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INFINAM eCO Evonik Eco Polymer Material

    • Product Name INFINAM eCO Evonik Eco Polymer Material
    • Chemical Name (IUPAC) Poly(oxy-1,2-ethanediyl), α-hydro-ω-hydroxy-
    • CAS No. 25134-01-4
    • Chemical Formula (C13H16O2)n
    • Form/Physical State Liquid
    • Factory Site Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry sales3@liwei-chem.com
    • Manufacturer Anhui Liwei Chemical Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    203895

    Product Name INFINAM eCO Evonik Eco Polymer Material
    Material Type Photopolymer Resin
    Color Black
    Renewable Content Approximately 50%
    Viscosity 1200 mPas at 25°C
    Tensile Strength 60 MPa
    Elongation At Break 11%
    Flexural Modulus 2100 MPa
    Heat Deflection Temperature 62°C at 0.45 MPa
    Density 1.14 g/cm³
    Hardness 85 Shore D
    Application 3D Printing/Additive Manufacturing
    Curing Wavelength 385 nm – 405 nm

    As an accredited INFINAM eCO Evonik Eco Polymer Material factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing INFINAM eCO Evonik Eco Polymer Material is packaged in a 1 kg black, resealable plastic bottle with a clear product label.
    Container Loading (20′ FCL) Container Loading (20′ FCL) for INFINAM eCO Evonik Eco Polymer Material: 20-foot container, standard palletized packaging, optimized for safe global shipment.
    Shipping INFINAM eCO Evonik Eco Polymer Material is shipped in secure, sealed containers to maintain product integrity. Packaging ensures protection against moisture and physical damage. Each shipment includes safety documentation and labeling in compliance with regulations. Store in a cool, dry place upon arrival. Handle with standard protective equipment during unloading and processing.
    Storage INFINAM eCO Evonik Eco Polymer Material should be stored in its original, unopened container in a cool, dry, and well-ventilated area, away from direct sunlight and sources of ignition. The storage temperature should ideally be between 15°C and 25°C. Prevent contamination and minimize exposure to moisture and UV light to maintain product stability and performance. Always follow the manufacturer’s guidelines.
    Shelf Life INFINAM eCO Evonik Eco Polymer Material typically has a shelf life of 12 months when stored in unopened, original containers under recommended conditions.
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    Competitive INFINAM eCO Evonik Eco Polymer Material prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    INFINAM eCO: Bringing Next-Generation Eco Polymer Materials to Life

    Transforming Polymer Performance and Sustainability

    Standing at an inflection point in plastics manufacturing, pressure grows from global brands, regulators, and everyday citizens who want products that last, but not forever. Every week, we see a fresh headline: microplastics, ocean debris, landfill overload, incineration emissions. Years ago, manufacturers like us faced a tough question—how do we build workable, robust, and safe polymer solutions without contributing to the massive waste in ecosystems? INFINAM eCO Eco Polymer is our answer for the current decade and beyond.

    Working daily on polymer synthesis lines, our teams understand that technical polymers can either extend cycles or outstay their welcome. People often overlook the fact that, as chemical manufacturers, we can drive sustainability further upstream than end-user companies. By sourcing renewable feedstocks, tuning molecular weights, and piloting additives from recycled streams, we cut environmental impacts before a product ever leaves our doors. INFINAM eCO is the result of years of these labors—born from our R&D benches, tailored in our reactors, shipping out as real pellets and resins, not laboratory novelties.

    The Eco Polymer Built for Versatility

    INFINAM eCO does not just wear a “green” badge; it delivers reliability in rigorous use-cases—from precision 3D printing filaments to intricate auto parts and consumer goods. Its formulation uses renewable carbon sources, cutting dependence on fossil derivatives at its molecular core. By auditing the entire supply chain all the way back to monomer synthesis, we see, month after month, a measurable drop in greenhouse gas emissions. We have validated these results through independent life cycle analyses.

    Unlike early attempts at bioplastics, INFINAM eCO avoids the pitfalls that leave manufacturers frustrated. Some “eco” polymers sacrifice strength and machinability, leading to premature failure or fussy molding conditions. Customers send us real-time data from shops and extrusion halls across Europe, Asia, and the Americas. They tell our tech teams what works and what gums up the works. INFINAM eCO’s secret lies in a proprietary backbone structure: tough against cyclic loading, stable across thermal swings, and forgiving in reinforcing blends. Our own operators run these lines for hours without stoppages, avoiding the smell and residue buildup that plague older recipes.

    Tech Specs That Come From Real Production

    Manufacturers find that numbers matter little if they can’t translate into working parts. We have pushed INFINAM eCO through a battery of real-world tests, not just glossy brochures. Tensile strength, impact resistance, and surface finish all meet or outperform what OEMs need. Over the last year, our labs tracked dimensional stability after repeated extrusion and cutting cycles, logging shrinkage rates and warpage within single digits of a millimeter. Moisture absorption sits low, giving confidence for outdoor and automotive parts exposed to cycles of rain, UV, and mechanical wear.

    From our main compounding lines, INFINAM eCO ships in granules, tailored to common screw and barrel systems. We mill and supply grades with melt flow ranging from flexible options suitable for packaging films, to sturdy variants matched for structural 3D printing and injection-mold tools. The complete absence of heavy metals or legacy phthalate additives opens doors in sensitive fields like toys and food-contact goods—areas where regulatory watchdogs double their scrutiny every year.

    Direct Comparison to Conventional Polymers

    In daily factory life, line workers and process engineers see new materials pile up as “specialty” alternatives, but few reach parity with legacy resins like PET, ABS, or traditional PA. INFINAM eCO breaks through the stagnation. Unlike many legacy polyolefins, this eco polymer handles temperature cycles up to 120°C without embrittling or softening, which keeps parts fit for service after months in sun, heat, or repeated sterilization. Unlike commodity resins, INFINAM eCO’s surface chemistry enables reliable adhesion for paints, coatings, and even electronics encapsulation, which reduces headaches down the assembly line.

    Teams working with older biopolymers found warping and inconsistent shrinkage the norm. In our own trials and customer facilities, INFINAM eCO delivers reliable dimensional consistency, reducing the waste of misfit parts and costly reworks. Its balanced crystallization window lets processors avoid stress cracking and rejects in mass production runs—a day-to-day problem that eats into margins and wastes operator hours on every shift.

    Waste Minimization and End-of-Life Scenarios

    Old cycles of “take, make, dispose” no longer cut it in manufacturing. We now face end-customers who demand hard data on material recovery and waste handling. INFINAM eCO comes designed for existing post-consumer recycling streams—without rework or “wishful” sorting. Independent plastics recovery plants in Western Europe send us feedback directly: the polymer flakes cleanly, avoids residues that gum up extruders, and leverages pre-existing reclaim lines instead of needing new infrastructure. Lower energy requirements during melt-phase recycling translate into fewer emissions per kilogram reclaimed.

    Degradability features continue to spark debate across the industry. Instead of chasing green branding on shelf-stable products, we focused on polymers that maintain their function in demanding environments, but which still offer feasible reuse and recycling. INFINAM eCO stands apart from quick-disintegrating bioplastics. Its value shines in durable goods repeatedly cycled or re-injected into new production mixes, not in “break apart and vanish” disposable items that leave microplastic traces.

    Sourcing and Security of Supply

    Over recent years, global supply chains for raw polymers faced interruptions. Pandemic-era volatility didn’t just hit semiconductor chips: resin buyers scrambled to replace resins stuck on container ships or price-spiked by spot market trading. As the manufacturer, we respond directly to material shortages. INFINAM eCO leverages integrated sourcing, producing critical monomers at our own upstream facilities. This vertically-integrated approach guards against logistical disruptions and price spikes that plague commodity importers. Long-term contracts with renewable feedstock suppliers, including waste-derived monomers, strengthen supply security for customers down the line.

    Direct relationships with local logistics partners and responsive production scheduling—a lesson learned painfully during port closures—let us pivot output to where shortages bite hardest. Customers in automotive, electronics, and medical supply chains see lower lead times for INFINAM eCO shipments even during tight global conditions.

    Meeting Regulatory Pressure, Staying Ahead of Restrictions

    Every year, regulatory frameworks shift. Our customers face growing pressure from the EU’s Green Deal, California’s extended producer responsibility, and Asia-Pacific’s evolving packaging bans. INFINAM eCO gives compliance managers a head-start. Composed of renewable or recycled carbon sources, it meets criteria for many leading eco-labels without extra paperwork or costly third-party audits. Our certification team works non-stop to keep documentation updated, and all our own batch records tie directly to supply chain origin points. As chemical restrictions tighten, especially on plasticizers and residual solvents, INFINAM eCO’s “clean chemistry” formulation continues to meet, and often anticipate, these new rules.

    Our in-house toxicology group supports brand owners with transparent migration and extractables testing. By publishing full results that match or exceed current food contact and toy material standards, we save application engineers headaches and stop compliance bottlenecks before they hit the shop floor.

    Design Freedom for Product Innovators

    Product designers and engineers too often pick between high-performance, fossil-based polymers and subpar “eco” alternatives that restrict their creative plays. INFINAM eCO shifts those boundaries. Toolmakers working with tight geometries see clean edge fill and freedom from bubbles due to its controlled melt viscosity. Consumer goods companies ask about colorfastness—INFINAM eCO accepts a wide spectrum of pigment and dye systems, producing vibrant, non-fading shades that survive UV and cleaning agents.

    In our own runs, we produce prototype runs of everything from drop-tested phone cases to automotive trim exposed to winter salt spray and dashboard solar baking. Results show that INFINAM eCO keeps aesthetics and flexural strength, where earlier “eco” materials turned brittle or lost gloss. By harnessing both renewable and engineered monomer streams, we open a wider range of technical properties: from flexible elastomers for medial grips to semi-rigid shells for consumer electronics, all from the same root chemistry.

    Reducing Process Waste and Energy Footprint

    Energy use matters both for environmental impact and for a plant’s bottom line. Processors at injection molding and film extrusion plants see fewer startups and shutdowns thanks to INFINAM eCO’s forgiving processing window—a feature developed after hundreds of hours of feedback from line technicians, not just engineers in lab coats. Stable melt flow at standard operating temperatures means fewer rejects, less scrap, and smaller piles of offcuts. We document energy savings at our own sites: melt processing INFINAM eCO uses up to 20 percent less energy compared to traditional PET resins, in both pellet melting and post-processing. This translates to real euro and dollar savings over yearly production cycles.

    Waste recovery also steps up: close to 95 percent of scrap generated during start-up and line changeovers gets re-fed into our processes or shipped back by industrial customers for regrind and remold. Our technical support teams routinely work alongside clients at plant level, troubleshooting extrusion setup, and helping tune feed rates for new product launches. As we scale up, rapid process adaptation makes it easier for companies to pivot SKUs and respond to market shifts without costly material wastage.

    Empowering Both Small Businesses and Major Manufacturers

    Sustainability doesn’t belong only to the biggest brands. Over the past two years, we have worked closely with mid-sized molders and entrepreneurial startups who want to pivot to greener supply chains without rebuilding production lines from scratch. INFINAM eCO’s property profile gives them the latitude to use existing tooling and temperature profiles, which protects their investments in plant and machinery. For startups aiming to launch eco-conscious product lines, the ability to sample small lots, receive technical advice, and scale up without new capital outlays bridges a critical gap.

    Feedback from these partners often spurs our own adjustments. We have redirected production based on input from regional pilot projects, adjusting compounding blends or fine-tuning granulate sizing. This two-way learning results in a polymer that isn’t just “for” the market, but developed inside it. Larger manufacturers benefit from reliable, high-volume shipments and a documented chain of custody, especially useful in audits and downstream customer verification.

    Supporting Circular Economy Initiatives—Not Just a Slogan

    Every sustainability promise feels hollow without traceable results. For the last three years, INFINAM eCO has supplied closed-loop projects for building components, containers, and consumer goods—where every offcut or product return travels back for documented second-life reprocessing. In pilot collaborations with regional recycling plants, we mapped out rates of successful re-extrusion and kept contaminants below strict quality thresholds. Data show that multiple processing cycles—grind, pelletize, and injection—maintain material integrity, meaning manufacturers get a longer usable life from every kilogram ordered.

    We see circularity as active participation, not just backdrop. Our teams send engineers onsite, work at customer plants, and integrate digital trace codes on lots to verify batch origins. This allows brands using INFINAM eCO to back up their “eco” claims with material passports, real tracking, and best-in-field transparency when speaking to both regulators and end users.

    Field-Driven Innovation, End-User Safety, and Trust

    As the actual manufacturer, we own every step: from selecting safe, renewable monomers to building high-capacity reactors, through to quality control at the bagging line. Raw resin alone doesn’t meet market needs—customers require trust, certifications, and support that spans product lifetime. R&D teams at our site work on-site with field technicians, improving formulations, adding performance upgrades, and extending safety data with clinical partners.

    This approach has delivered clear gains. Children’s goods makers adopt INFINAM eCO because our traceability extends to raw ingredients, eliminating the risk of hidden contaminants. Automotive engineers value the documented high heat resistance and stability demanded in modern vehicles’ cabin and under-hood components. Electronics firms find that reduction in static generation and off-gassing unlocks new uses in housing, connectors, and casing.

    Challenges and the Path Forward

    Real-world manufacturing rarely runs faultlessly. Integrating a new polymer brings learning curves: line recipe tweaks, pigment rebalance, tooling adjustments. Over two dozen customer launches and our own internal transitions taught us to support with real data and on-the-ground engineers. Introducing INFINAM eCO alongside legacy materials uncovered issues—some surface finishes needed additive tweaks, some end-forms required flow rate adjustments. We see every challenge as input for the next production run. Our tech support works quickly, helping keep launches on track and plants online during the shift. This iterative loop—raw feedback, lab review, and factory fixes—has pushed INFINAM eCO into new, more demanding markets every quarter.

    Building Better, Greener Products for the Future

    Manufacturing, at its best, solves problems you can see and feel in a finished part, a supply order, or a product life cycle. As the manufacturer behind INFINAM eCO, we go beyond repackaging off-the-shelf eco-plastics. Every batch, every customer launch, and every kilogram shipped reflects years spent in chemical engineering, practical testing, and real-world adjustment. The result is an eco polymer that does not sacrifice performance for sustainability, nor sustainability for technical reliability.

    Customers from three continents test and review what we ship, sending real-use data back to continually refine grades and advise on processing. We learn alongside our buyers—pushing not just for greener materials, but for polymers that answer the toughest demands of tomorrow’s products. As regulations, market pressures, and end-user expectations all grow, INFINAM eCO keeps technical performance in step with ever tougher eco standards. By controlling our entire process, from raw input to finished resin, we deliver materials that help manufacturers large and small step confidently into a lower-impact, higher-performance world.