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LG Chem HDPE ME9180

    • Product Name: LG Chem HDPE ME9180
    • 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 700402

    As an accredited LG Chem HDPE ME9180 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing LG Chem HDPE ME9180 is packaged in 25 kg woven bags or 1,000 kg jumbo bags, palletized and stretch-wrapped for shipment.
    Container Loading (20′ FCL) LG Chem HDPE ME9180, 20′ FCL: 25 kg bags, approximately 18 MT net unpalletized; palletized loads around 16–17 MT.
    Shipping LG Chem HDPE ME9180 is a solid, non-hazardous polyethylene resin supplied as pellets. It is typically shipped in 25-kg bags, jumbo bags, or bulk containers. Keep dry, avoid prolonged sunlight, and store at ambient temperature. Follow local regulations and manufacturer handling instructions.
    Storage Store LG Chem HDPE ME9180 in a cool, dry, well-ventilated area, away from direct sunlight, heat, flames, and strong oxidizers. Keep original containers or bags closed, clean, and palletized to prevent moisture and contamination. Avoid dust generation and static discharge. Use appropriate stacking limits. Maintain ambient temperature and inspect regularly for spills or damaged packaging.
    Shelf Life LG Chem HDPE ME9180 typical shelf life: 2 years when stored cool, dry, away from direct sunlight in original packaging.
    Application of LG Chem HDPE ME9180

    Thin-wall injection molding of LG Chem HDPE ME9180 for dairy spread containers, frozen dessert tubs, and food-service portion cups is configured around the resin’s melt flow rate of 18 g/10 min at 190°C/2.16 kg under ASTM D1238-20 and density of 0.957 g/cm³ under ASTM D1505-18. The balance between low melt viscosity and melt strength permits filling wall sections between 0.55 mm and 0.85 mm in single-face and stack molds with two to four levels. Accumulator-assisted injection machines with clamp forces from 1,800 kN to 6,500 kN and reciprocating screws of 20:1 to 24:1 L/D are specified because the resin requires short stroke recovery and consistent cushion control. Barrel zones are set between 190°C and 230°C, the nozzle at 220°C to 235°C, and the cooling circuit at 10°C to 30°C; high mold cooling capacity reduces warpage caused by non-uniform solidification. Hydraulic holding pressure is retained in the 35 MPa to 60 MPa band for 0.6 s to 1.8 s, while injection speed is held between 120 mm/s and 200 mm/s at the screw face to minimize flow hesitation marks. If the grade has been stored at relative humidity above 60%, pre-drying for 1 h to 2 h at 60°C to 70°C removes surface moisture and prevents splay on polished or chromium-plated cavity surfaces. Process faults observed on production-scale stack molds include flow hesitation marks when injection speed drops below 80 mm/s and gate blush above 250 mm/s; the operating window is therefore narrow and tool pressure transducers in the runner should be used to control switchover by cavity pressure rather than time.

    Food-contact applications of this injection-molding grade require confirmation of lot-specific regulatory certificates; olefin polymers in this class are assessed under FDA 21 CFR 177.1520(c) for single-use and repeated-use conditions depending on food type, temperature, and contact time. In the European Union, Commission Regulation EU No 10/2011 and its annexes set the overall migration limit at 10 mg/dm² of food contact surface or 60 mg/kg for infant food, while specific migration of authorized additives is controlled through EN 13130-1:2004 testing. The conventional formulation addition ratio in thin-wall dairy and food-service packaging is 0.5 wt% to 2.0 wt% titanium dioxide-based white masterbatch and 0.05 wt% to 0.15 wt% slip/antiblock concentrate to stabilize lid movement on downstream filling lines. Molded articles are later evaluated under EN 1186-1:2002 for overall migration. Terminal products produced from this configuration are single-serve portion cups, rectangular dairy spread tubs, stackable deli containers, and short-shelf-life frozen dessert containers. At continuous service temperatures below -20°C, blending with 15 wt% to 25 wt% LLDPE or an impact-modifier concentrate is standard industry practice to prevent corner cracking under drop testing; published data for ME9180 in that specific blend configuration is limited.

    Regulatory sphereGoverning standardTest parameterThreshold or requirement
    US food contactFDA 21 CFR 177.1520(c)Olefin polymer compliance for food contact articlesConditions of use and food type must be specified; no unauthorized migratory contaminants
    EU plastics food contactCommission Regulation (EU) No 10/2011Overall migration≤10 mg/dm² or 60 mg/kg for infant food
    EU good manufacturing practiceRegulation (EC) No 2023/2006Quality management systemArticles 4 and 5 documentation and traceability
    China food contactGB 4806.7-2016Total migration and consumption testsTotal migration ≤10 mg/dm²; potassium permanganate consumption ≤10 mg/kg
    Restricted substancesDirective 2011/65/EU Annex IIPb, Hg, Cd, CrVI, PBB, PBDEPb ≤0.1%, Hg ≤0.1%, Cd ≤0.01%

    Why Do Short-Run 38 mm HDPE Closure Molds Require Melt Flow Index Above 15 g/10 min?

    Closure production from LG Chem HDPE ME9180 uses the 18 g/10 min melt flow rate under ASTM D1238-20 to fill thin annular flow channels in high-cavitation molds where wall thickness at the thread root is 0.7 mm to 1.2 mm. The material is processed in 24-cavity to 96-cavity hot-runner tools with valve-gate orifice diameters of 0.6 mm to 1.0 mm, because larger gates cause visible vestige on the cap body and smaller gates produce high shear heating. Melt temperature is maintained between 200°C and 230°C, while mold temperature is deliberately low at 8°C to 20°C to freeze the thread geometry and permit demolding without deformation. Pack-and-hold time is limited to 0.4 s to 1.2 s at 50 MPa to 80 MPa; total cycle times of 5 s to 9 s are obtained on 1,800 kN to 4,500 kN clamp force machines. Back pressure is kept below 5 MPa to avoid premature shear heating that reduces viscosity consistency during the filling phase. Batch-to-batch variation in cap application torque has been traced to raw material lot-to-lot molecular weight distribution drift; converters mitigate this by setting injection velocity profiles based on in-mold cavity pressure sensors and by limiting melt residence time above 240°C to less than 3 min.

    Regulatory compliance for closures in food and beverage service includes FDA 21 CFR 177.1520(c) for US conditions of use and Commission Regulation (EU) No 10/2011 for the EU market, with good manufacturing practice documented under Regulation (EC) No 2023/2006. Closure-specific evaluation such as child-resistant certification under ISO 8317:2015 and child-safe opening tests under EN 862 is product-design dependent; material selection alone does not satisfy these performance requirements. The formulation addition ratio is typically 1 wt% to 3 wt% color concentrate, with 0.02 wt% to 0.1 wt% of a slip additive to reduce cap application torque. Terminal products include 38 mm snap-bottle caps for still water, dairy beverage closures, condiment dispensing caps, and overcaps for dry powder containers. The product is not recommended for carbonated soft drink closures requiring long-term carbon dioxide retention or for hot-fill applications above 70°C, because creep relaxation of HDPE under elevated closure backpressure can reduce removal torque and seal integrity.

    Post-Mold Shrinkage Compensation in Returnable Logistics Crate Molding

    Returnable logistics crates, ventilated produce boxes, and rackable automotive totes injection molded from LG Chem HDPE ME9180 are characterized by wall thicknesses of 2.5 mm to 5.0 mm and long flow distances that require multi-point hot-runner or cold-runner sequencing. Post-mold shrinkage measured at 23°C and 50% relative humidity under ISO 294-4:2018 typically falls between 1.5% and 2.5% in the flow direction and 1.0% and 2.0% in the transverse direction after 48 h conditioning. Tooling must compensate for anisotropic shrinkage at rib intersections, handle bosses, and stacking ledges, or warpage produces lid misalignment after cooling. Production-scale equipment has included injection molding machines from 6,000 kN to 20,000 kN clamp force with screw L/D from 20:1 to 24:1, using melt temperatures of 210°C to 240°C and mold temperatures of 15°C to 35°C. Cycle times vary from 25 s to 70 s according to part mass, with segregated hold pressures between 30 MPa and 55 MPa to compact rib bases without overpacking flat sidewalls. Structural failure modes in returnable crates include bottom rib cracking after repeated washing at 60°C with alkaline detergents; HDPE stress cracking resistance is assessed with ASTM D1693-21 test specimens molded from the same lot, and the processing window must avoid excessive orientation in ribs.

    Stacking load retention is evaluated under ISO 12048:2000 for complete packaging and under ASTM D642-20 for top-load performance of molded panels. HDPE exhibits progressive creep at upper service temperatures, and field failures have been observed in crate stacks stored above 35°C when unsupported sidewall gaps exceed 200 mm; ribbing, cross-member design, or reduced rack loading becomes necessary. The weathering and UV stabilizer package added to outdoor crates ranges from 0.2 wt% to 0.8 wt% hindered amine light stabilizer, often combined with 1 wt% to 3 wt% carbon black masterbatch. Incorporation of 20 wt% to 30 wt% post-consumer recycled HDPE is possible when the recyclate is melt-filtered and density-sorted, but flow and shrinkage must be re-measured on each blended lot because published data for ME9180 with specific PCR ratios is limited. Terminal hardware includes folding produce crates, nestable transport boxes, returnable automotive parts totes, and integrated-lid pallet containers.

    Across modular storage systems, stackable drawers, and closet organizer components, high-flow LG Chem HDPE ME9180 is processed in medium-cavity tooling where textured cavity surfaces demand draft angles of 0.5° to 1.5° and mold temperatures of 20°C to 40°C to reproduce matte grain without sticking. The resin’s 18 g/10 min melt flow rate under ASTM D1238-20 enables long-flow drawer fronts with nominal wall thickness 1.5 mm to 2.5 mm at hydraulic injection pressures below 70 MPa. Injection machines from 1,500 kN to 5,000 kN clamp force are used, with back pressure set between 3 MPa and 7 MPa to homogenize color dispersion without excessive shear. Holding pressure is maintained at 25 MPa to 45 MPa for 2 s to 6 s, and total cycle time is governed by part mass rather than material limits. Production experience indicates that gloss variation across visible surfaces is reduced when cooling channels are drilled to maintain water temperature differentials below 3°C in the cavity block. Ejection forces exceed 15 kN when deep texture and insufficient draft are combined; hydraulic core pulls are used for drawer sidewalls with undercuts.

    Formulation addition ratios for housewares and storage products are 1 wt% to 2 wt% pigment masterbatch, with 0.1 wt% to 0.3 wt% antistatic concentrate when dust adhesion is a quality concern. For toy and child-contact articles, elemental migration testing is performed under EN 71-3:2019+A1:2021, and phthalate restrictions apply under REACH Annex XVII Entries 51 and 52; only grade batches with documented Toy Safety conformity should be released. Terminal products include modular cabinet drawers, stackable storage bins, closet organizer baskets, hangers, and technical components in low-tolerance consumer assemblies. The material is not suited to load-bearing furniture joints without glass-fiber reinforcement, and published data for ME9180 with structural fillers in houseware formulations is limited.

    When Paint Pails and Industrial Containers Require Stacking Load Retention Above 30°C

    Injection-molded 5 L to 25 L open-top pails for water-based paints, adhesives, construction compounds, and cleaning agents utilize LG Chem HDPE ME9180 for its resistance to hydrolysis, saline cleaning fluids, and dilute alkaline solutions. The grade is not rated for single-layer containment of aromatic solvents, ketones, esters, or concentrated oxidizing acids above 40°C; liner systems or fluorination may be required when volatile organic permeation limits are specified by end users. Pail molding is carried out in multi-cavity stack tools producing parts with wall thicknesses of 2.0 mm to 3.5 mm and shot weights from 250 g to 1,000 g. Injection molding machines from 8,000 kN to 18,000 kN clamp force are required, with barrel temperatures 210°C to 240°C, mold temperatures 15°C to 35°C, and hot-runner manifold temperatures held at 230°C to 245°C. Segmented hold pressure profiles reduce sink marks at handle bosses: initial pressure 45 MPa for 2.5 s, followed by 20 MPa for 8 s, then cooling cycle engagement. Pail handle bosses exhibit sink lines when holding time is shortened below 8 s or when pack pressure decays faster than 15 MPa/s; machines with closed-loop hydraulic control and position-based switchover from injection to pack reduce cavity pressure fluctuation to less than 1 MPa.

    Stacking load retention for filled pails is evaluated through ISO 12048:2000 and customer-specific top-load tests at 30°C to 40°C; HDPE under sustained load shows time-dependent deformation, so stack height must be reduced when storage temperatures exceed 30°C. The formulation addition ratio includes 0.2 wt% to 1.0 wt% antioxidant/UV stabilizer masterbatch and 1 wt% to 3 wt% colorant. For cold-climate transport, blending with 10 wt% to 20 wt% LLDPE or high-molecular-weight HDPE improves drop impact at -18°C. For dangerous goods packaging, material alone does not confer UN certification; the complete pail and closure system must pass design-specific drop, stacking, hydraulic pressure, and leak tests under UN Manual of Tests and Criteria, Part III. Terminal products are paint pails, construction chemical containers, lubricant pails, and industrial detergent buckets with tamper-evident lids.

    Compounded at 30 wt% to 70 wt% as carrier resin, LG Chem HDPE ME9180 functions in additive masterbatch and color concentrate lines serving PE film, pipe, and injection molding converters. The high melt flow rate of the carrier allows high filler or pigment loadings while preserving dispersibility in downstream letdown ratios from 2% to 8%. Twin-screw compounding lines with L/D ratios of 40:1 to 48:1 and screw speeds of 400 rpm to 700 rpm are used, with barrel temperatures between 180°C and 220°C and strand die head pressures of 3 MPa to 8 MPa. Organic pigment masterbatches are commonly produced at 30 wt% to 45 wt% pigment, carbon black masterbatches at 25 wt% to 40 wt%, and mineral filler concentrates at 50 wt% to 70 wt%; dispersant levels of 3 wt% to 10 wt% prevent pigment agglomeration. Melt-filtrated pressure rise tests over 120 min at 190°C using screens of 25 μm to 50 μm monitor dispersion quality. Color masterbatch speck formation after letdown is linked to incomplete dispersive mixing when screw speed drops below 350 rpm or when the carrier melt temperature at the die falls below 180°C; distributive mixing elements such as toothed blocks or combing sections in the second half of the extruder barrel are used.

    Regulatory compliance for masterbatch carriers includes REACH Regulation (EC) No 1907/2006 registration obligations and Article 33 communication when the final article contains substances of very high concern above 0.1% w/w. Food-contact masterbatch production follows Regulation (EU) No 2023/2006 Article 4 good manufacturing practice; downstream articles must satisfy EU No 10/2011 migration limits. The material is not recommended as a carrier for PVC-specific or engineering polyester systems where the processing temperatures exceed 230°C. Terminal products are color masterbatches, additive concentrates, and filled compounds used in blown film, pipe extrusion, and injection molding applications.

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