Products

Dow HDPE DMDC-6230 NT

    • Product Name: Dow HDPE DMDC-6230 NT
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 261292
    Density 0.953 g/cm³
    Melt Index 190c 2 16kg 0.35 g/10 min
    Tensile Strength At Yield 26 MPa
    Tensile Elongation At Break >600%
    Flexural Modulus 1200 MPa
    Escr 10pct Igepal F50 >1000 h
    Vicat Softening Point 128 °C
    Heat Deflection Temperature 0 45mpa 75 °C
    Brittleness Temperature < -70 °C
    Hardness Shore D 66
    Thermal Conductivity 0.45 W/m·K
    Coefficient Of Linear Thermal Expansion 1.2E-4 /°C
    Water Absorption <0.01%
    Dielectric Constant 1mhz 2.3
    Volume Resistivity >1E16 ohm·cm
    Ul 94 Flammability HB
    Food Contact Compliance 21 CFR 177.1520
    Color Natural

    As an accredited Dow HDPE DMDC-6230 NT factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Packaging for Dow HDPE DMDC-6230 NT: 25 kg polyethylene bags, 55 bags per pallet, totaling 1,375 kg.
    Container Loading (20′ FCL) Dow HDPE DMDC-6230 NT in 20′ FCL: 25 kg bags, palletized, shrink-wrapped, strapped, and secured for sea transport.
    Shipping Dow HDPE DMDC-6230 NT is shipped as a non-hazardous, solid polyethylene resin in 25 kg bags, boxes, or bulk containers. It is not regulated by DOT, IMDG, or IATA. Store cool, dry, and clean, away from ignition sources and moisture. Maintain package integrity; avoid contamination. Use standard industrial handling.
    Storage Store Dow HDPE DMDC-6230 NT indoors in a cool, dry, well-ventilated area, away from direct sunlight, heat, flames, and strong oxidizers. Keep material in original, tightly closed bags or containers on pallets. Prevent moisture, dust, dirt, and other contamination. Avoid excessive stacking and damage to packaging. Ensure labels remain legible. Follow the supplier’s SDS and local storage regulations. Use first-in, first-out rotation.
    Shelf Life Typically 24 months from date of manufacture when stored unopened in a cool, dry, well-ventilated area away from sunlight.
    Application of Dow HDPE DMDC-6230 NT

    Large-part extrusion blow moulding of UN-listed industrial chemical containers

    In continuous extrusion blow moulding of DMDC-6230 NT into 20–30 L tight-head jerricans and open-head drums, the resin’s melt strength is the primary control variable because the shot weight can reach 6.0 kg and parison sag before inflation directly determines wall-thickness distribution at the bottom chime and top closure land. The converter sets the extruder barrel zones between 185 °C and 205 °C and holds the die head at 195–205 °C; operation below 180 °C produces visible shark-skin melt fracture on the parison surface, while operation above 220 °C increases sag and causes dimensional drift after cooling. Accumulator-head machines with 120–150 mm screw diameter and 24:1–28:1 L/D are used with a spiral mandrel die gap of 1.8–2.4 mm. Parison programming with a top-to-bottom wall thickness ratio of 1.5–1.9 compensates for swell at the pinch-off seam, and blow air is introduced at 0.6–0.8 MPa with a pre-blow stage at 0.03–0.06 MPa. Mold cooling water is held at 12–22 °C, and cycle time for a 25 L jerrican is typically 130–180 s on a shuttle or dedicated double-station line. The monolayer compound is composed of 96.5–97.5 wt% DMDC-6230 NT, 2.0–3.0 wt% carbon black masterbatch for UV opacity, and 0.1–0.3 wt% processing stabilizer masterbatch; calcium carbonate filler is excluded because even 2 wt% of coarse filler lowers environmental stress crack resistance at the pinch-off weld. Design-type qualification is performed under the UN Model Regulations Chapter 6.1, with containers marked 3H1 or 3H2 according to tight-head or open-head configuration, and US DOT performance verification is recorded under 49 CFR 178.601. The terminal articles are 20 L, 25 L, and 30 L UN-certified jerricans and 20 L open-head drums for Class 3, 6.1, 8, and 9 liquid dangerous goods.

    Qualification elementStandard or methodApplicable design type/condition
    Non-bulk dangerous goods packagingUN Model Regulations Chapter 6.13H1/3H2
    US DOT non-bulk performance49 CFR 178.601drop, leakproofness, stack
    ADR road transportADR Chapter 6.1Packaging group II
    ESCR classificationASTM D1693-21Condition B, 100% Igepal

    Because many agricultural chemical formulations contain xylene, cyclohexanone, or esterified solvents that plasticize and stress-crack untreated HDPE, DMDC-6230 NT is converted into narrow-mouth pesticide containers with a secondary surface fluorination step rather than by adding low-molecular-weight barrier resins that would soften the bottle wall. The pre-mould formulation is kept close to neat resin to preserve ESCR: 99.3–99.7 wt% DMDC-6230 NT, 0.15–0.25 wt% hindered phenolic antioxidant, and 0.05–0.10 wt% calcium stearate acid neutralizer are compounded as a masterbatch; no amine-based antistatic compound is added when fluorination is specified because surface-migrating polar species produce uneven fluorine uptake. The containers are blow moulded at 190–205 °C die temperature, deflashed, and transferred into a fluorination reactor. Fluorine gas is diluted to 0.05–0.15 vol% in nitrogen, and the reaction proceeds at 60–75 °C for 1–5 min, generating a fluorinated surface layer of approximately 0.1–1.0 μm thickness. Published data for this specific resin configuration under fluorine concentrations above 0.30 vol% is limited; trials should verify bottle weight loss and panel deformation on each cavity. Regulatory qualification for the filled package follows the UN Model Regulations Chapter 6.1 when the formulation is a dangerous good, and the United States EPA evaluates container compatibility and stability through registration data requirements under 40 CFR Part 158; child-resistant closure obligations may apply under 40 CFR 157 depending on acute toxicity classification. The terminal products are 1 L, 2.5 L, 5 L, and 10 L narrow-mouth HDPE bottles for emulsifiable concentrates, suspension concentrates, and acidified herbicides.

    What limits the lower wall-thickness threshold for 1,000 L IBC inner bottles?

    The production of 1,000 L composite IBC inner bottles from DMDC-6230 NT is constrained by two competing variables: melt strength required to prevent parison sag during a 10–14 kg shot and post-cooling shrinkage that alters the top neck and bottom runner dimensions. On a single-station or dual-station accumulator blow moulding machine with a screw diameter of 120–150 mm and 28:1–32:1 L/D, the die head is held at 195–205 °C and the parison is programmed with a top-to-bottom wall thickness ratio of 1.6–1.9. Blow air is supplied at 0.5–0.7 MPa, and mold cooling water is set to 10–16 °C to control HDPE crystallization shrinkage of 1.5–2.2% over the first 24 h. The inner bottle is normally moulded from 100 wt% DMDC-6230 NT without filler; if an electrostatically dissipative bottle is required, carbon black masterbatch is added at 3–5 wt%, but this level raises melt viscosity and reduces ESCR at the pinch-off and bottom weld, so external grounding systems are preferred when surface resistivity below 109 Ω/sq is not required. Compliance for the assembled IBC is under the UN Model Regulations Chapter 6.5, with design type 31H1 or 31HA1; US DOT package approval references 49 CFR 178.707, and European road transport is covered by ADR Chapter 6.5. The terminal articles are 820 L, 1,000 L, and 1,250 L inner bottles for industrial chemicals, lubricant intermediates, and Class 3, 8, and 9 liquids.

    Unlike thin-wall consumer detergent bottles, heavy-wall technical carboys produced from DMDC-6230 NT for spent acid, electronic-grade etchants, and sodium hypochlorite stock solutions are designed around chemical-resistance testing and post-mould cooling fixtures rather than high-speed trimming alone. Immersion testing follows ASTM D543-21 for 7–30 days at 23 °C and 70 °C in the actual fill medium or a specified surrogate, while surface insulation resistance for semiconductor applications is verified under ASTM D257-14 when antistatic behavior is required. The compound is 97.0–98.0 wt% DMDC-6230 NT with 2.0–3.0 wt% phthalocyanine blue or green masterbatch; for outdoor water treatment carboys, 0.3–0.5 wt% of a HALS/UV package is added, and no plasticizer or wax is used because migratory additives would alter stored etchant purity. The bottles are extruded on a reciprocating-screw blow moulding line with grooved feed section when regrind content exceeds 10 wt%, melt pressure at the die entry is 22–28 MPa, and melt temperature is 190–205 °C. For a 60 L carboy, shot weight is 2.8–3.4 kg, clamp force is 180–250 kN, and blow air is 0.5–0.6 MPa. Surface splay can appear when pellet surface condensation is present above 70% relative humidity, so indoor silos conditioned to 50–60% RH are used. The terminal products are 5 L, 10 L, 20 L, and 60 L round or rectangular carboys for semiconductor etchants, electroplating acids, and pool oxidizers.

    If long-term coolant resistance and hot-fill tolerance define the container requirement

    Blow moulded automotive coolant and windshield washer fluid containers produced from DMDC-6230 NT operate in underhood and warehouse conditions where intermittent contact with 80–100 °C glycol-water mixtures coincides with vibration and stacking load. The bottle formulation contains 80–90 wt% DMDC-6230 NT and 10–20 wt% clean post-industrial regrind derived from the same bottle line; color is supplied by 1.5–2.5 wt% blue or green concentrate, and UV-opaque coolant bottles may include 0.5–1.0 wt% TiO₂ masterbatch. Post-consumer recyclate is not introduced for coolant-contact containers because of migration and gel-count risks. Processing is carried out on single-station or double-station shuttle blow moulders with clamp force between 80–150 kN, barrel temperatures of 185–205 °C, and die head temperature of 195–205 °C. The parison is programmed for a top-to-bottom wall thickness distribution of 1.3–1.6, blow air is delivered at 0.5–0.6 MPa, and handle flash is ground to 3–5 mm flake for in-line recovery. A process boundary appears when regrind addition exceeds 20 wt%: gel count and pin holes at the pinch-off seam increase, and hot-drop impact performance after filling at 70 °C becomes inconsistent. Automotive fluid containers are not generally UN dangerous goods packagings, but hot-drop impact resistance is evaluated under ASTM D2463-15 after conditioning at 70 °C, and thermal aging of the material is assessed by flexural modulus retention after 1,000 h at 100 °C in coolant concentrate using ISO 178:2019. The terminal articles are 1 US gal, 2.5 gal, and 4 gal windshield washer fluid bottles, and 1–5 L engine coolant bottles.

    For ester-based lubricant additive packages and metalworking fluid concentrates, containment is governed by swelling and stress cracking rather than hydrostatic pressure alone, and DMDC-6230 NT is specified for the high ESCR retention needed at the pinch-off seam and handle weld. The compound is kept close to neat resin: 96–98 wt% DMDC-6230 NT, 1–2 wt% TiO₂ white masterbatch, and 0.05–0.10 wt% polymer processing aid if die build-up occurs; mineral-oil-based process oils are excluded because they can reduce ESCR in olefin packaging. Containers are blow moulded on a dual-station shuttle machine with a 70 mm grooved-feed extruder, 24:1 L/D, and 1.5–2.0 mm diverging die gap; melt temperature is 190–205 °C, and cycle time for a 5 L container is 45–65 s. The pinch-off seam is cold-trimmed after cooling to avoid microcracks that would nucleate under ester swelling; the mold parting-line flash gap is set at 0.5–1.0 mm to accommodate 8–12% parison swell without creating thin spots at the sidewall. Containers for dangerous goods mixtures fall under UN Model Regulations Chapter 6.1, and the material ESCR is characterized by ASTM D1693-21 using 100% Igepal condition B; water absorption remains below 0.01% after 24 h immersion under ASTM D570-22. The terminal packages are 1 L, 5 L, and 20 L containers for gear oil additives, metalworking fluid concentrates, and corrosion inhibitor packages.

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