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China Coal Yulin LLDPE 7042

    • Product Name: China Coal Yulin LLDPE 7042
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
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    Specifications
    HS Code 367395
    Product Name China Coal Yulin LLDPE 7042
    Manufacturer China Coal Shaanxi Yulin Energy and Chemical Co., Ltd.
    Brand China Coal Yulin
    Polymer Type Linear Low-Density Polyethylene (LLDPE)
    Grade 7042
    Form Pellets
    Density 0.918-0.922 g/cm³
    Melt Flow Rate 190 C 2 16 Kg 1.8-2.2 g/10 min
    Tensile Strength At Yield ≥8.0 MPa
    Tensile Strength At Break ≥18.0 MPa
    Elongation At Break ≥500%
    Melting Point 120-125 °C
    Vicat Softening Temperature ≥90 °C
    Film Haze ≤12%
    Additives Antioxidant, anti-block, slip agent
    Applications Packaging film, agricultural film, heavy-duty bags, lining bags
    Packaging 25 kg woven bag
    Storage Dry, ventilated, away from direct sunlight
    Shelf Life 12 months
    Cas Number 9002-88-4

    As an accredited China Coal Yulin LLDPE 7042 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing China Coal Yulin LLDPE 7042 is packaged in 25 kg PP woven bags or 500/1000 kg jumbo bags.
    Container Loading (20′ FCL) 20′ FCL container loaded with China Coal Yulin LLDPE 7042 in 25 kg bags, securely stowed for shipment.
    Shipping China Coal Yulin LLDPE 7042 is shipped as a non-hazardous polymer resin, typically in 25 kg PP woven bags or 1,000 kg jumbo bags. Transport in clean, dry containers or trucks; keep away from moisture, heat, and direct sunlight. Store in a cool, ventilated warehouse. No special hazardous handling required.
    Storage Store China Coal Yulin LLDPE 7042 in a cool, dry, well-ventilated warehouse, ideally below 40°C, away from direct sunlight, rain, and heat sources. Keep original bags sealed and stacked on pallets. Avoid contact with oils, acids, solvents, and sharp objects. Maintain clean, low-humidity conditions, ensure good air circulation, and follow FIFO. Do not expose to open flames or prolonged UV radiation.
    Shelf Life Shelf life is typically 12 months from production when stored dry, cool, ventilated, away from direct sunlight in unopened packaging.
    Application of China Coal Yulin LLDPE 7042

    In monolayer and three-layer blown-film structures where a heat-sealable polyolefin web must combine low seal initiation temperature with adequate dart impact strength at high packaging speeds, China Coal Yulin LLDPE 7042 is introduced as the sealant or core layer at 70–80 wt%, with a high-pressure low-density polyethylene such as 2426H at 20–30 wt% and a 5% silica-based antiblock/slip masterbatch at 1–2 wt%. The resin is a butene-comonomer linear low-density polyethylene with a mass melt flow rate of 1.9–2.1 g/10 min at 190°C/2.16 kg per ASTM D1238 and a density of 0.918–0.922 g/cm³ per ASTM D1505. The LDPE fraction is not a filler: it increases melt strength so that bubble diameter remains stable when blow-up ratio is set between 2.2:1 and 2.8:1 on a 50–65 mm single-screw extruder with an L/D ratio of 30:1, a barrier screw, and a Maddock mixing section. Barrel temperatures are profiled from 180°C at the feed throat to 225°C at the metering zone, while the die zone is held at 190–210°C; die gap is 1.8–2.2 mm, and frost line height is maintained at 300–500 mm. For food-contact structures, the finished film is tested for overall migration under EU Regulation (EU) No 10/2011, with a limit of 10 mg/dm², and the resin complies with FDA 21 CFR 177.1520(c) for olefin polymers and with GB 4806.7-2016 for food-contact plastic materials used in Chinese packaging lines. Hot-tack testing under ASTM F1921, seal strength under ASTM F88, and dart impact under ASTM D1709 define the operating window; films of 30–50 µm thickness are converted into bread bags, produce bags on rolls, frozen food pouches, and retail carrier bags. Corona treatment is set to 40–44 mN/m to retain print adhesion without oxidising the heat-seal surface enough to reduce seal strength. On three-layer A/B/A lines, a 15/70/15% thickness split is common when the outer layers contain 80 wt% LLDPE 7042 and the core receives up to 10 wt% clean in-house trim, provided the trim is free of polypropylene contamination from the packaging hall.

    What processing boundaries appear when LLDPE 7042 is drawn into cast stretch film at line speeds above 300 m/min?

    Cast stretch film conversion of LLDPE 7042 shifts the primary risk from bubble stability to melt fracture, neck-in, and chill roll transfer control. As a C4-LLDPE with a density of 0.918–0.922 g/cm³ and a melt flow rate of 1.9–2.1 g/10 min per ASTM D1238, the resin produces acceptable draw resonance resistance at line speeds from 300 m/min to 600 m/min when the die gap is set to 0.6–1.0 mm and the die temperature is held between 230°C and 250°C. The addition ratio for a three-layer A/B/C machine film is asymmetric because cling performance and release behaviour require different surface chemistries. In the cling layer, representing 20% of total thickness, LLDPE 7042 is used at 80–85 wt%, combined with 12–15 wt% mLLDPE having density 0.912–0.918 g/cm³ and 1–3 wt% polyisobutylene cling masterbatch. The core layer, at 60% of total thickness, contains 90–95 wt% LLDPE 7042 and 5–10 wt% mLLDPE. The release layer, at 20%, contains 85–90 wt% LLDPE 7042 and 10–15 wt% mLLDPE. Chill roll temperature is the critical variable: below 18°C, condensation on the roll creates surface haze and uneven cling transfer; above 25°C, the web may stick too aggressively and form transverse wrinkles. A vacuum box at 0.4–0.6 bar and an air gap of 15–25 mm are used to reduce neck-in, while edge trim is reintroduced at 5–10 wt% without dislodging the cling ratio. Relevant standards include ASTM D5748 for cling force, ASTM D5459 for machine-direction stretch retention, and ASTM D882 for tensile properties. Terminal products are machine pallet wrap, hand-applied stretch film, and agricultural bale wrap; for agricultural bale wrap, the UV stabilizer masterbatch is added at 4–8 wt% in the outer layer instead of cling additives. Melt fracture typically appears first as chevron-like surface defects at the die lip when die temperature falls below 230°C; raising melt temperature alone may not eliminate it if the die gap exceeds 1.0 mm, because the increased die residence time can produce higher backpressure.

    LayerShare of total thicknessLLDPE 7042mLLDPEPIB cling masterbatch
    A (cling surface)20%80–85 wt%12–15 wt%1–3 wt%
    B (core)60%90–95 wt%5–10 wt%0
    C (release surface)20%85–90 wt%10–15 wt%0

    At line speeds above 500 m/min, edge neck-in exceeding 30 mm per side normally indicates that the air gap should be shortened or the die temperature raised in 5°C steps. Batch-to-batch variance in LLDPE 7042 melt index of ±0.2 g/10 min is sufficient to alter the draw-down point on the chill roll; production lines with automatic trim feedback compensate more effectively than manual slitter adjustments.

    Extrusion lamination sealant webs at melt temperatures between 260°C and 290°C

    In extrusion lamination, LLDPE 7042 serves as a sealant coating that must wet and adhere to BOPET, BOPP, or aluminium foil without pinholing at coating weights of 15–25 µm. The resin is processed either at 100 wt% or as an 80–90 wt% blend with LDPE 2420H, the latter blend lowering specific power draw and improving draw-down on lines running at 100–250 m/min. The extruder is typically a 90–120 mm single screw with an L/D of 30:1, a grooved feed section, and a barrier screw; barrel zones are held at 200–260°C and the flat die is kept at 260–290°C. Air gap is set from 100–250 mm, and nip pressure is controlled between 1.5 bar and 3.0 bar to force the melt into the substrate surface while avoiding fibre tear. For food-contact laminates, the structure is evaluated under FDA 21 CFR 177.1520(c) for the olefin polymer sealant, EU Regulation (EU) No 10/2011 for overall migration, and GB 9683-2016 for composite food-contact packaging; the substrate surface energy should be 38–42 mN/m before coating. Seal initiation temperatures for C4-LLDPE sealant webs are typically around 90–105°C, and hot tack force is measured with ASTM F1921 to ensure package integrity during vertical form-fill-seal operations. Terminal structures include snack sachets, portion condiment pouches, single-serve toothpaste laminate, and frozen food pouches. Operational boundary: when melt temperature drops below 260°C, oxidation at the polymer-substrate interface is insufficient for adhesion; above 290°C, low-molecular-weight odour compounds can be generated, requiring increased ventilation. Aluminium foil lamination is particularly sensitive to pinholes when coating thickness falls below 15 µm, because foil surface defects are not filled by the melt.

    Agricultural greenhouse film weathering and anti-fog additive compatibility

    Greenhouse film formulations based on LLDPE 7042 use the resin's narrow molecular weight distribution and low gel content to sustain bubble stability over multi-day extrusion campaigns at thicknesses from 100 µm to 200 µm. The formulation is 85–92 wt% LLDPE 7042, 5–10 wt% LDPE for melt strength, 4–8 wt% UV stabilizer masterbatch, and 1–3 wt% anti-drip/anti-fog masterbatch. The UV masterbatch is a HALS/UV-absorber type selected to retain 50% of tensile elongation after accelerated weathering under ISO 4892-2 for a service-life class defined in EN 13206:2017. Extrusion is performed on a blown-film line with die gap 2.0–2.4 mm, BUR 2.8:1–3.5:1, melt temperature 190–210°C, and internal bubble cooling to maintain frost line control; die head temperatures above 210°C are avoided because they accelerate anti-fog additive degradation and can increase haze. The product must satisfy GB/T 20202-2019 for agricultural PE blown covering film where installed in China, with light transmission, tensile strength after ageing, and puncture resistance measured by the methods referenced in that standard. Terminal products include monolayer and three-layer greenhouse covers, low tunnel films, and silage sealing sheets. An operational boundary: when relative humidity in the production hall exceeds 60%, the resin should be dried to avoid surface moisture defects; additive masterbatches must be pre-blended at low screw speed before full melt mixing to prevent localised anti-fog concentration bands. Long-run campaigns in greenhouse film often expose die lip polymer oxidation as brown specks after 48–72 h; periodic die lip purge with a high-MI LDPE at 230°C reduces this defect.

    When LLDPE 7042 becomes the load-bearing layer in heavy-duty industrial sacks

    Heavy-duty sack film is a deep-draw, high-toughness application where LLDPE 7042 is blended with high-density polyethylene to raise the secant modulus without sacrificing tear propagation resistance. The addition ratio is 75–90 wt% LLDPE 7042, 10–25 wt% HDPE 7000F or equivalent, and 2–3 wt% carbon black masterbatch where outdoor storage is specified; a processing aid masterbatch of 0.5–1.0 wt% is added when the pressure drop across the die exceeds 15% of baseline. Film is extruded at a die gap of 2.0–2.6 mm, BUR 2.8:1–3.2:1, and melt temperature 190–220°C; the bubble is collapsed through a high-flute collapsing frame and then gusseted. The key process risk is bubble instability caused by lot-to-lot melt index variation; incoming resin with MI below 1.9 g/10 min raises melt pressure, while MI above 2.3 g/10 min thins the melt and increases sag. Conformance testing includes ASTM D882 for tensile strength, ASTM D1709 for dart impact, and ASTM D1922 for Elmendorf tear; for UN-certified sacks, the filled sack must also pass drop tests under the applicable UN Model Regulations packaging provisions. Terminal products are fertilizer sacks, resin packaging bags, construction film, and industrial liners for bulk containers. Published data for this specific resin-HDPE configuration is limited, so incoming trials should map dart impact and tear balance against HDPE concentration before locking the blow-up ratio. Gusseted sack widths above 600 mm on conventional collapsing frames often require lowering line speed by 10–15% to prevent edge creasing and asymmetry.

    Compounding LLDPE 7042 as a carrier resin for PE-compatible masterbatch is a downstream use that places more demand on melt index reproducibility than on film optics. The carrier is added at 30–60 wt% to a co-rotating twin-screw extruder with an L/D of 40:1, alongside 40–60 wt% pigment, carbon black, or additive package, 2–5 wt% polyethylene wax, and 0.2–0.5 wt% metal stearate. Barrel temperatures are set between 180°C and 220°C, screw speed is 400–800 rpm, and the melt is finished through a die-face pelletizer with a water mist ring. The carrier's melt flow rate of 1.9–2.1 g/10 min per ASTM D1238 or ISO 1133-1:2022 is high enough to wet high oil-number furnace black but low enough to survive pellet conveying without excessive fines. Compliance for the masterbatch route is indirect: the final fabricated article must meet REACH (EC) No 1907/2006 and, where food contact is claimed, FDA 21 CFR 177.1520 and EU 10/2011 for the finished film or moulded article, not for the masterbatch alone. Terminal products are blown-film colour masterbatch, agricultural UV masterbatch, and anti-fog additive masterbatch supplied back into the film converting chain. Pellet fines above 0.5 wt% after the classifier typically indicate that the die-face pelletizer blade gap is outside the 0.2–0.4 mm range or that the wax level is too low for clean pellet release.

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