| HS Code | 886554 |
| Density | 0.952 g/cm³ |
| Melt Index | 20 g/10 min |
| Tensile Strength At Yield | 24.0 MPa |
| Tensile Strength At Break | 14.0 MPa |
| Elongation At Break | 1000 % |
| Flexural Modulus | 1.10 GPa |
| Hardness Shore D | 60 |
| Izod Impact Notched | 0.500 J/cm |
| Vicat Softening Point | 125 °C |
| Melting Point | 130 °C |
| Heat Deflection Temperature At 0 46 Mpa | 75 °C |
| Heat Deflection Temperature At 1 8 Mpa | 50 °C |
As an accredited Amco Plastic Materials HDPE 200952 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Amco Plastic Materials HDPE 200952 is packaged in 25 kg polyethylene-lined bags, stacked on pallets and wrapped for shipment. |
| Container Loading (20′ FCL) | Container loading of Amco Plastic Materials HDPE 200952 into a 20′ FCL, securely stacked and prepared for ocean transport. |
| Shipping | Amco Plastic Materials HDPE 200952 (high-density polyethylene) is transported as a non-hazardous, non-regulated solid in sealed bags, gaylords, or bulk containers. No UN number or hazard class required. Store in a cool, dry, ventilated area, away from ignition. Handle with standard PPE and avoid dust. |
| Storage | Store Amco Plastic Materials HDPE 200952 in a cool, dry, well-ventilated, covered warehouse away from direct sunlight, heat, sparks, and open flames. Keep original containers closed, elevated on pallets, and protected from moisture, oils, solvents, and strong oxidizers. Avoid prolonged UV exposure and excessive dust. Ensure good ventilation, segregate incompatible materials, and follow local regulations and manufacturer instructions. |
| Shelf Life | Shelf life is indefinite if stored properly in a cool, dry, well-ventilated area away from direct sunlight and ignition sources. |
Thin-wall injection molding of dairy tubs and deli containers from HDPE 200952 operates within a narrower processing window than is commonly assumed for general-purpose high-density polyethylene. The grade designation indicates a nominal density of 0.952 g/cm³ per ASTM D1505-18 and a nominal melt mass-flow rate of 20 g/10 min per ASTM D1238-20 at 190 °C/2.16 kg; lot-specific certificates must nevertheless be used for final tooling calculations. Below 60% RH ambient conditions, pre-drying is not required, but above 60% RH surface condensation on pellet surfaces creates volumetric feed inconsistencies in gravimetric dosing units and warrants drying at 80 °C for 1–2 h in a dehumidifying hopper dryer with a dew point below -30 °C. Melt temperatures are maintained at 200–230 °C, and injection pressures of 70–110 MPa are typical on machines with 22:1–24:1 L/D general-purpose screws and compression ratios of 2.0:1–2.4:1. Because the melt mass-flow rate of 20 g/10 min produces high flow length at wall sections of 0.6–1.0 mm, parting-line flash occurs when clamp force is insufficient; multi-cavity tools with 8–16 cavities require 3.5–5.0 kN clamp force per projected cavity area. For food contact in the United States, the resin must meet FDA 21 CFR 177.1520 paragraph (c) 3.1a or 3.2a; for the European Union, EU Regulation 10/2011 overall migration must remain below 10 mg/dm², and specific migration limits for catalyst residues listed in Annex II must be confirmed per lot. Formulation loading is specified as 97–99 wt% virgin HDPE 200952, 1–2 wt% single-pigment masterbatch, 0.5–1.0 wt% slip/antiblock masterbatch, and 10–20 wt% clean post-industrial regrind only when ground particle size is below 4.0 mm and aerated bulk density is not less than 0.48 g/cm³. Downstream production uses all-electric injection molding machines with clamp force from 1,200 kN to 4,500 kN, screw speeds of 150–250 rpm, back pressure of 0.5–1.5 MPa, and cooling times of 4–8 s at mold temperatures of 10–25 °C. Terminal finished products include round dairy tubs in the range 227–1,140 mL, rectangular deli containers from 236–946 mL, and press-fit or snap-fit lids with matching rim geometry.
Closure injection molding with HDPE 200952 involves multicavity hot-runner tools in which gate freeze time is controlled by melt temperature, mold temperature, and gate diameter. For a valve-gated hot runner with gate diameter 0.6–1.0 mm, mold temperature 10–15 °C, and melt temperature 220–240 °C, gate freeze occurs within 0.5–1.5 s; excessively rapid freeze produces sink marks on the closure top panel, while excessively slow freeze causes stringing or drool that contaminates tamper-evident band embossing. The material’s nominal melt mass-flow rate of 20 g/10 min per ASTM D1238-20 lowers packing pressure requirements but also reduces environmental stress crack resistance relative to lower-MFR HDPE grades; for closures exposed to bleach or quaternary ammonium disinfectants, stress crack resistance should be assessed per ASTM D1693-15b condition B, and lot-to-lot variation within ±2 g/10 min MFR must be recorded because fill time shifts by up to 0.3 s on 96-cavity tools. Compliance for United States food contact is governed by FDA 21 CFR 177.1520; European food contact requires EU Regulation 10/2011 with overall migration below 10 mg/dm²; heavy metal content must remain below 100 mg/kg total for lead, cadmium, mercury, and hexavalent chromium under EU Packaging and Packaging Waste Directive 94/62/EC and CONEG. Formulation addition ratios are set as 96–98 wt% HDPE 200952, 1–3 wt% polyethylene-based color masterbatch, 0.5–1.0 wt% slip additive masterbatch, and optional silicone masterbatch at 0.5–1.0 wt% to reduce removal torque. Downstream production runs on all-electric presses with clamp force 1,000–2,500 kN, hot-runner temperatures 220–260 °C, injection velocity 60–120 mm/s, holding pressure 50–70% of injection pressure, and cycle time 8–12 s for 48–96 cavities. Terminal products include 28 mm and 38 mm beverage closures with PCO 1881 or compatible neck finishes, tamper-evident bands, and optional EVA or LDPE liner shells for liquid detergent, dairy, and household chemical bottles.
Industrial pail molding from HDPE 200952 uses thick-wall sections of 1.5–3.0 mm in sidewalls and 2.5–4.0 mm at the top rim and base corner, creating a packing and cooling profile substantially different from thin-wall food packaging. The density of 0.952 g/cm³ per ASTM D1505-18 supports top-load and stacking resistance, but the melt mass-flow rate of 20 g/10 min per ASTM D1238-20 requires lower melt temperatures of 190–220 °C and mold temperatures of 10–20 °C to prevent sink marks at the gate and to keep cooling time economically viable. Injection machines with clamp force from 4,000 kN to 10,000 kN, screw L/D 22:1–24:1, and compression ratio 2.0:1–2.4:1 are specified; barrel zones are set in the range 180–220 °C, with the nozzle at 200–220 °C. UN certification for dangerous goods packaging requires the finished pail to pass UN 1H2 or UN 1H1 drop, stack, and leakproofness tests under ADR/RID/ADN, IMDG Code, or 49 CFR 178.605; food contact pails are additionally tested under FDA 21 CFR 177.1520 and EU Regulation 10/2011. Formulation addition ratio is controlled at 96–98 wt% HDPE 200952, 1–3 wt% carbon black or titanium dioxide masterbatch, 0.2–0.5 wt% antioxidant masterbatch, and 0.5–1.0 wt% UV stabilizer masterbatch for outdoor stacking exposure; post-consumer recyclate is limited to 0–15 wt% only when the recyclate lot passes ASTM D1693-15b ESCR requirements and melt flow rate deviation is within ±5 g/10 min. Downstream production uses single-face or two-face injection molds with 1–2 cavities, hot or cold runner, injection pressure 70–100 MPa, hold pressure 40–60 MPa, cooling time 12–25 s depending on wall thickness, and post-mold de-gating followed by automatic leak testing at 20–30 kPa air pressure. Terminal products are open-head pails of 5 L, 10 L, 15 L, 20 L, and 25 L; tight-head containers with 2-inch and 3/4-inch buttress closures; and gasketed lids with EPDM or SEBS gaskets.
Replacement of a fractional-melt or 4–8 g/10 min HDPE grade with HDPE 200952 in logistics crate molding alters injection pressure requirements and weld-line strength. The higher melt mass-flow rate of 20 g/10 min per ASTM D1238-20 permits lower injection pressure of 60–90 MPa but reduces melt strength, so rib voiding and gas entrapment can occur when screw speed exceeds 250 rpm or melt temperature exceeds 230 °C. Mold-filling analysis with ISO 294-1:2017 plaque geometry indicates that wall thickness should be increased from 2.0 mm to 2.5–3.0 mm at rib intersections when the switch is made to avoid sink marks. Mechanical properties relevant to crate performance are measured per ISO 527-2:2012 for tensile yield stress, ISO 178:2019 for flexural modulus, and ISO 6603-2:2000 for multi-axial impact; for HDPE 200952, tensile yield stress typically falls in the range 24–28 MPa and flexural modulus in the range 950–1,150 MPa, but lot-specific certificates are required to confirm final part performance.
| Parameter | Lower-MFR HDPE 7 g/10 min | HDPE 200952 20 g/10 min |
|---|---|---|
| Injection pressure | 85–105 MPa | 60–90 MPa |
| Melt temperature range | 210–240 °C | 190–230 °C |
| Required wall thickness at rib intersections | 2.0–2.5 mm | 2.5–3.0 mm |
| Cooling time at 3.0 mm wall | 18–25 s | 14–20 s |
| Flexural modulus range per ISO 178:2019 | 1,050–1,200 MPa | 950–1,150 MPa |
Compliance for logistics crates is assessed under REACH Annex XVII and RoHS Directive 2011/65/EU for lead, mercury, cadmium, hexavalent chromium, PBB, and PBDE; logistics crates used in food distribution require FDA 21 CFR 177.1520 where direct food contact is intended. Formulation addition ratio is set at 94–97 wt% HDPE 200952, 2–4 wt% impact modifier such as LLDPE or EVA, 1–3 wt% color/UV masterbatch, and 0.2–0.5 wt% process aid masterbatch. Downstream production uses injection molding machines with clamp force 8,000–20,000 kN, L/D 22:1–24:1, injection speed 80–150 mm/s, holding pressure 35–50 MPa, mold temperature 15–30 °C, and cycle time 25–45 s for crates with 1–2 cavities. Terminal products include stackable beverage crates, ventilated produce crates, distribution totes for automotive or pharmaceutical logistics, and nestable Euro containers.
Medical and laboratory disposables molded from HDPE 200952 require documented lot-to-lot consistency in melt mass-flow rate and heavy metal content because the parts are used in diagnostic collection and reagent storage. The resin is processed at melt temperatures 200–220 °C and mold temperatures 15–30 °C on cleanroom-compatible injection molding machines with clamp force 800–2,500 kN; screw speed is held below 150 rpm to avoid shear heating that raises the melt above 240 °C and generates oxidative degradation byproducts. Compliance includes United States Pharmacopeia USP <661.1> for plastic packaging components, ISO 10993-5 for in vitro cytotoxicity, FDA 21 CFR 177.1520 for food-adjacent diagnostic use only where appropriate, and EU Regulation 10/2011 where patient contact is indirect; finished devices fall under EU MDR 2017/745 only when classified, and no claim of sterilizability should be made for this grade beyond low-temperature gas or radiation processes within validated dose ranges. Formulation addition ratio is set at 99–100 wt% HDPE 200952 with no regrind in regulated medical applications; antistatic masterbatch at 0–1 wt% is used only when surface resistivity below 10¹² Ω/sq is specified; optical brightener or colorant is excluded unless explicitly required. Downstream production uses electric presses with closed-loop process monitoring of cushion position within ±0.5 mm, injection pressure 70–100 MPa, holding pressure 45–65 MPa, and cooling time 8–15 s; post-molding operations include automated assembly, ultrasonic welding where permitted, and batch release testing of migration and cytotoxicity. Terminal products include 120 mL and 250 mL specimen containers, 500 mL laboratory wash bottles, reagent storage jars, and non-sterile pipette tip boxes requiring low particulate surface contamination. Published data for HDPE 200952 specifically in ISO 10993-5 test conditions is limited; each lot must be qualified by the end-user for the intended diagnostic device.
Consumer storage totes and modular storage bins molded from HDPE 200952 are evaluated for top-load crush strength and stacking load retention under ASTM D642-20 or ISO 12048:1994 using compression platens at 10 mm/min. The density of 0.952 g/cm³ per ASTM D1505-18 provides higher stiffness than lower-density polyethylenes, but the melt mass-flow rate of 20 g/10 min per ASTM D1238-20 reduces sag resistance and limits wall thickness in deep-draw tools to 2.0–3.5 mm; ribs are spaced at 12–18 mm pitch with draft angle 0.5–1.0° to balance fill and ejection. Compliance is governed by REACH Annex XVII for restricted substances, California Proposition 65 for listed substances, and EU Packaging and Packaging Waste Directive 94/62/EC for heavy metal sum below 100 mg/kg; no direct long-term food contact is claimed unless the finished tote meets EU Regulation 10/2011 and FDA 21 CFR 177.1520 through end-use testing. Formulation addition ratio is specified as 97–99 wt% HDPE 200952, 1–3 wt% color masterbatch, 0.5–1.0 wt% nucleating masterbatch to reduce cycle time by 3–7%, and optional foaming masterbatch at 0.5–1.5 wt% for weight reduction of 8–12% only when surface finish and impact requirements permit. Downstream production uses injection molding presses with clamp force 12,000–25,000 kN, screw L/D 22:1–24:1, compression ratio 2.0:1–2.4:1, melt temperature 190–220 °C, mold temperature 15–25 °C, injection speed 60–100 mm/s, holding pressure 35–50 MPa, and cooling time 20–35 s for tooling with 1–2 cavities. Terminal products include stackable storage totes with capacities 20–80 L, under-bed storage bins, utility crates for household use, and modular shelving bins with load ratings of 15–30 kg per unit.
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