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LyondellBasell HDPE B8750A

    • Product Name: LyondellBasell HDPE B8750A
    • 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 758267

    As an accredited LyondellBasell HDPE B8750A factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing LyondellBasell HDPE B8750A is supplied in 25 kg polyethylene bags, typically 40 bags per 1,000 kg pallet.
    Container Loading (20′ FCL) Container Loading (20′ FCL): LyondellBasell HDPE B8750A in 25 kg bags, palletized, stretch-wrapped, secured in a 20-foot dry container.
    Shipping LyondellBasell HDPE B8750A is shipped as non-hazardous polyethylene pellets in 25 kg bags, jumbo bags, octabins, or bulk trucks/railcars. Store in a cool, dry area, away from ignition sources and prolonged sunlight. Follow the SDS and applicable transport regulations. Packaging must remain sealed and intact during handling.
    Storage Store LyondellBasell HDPE B8750A in a cool, dry, well-ventilated area away from direct sunlight, heat, moisture, and ignition sources. Keep in original sealed bags or containers, elevated on pallets, and stack safely to avoid damage. Protect from prolonged UV exposure and contamination. Ensure containers remain closed when not in use. Maintain good housekeeping and follow local regulations and supplier instructions.
    Shelf Life LyondellBasell HDPE B8750A typically has an indefinite shelf life when stored sealed, dry, away from direct sunlight, heat, and contaminants.
    Application of LyondellBasell HDPE B8750A

    A 120 mm accumulator-head extrusion blow molder processing HDPE B8750A at a melt temperature of 205 °C and a die-head pressure of 28 MPa maintains parison sag below 15% when the programmed die gap is restricted to 60–70% of final wall thickness. The barrel profile from feed throat to accumulator is set at 180 °C, 190 °C, 200 °C, 210 °C, 210 °C, and 220 °C; head and die zones are maintained at 220 °C and 200 °C. A grooved-barrel extruder with 24:1 L/D and screw speed capped at 55 rpm prevents melt-temperature overshoot caused by viscous dissipation in the feed section. Blow pressure of 0.6–0.8 MPa and mold clamp force of 120–180 t are applied for wall sections of 1.5–3.0 mm. Pre-drying of carbon black masterbatch at 80 °C for 4 h is required when ambient relative humidity exceeds 60% to prevent splay on the drum shoulder. Formulation addition ratio for monolayer hazardous-liquid drums is fixed at 100 wt% virgin HDPE B8750A for first-pass production; post-industrial regrind from the same line is added at 15–20 wt% only if the compound retains a notched Izod impact of 35 kJ/m² at −30 °C per ISO 180/A and ESCR above 300 h per ASTM D1693 condition B. An outdoor-storage black drum formulation uses 1.5–2.5 wt% carbon black masterbatch with 40 nm primary particle size to maintain UV stabilization over 24-month weathering according to ISO 4892-2 cycle 1. Terminal product types include 220 L L-ring open-head and tight-head drums, 30 L jerry cans, and 1000 L IBC inner bottles. Compliance is governed by 49 CFR 178.509 and UN Model Regulations Chapter 6.1 for 1H1 packagings; wall thickness after cooling at the thinnest point must exceed 1.5 mm for the 1H1/Y1.8/150 marking.

    Why Does Melt Strength at 190 °C Govern Fuel Tank Wall Thickness Uniformity in Pinch-Off Zones?

    Six-layer co-extrusion blow molding of HDPE B8750A into 40–95 L automotive fuel tanks places the highest mechanical demand on the pinch-off seam, where flash compression during mold closing generates a local cooling rate of 40–60 K/min. The resin is run at a melt temperature of 210–230 °C in the outer and inner substrate layers, while the EVOH barrier layer is maintained at 220–230 °C and the maleated LLDPE tie layers at 200–210 °C. B8750A-derived substrate layers comprise 70–85 wt% of total wall mass: virgin outer layer at 25–30 wt%, regrind core layer at 30–40 wt%, and virgin inner layer at 20–25 wt%; EVOH barrier resin accounts for 3–5 wt%, and tie resins account for 2–3 wt% per layer. The finished wall thickness is 3.5–8.0 mm, and the pinch-off seam shall show no delamination or leakage after impact testing at −40 °C under ECE R34. Fuel permeation is measured by ASTM D1434 at 40 °C with CE10 and CE25 test fuels; the permeation rate is compared against CARB LEV III evaporative emission requirements rather than a single material limit. Production-scale equipment behavior shows that an accumulator-head temperature deviation of +10 °C increases parison sag from 12% to 26%, producing wall-thickness thinning of up to 18% at the tank shoulder. Terminal product types are gasoline tanks, diesel tanks, onboard vapor recovery canister bodies, and selective catalytic reduction urea tanks.

    Inline fluorination of monolayer HDPE B8750A at 0.8–1.2 vol% fluorine in nitrogen creates a 10–20 µm fluorinated surface layer that changes diffusion-controlled solvent uptake in the bottle wall. Published resin-specific permeation data for this exact monolayer fluorination configuration is limited; the absorption reduction range depends on fluorine concentration, residence time, and wall thickness rather than on a single resin-producer certificate. The blow molding line is configured as a continuous shuttle with 6–12 cavities, a barrier screw of 65 mm diameter and 24:1 L/D, and mold cooling water at 12–18 °C. The resin is processed at 100 wt% virgin B8750A for the liquid-contact surface; a 2.0 wt% carbon black masterbatch is added for opaque containers intended for photolabile pesticide formulations, while a 0.5 wt% hindered phenolic antioxidant package is introduced during compounding to stabilize the melt against oxidation at die-head temperatures up to 210 °C. Wall thickness is held at 0.8–1.4 mm to maintain ESCR above 500 h under ASTM D1693 condition A after fluorination, because fluorinated skin thickness above 20 µm increases flexural stiffness and reduces drop-impact resistance at 0 °C. Compliance for agrochemical packaging includes UN Model Regulations Chapter 6.1 for 1H1 packagings, U.S. EPA 40 CFR Part 165 Subpart B for pesticide container design, and REACH Regulation (EC) No 1907/2006 Annex XVII restrictions applicable to packaging substances. Terminal product types are 1 L, 5 L, and 10 L high-density polyethylene bottles for emulsifiable concentrates, suspension concentrates, and solvent-based herbicide formulations.

    HDPE B8750A downstream compliance and formulation matrix
    Application segmentGoverning standardB8750A additionCritical process limit
    Large hazardous-liquid drums49 CFR 178.509, UN 1H1/Y1.8/150100 wt% virgin; 15–20 wt% regrind coreParison sag ≤15%; minimum wall ≥1.5 mm
    Automotive fuel tanksECE R34, ASTM D1434B8750A-derived 70–85 wt%; EVOH 3–5 wt%Pinch-off edge temperature ≥190 °C
    Agrochemical containersUN Model Regulations Chapter 6.1, 40 CFR Part 165100 wt% virgin; 2.0 wt% carbon black masterbatchFluorine concentration 0.8–1.2 vol%

    When Sodium Hypochlorite Containers Are Blow Molded Above 180 °C, B8750A Retains ESCR Only with Zero Regrind

    Sodium hypochlorite solutions at 5.25% available chlorine impose oxidative stress on high-density polyethylene bottle walls; the combination of elevated pH and chlorinated species accelerates environmental stress cracking in the shoulder and base radii. Under these conditions HDPE B8750A is processed at 100 wt% virgin resin; regrind addition is restricted to 0 wt% for liquid-contact layers because molecular weight reduction from post-industrial recycling lowers the ESCR plateau below 200 h under ASTM D1693 condition B. A white masterbatch based on 60% TiO₂ is added at 1.0–1.5 wt% to achieve opacity and to mask post-mold wall thinning; a phenolic/phosphate antioxidant at 0.3–0.6 wt% suppresses gel formation during 48-hour continuous extrusion. Blow molding uses a reciprocating screw extruder with 80 mm diameter, 24:1 L/D, barrel temperatures 170–190 °C, and mold chiller set point 10–16 °C. Amine-based antistatic additives are incompatible with this system and accelerate oxidative crack initiation. Terminal product types include 1.89 L, 3.78 L, and 5 L household bleach bottles, toilet bowl cleaner bottles, and industrial sanitary concentrate containers. U.S. 16 CFR 1700 child-resistant closure testing applies to the closure system, while EU Regulation (EC) No 648/2004 on detergents governs labeling rather than material migration compliance.

    When multi-layer parison programming shifts from axial wall thickness control to radial die gap modulation, the pinch-off edge temperature in HDPE B8750A layers must not fall below 190 °C, because cooler pinch-off edges produce visible weld lines and lower burst pressure by 20–30% in 5 L jerry cans for solvent-based inks and adhesives. HDPE B8750A is co-extruded in five or six layers; B8750A-derived material forms 80–90 wt% of the wall mass, with inner and outer layers at 100 wt% virgin B8750A and a middle regrind layer at 25–35 wt% of total wall mass. EVOH at 3–4 wt% and maleated LLDPE tie resins at 2–3 wt% per layer provide the barrier and interlayer adhesion. Barrel temperatures for the B8750A extruders are set at 190–215 °C; the barrier extruder runs at 205–220 °C with a heated transfer adapter. The programmed wall thickness ranges from 1.2 mm in the body to 2.5 mm at the handle and spout landmarks, with 100-point parison programming to maintain uniform circumferential thickness. Terminal product types include 5 L and 20 L jerry cans for flexographic and gravure printing inks, polyurethane adhesive systems, and aromatic solvent-based cleaning agents. Compliance for flammable liquid Class 3 transport is based on UN 1H1/Y1.8/150 packagings and ASTM D1693 ESCR; EU Directive 94/62/EC restricts the sum of lead, cadmium, mercury, and hexavalent chromium to 100 ppm in packaging materials.

    Water-Treatment Chemical Dosing Tank Wall Integrity Under Oxidative Contact

    Extrusion blow-molded dosing tanks for sodium hypochlorite, hydrogen peroxide, or acid feed systems use HDPE B8750A in 50–200 L capacity ranges, with wall thickness 3.0–6.0 mm and a 100 wt% virgin resin requirement for the liquid-contact layer. Regrind from post-industrial tank flash may be added at up to 10 wt% only for non-oxidizing chemical service such as alum or sodium hydroxide, because ESCR measured by ASTM D1693 condition B falls below 150 h when regrind is used in contact with 12–15% sodium hypochlorite at 40 °C. Processing on a 90 mm accumulator-head machine with 25:1 L/D and 100-point parison programmer uses barrel temperatures 180–205 °C, head 210 °C, die 195 °C, and blow pressure 0.5–0.7 MPa. Tank design standards include ASTM D1998 for polyethylene upright storage tanks; NSF/ANSI 61 applies only when the tank is installed in potable water systems, and exposure to aggressive oxidizers requires compatibility testing per ISO 22088-3 for environmental stress cracking. Terminal product types are 50 L, 100 L, and 200 L vertical cylindrical dosing tanks, secondary containment basins, and sight-glass reinforced tank bodies.

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