Products

DOW HDPE DGDA 6094

    • Product Name: DOW HDPE DGDA 6094
    • Alias: HDPE 6094
    • Einecs: 200-815-3
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    228069

    Product Name DOW HDPE DGDA 6094
    Polymer Type High Density Polyethylene
    Melt Flow Index 0.94 g/10min (190°C/2.16kg)
    Density 0.960 g/cm³
    Tensile Strength At Yield 29 MPa
    Elongation At Break 600 %
    Flexural Modulus 1100 MPa
    Impact Strength No break (23°C, Charpy)
    Thermal Stability Good
    Processing Method Blow Molding, Injection Molding
    Typical Applications Blow-molded containers, household chemicals packaging
    Environmental Stress Crack Resistance Excellent

    As an accredited DOW HDPE DGDA 6094 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing DOW HDPE DGDA 6094 is packaged in 25 kg white plastic bags with printed product details and batch information for industrial use.
    Shipping DOW HDPE DGDA 6094 should be shipped in clean, sealed, and appropriately labeled containers, protected from direct sunlight, moisture, and extreme temperatures. Transportation must comply with local regulations for plastic pellets, avoiding contamination. Ensure compatibility with other cargo and secure loads to prevent shifting or damage during transit.
    Storage DOW HDPE DGDA 6094 should be stored in its original, tightly closed containers in a cool, dry, and well-ventilated area away from direct sunlight, heat sources, and incompatible materials. Protect from moisture and physical damage. Keep away from strong oxidizers. Ensure proper labeling and avoid excessive stacking. Good industrial hygiene practices should be followed during handling and storage.
    Application of DOW HDPE DGDA 6094

    Applications of DOW HDPE DGDA 6094 in Industrial Manufacturing

    DOW HDPE DGDA 6094 is engineered for demanding industrial environments that require material performance and processing reliability. Its molecular characteristics and consistent pellet quality enable downstream manufacturers to implement precise formulation and maintain high-throughput production. This section outlines specific industrial scenarios where this high-density polyethylene grade delivers functional properties, regulatory alignment, and cost-effective processing advantages.

    1. Blow Molding of Industrial Chemical Drums

    Chemical resistance, high impact strength, and uniform wall thickness make this material widely adopted in the manufacture of blow-molded drums for industrial liquid storage. The resin’s balance of stiffness and toughness supports safe handling and transportation, especially when producing UN-rated containers for hazardous goods. Process control in large-part blow molding lines benefits from the resin’s consistent melt strength and narrow viscosity distribution.

    Industry compliance standards

    • UN/DOT (United Nations Recommendations on the Transport of Dangerous Goods / U.S. Department of Transportation) for hazardous material packaging
    • ISO 16103:2005 Packaging for Transport of Dangerous Goods – Plastics Drums
    • 49 CFR (Code of Federal Regulations) Parts 178.500-178.523 (U.S. Drum Regulations)
    • BS EN ISO 9001 Quality Management Systems (for traceability and batch consistency)

    Typical usage ratio

    • 100% base polymer in monolayer drums; in multilayer constructions, usage as 80–95% of total polyethylene blend, with UV stabilizers or color concentrates added at 1–3% depending on exposure requirements

    Downstream process integration

    • Pellets are gravity-fed into blow molding extruders fitted with accumulator heads or continuous extrusion dies; post-extrusion, HDPE parisons are inflated in water-cooled molds, then cooled and de-flashed before leak-testing and certification

    Final product types

    • 20L–250L industrial drums, hazardous liquid packaging barrels, tight-head drums, open-head drums suitable for chemicals, lubricants, and detergents

    2. Large-Caliber Water Pipe Extrusion

    High molecular weight and controlled branching enable this grade for use in pressure-rated, large-diameter water distribution pipes. Long-term hydrostatic strength, slow crack growth resistance, and weldability fit municipal and industrial water conveyance infrastructure. Regulatory requirements for potable water contact drive selection of this grade where both processability and mechanical performance are critical.

    Industry compliance standards

    • ISO 4427-2:2019 (Pipes and Fittings Made of PE for Water Supply – Part 2: Pipes)
    • NSF/ANSI/CAN 61 (Drinking Water System Components – Health Effects)
    • ASTM D3035 / D3350 (Standard Specification for PE Pressure Pipe and Plastic Pipes Material Classification)
    • WRAS (UK Water Regulations Advisory Scheme) for potable water applications

    Typical usage ratio

    • 85–100% as primary resin; anti-oxidant and carbon black masterbatch typically added at 2–3% for UV protection and longevity in outdoor pipes

    Downstream process integration

    • Direct addition to single- or twin-screw extruders with high-pressure head; compounded inline with masterbatches and process stabilizers; extrusion at 190–220°C, followed by vacuum cooling calibration and inline monitoring of wall thickness and ovality

    Final product types

    • HDPE drinking water pipes (DN 50mm–1200mm), pressure-rated pipes for irrigation, large-diameter discharge lines for industry, fused-joint and butt-welded piping systems

    3. Injection Molding of Food Handling Crates

    The flow properties and high impact resistance of this resin support rapid-cycle injection molding of reusable transport crates and trays for the food industry. Dimensional stability and compatibility with repeated cleaning processes are key material selection drivers for production plants where regulatory requirements on food safety are strictly enforced.

    Industry compliance standards

    • EU 10/2011 (Plastic Materials Intended to Come into Contact with Food)
    • FDA 21 CFR 177.1520 (Olefin Polymers for Food Contact)
    • GMP (EU 2023/2006 Good Manufacturing Practice for materials intended for food contact)
    • EN ISO 22000:2018 (Food Safety Management Systems - relevance for material supply)

    Typical usage ratio

    • 85–98% HDPE base; food-safe colorants, nucleating agents, and anti-static or anti-block additives incorporated at 0.5–3% depending on crate application and automation requirements

    Downstream process integration

    • Granules loaded into fully automated injection molding machines operating at 200–240°C; mold cycles designed for fast demolding; post-molding trimming and robotic stacking implemented for high-volume crate production

    Final product types

    • Meat and produce transport crates, dairy delivery boxes, bread trays, bakery baskets regularly circulated in closed supply chains

    4. Fuel Tank Blow Molding for Automotive Industry

    This HDPE grade meets stringent requirements for in-vehicle fuel storage due to its chemical compatibility, dimensional retention, and stress crack resistance. Automakers select this polymer for use in multi-layer tank constructions, in which mechanical reliability and permeability control are validated under regulatory automotive testing protocols.

    Industry compliance standards

    • FMVSS 301 (Federal Motor Vehicle Safety Standard, Fuel System Integrity, U.S.)
    • EU ECE R34 (Uniform Provisions Concerning the Approval of Vehicles with Regard to the Prevention of Fire Risks)
    • ISO 9001:2015 for quality management in auto parts manufacturing
    • OEM-specific specifications from major automotive manufacturers (e.g., VW TL 527/GM GMW 14084)

    Typical usage ratio

    • 70–95% in blended multilayer structures; tie layers, barrier resins (EVOH), and stabilizers can comprise 5–30% of construction, depending on targeted evaporative emission standards

    Downstream process integration

    • Metered resin and co-extrusion with barrier and adhesion resins in blow molding accumulators; parison programming and multi-axis mold manipulation for complex shapes; robotic deflashing; in-line pressure leak testing

    Final product types

    • Automotive fuel tanks, integrated hydrocarbon emission-control fuel storage assemblies, off-road vehicle fuel housings

    5. Manufacturing of Industrial Pallets and Storage Bins

    Toughness, stiffness, and chemical resistance suit this resin to the production of injection-molded pallets and storage bins used for logistics and warehousing. Long-term load-bearing performance and dimensional retention at elevated ambient temperatures are critical for customers seeking alternatives to wood or metal platforms in automated storage and retrieval systems.

    Industry compliance standards

    • ISO 8611-1:2011 (Pallets for Materials Handling – Test Methods for Maximum Working Load)
    • ISO 22000:2018 (where used in food logistics systems for cleanable storage)
    • UL 2335 (Fire Tests of Storage Pallets – U.S., when applicable to fire safety)
    • ISO 9001:2015 for pallet manufacturing processes

    Typical usage ratio

    • 90–100% HDPE with structural fillers (e.g., glass fiber, talc) optionally introduced up to 10% for increased stiffness, aligned with required impact rating and load capacity

    Downstream process integration

    • Materials are dried, blended, and fed into high-tonnage injection presses; tooling incorporates optimized cooling for short cycle times in large-format molds; post-mold labeling and traceability coding applied as required

    Final product types

    • Reusable logistics pallets, stackable industrial storage bins, nestable containers for automated warehouses, temperature-resistant chemical storage trays

    6. Cable Sheathing Compounds for Industrial Wiring

    For wire and cable applications, this material supports flexible extrusion, dielectric integrity, and resistance to outdoor and chemical exposure. Its technical profile tailors it to low-voltage cable sheathing and conduit production, where flame retardant performance or UV stability is achieved by formulation blending according to specified standards.

    Industry compliance standards

    • IEC 60502-1 (Power Cables with Extruded Insulation and their Accessories for Rated Voltages)
    • UL 1277 (Standard for Electrical Power and Control Tray Cables)
    • RoHS 2015/863/EU (Restriction of Hazardous Substances in electrical and electronic equipment)
    • CSA C22.2 No. 75 (Canadian Standard for Thermoplastic-Insulated Wires and Cables)

    Typical usage ratio

    • HDPE content at 70–93% in compound; flame retardants and masterbatches introduced at 7–30% depending on required flammability class, color, and UV/weathering resistance

    Downstream process integration

    • Compounded in twin-screw extruders with process-controlled dosing for modifiers; extruded over copper or aluminum conductors in jacketing lines; post-extrusion water bath cooling and spark/voltage testing performed online

    Final product types

    • Armored and non-armored cable sheathing, flexible conduits, low-voltage data and power cables, weatherproof control wiring

    Free Quote

    Competitive DOW HDPE DGDA 6094 prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

    We will respond to you as soon as possible.

    Tel: +8615365186327

    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    DOW HDPE DGDA 6094: Practical Experience From the Factory Floor

    A Manufacturer’s Perspective on DOW HDPE DGDA 6094

    Working directly inside polymer plants gives a clear view of what separates average high-density polyethylene from high-performance grades. DOW HDPE DGDA 6094 has stood the test of repeated large-scale production runs. It shows a balance of stiffness, impact resistance, and process stability. The fine-tuning in density and molecular weight distribution makes a difference that’s easy to recognize, not just in the lab but on production lines where downtime and waste translate instantly into real costs.

    The model DGDA 6094 sits in DOW’s high-density polyethylene range with a melt index around 0.35 g/10 min (190°C, 2.16kg) and a density near 0.960 g/cm³. These attributes match our own analytical results from routine QC sampling. In extrusion and blow molding processes, the resin flows without sudden pressure swings or surging, reducing the need for line adjustments mid-run. Fewer shutdowns, cleaner die faces, and less scrap mean everything when meeting tight delivery deadlines and filling orders for everyday products like pressure-rated pipes, blow-molded canisters, and industrial drums.

    Features That Matter on the Shop Floor

    HDPE’s reputation in industry rests on its toughness and chemical resistance, both of which DOW’s DGDA 6094 delivers in real-world conditions. When making containers or technical molded parts, too low a density gives softness that warps under load, but excessive rigidity leads to stress cracking. DGDA 6094 threads this needle reliably. We have observed that parts made from this resin handle repeated drop testing and stacking without visible deformation or splitting. Chemical resistance passes exposure trials against laundry detergents, industrial solvents, and diverse foodstuffs that often challenge lesser grades.

    Compared to commodity HDPE, DGDA 6094’s environmental stress crack resistance shows a clear margin during accelerated test cycles. This means our finished goods built from this resin last longer in the field, with less warranty fuss coming back. These performance gains are not theoretical; our returns team can attest that containers molded with DGDA 6094 need fewer service replacements, especially in harsh outdoor or industrial environments.

    Production Reliability and Why It Matters

    From a manufacturer’s seat, the real test of a polymer isn’t on paper. It’s in the extruder throat at midnight, under shifting humidity, as operators troubleshoot feeds and maintenance hustles to keep lines running. DGDA 6094 handles variation in screw speed and back pressure, allowing us to hit tight dimensional targets across long production cycles. The resin pellets arrive consistently free-flowing and clear of dust fines, so compounding and feeding equipment do not clog or bridge.

    Switching between jobs — say, from detergent bottle bodies to fuel tanks — is a routine task. Resin residue from DGDA 6094 purges out cleanly, shaving hours off changeover times. Fewer scrap-out batches means production stays on schedule. Every shift saved translates to more units shipped and customer windows hit.

    Our maintenance chief notes that this grade does not carbon up barrels or leave ghost lines in dies, especially during extended runs. We attribute this to DOW’s polymerization and pelletizing consistency. When downstream equipment spends less time being torn down for cleaning, production staff get more uptime with fewer headaches.

    Applications: Real Needs, Real Results

    DGDA 6094 fits naturally into both extrusion and blow molding applications. We see reliability when producing chemical drums, jerry cans, and food-safe packaging. Blow-molded items keep proper shape integrity and sealing characteristics across different wall thicknesses. Thin-walled containers do not sag after curing; heavy-walled products develop full strength without requiring longer cooling cycles. Down at the injection presses, the resin fills multicavity tools evenly, giving sharp parting lines and true-to-mold surfaces.

    Field reports come back strong from agriculture, automotive, and chemical handling customers. Bulk acid drums using this resin show long service life, surviving accidental knocks and transport jostling. In food industry storage tanks, DGDA 6094 passes local and international compliance checks for food contact, which is crucial for dairy or beverage bottlers switching between product runs without risk of contamination.

    Comparing DGDA 6094: Not Just Another HDPE

    Many resin buyers ask, ‘Why not use another HDPE?’ The reality is differences in processing windows, pellet quality, and long-term durability stack up fast on plant spreadsheets. We’ve tested resins from multiple suppliers under the same conditions. Some grades show unpredictable melt flow, leading to uneven wall thickness and increased rejects. Others do not deliver the same drop impact or chemical resistance, leaving end-users disappointed and pushing for warranty support.

    Compared to lower-grade alternatives, DGDA 6094’s tight molecular structure delivers higher resistance to creep and slow crack growth. In our outdoor exposure tests, samples resist yellowing and maintain physical properties even after extended UV and thermal cycling. Warranty data from our field service team backs this up; product failures tied to polymer breakdown have dropped since we made the switch for key lines.

    Supporting Safe and Responsible Manufacturing

    Our responsibility goes beyond just running lines efficiently. Handling hundreds of tons of polyethylene each month, we prioritize operator safety, air quality, and regulatory compliance. DGDA 6094 comes certified for food contact and meets local and international standards for consumer product safety. Safety data supplied by DOW matches our workplace air monitoring and spill response drills. We train staff to handle, store, and process resins with the same attention we give to finished goods. Reliable feedstock helps to maintain a safe and predictable work environment where nobody has to fight persistent dust, off-gassing, or inconsistent pellet sizing.

    DOW’s traceability and documentation make regulatory audits straightforward. Our compliance officers can match shipment records, lot numbers, and testing certificates seamlessly. This traceability supports our own ISO 9001 and FSSC 22000 management systems, streamlining both customer reporting and internal process checks.

    Challenges and Solutions With Large-Scale HDPE Processing

    No manufacturing process runs without bumps. Scheduling long runs of HDPE for varied end use — from pale blow-molded bottles to thick-walled transit containers — stretches both material and machine limits. We have worked with DOW technical support to fine-tune die geometries and cooling profiles specifically for DGDA 6094, reducing warpage and post-mold shrinkage. Adjusting extrusion temperatures and screw designs helps take advantage of the resin’s process stability. By monitoring moisture and pellet temperature right at feed hoppers, shifts achieve consistent melt flow and gloss.

    Waste reduction matters. Scrap raw material gets reprocessed only a limited number of times before mechanical approaches like regrinding affect resin properties. DGDA 6094 stays closer to virgin resin performance on multiple cycles, so our sustainability targets do not compromise end-product strength or impact resistance. This reprocessability reduces landfill waste and supports customer goals for green manufacturing.

    Unexpected swings in utility supply or raw material logistics pose real threats to on-time production. We keep transparent records on resin batch performance and processing parameters, so root-cause analysis on product defects can quickly isolate whether a variance comes from material, machine, or operator error. Our data suggests that with DGDA 6094, material-driven issues happen less often, freeing staff up to focus on upstream improvements.

    Long-Term Performance and Customer Value

    We track shipped product performance well after final inspection. Customer claims data shows drums, tanks, and containers built with DGDA 6094 resist punctures, leaks, and sunlight damage longer than counterparts made with other resins. Three-year-old field units in remote agricultural regions look nearly new, which reflects both on our manufacturing discipline and the resin’s base properties.

    Many customers trust our recommendations because they know our trials aren’t limited to bench-top samples; they extend through full production and shipping cycles. We share lifecycle test data with key accounts, showing how DGDA 6094 holds up across resistance to stress cracking, mechanical shock, and chemical attack in real settings. Decision-makers value actual experience over catalog claims, and our record contributes to long-term supply contracts in food, chemical, and automotive supply chains.

    Why We Trust Long-Term Partnerships With Proven Materials

    The decision to switch a core raw material like HDPE shapes operations and end-user satisfaction for years. We do not change suppliers lightly. Across tens of thousands of tons of polymer processed every year, small changes in resin consistency magnify through supply chains. DGDA 6094 has supported our predictable, reliable plant operations over many consecutive runs.

    Stable supply, robust technical support, and open lines to DOW’s process engineers mean fewer blind spots in troubleshooting odd behaviors on the line. Consistent pelletizing and packaging cut lost time during bulk unloading and hopper transfers. Equipment operators trust the resin they pull from storage without needing to second-guess batch-to-batch performance. This trust matters most during peak season rushes, when team members depend on smooth handoffs and round-the-clock runs.

    Environmental Responsibility in Modern Polyethylene Manufacturing

    Industry leaders are facing increasing demands for lower emissions, recyclable packaging, and minimized waste. DGDA 6094 fits into these goals by delivering a clean processing profile — less hot-air fuming, minimal off-spec scrap, and better compatibility with established recycling streams. Our closed-loop water and material systems capture and reintegrate extruder trim and off-cuts with little loss in mechanical performance.

    We conduct regular audits to ensure our waste handling, emissions capture, and recycling meet or exceed official environmental regulations. HDPE grades like DGDA 6094, with repeatable resin quality, resolve one variable in the sustainability equation. Material that remains stable through reprocessing means less total plastic ends up as unusable waste, reducing both environmental footprint and disposal fees.

    Serving End Users: Delivering Real Reliability

    The final test of any production material comes from end-user satisfaction. Over the years, we’ve seen DGDA 6094 products stand up to rough handling in warehouses and transit, to prolonged outdoor exposure, and to demanding filling line speeds at customer facilities. Bottles, tanks, and technical parts retain their form, seal efficiently, and resist abrasive or chemical contents longer than those made from generic grades.

    For businesses that demand just-in-time deliveries or must meet strict food safety audits, the consistency of DGDA 6094 simplifies supply chain planning and quality checks. Shipping on time with confidence that finished parts meet customer needs without last-minute intervention provides a competitive edge in tough markets. Downtime for retooling or rework drops when using a resin that responds predictably under heat, pressure, and mold variations.

    Continuous Improvement: Real-World Learning With DGDA 6094

    We keep detailed tracking on resin batch variables, machine parameters, and ambient conditions. Our process engineers review historical data and line performance to refine settings with each production round. As new application demands arise — lighter packaging, tougher containers, more complex molded parts — DGDA 6094 has given us room to grow and adapt without overhauling equipment.

    Continuous dialogue with DOW’s materials experts helps when pushing for even tighter tolerances or adapting resins for new regulatory environments. Input from operators, QC staff, and machinists gets channeled directly to process improvement, raising the operational bar across shifts and facilities. Knowing the material will respond as expected allows us to focus more resources on innovation and less on putting out fires.

    Choosing Materials That Work for People, Not Just Processes

    Factories depend on materials that enable people to do their jobs well. From day-shift mechanics keeping hoppers clear, to QC techs running melt index checks, to sales managers promising on-time delivery — everyone depends on resin that performs. DGDA 6094’s track record of dependable handling, tough finished goods, and straightforward compliance underpins not just product lines, but whole business operations.

    In the end, polymers don’t win market share by being generic. They do it through real-life experience, trust, and results. Our experience with DOW HDPE DGDA 6094 has proven its value: line uptime goes up, scrap goes down, and end users get packaging and parts that stand up over years, not months. As a manufacturer who answers directly for both productivity and product quality, we recognize the practical benefits—a resin that delivers in the plant, on the shelf, and in the field, batch after batch.

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