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Chevron Phillips Chemical HDPE 9514H

    • Product Name: Chevron Phillips Chemical HDPE 9514H
    • 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 963358
    Density 0.951 g/cm³
    Melt Index 0.35 g/10 min (190 °C/2.16 kg)
    Tensile Strength At Yield 26 MPa
    Tensile Strength At Break 30 MPa
    Elongation At Break >600%
    Flexural Modulus 1,200 MPa
    Notched Izod Impact Strength 80 J/m
    Vicat Softening Point 127 °C
    Heat Deflection Temperature 73 °C at 0.45 MPa
    Environmental Stress Crack Resistance >1000 h (10% Igepal)
    Hardness Shore D 66
    Melting Point 133 °C
    Thermal Conductivity 0.42 W/m·K
    Coefficient Of Linear Thermal Expansion 1.2E-4 /°C
    Water Absorption <0.01%

    As an accredited Chevron Phillips Chemical HDPE 9514H factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Chevron Phillips Chemical HDPE 9514H is supplied in 25 kg polyethylene-lined paper bags, palletized and shrink-wrapped for transport.
    Container Loading (20′ FCL) 20′ FCL container loaded with Chevron Phillips Chemical HDPE 9514H in 25 kg bags, palletized, stretch-wrapped, and secured for transport.
    Shipping Chevron Phillips Chemical HDPE 9514H ships as non-hazardous polyethylene resin pellets, typically in 25-kg bags, 1,000-kg bulk bags, or bulk trucks/railcars. Keep dry, clean, and away from ignition sources. Not DOT/IMDG regulated. Store at ambient temperature, avoiding moisture and prolonged direct sunlight; follow supplier SDS and local rules.
    Storage Store Chevron Phillips Chemical HDPE 9514H in a cool, dry, well-ventilated area away from direct sunlight, heat, ignition sources, and moisture. Keep containers closed and off the floor to prevent contamination. Avoid excessive stacking and follow first-in, first-out stock rotation. Protect from prolonged UV exposure and strongly odorous substances. Maintain clean, compatible storage conditions and comply with the safety data sheet.
    Shelf Life Chevron Phillips Chemical HDPE 9514H: no specific shelf life; store in a cool, dry, well-ventilated area away from ignition sources.
    Application of Chevron Phillips Chemical HDPE 9514H

    Pails and Open-Head Industrial Containers: UN-Rated Wall Thickness Versus Gate Freeze Control

    Accumulator-assisted injection presses with clamp force between 8,000 kN and 16,000 kN running open-head pail molds use Chevron Phillips Chemical HDPE 9514H as the virgin-rich continuum phase at nominal melt flow rate 14 g/10 min (ISO 1133-1:2022) and density 0.954 g/cm³ (ISO 1183-1:2019). In UN 1H2 packaging for liquid agricultural and industrial chemicals, the sidewall must typically sustain a drop test at -18 °C from a height between 1.2 m and 1.8 m after filling with water/antifreeze mixture, depending on packing group, which makes low-temperature tensile-elongation and environmental stress crack resistance under ASTM D1693-15 more relevant than ambient impact alone. The 1H2 certification requires hydraulic pressure retention and stack-load stability per UN Recommendations on the Transport of Dangerous Goods, Chapter 6.1, and food-contact pails fall under FDA 21 CFR 177.1520(c) with compositional requirements for hexane extractives below 2.6% at 50 °C for fatty food simulants. Formulation at the press typically consists of 96-98 wt% virgin HDPE 9514H, 1-3 wt% polyethylene-carrier color or TiO₂ masterbatch, and 1-2 wt% of a hindered phenolic antioxidant masterbatch where outdoor exposure is specified; regrind from trimmed sprues and rejects may be reintroduced at 20-30 wt% only after in-line melt filtration through 150 μm screen packs to prevent gel and char contamination. In practice, the resin is processed with melt temperature 200-240 °C, mold temperature 15-30 °C, injection velocity controlled to fill the pail bottom and sidewall in 0.8-1.6 s, and holding pressure of 50-80 MPa for 8-14 s before gate freeze, with a total cycle of 18-28 s for a 5 L pail. Gate design uses either a central sprue or a valve-gated hot drop into the pail base; premature gate freeze at the center disc produces internal sink around the stacking ring and reduces passed drop tests. Process limits include a melt temperature ceiling of 260 °C because residence times above 8 min at that temperature drive thermal-oxidative chain scission and raise the presence of low-molecular-weight odor compounds; pellet surface moisture from humid silos should be removed by 70-80 °C desiccant or hot-air drying for 1-2 h when visual water condensation appears. Terminal products covered by this setting include 3-25 L open-head pails for water-based paints, lubricants, agrochemical concentrates, and food ingredient drums, with matching lids produced from the same resin to avoid differential thermal expansion and seal failure. HDPE 9514H is not recommended for extrusion blow molding or thin-gauge sheet because its high melt index reduces parison and sheet melt strength, leading to sag and gauge variation on conventional single-screw lines.

    In cheese portioning and deli-container lines running 16- to 32-cavity stack molds with cycle times between 4.5 s and 8.0 s, HDPE 9514H functions as the high-flow, narrow-molecular-weight-distribution polyolefin that enables filling of 0.35-0.60 mm sidewall sections at hydraulic pressures below 140 MPa on electric toggle presses. The material enters the mold at melt temperature 215-250 °C; the hot-runner drop is held at 230-240 °C to prevent premature freeze-off in the valve-gate nozzle, and the chilled cavity is maintained at 8-15 °C to achieve target ejection temperatures of 70-80 °C, well below the Vicat softening range of 124-128 °C measured under ISO 306:2022 A50. Food-contact compliance for dairy cups, margarine tubs, and delicatessen containers requires FDA 21 CFR 177.1520(c) and EU Regulation No 10/2011 with an overall migration limit below 10 mg/dm² for aqueous, acid, and dairy simulants under OM2 conditions. The formulation used in high-cavity production is 97.0-98.5 wt% virgin HDPE 9514H, 1.0-2.0 wt% white or pigmented masterbatch on a polyethylene carrier, 0.3-0.6 wt% of a migratory primary amide slip additive to reduce surface coefficient of friction, and optionally 0.05-0.15 wt% of a nucleating agent when demolding temperatures must be reduced at the expense of impact toughness. Addition of slip above 0.8 wt% is avoided because saturated primary amides bloom to the surface during storage and can interfere with printed lidding seal strength at 130-150 °C heat-seal jaw temperatures. The downstream process is conventional high-speed injection molding with metered feed, screw L/D of 20:1 to 24:1, compression ratio 2.5:1 to 3.0:1, and back pressure 5-10 MPa; injection speed is set to fill thin sidewalls within 0.10-0.35 s to avoid flow hesitancy lines, while the pack pressure is reduced to 20-35 MPa for 0.5-1.2 s to prevent flash at vent depths of 0.015-0.025 mm. Terminal products include 100-500 mL dairy cups, 250-750 mL deli containers, and matching snap-on lids, all with wall uniformity required within ±0.03 mm for downstream automated filling and lidding. One process conflict on these lines is the interaction between melt temperature, molecular orientation, and environmental stress crack resistance: raising melt temperature above 270 °C lowers viscosity and improves fill, but the resulting molecular orientation loss in the sidewall and gate region may reduce ASTM D1693-15 ESCR below 30 h in 100% Igepal, particularly when regrind exceeds 15 wt%. Thus, the optimal operating window is narrow—melt temperature 220-250 °C, regrind fraction below 15 wt%, and slip masterbatch below 0.8 wt%—when containers are intended for low-fat dairy with surface oils or salt-containing dressings.

    Formulation and process gradient for thin-wall HDPE 9514H dairy/deli containers
    ParameterLower boundUpper boundTest or equipment reference
    Virgin HDPE 9514H loading97.0 wt%98.5 wt%Gravimetric feeder calibration
    Slip masterbatch loading0.3 wt%0.6 wt%Primary amide concentration via FTIR
    Melt temperature220 °C250 °CManual needle thermocouple in open melt stream
    Cavity surface temperature8 °C15 °CChilled water unit with ±1 °C control
    Cycle time4.5 s8.0 sToggle press dry-cycle plus mold-open timer

    What Limits Continuous Thread Stripping Torque in Injection-Molded HDPE Closures?

    Continuous-thread HDPE closures for non-carbonated beverage bottles, pharmaceutical containers, and household chemical bottles are produced in 24- to 96-cavity hot-runner molds where HDPE 9514H is selected for spiral flow length and dimensional stability rather than stiffness alone. The filling pattern of a closure shell with 0.7-1.2 mm thread profile across a 28 mm or 38 mm finish must balance melt flow against molecular orientation at the thread root; excessive orientation in the thread root creates a slip plane that lowers stripping torque measured under ASTM D2063-12. In high-cavity production, the resin is dry-blended with 1.0-2.0 wt% of a color masterbatch, 0.5-1.0 wt% of a silicon-free slip/antiblock masterbatch, and 0.05-0.10 wt% of a secondary antioxidant, with virgin HDPE 9514H at 96-98 wt%. Melt temperature is maintained at 210-250 °C, mold temperature at 10-30 °C, injection pressure in the 70-110 MPa range, and cycle time typically 5-12 s depending on cavity count and wall section. The process boundary is set by gate blush and thread flash: if melt temperature drops below 200 °C at the valve pin, the frozen skin in the thread root causes incomplete fill at the thread crest, while temperatures above 260 °C cause low-viscosity leakage into mold vents and create feathering on the tamper-evident band. Compliance is based on FDA 21 CFR 177.1520(c) and EU Regulation No 10/2011 for food-contact closures, USP <661.1> for pharmaceutical plastic packaging systems where relevant, and ISO 8317:2015 for child-resistant closures requiring closure-opening torque verification. Terminal product types include 28 mm and 38 mm non-carbonated beverage caps, dairy closure systems, ophthalmic and nutraceutical closures, and trigger-spout bases for household cleaning chemicals. HDPE 9514H is not recommended for carbonated soft drink closures where polypropylene is preferred for long-term top-load retention under CO₂ headspace pressure, because HDPE creep at 40 °C can progressively reduce seal force. The resin should not be combined with high-vanillin or essential-oil flavor systems without a barrier liner, as HDPE sorption of these compounds can exceed 1% by weight and alter organoleptic properties.

    Returnable Crate Impact at -20°C and Weatherable Pigment Loadings

    For returnable folding crates, stack-nest totes, and pallet collars used in unheated logistics hubs, the injection molding process shifts toward thick ribs and bosses, and HDPE 9514H is combined with weatherable pigment masterbatch at 2-5 wt% to preserve notched Charpy impact measured under ISO 179-1:2010/1eA to at least 4-6 kJ/m² at -20 °C after 2,000 h of ISO 4892-2:2013 artificial weathering. The base resin is used at 92-97 wt%, with regrind from internal runners and rejected crates at 15-30 wt% only after sorting for metal contamination and removal of previous labels; regrind above 30 wt% lowers melt extensibility in thick sections and increases brittleness in door hinges. The production process uses machines with clamp force between 8,000 kN and 30,000 kN, melt temperature 200-230 °C, mold temperature 10-25 °C, and hold pressure 45-70 MPa for thick bosses; the gate size must be at least 1.5 mm thickness to avoid premature freeze at the sprue and sink marks around stacking lugs. Compliance for returnable transport packaging is anchored to EN 13199-1:2000 for reusable rigid plastics small load carrier systems and ISO 8611-1:2021 for pallets when pallet load rating is specified; food and pharmaceutical supply chains additionally require FDA 21 CFR 177.1520(c) for incidental contact and EU Regulation No 10/2011 where the crate may contact primary packaging. Terminal products include 600 mm × 400 mm stacking totes, 1,200 mm × 1,000 mm pallet collars, and folding dairy crates for 20-25 kg payload. The process boundary is set by the tendency of HDPE 9514H to develop surface weld lines around multiple gate locations in deep-ribbed crates; weld line strength measured by ISO 527-2:2012 at the knit line can drop below 60% of base tensile strength if the melt front temperature falls below 190 °C. Thus, hot-runner manifold temperatures above 220 °C and sequential valve-gate open delays of 0.5-1.5 s are typically necessary for crates with more than four gating positions.

    Compliance and test matrix for returnable HDPE 9514H transport packaging
    RequirementStandard or regulationRelevant threshold or test condition
    Reusable small load carrierEN 13199-1:2000Dimensional stability and stacking at rated load
    Plastics palletISO 8611-1:2021Bending strength and impact at -20 °C
    Food-contact incidental packagingFDA 21 CFR 177.1520(c)Hexane extractives <2.6% at 50 °C
    WeatherabilityISO 4892-2:20132,000 h accelerated weathering, impact retention

    When storage totes and children’s toy components are molded from HDPE 9514H on cold-runner machines with clamp force between 1,200 kN and 6,000 kN, the resin’s melt flow rate of 14 g/10 min permits wall thickness reductions to 1.0-1.8 mm in living-hinge-free designs without the need for specialist thin-wall machines. The material is normally dry-blended with 1-3 wt% of a polyethylene-based color masterbatch and, for dust-resistant storage bins, 0.5-1.5 wt% of a non-blooming antistatic masterbatch; antistatic loadings above 2.0 wt% are incompatible with food-contact declarations and can reduce weld line strength. Process conditions are standard: melt temperature 200-240 °C, mold temperature 10-30 °C, back pressure 4-8 MPa, and cooling time of 8-20 s depending on nominal wall thickness. Product compliance for food storage articles falls under FDA 21 CFR 177.1520(c) and EU Regulation No 10/2011; toy components require compliance with EN 71-3:2019+A1:2021 migration limits for 19 elements and with REACH Annex XVII restricted phthalates, although the base resin contains no intentionally added phthalates. Terminal product types include 10-120 L storage bins, laundry baskets, dustpans, and certain rigid toy components where no soft-touch overmolding is required. The main operational boundary is the absence of long-term UV stabilization in the base resin; indoor housewares are not intended for prolonged direct sunlight exposure without an additional 2-4 wt% UV stabilizer masterbatch, because unstabilized HDPE can retain less than 50% of its initial ISO 179-1:2010 notched Charpy impact after two years of outdoor weathering; published data for this specific resin and article geometry is limited, so end-use validation is required for any UV-exposed application. HDPE 9514H is also not recommended for flexible hinges requiring polypropylene-style flex fatigue resistance, as repeated bending at the hinge root after cold conditioning can initiate crazing at stress below the tensile yield point.

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