| HS Code | 717984 |
| Density | 0.948 g/cm³ |
| Melt Index 190 C 2 16 Kg | 0.08 g/10 min |
| Tensile Strength At Yield | 23 MPa |
| Tensile Strength At Break | 32 MPa |
| Elongation At Break | 600% |
| Flexural Modulus | 1.00 GPa |
| Hardness Shore D | 60 |
| Vicat Softening Point | 124 °C |
| Brittleness Temperature | -70 °C |
| Environmental Stress Crack Resistance | >5000 h |
| Thermal Conductivity | 0.400 W/m·K |
| Specific Heat Capacity | 1.90 J/g·°C |
| Water Absorption | 0.010% |
| Dielectric Constant | 2.3 |
| Volume Resistivity | 1.00e+16 ohm·cm |
As an accredited Dow HDPE DGDC-2480 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Dow HDPE DGDC-2480 is supplied in 25 kg polyethylene-lined paper bags, palletized, or 1,000 kg bulk sacks for industrial use. |
| Container Loading (20′ FCL) | Dow HDPE DGDC-2480 resin loaded in 20-foot FCL container; palletized 25 kg bags, securely stowed and lashed for ocean shipment. |
| Shipping | Dow HDPE DGDC-2480 is a non-hazardous polyethylene resin. It is typically shipped in 25-kg bags, 1,000-kg jumbo bags, or bulk trucks/railcars. No DOT/IMDG/IATA dangerous-goods classification or special placards are required. Keep containers sealed, dry, and away from excessive heat and contamination; follow the SDS and local rules. |
| Storage | Store Dow HDPE DGDC-2480 in a cool, dry, well-ventilated area away from direct sunlight, heat, ignition sources, and strong oxidizers. Keep original containers or bags closed, clean, and clearly labeled. Protect from moisture, dust, and prolonged UV exposure. Use proper stacking limits to prevent deformation or rupture. Follow local regulations and Dow’s SDS for safe handling and storage. |
| Shelf Life | Dow HDPE DGDC-2480 has a shelf life of 12 months when stored in its original packaging under cool, dry conditions. |
Vehicle fuel tanks manufactured from DGDC-2480 are processed on accumulator-head extrusion blow molding lines with single-screw extruders in the 80–120 mm diameter range, run at 24:1–32:1 L/D with barrier screws and grooved feed sections. The barrel profile is typically set from 180°C at the feed throat to 210°C at the die head, while the mold shell is held between 20°C and 40°C to balance quench rate and surface gloss. Under these conditions the resin’s nominal high-load melt index of 7.0 g/10 min at 190°C/21.6 kg per ASTM D1238 and density of 0.945 g/cm³ per ASTM D1505 allow parison hang times sufficient for 60–90 L tank bodies without the necking collapse observed with lower-molecular-weight HDPE grades. The final tank wall is typically 4–8 mm, with polyethylene pinch-off welds consolidated at 0.7–1.0 MPa blow gas pressure and trimmed in-mold to avoid weld-line stress concentrations. For monolayer tank construction, no mineral filler is used; for six-layer coextruded fuel tanks, DGDC-2480 forms the inner and outer layers while an EVOH barrier layer is embedded at 2–3 wt% of the total structure with tie resins. Monolayer tanks are post-fluorinated, and inline fluorination or post-mold surface treatment at 0.5–1.5 atomic% fluorine within the top 5–10 µm reduces hydrocarbon permeation by roughly 90–99% relative to untreated HDPE. Tank assemblies are qualified under UN ECE R34 and FMVSS 301, with permeation testing per SAE J2659 at 40°C. Published data for this specific monolayer and fluorination configuration is limited, so barrier values must be confirmed on the production tank geometry rather than extruded plaques.
UN-rated industrial containers blow molded from DGDC-2480 are produced as tight-head 30 L, 60 L, and 220 L drums on high-force accumulator machines. The accumulator head shot capacity is matched to the part weight, typically 2–6 kg for 30–60 L containers and 8–12 kg for 220 L drums. Melt temperature is kept below 210°C to limit molecular weight degradation, while the mold temperature is held at 10–25°C to shorten demold time while maintaining environmental stress crack resistance. The base resin is let down with 0.5–1.5 wt% of carbon black or UV masterbatch only when outdoor storage is specified; for clean chemical service, natural resin is used to avoid additive contamination. Regrind from the same production lot may be incorporated at 10–25 wt%, but only after a lot-specific extractables check when the packaging is intended for food contact or high-purity solvents. The dominant field failure mode is environmental stress cracking at sharp radiused corners and pinch-off flash when the container experiences stacked creep at 40°C warehouse conditions. DGDC-2480’s ESCR under ASTM D1693-15 Condition A is typically reported as an F50 value greater than 600 h, which supports selection for long-term storage of nonionic surfactants, dilute acid, and aliphatic hydrocarbons. Compliance is demonstrated under ADR/RID Chapter 6.1, IMDG Code 6.1.5, and 49 CFR 178.504 for UN 3H1 packagings. The drop test is run at 1.2 m for packing group II and 1.8 m for packing group I after conditioning at −18°C; the hydrostatic proof test pressure is set according to the specific packing group and vapor pressure requirements of ADR 6.1.5.6. These containers are used for cleaning agents, liquid fertilizers, water treatment chemicals, and polar solvents in the 5–220 L range.
| Downstream application | Governing standard or code | Critical test condition | Relevant DGDC-2480 property |
|---|---|---|---|
| Automotive fuel tank | UN ECE R34, FMVSS 301, SAE J2659 | 40°C permeation, low-temperature impact | HLMI 7.0 g/10 min, parison integrity |
| UN 3H1 chemical drum | ADR/RID 6.1, IMDG Code 6.1.5, 49 CFR 178.504 | −18°C drop, stack test | ESCR F50 > 600 h |
| Food-contact sheet | FDA 21 CFR 177.1520(c) 3.2a, EU 10/2011 | Overall migration | Virgin resin only |
| Outdoor welded containment | DVS 2205-1, REACH, RoHS | Weld factor tensile test | Brittleness temperature < −75°C |
Sheet extrusion of DGDC-2480 is run on 90–150 mm single-screw extruders with 30:1–36:1 L/D barrier screws and static mixers upstream of a flat die. Melt temperature at the die exit is controlled between 200°C and 215°C. The three-roll polishing stack is set to 70–95°C on the top roll and 80–100°C on the middle roll; lower roll temperatures improve surface gloss but reduce sheet impact strength if the quench is too rapid. Thickness uniformity is governed mainly by die bolt adjustment and roll gap rather than polymer flow, but the high molecular weight of DGDC-2480 produces measurable die swell and edge bead that must be trimmed. Sheet thickness for thermoforming ranges from 1.5 mm to 8.0 mm. The sheet is suitable for plug-assisted thermoforming at surface temperatures of 150–170°C, with cavity pressure 0.5–0.8 MPa and aluminum tooling maintained at 50–70°C. Draw ratios above 2:1 in deep geometries produce non-uniform wall sections because the material does not flow readily in the solid state; this is not a limitation of the resin but a characteristic of HMW-HDPE. The resulting liners and trays are used as automotive wheel-well liners, battery acid containment trays, material-handling dunnage, and corrosion-resistant sump liners. Low-temperature ductility is assessed by ASTM D638 elongation at break above 600% and by notched Izod per ASTM D256 at −40°C. For general industrial service, compliance is limited to REACH and RoHS; food contact requires virgin-sheet confirmation under FDA 21 CFR 177.1520(c) 3.2a and EU 10/2011 migration testing, and the use of regrind is disallowed unless the specific lot is approved by the converter’s HACCP plan.
Stacked agrochemical packagings blown from DGDC-2480 on shuttle extrusion blow molders are produced with 60–80 mm extruders, 24:1 barrier screws, and 1+1 to 4+4 cavity configurations depending on container volume. Shot sizes for 10–25 L jerry cans are typically 1.2–2.8 kg. The melt is kept at 185–205°C, and the lower processing window boundary is set by the frost-line behavior of the parison rather than screw torque. Outdoor-stable formulations incorporate 1.5–2.5 wt% of a hindered-amine-stabilized carbon black masterbatch; the carbon black loading in the finished wall is maintained at 2–2.5 wt% to achieve the UV resistance required for multi-season agricultural use. Handle pinch-off regions and molded thread chimes are the critical stress concentration points. The wall thickness in those zones is typically increased 10–20% above the nominal 1.2–1.8 mm body wall by adjusting parison programming. For pesticide and liquid fertilizer service, the resin grade must show ESCR F50 above 600 h under ASTM D1693; when non-ionic surfactant exposure is expected, testing in the end-use formulation is required because Igepal-based screening does not fully reproduce field cracking. Containers shipped with hazardous liquids follow UN 3H1 testing under ADR/RID and 49 CFR 178.504; the closure-to-neck thread engagement is qualified by leakproof testing after the relevant drop condition. The finished parts carry in-mold or post-mold UN marking and packing group identification.
Windshield washer reservoirs, coolant overflow bottles, and HVAC fluid bottles are extrusion blow molded from DGDC-2480 using continuous parison shuttles with 50–70 mm extruders. The grade’s high melt strength permits the long, flattened parison shapes required for 1–5 L automotive reservoirs with convoluted neck offsets. Barrel temperatures are set between 190°C and 210°C; mold temperatures of 15–30°C are preferred for acceptable cycle times. The formulations are simpler than fuel tanks: neat natural resin or 1–2 wt% color masterbatch, with 10–20 wt% clean plant regrind allowed when the application is not safety-critical. The resin does not require predrying, but when warehouse humidity exceeds 60% RH and regrind is used, surface moisture can generate splay at the die exit; a 2–4 h hopper dryer at 70–80°C eliminates the defect. Long-term service conditions include −30°C winter cycling and sustained exposure to 50% ethylene glycol/water at 90°C under hood, which makes environmental stress cracking resistance critical. The reservoir must retain low-temperature impact after 500 h of hot coolant aging; the suitability of DGDC-2480 for this specific fluid is supported by its ESCR performance but must be confirmed by in-service validation because published data for this specific configuration is limited. These components are not covered by ECE R34 unless they are part of a fuel system, but automotive supply contracts commonly require material compliance with IMDS and REACH.
Sheet produced from DGDC-2480 at 3–8 mm thickness is cut and joined by hot-gas welding at 200–230°C with HDPE welding rod of the same resin family; extrusion welding with 3–4 mm rod and a 180–220°C melt zone produces homogeneous joints. Weld factor, defined as the tensile strength of the welded joint over the parent sheet, is typically quoted as 0.7–0.9 for correctly preheated HDPE, and the stress-cracking resistance of the heat-affected zone is the limiting property rather than short-term tensile strength. The base resin’s low-temperature ductility is relevant for outdoor service in northern climates where overnight temperatures below −30°C occur; notched Izod per ASTM D256 at −40°C and brittleness temperature per ASTM D746 below −75°C are the control points. In dilute sulfuric acid and sodium hydroxide containment, DGDC-2480 sheet demonstrates the HDPE-typical resistance profile: continuous service is limited to pH 1–14 at temperatures below 60°C, while strong oxidizers and aromatic solvents are excluded. The final fabrication is not regulated as a pressure vessel; structural design follows DVS 2205-1 for thermoplastic storage tank calculation. Published data for this specific resin in welded fabrication is limited, so weld qualification on production sheet is advised before installation.
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