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HS Code |
282901 |
| Product Name | DOW HDPE DGDA 2480 |
| Resin Type | High Density Polyethylene |
| Melt Flow Index 190c 2 16kg | 0.25 g/10min |
| Density 23c | 0.948 g/cm³ |
| Tensile Strength At Yield | 28 MPa |
| Elongation At Break | 600% |
| Flexural Modulus | 1100 MPa |
| Escr Condition A F50 | 500 hours |
| Vicat Softening Temperature | 125°C |
| Processing Method | Blow Molding |
| Application | Drums, Large Containers, Industrial Packaging |
As an accredited DOW HDPE DGDA 2480 factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | DOW HDPE DGDA 2480 is packaged in 25 kg (55 lb) moisture-resistant, sealed polyethylene bags featuring product labeling and safety information. |
| Shipping | DOW HDPE DGDA 2480 is typically shipped in 25 kg bags or bulk containers. Ensure storage in a cool, dry area, away from direct sunlight and incompatible materials. During transport, secure pallets to avoid damage. Comply with local regulations for handling and labeling; this product is not classified as hazardous for shipping. |
| Storage | DOW HDPE DGDA 2480 should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and sources of heat or ignition. Keep the material in its original, tightly closed packaging to prevent contamination. Avoid exposure to strong oxidizing agents. Ensure the storage area is suitable for polymer materials and prevents moisture ingress, which may affect product quality. |
Applications of DOW HDPE DGDA 2480 in Industrial ManufacturingDOW HDPE DGDA 2480 is an advanced high-density polyethylene resin engineered for rigorous industrial processing. Its unique molecular structure and mechanical profile enable high performance across multiple specialized downstream manufacturing environments. As an original manufacturer, we support global partners in the implementation of tailored production methods while adhering strictly to local and international compliance requirements. 1. Food and Beverage Packaging FilmsProcessors in the food and beverage industry utilize this grade primarily in the fabrication of blown and cast films for flexible packaging. The high environmental stress crack resistance and controlled density ensure reliable barrier properties and strength in multilayer pouch, lid, and bag applications. Manufacturers achieve certified direct food contact due to virgin polymer content and absence of hazardous substances. High clarity and controlled organoleptic profile support sensitive packaging such as dairy, chilled produce, and ready-to-eat meals. Industry compliance standards
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2. Industrial Chemical Drums and Rigid ContainersChemical and agrochemical manufacturers select this resin for blow-molding of drums and intermediate bulk containers (IBCs) where mechanical durability and environmental stress crack performance are essential. The dimensional consistency and UV weathering characteristics meet long-haul transportation and storage requirements for hazardous and non-hazardous materials. Processors maintain quality audit trails and traceability in accordance with major packaging transport regulations. Industry compliance standards
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3. Pressure Pipe Systems for Water and Gas DistributionMunicipal and industrial pipeline manufacturers use this grade in pressure-rated HDPE pipe extrusions. Its molecular weight distribution provides high resistance to slow crack growth and long-term hydrostatic strength needed for potable water, irrigation, and low-pressure gas conduit. Pipe system providers rely on this resin for consistent weldability and safe performance over decades of field use in varying climatic conditions. Adherence to national pipeline codes ensures regulatory acceptance and market qualification. Industry compliance standards
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4. High-Performance Caps and ClosuresClosure manufacturers serving beverage, personal care, and household chemical brands employ this grade to injection-mold caps and closures demanding precise dimensional stability, chemical resistance, and mechanical integrity. The slip and torque balance facilitates linerless sealing, repeated opening/closing, and tamper-evidence without stress whitening. It supports direct food contact requirements for beverage and pharmaceutical bottles, as well as chemical resistance for detergent and agrochemical packaging. Industry compliance standards
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5. Extruded Sheet for Thermoformed Consumer TraysThermoforming operators select this resin for extruded sheet production destined for forms such as food trays, insert blisters, and high-impact protective packaging. Its melt strength and rigidity ensure retaining manufactured shapes under hot-fill, sealing, and transportation conditions. The material provides consistent wall thickness and surface finish for visual quality in both food and non-food applications, while supporting large-volume, thin-gauge conversion lines. Industry compliance standards
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6. Wire and Cable Jacketing CompoundsWire and cable manufacturers employ this polyethylene for the extrusion of primary and secondary insulation jackets. The resin's chemical stability, controlled dielectric strength, and superb process uniformity give reliable insulation during cable pulling and long-term outdoor service. Low gel content and consistent pigment dispersion satisfy critical cable performance and visual QC requirements for telecom, power distribution, and automotive harness applications. Industry compliance standards
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Competitive DOW HDPE DGDA 2480 prices that fit your budget—flexible terms and customized quotes for every order.
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Every day in our plant, raw polyethylene pellets funnel through hoppers and extruders, but handling DOW HDPE DGDA 2480 stands out for several reasons. We see firsthand how the resin behaves, and there’s a confidence that comes with running a grade that consistently delivers on both processability and product performance.
DGDA 2480 is one of those resins we end up recommending to clients who want reliability, toughness, and flexibility in applications that range from blow-molded bottles to high-stress technical packaging. As a high-density polyethylene with a focus on good melt strength and environmental stress crack resistance, this product brings together qualities that often take additional processing steps or blending to achieve with other grades.
Anyone who’s managed a line producing containers, drums, or caps will quickly spot several key differences with DGDA 2480. One of the major standout features is its balance between stiffness and impact resistance. Many other HDPE grades force us to trade off between toughness and easy processability, especially during high-speed blow molding runs. DGDA 2480 has been designed so those trade-offs diminish, letting us run at higher speeds without sacrificing product integrity.
The melt flow index sits within a range ideal for both extrusion blow molding and injection molding, which opens possibilities beyond single-use or commodity applications. Many conventional HDPE resins either run too slow for larger parts or cannot deliver the necessary resistance to stress cracking, particularly for containers exposed to detergents, oils, or agrochemicals. Our testing and customer feedback confirm DGDA 2480’s advantage in resisting cracking along handles and seams, which can otherwise cause expensive failures down the logistics line.
In production, the devil is always in the details. The resin’s density and melt index influence everything from wall thickness control to the clarity of the finished container. DGDA 2480 sits high on the density scale, offering higher rigidity than medium or low-density alternatives. It doesn’t sag much under its weight during extrusion, so the containers hold their shape without warping—a difference that’s easy to see after cooling, especially with larger blow-molded drums or tall bottles.
We also get fewer problems with parison control. Operators like working with this resin because the extrusion speed stays steady and doesn’t require constant manual adjustments. On lines where every stoppage costs both time and material, this kind of consistency pays off fast.
From our end, working directly with the polymer—not just selling finished product—means accountability for every batch and deep knowledge about how each raw ingredient affects processing. Maintaining resin quality takes more than meeting a specification sheet. Over years of running hundreds of tons through extruders, we have seen how slight variations in the polymer backbone or catalyst system shape downstream productivity. DGDA 2480 consistently lands inside our tightest spec sheets. We’ve minimized fines and avoided gels that can mar surfaces. Feedback from plant operators and quality inspectors is that it behaves as expected batch after batch.
Technical know-how isn’t limited to certificates. Our staff can spot tiny shifts in pellet uniformity and anticipate how they translate to the finished container’s clarity or seal strength. We’ve also fine-tuned our drying and storage routines just for this grade, making sure humidity never gets in and disrupts processing. That investment in small details takes effort, but the smoother runs and lower defect rates show why we stick with this approach for DGDA 2480.
Talk to any packaging engineer, and they will say material failures often surface only after weeks of shipping or storage. Our customers use DGDA 2480 for bottles that line supermarket shelves, industrial drums that cross continents, and packaging that faces harsh outdoor storage. This grade’s chemical resistance keeps caustics and surfactants from eating through the plastic. We’ve seen fewer stress fractures, even under cyclical loads, which means fewer callbacks and less off-grade waste.
Some of our clients in the agriculture sector use it to mold chemical canisters, where permeability and crack resistance decide how long those critical crop inputs last in storage. Others in food and beverage need confidence that taste won’t migrate from packaging, and DGDA 2480’s low extractables meet those industry standards. We’ve documented fewer odor issues with this resin compared with generic alternatives, thanks in part to the higher purity standards and tighter process control.
Much of HDPE production is about reducing both start-up scrap and in-line defects. DGDA 2480 helps on both counts. The melt strength holds up regardless of minor fluctuations in melt temperature, which is common in older extruders or in regions with less stable power supply. We ran extended production trials, deliberately shifting process temperatures, to see at what point surface pinholes or splits would show up. DGDA 2480 held its shape and kept gloss high past the point where standard commodity grades begin to falter.
This helps us hit tighter thickness tolerances. In projects where wall thickness can’t stray outside a certain range—or caps must maintain snap fit even after transport—consistency at the resin level matters more than any post-molding inspection could ever catch.
More customers expect real action on reusability and recyclability. DGDA 2480 meets regulations for food contact and consumer packaging in multiple regions. Its chemical structure allows for post-consumer resin blends without much compromise in finished product appearance or performance. We recycle start-up trims and clean scrap generated during molding. After reprocessing, we’ve measured only minimal reduction in clarity and impact strength.
Clients focused on circular economy targets have been able to source food-grade containers from both virgin and recycled blended resin based on DGDA 2480, creating a closed-loop system that cuts waste while safeguarding product integrity. The fact that the resin maintains mechanical properties even after re-melting is especially important as regulatory standards tighten year to year.
HDPE DGDA 2480 passes multiple regional and international standards for consumer safety, including requirements for heavy metal content, organoleptics, and migration limits. We’ve provided full documentation to downstream users so they can easily pass their own audits. In our plant, maintaining compliance means not only following the specs, but investing in ongoing staff training and equipment upgrades that monitor trace contaminants.
Safety teams often spot-check pellets straight off the line for dust, black specks, or off-odors. This doesn’t just affect appearance; off-grade material can cause downstream product recalls. Our in-house testing for DGDA 2480 includes more than just visual inspection. We analyze mechanical performance, environmental stress crack resistance, and chemical compatibility. These checks allow us to give customers extra confidence, particularly those servicing major multinational brands with zero-defect expectations.
Not every resin plays well with every mold or extrusion die, especially under tight delivery timelines and harsh working conditions. DGDA 2480 adapts well to a range of blow molding and injection platforms. Resin flow characteristics mean operators don’t need to fight with sudden pressure swings or surging issues. In fact, on multi-cavity tools, we’ve measured more uniform fill and cooling rates, which translates to better part quality and fewer downgrades.
In regions where ambient humidity spikes and power supply remains unpredictable, other grades can absorb moisture and cause blisters or splay marks. DGDA 2480 pushes back against moisture pickup, reducing in-line rejects and cutting cleaning cycles. Over months of continuous operation, those savings stack up. We support clients running complex molds who report up to 20% reduction in cycle interruptions compared to lower-spec materials.
For brands and manufacturers focused on shelf appeal, HDPE container surface finish stands front and center. DGDA 2480 gives a glossy, smooth exterior with minimal surface defects—a clear advantage for high-end packaging lines. We’ve partnered with labeling and sleeving teams to ensure print adhesion stays strong and colors remain vibrant.
Consistency extends through high-speed runs; print quality remains stable from batch to batch, minimizing waste. Joints and weld lines on blow-molded bottles form evenly and remain strong, reducing customer returns from top-seal failures.
Some customers require UV inhibitors, colorants, anti-static agents, or slip additives tailored to their product needs. DGDA 2480 has served as a stable base resin. Its formulation supports a range of masterbatches without color drift or unexpected viscosity spikes. In our plant, we’ve run extensive series with different additive packages, checking both initial appearance and performance after months of outdoor storage. The results show low migration of color and a high degree of property retention, even after weathering cycles.
This flexibility lets customers tailor packaging to specific regions—chemical drums heading for tropical climates; beverage bottles needing anti-static performance for automated filling lines. DGDA 2480 accommodates these upgrades without complex rebalancing or new process protocols.
End customers often focus on ease of handling, durability, and reliability in use. Our resin’s contribution to these factors cannot be overstated. When a detergent bottle survives the drop test, or an industrial drum keeps its barrier properties shipping across hot shipping containers, that’s DGDA 2480 making the difference behind the scenes.
We field fewer complaints about container deformation or poor stacking ability from plants that switch to this resin. In packaging trials under real shipping stress, DGDA 2480 wins for impact absorption. Labels stick longer, and shelf presence remains as intended even after long stints in transport or standing in direct sunlight.
Demand keeps evolving. Shipping distances lengthen. Packaging weight faces continual reduction targets. Regulators ask for lower migration and higher recycling rates. We leverage DGDA 2480 as a foundation for innovation. The grade forms a core part of our development work, especially as we pilot mono-material solutions capable of running through existing supply chains with minimal re-tooling.
By taking customer feedback directly from filling lines and distribution partners, we keep tuning extrusion conditions and add-on packages so end use matches changing requirements. Our technical team works hand in hand with packaging designers looking to use thinner walls or different closure systems, helping push the limits of what a single HDPE resin can do without giving up performance or safety.
Every successful trial, customer testimonial, and long-term performance claim is built on years of experience with what works—and what falls short—on factory floors across multiple industries. DOW HDPE DGDA 2480 stands out in our portfolio because it clears real manufacturing hurdles drawn from our daily experience, not just abstract benchmarks.
Too often, packaging professionals face the fallout of inconsistent raw materials—batch to batch variations, unpredictable processing, or post-mold failures. We manufacture and deliver DGDA 2480 holding ourselves to standards set by daily plant realities, not optimistic best-case scenarios. Fewer surprises mean smoother production and peace of mind for everyone from line operators to brand owners.
As performance requirements toughen and regulations grow stricter, our approach remains grounded. For us, delivering DGDA 2480 isn’t just about meeting a technical data sheet. It’s about making sure our partners and their end customers enjoy the kind of reliability and performance that can only come from long-term commitment to manufacturing quality.
That’s why, year after year, many of our clients return to DGDA 2480 when they need a solution that carries products from our factory floor to store shelves around the world.