| HS Code | 628897 |
| Density | 0.953 g/cm³ |
| Meltindex | 0.35 g/10 min |
| Meltingpoint | 130 °C |
| Tensilestrengthatyield | 28 MPa |
| Elongationatbreak | >600% |
| Flexuralmodulus | 1200 MPa |
| Vicatsofteningpoint | 125 °C |
| Brittlenesstemperature | < -70 °C |
| Environmentalstresscrackresistance | >1000 h |
| Hardnessshored | 65 |
| Thermalconductivity | 0.45 W/m·K |
| Specificheat | 1.9 kJ/kg·K |
| Waterabsorption | <0.01% |
As an accredited Chevron Phillips Chemical HDPE C513 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Chevron Phillips Chemical HDPE C513 is supplied in 25 kg polyethylene-lined bags, palletized and stretch-wrapped for secure transport. |
| Container Loading (20′ FCL) | Chevron Phillips HDPE C513 20′ FCL: 25 kg bags, 800 bags, 20 MT net, floor-loaded and secured for ocean transport. |
| Shipping | Chevron Phillips Chemical HDPE C513 is a non-hazardous high-density polyethylene resin shipped as solid pellets. Typical packaging includes 25 kg bags, 1,000 kg bulk bags, bulk trucks, or railcars. It is not DOT/IMDG/IATA regulated. Store and transport dry, away from excessive heat, moisture, and contamination. |
| Storage | Store Chevron Phillips Chemical HDPE C513 in a cool, dry, well-ventilated warehouse, away from direct sunlight, heat, flames, and strong oxidizing agents. Keep original containers or packaging closed, clean, and palletized to prevent moisture, dust, and contamination. Maintain ambient temperatures, avoid prolonged UV exposure, and follow SDS and local regulations. Use first-in, first-out stock rotation. |
| Shelf Life | Chevron Phillips Chemical HDPE C513 typically has indefinite shelf life when stored cool, dry, sealed, away from sunlight and heat. |
Chevron Phillips Chemical’s Marlex C513 is a high-density polyethylene injection molding grade with a nominal melt flow rate of 8.0 g/10 min at 190°C under 2.16 kg load (ASTM D1238, ISO 1133-1:2022) and a nominal density of 0.953 g/cm³ (ASTM D1505). The grade is specified for injection molding and injection-blow molding converter environments where melt flow must fill thin walls or high-cavitation tools without degradation; the onset of HDPE oxidative degradation becomes significant above 230°C at residence times beyond 6 minutes, so hot-runner channels and screw-recovery zones must be sized to avoid dead spots. No drying is required for virgin pellets stored below 60% relative humidity; reprocessed regrind above 0.3 wt% surface moisture requires pre-drying at 70–80°C for 2 hours. Each downstream sector below is restricted to applications for which C513’s published density and flow data, combined with converter-specific additive packages, can be validated on production-intent tooling; the resin itself does not confer finished-article regulatory approval.
| Downstream sector | Primary standard designation | Test method or performance clause | Converter verification boundary |
|---|---|---|---|
| Thin-wall food packaging | FDA 21 CFR §177.1520; EU 10/2011 | Overall migration per EN 1186 | Finished-article migration testing on production tooling |
| Industrial pails | 49 CFR 178.500; IMDG Code; FDA 21 CFR §177.1520 | UN stack, drop, leakproofness tests | Pail design qualification per UN certification requirements |
| Household storage | REACH 1907/2006; RoHS 2011/65/EU | ASTM D638; ASTM D256 | Recycled input documentation under ISO 14021 |
| Closures | FDA 21 CFR §177.1520; EU 10/2011 | ASTM D2063; ASTM D1693 | Torque retention and ESCR on production-intent closures |
| Returnable crates | 94/62/EC; ISO 18601 | Top-load at 40°C; impact at -18°C | Closed-loop reuse logistics validation |
| Municipal waste bins | EN 840-1; REACH 1907/2006 | EN 840-1 drop at -18°C; ISO 4892-2 | Weathering and load-cycle qualification per colorant |
Thin-wall dairy and non-carbonated beverage cup production uses C513 at melt temperatures of 200–230°C on accumulator-assisted hydraulic injection molding machines with clamp forces of 300–600 tonnes and plasticating screws with L/D 20:1–24:1. The production process is an injection-compression or high-speed injection sequence into 8- to 32-cavity stack molds with valve-gated hot runners; injection velocities of 120–250 mm/s and cavity filling times below 0.3 s are used to avoid freeze-off before packing, but shear rates at the gate can exceed 104 s-1, generating local melt temperature rises of 5–15°C and increasing the risk of gate blush and delamination. Mold temperature control between 10°C and 20°C is applied to the cavity and core, while cooling time is held at 3–8 s; this imposes a narrow processing window because demolding temperature above 80°C in sidewall regions produces ovality and stacking mismatch. Solidification shrinkage in the flow direction is approximately 1.5–2.0% and cross-flow shrinkage ranges from 1.0–1.5%, requiring hold pressure from 40–70 MPa for 0.5–2.0 s to reduce sink. Industry compliance for food-contact outputs rests on FDA 21 CFR §177.1520 for olefin polymers and EU Regulation 10/2011; overall migration testing under EN 1186 must be conducted on the finished article because color concentrates and processing aids modulate extractables. Formulation addition ratios are fixed by masterbatch carriers: high-hide white TiO₂ masterbatch is metered at 1.5–3.0 wt%, slip/antiblock masterbatch at 0.5–1.0 wt%, and nucleating agents are generally withheld because their rapid crystallization increases shrinkage anisotropy in thin sidewalls. Terminal products include 100–500 mL dairy cups, margarine tubs, fresh-cut produce containers, and non-carbonated beverage tumblers; carbonated pressure applications are outside the validated envelope because residual hoop stress in injection-molded sidewalls interacts with aggressive beverage ethanol or flavor oils under ASTM D1693 ESCR testing.
Because open-head industrial pails require sidewall thicknesses of 2.0–3.5 mm and tight radial dimensions at the lid sealing surface, C513 is processed at melt temperatures of 190–220°C and mold temperatures of 10–25°C, with clamp force requirements typically spanning 600–1,500 tonnes depending on tool cavitation and pail diameter. The downstream production sequence is injection molding on single-face or stack molds with sprue bushing or hot-runner gating, followed by post-mold cooling and automated handle assembly or overmolding where an integrally molded bail ear is specified. Hold pressure between 40–70 MPa for 4–8 s compensates for HDPE solidification shrinkage of 1.5–2.5% in the solid phase, but over-packing beyond the gate freeze time creates residual stress at the pail rim and reduces ESCR performance under ASTM D1693. For dangerous goods packagings, pail designs must pass UN performance tests under 49 CFR 178.500 or IMDG Code performance requirements, while food-contact pails require FDA 21 CFR §177.1520 and EU 10/2011 conformity on the finished item. Formulation addition ratios follow masterbatch dosing: heavy metal-free color concentrates at 1.0–2.5 wt%, UV stabilizer masterbatch at 2.0–4.0 wt% for exterior storage periods exceeding 6 months, and process-stable in-house regrind at 20–30 wt% when flake is dried and melt-filtered to remove >500 µm particulates. Terminal product types include 5 L, 10 L, 20 L, and 25 L open-head pails, lid-sealed buckets for emulsions and adhesives, and tamper-evident food ingredient buckets. Continuous service above 60°C can reduce hoop strength and should be avoided for filled pails under stacking load; this boundary is not captured by short-term tensile data alone.
In household storage and modular utility tote applications, C513 is processed on hydraulic toggle injection molding machines with clamp forces from 400 to 1,200 tonnes, with melt temperatures of 190–215°C and mold temperatures of 10–25°C. The typical downstream production route is direct gating into multi-cavity tools with polished cores; part walls from 1.8–3.5 mm permit cycle times of 22–45 s, but the cycle is cooling-limited, and hot spots around ribs and corner radii require conformal cooling inserts when wall thickness exceeds 4.0 mm. Industry compliance for these non-food durables is anchored to EU REACH Regulation 1907/2006 and Directive 2011/65/EU (RoHS); where recycled content is added under local extended producer responsibility rules, converters must document input streams under ISO 14021 or national packaging-waste legislation. Formulation addition ratios include color concentrate at 1.0–2.0 wt%, antistatic masterbatch at 0.5–2.0 wt% when storage bins are used near electronic components, and silicone-based mold release masterbatch at 0.2–0.5 wt% only when ejection forces exceed tool maker limits. Terminal products are modular drawer units, under-bed storage boxes, stackable utility totes, and closet organizer shells. For load-bearing engagement features such as latching lids or drawer slides, tensile strength at yield measured by ASTM D638 remains the primary acceptance criterion, with notched Izod impact per ASTM D256 used to set cold-warehouse handling limits.
In 28 mm and 33 mm high-cavitation closure tools, C513 is processed at melt temperatures of 180–210°C and mold temperatures of 10–20°C to maintain thread roundness and skirt flatness after ejection. High-cavitation closure tools running 32 to 64 cavities with valve-gated hot runners expose the resin to repeated shear history; the melt flow rate of 8.0 g/10 min (ASTM D1238) allows filling without excessive injection pressure, but gate freeze must occur within 0.3–0.8 s to avoid clogging and stringing. The downstream production process includes injection molding with unscrewing or collapsing cores for internal threads, post-mold lining with induction-seal or foam gaskets, and automated vision inspection for ovality and surface defects. Dimensional stability is controlled by balancing pack pressure with shrinkage; for a 33 mm HDPE closure, cavity-to-core shrinkage of 1.5–2.0% must be compensated in the thread geometry, and the mold dimension must account for subsequent relaxation during 48–72 hours of post-mold annealing at ambient temperature. Formulation addition ratios are critical because slip additives migrate over time: erucamide slip masterbatch is metered at 0.5–1.5 wt% for torque reduction in bottle capping lines, color concentrate at 1.0–3.0 wt% for brand-specific opaque colors, and an antioxidant masterbatch at 0.1–0.3 wt% is added when regrind ratios above 15 wt% are used. Industry compliance requirements include FDA 21 CFR §177.1520 and EU 10/2011 for food-contact caps, REACH 1907/2006 for supply chain documentation, and closure-specific torque retention testing under ASTM D2063 or child-resistant protocols under EN ISO 8317 where applicable. Terminal products include non-carbonated beverage closures, personal care flip-top caps, household chemical caps with child-resistant overcaps, and diagnostic container snap-on lids. Published data for C513 in carbonated soft drink closure configurations is limited; converters must avoid pressure-retaining closures until ESCR validation per ASTM D1693 and dynamic torque retention testing at 40°C are completed on production-intent samples.
Returnable material-handling crates and nestable distribution trays produced from C513 are injection molded on large-platen machines of 800–2,500 tonnes clamp force using hot-runner or multi-nozzle cold-runner systems. Melt temperatures are set at 200–230°C; mold temperatures of 10–25°C are used to achieve adequate crystallinity in load-bearing grid floors. The downstream production process includes injection molding of ventilated sidewall geometries, post-mold trimming of gate remnants, and optional hot-stamp coding or pad printing; for RFID-tracked logistics systems, tag insertion or overmolding is performed after the part has cooled below 40°C to avoid tag seal degradation. Industry compliance for reusable transport packaging falls under EU Directive 94/62/EC packaging waste requirements and ISO 18601 reuse system documentation, while food-contact interlayer sheets or divider inserts must meet FDA 21 CFR §177.1520 and EU 10/2011 on final components. Formulation addition ratios for colored crate stock are typically 1.5–3.0 wt% masterbatch for high-opacity red, blue, or green, 0.5–1.5 wt% chemical foaming agent masterbatch where density reduction is used to lower part weight, and 10–25 wt% post-industrial regrind when melt flow variation is controlled within ±0.5 g/10 min of the virgin C513 value. Terminal products include 30 × 40 cm and 60 × 40 cm distribution trays, collapsible and rigid beverage crates, bakery trays, and interlocking tote bins used in closed-loop retail logistics. Dimensional stability under load is evaluated by creep resistance and top-load deformation at 40°C, not merely by as-molded dimensions; cold impact resistance at -18°C is a key acceptance test for returnable crate use in refrigerated distribution.
For 120 L, 240 L, and 360 L two-wheeled municipal waste bins, C513-based formulations are injection molded at melt temperatures of 200–230°C and mold temperatures of 10–25°C, using injection molding machines with clamp forces typically above 1,500 tonnes and shot capacities matched to part weights of 6–14 kg. The downstream production process is a single-cavity or two-cavity large-part injection molding sequence with sequential valve gating or multi-gate cold-runner filling; wall thicknesses from 3.0–5.0 mm produce cooling times of 45–90 s, and ejection requires balanced core pulls and lifter geometry to avoid distortion at the axle and comb-lifter mounting bosses. Industry compliance requires conformance to EN 840-1 for mobile waste container dimensions and performance, EU Regulation 1907/2006 (REACH) for material traceability, and local heavy-metal limits in packaging waste directives. Formulation addition ratios are governed by UV and thermal oxidative service life: carbon black masterbatch at 2.0–3.5 wt% for outdoor UV resistance in gray or black bins, hindered amine light stabilizer masterbatch at 0.3–0.8 wt% for non-black colors where carbon black cannot be used, and antioxidant masterbatch at 0.1–0.3 wt% when processing temperatures exceed 220°C or when regrind above 20 wt% is reintroduced. Terminal product types are 120 L, 240 L, and 360 L wheeled bins, four-wheel bulk containers, and organic waste caddies with lid hinges. Mechanical acceptance is based on drop impact at -18°C per EN 840-1, top-load compression, and axle mount fatigue; color shift after accelerated weathering per ISO 4892-2 must remain below customer-specific Delta E limits after 2,000 hours of Xenon arc exposure. Published data for C513 in black bin formulations at 5.0 mm wall thickness under full EN 840-1 load-cycle testing is limited; converters should qualify each colorant and UV package on a production-representative part before series approval.
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