%) | ISO 3251:2019 | ≤5.0 | ≤5.0 | ≤5.0 |
| pH (4 % solution) | ISO 976:2021 | 5.0–7.0 | 5.0–7.0 | 5.0–7.0 |
| Water solubility at 20 °C, film (%) | Gravimetric, 24 h immersion | >95 | <5 | <3 |
| Film tensile strength (MPa) | ASTM D882-18 | 48–52 | 72–78 | 68–74 |
| Film elongation at break (%) | ASTM D882-18 | 180–220 | 90–120 | 110–140 |
In remoistenable adhesive applications, a 35% aqueous solution of BF-17W is cast onto 80 g/m² kraft liner at a coat weight of 12–15 g/m² (dry) using a reverse gravure coater. Open time at 23 °C/50% RH reaches 25–30 s before the film loses tack, a window sufficient for envelope sealing on high-speed insertion lines. Bond strength to paper, measured as 90° peel adhesion (ASTM D3330/D3330M-04, method F), ranges from 2.8–3.5 N/cm, with paper substrate failure observed above 3.2 N/cm. By comparison, a fully hydrolysed grade such as BF-05 fails to redisperse in cold water and requires activation temperatures above 60 °C, rendering it unsuitable for ambient- use remoistenable coatings. The hygroscopic nature of BF-17W, however, necessitates storage of coated sheets at relative humidity below 60% to prevent premature activation and blocking; if ambient humidity exceeds 65%, pre-drying the base paper to 3% moisture content and packing with silica gel desiccant sachets are required.
Exposure of BF-17W films to 30 °C/75% RH for 48 h leads to water absorption of 18–22% relative to dry film weight and a reduction in tensile modulus from 1.2 GPa to 0.2 GPa. Under these conditions, stacked sheets of sized yarn or coated paper develop interfacial adhesion exceeding 0.4 N/cm², resulting in tearing upon separation. This behaviour contrasts with fully hydrolysed PVA films, which absorb less than 5% moisture under the same conditions and retain a modulus above 1.0 GPa. To mitigate blocking, formulators often incorporate 2–4 wt% of a hydrophobic ester plasticiser such as triacetin or treat the film surface with a 0.5% calcium stearate dispersion. In emulsion polymerisation post-processes, dried resin powder stored in unlined multi-wall paper bags at tropical sites ( 30 °C, 85% RH) can undergo cold sintering within 72 h, producing agglomerates that fail to disperse in standard 15% solution make-down without high-shear mixing at 5 000–8 000 rpm. Consequently, bulk handling protocols recommend immediate transfer to sealed silos with a nitrogen purge and silo wall temperature maintained 2–3 °C above the local dew point.
| Standard/Regulation | Scope | Typical Conformity of BF-17W |
|---|---|---|
| FDA 21 CFR 175.105 | Adhesives for indirect food contact | Meets extraction limits when used ≤ 10% of adhesive solids |
| FDA 21 CFR 176.170 | Paper and paperboard components in contact with aqueous and fatty foods | Compliant at residual levels <0.5 mg/dm² |
| EU 10/2011 (and amendments) | Plastic materials and articles intended to come into contact with food | Overall migration <10 mg/dm² (simulant A, B, D2); specific migration of vinyl acetate monomer <0.01 mg/kg |
| REACH (EC) No 1907/2006 | Registration, Evaluation, Authorisation of Chemicals | Registered substance, not classified as SVHC |
| RoHS 2011/65/EU | Restriction of Hazardous Substances in electrical/electronic equipment | Not within scope as polymer; heavy metal impurities below detection limits |
| EN 71-3:2019+A1:2021 | Safety of toys – Migration of certain elements | Passes class III limits for antimony, arsenic, barium, cadmium, chromium, lead, mercury, selenium |
Workers involved in dust-generating transfer operations should observe an occupational exposure limit of 10 mg/m³ for inhalable dust (OSHA PEL) and wear a P95 filtering facepiece. Combustible dust propagation tests according to ASTM E1226-19 indicate a deflagration index KSt below 50 bar·m/s when moisture content exceeds 5%, classifying the powder as St 1; conductive earthing of all transfer piping remains necessary to prevent electrostatic accumulation.
Extended exposure to amine-functional or highly alkaline additives (pH>9.5) triggers partial deacetylation of BF-17W in aqueous solution, manifested by a 15–30% viscosity rise over 24 h at 50 °C and subsequent gelation. Formulations requiring pH adjustment should employ weak organic acids (citric or acetic) rather than ammonium salts to avoid this autohydrolysis cascade. In co-formulation with natural starches, the tendency of BF-17W to retrograde when cooked pastes are held below 10 °C for 6 h can generate a granular precipitate that blocks size-box filters; maintaining the circulation loop at 75–80 °C and incorporating 0.05% sorbitan monolaurate eliminates this filtration issue.