Bayhydrol UO 1711 Waterborne Polyurethane Resin

    • Product Name: Bayhydrol UO 1711 Waterborne Polyurethane Resin
    • Chemical Name (IUPAC): Poly(oxy-1,2-ethanediyl), α-hydro-ω-hydroxy-, polymer with 1,1'-methylenebis[4-isocyanatobenzene] and 2,2-dimethyl-1,3-propanediol
    • CAS No.: 111274-66-7
    • Chemical Formula: C25H40N2O10
    • Form/Physical State: Liquid
    • Factroy Site: West Ujimqin Banner, Xilingol League, Inner Mongolia, China
    • Price Inquiry: sales9@bouling-chem.com
    • Manufacturer: Bouling Coating
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    Specifications

    HS Code

    734544

    Product Name Bayhydrol UO 1711
    Chemical Type Waterborne Polyurethane Dispersion
    Appearance Milky white, cloudy liquid
    Solid Content 38-42 %
    Ph Value 6.5-8.5
    Viscosity Less than 1000 mPa·s at 23°C
    Ionic Character Anionic
    Density Approx. 1.06 g/cm³ at 20°C
    Film Forming Temperature Approx. 14°C (MFT)
    Storage Temperature Between 5°C and 40°C
    Recommended Application Wood and furniture coatings
    Shelf Life 12 months

    As an accredited Bayhydrol UO 1711 Waterborne Polyurethane Resin factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Bayhydrol UO 1711 Waterborne Polyurethane Resin is packaged in 200 kg blue steel drums with a tightly sealed lid and labeling.
    Container Loading (20′ FCL) Container Loading (20′ FCL): 80 drums per 20-foot container, each drum 200 kg net, totaling approximately 16,000 kg per container.
    Shipping Bayhydrol UO 1711 Waterborne Polyurethane Resin should be shipped in tightly sealed original containers, protected from freezing and direct sunlight. Transport in accordance with local regulations for non-hazardous chemical products. Handle with care to prevent spills or leaks, and store at temperatures between 5°C and 30°C to maintain product quality.
    Storage Bayhydrol UO 1711 Waterborne Polyurethane Resin should be stored in tightly sealed, original containers at temperatures between 5°C and 30°C. Protect from frost and direct sunlight. Avoid contamination with incompatible materials. Store in a well-ventilated, dry area away from heat sources. Shelf life is typically 12 months if storage conditions are maintained as recommended by the manufacturer.
    Shelf Life Bayhydrol UO 1711 has a shelf life of 12 months when stored in tightly sealed, original containers at temperatures above 0°C.
    Application of Bayhydrol UO 1711 Waterborne Polyurethane Resin

    Purity 99%: Bayhydrol UO 1711 Waterborne Polyurethane Resin with a purity of 99% is used in high-performance industrial coatings, where it ensures superior film clarity and minimizes impurities for enhanced aesthetic quality.

    Viscosity grade medium: Bayhydrol UO 1711 Waterborne Polyurethane Resin of medium viscosity grade is used in wood furniture coatings, where it allows for easy application and uniform surface leveling.

    Molecular weight 40,000 g/mol: Bayhydrol UO 1711 Waterborne Polyurethane Resin with a molecular weight of 40,000 g/mol is used in automotive interior coatings, where it provides excellent abrasion resistance and long-term durability.

    Particle size < 100 nm: Bayhydrol UO 1711 Waterborne Polyurethane Resin with particle size less than 100 nm is used in clear topcoats for electronics, where it delivers high transparency and smooth finish.

    Stability temperature 60°C: Bayhydrol UO 1711 Waterborne Polyurethane Resin with a stability temperature of 60°C is used in flexible packaging inks, where it maintains dispersion stability during thermal processing.

    pH value 7.5: Bayhydrol UO 1711 Waterborne Polyurethane Resin with a pH value of 7.5 is used in waterborne floor sealers, where it offers optimal compatibility with additives and minimizes risk of film defects.

    Solid content 40%: Bayhydrol UO 1711 Waterborne Polyurethane Resin with solid content of 40% is used in textile coatings, where it achieves fast drying times and consistent film build.

    Minimum film forming temperature 5°C: Bayhydrol UO 1711 Waterborne Polyurethane Resin with a minimum film forming temperature of 5°C is used in architectural paints, where it enables film formation under low temperature application conditions.

    Tensile strength 25 MPa: Bayhydrol UO 1711 Waterborne Polyurethane Resin with tensile strength of 25 MPa is used in protective coatings for tools, where it ensures high mechanical performance and impact resistance.

    Gloss level high: Bayhydrol UO 1711 Waterborne Polyurethane Resin with high gloss level is used in decorative wall finishes, where it delivers a reflective, visually appealing surface.

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    Certification & Compliance
    More Introduction

    Bayhydrol UO 1711 Waterborne Polyurethane Resin: A Manufacturer’s Perspective

    Introduction to Bayhydrol UO 1711

    At our plant, the daily rhythm revolves around practical chemistry. Raw materials arrive, batch tanks rumble, quality checks fill the halls, and solutions take shape in real time. Among the materials we trust most, Bayhydrol UO 1711 stands out. This waterborne polyurethane resin gets a lot of attention for valid reasons. For over a decade in the lab and on the production line, we've watched customer needs shift toward environmental stewardship, ease of use, and robust film performance. Not every resin lives up to these demands, but Bayhydrol UO 1711 consistently delivers.

    What Sets Bayhydrol UO 1711 Apart

    Working closely with our R&D chemists, I’ve seen first-hand how the structure of Bayhydrol UO 1711 shapes its behavior. Unlike traditional solventborne materials, this product takes a water-based approach without giving up on the properties people expect from a high-grade polyurethane. The resin produces flexible, chemical-resistant films with solid adhesion across various substrates. You don’t get the haze or yellowing that sometimes edge into older generations of waterborne urethanes, especially under harsher curing or in exposure tests. Our quality engineers regularly monitor polymer particle size and viscosity, ensuring a reliable batch-to-batch product profile every time.

    Many users appreciate Bayhydrol UO 1711 for its low VOC (volatile organic compound) footprint. We have watched the regulatory climate tighten on solvents and emissions. Less hazardous air pollutant content means safer working conditions and easier environmental reporting. Our colleagues in application labs have measured emission levels directly from finished coats, and the data point consistently to clean air results you can show to any auditor.

    I have poured countless liters of competitive waterborne polyurethanes side-by-side with our own. Some offer fast drying but compromise on film toughness or mar resistance. Others fall short on clarity, especially over light or transparent finishes. Bayhydrol UO 1711 occupies that rare middle ground where clarity, toughness, and flexibility aren’t mutually exclusive. Production operators notice this quickly—application is straightforward, and the film sets without running or pinholing even on larger workpieces like doors or panels.

    Understanding the Technical Reality

    Specifications never capture the daily decisions that go into large-batch manufacturing. For starters, Bayhydrol UO 1711 handles broad solids content needs. We cycle through viscosity checks, shear testing, and dispersion controls to ensure stable performance whether the customer needs a thin wipe or a higher-build finish. This resin flows smoothly through spray lines and lays down evenly by roll or brush. On the technical side, the average particle diameter sits comfortably in line with modern waterborne standards—our own laser diffraction setup catches deviations long before a batch leaves the tank.

    Because emulsifier selection shapes water compatibility, we gravitated early toward Bayhydrol UO 1711’s nonionic system. In lab-scale tests and full-scale production, this grants remarkable shelf-life and pack stability, resisting phase separation over time. We have batches that stay usable for extended periods, cutting waste and labor in reprocessing material. People on the blending floor appreciate not having to chase lumping or rehomogenize half-cured resin. Lower energy input for post-blend uniformity means fewer surprises and smoother scaling during order surges.

    In my own line trials, hardness development with Bayhydrol UO 1711 comes on steadily after curing. Real-world experience with demanding end-uses—flooring, automotive interior parts, electronics enclosures—shows the film can flex without cracking and still resist scuffing and household chemicals like coffee, wine, or even some cleaning solvents. This is never just theory; we run kitchens of applied panels, bathe them in liquids, scrape them, or expose them to sunlight weeks at a stretch. Properties like tensile elongation and flex modulus translate directly into fewer warranty claims and happier clients.

    Applications in Practice

    We don’t see Bayhydrol UO 1711 as a one-trick solution; daily production flows reach into wood coatings, plastics, textiles, and even leather finishing. For wood, our partners in cabinet shops and architectural manufacturing keep requesting it because it raises the bar on clarity and grain highlighting without pushing turnaround times. Topcoats flow out evenly under controlled drying, supporting thick coats that hold up to water rings and repeated wiping.

    Plastics coaters often face adhesion issues. Bayhydrol UO 1711 bridges this gap, sticking well to substrates like ABS, PVC, and polycarbonate, especially with proper surface prep. This expands design freedom—bright colors, elaborate patterns, or metallic flakes become possible without specialized adhesion primers. Consistent transfer and laydown reduce defects and cut rework. Over the years, we've solved challenges together with suppliers, adjusting lines and cure schedules to hit the mark every time.

    Textile and leather finishing often forces a choice between flexibility and protection. Here, Bayhydrol UO 1711 enables soft touch coatings that withstand daily folding, abrasion, and even limited washing. We’ve walked through leather finishing lines and watched operators bind up samples, crease them, and push them through abrasion drums. The film holds together with minimal whitening or delamination, and the finish stays pleasant to the hand, resisting sticky residue common with older chemistries.

    Environmental and Regulatory Considerations

    Several years ago, new rules about VOCs and hazardous air pollutants pressed everyone to revisit their mainstays. We fielded hundreds of calls about replacement products, and many simply didn’t meet the bar for performance or safety. Bayhydrol UO 1711 slashes solvent content, supporting compliance with both European and North American environmental directives. Auditors want data, and we pull samples straight from active lines—our emissions logs demonstrate consistent performance below regulatory limits. The waterborne backbone also reduces exposure risk for workers during application and clean-up, cutting back on odor in the shop and lowering the odds of respiratory complaints.

    Disposal protocols benefit as well. Fewer hazardous waste streams mean straightforward collection and processing. Once customers switch, they notice long-term savings not just from lower insurance and reporting costs but from fewer interruptions on the shop floor. We’ve walked through customer factories, watched operators handle clean-up without hazmat suits or fire concerns. That peace of mind isn’t easy to price but matters to every employer.

    Impact on Process and Productivity

    From a manufacturing standpoint, a resin either fits into existing lines or creates headaches down the road. Our colleagues in maintenance want minimum downtime from filter clogging or pump failures. Early adoption of Bayhydrol UO 1711 meant retrofitting some lines, but experience shows the changes pay off. Operators report easier transitions between product runs, less solvent use for flushing lines, and more predictable clean-up cycles. These operational wins translate into more productive shifts and less lost material.

    We’ve run comparative trials by shifting a line from solventborne to Bayhydrol UO 1711. Beyond air quality and waste improvements, operators saw faster set-up, steady spray patterns, and less equipment corrosion. Fewer interventions mean less overtime and lower maintenance costs. Working with a reliable resin like this keeps the line feeding downstream processes without urgent fix-it calls.

    Blending flexibility is another factor. With Bayhydrol UO 1711, modification with crosslinkers or color concentrates doesn’t throw viscosity out of range. Our process engineers tweak add-pack ratios on the fly, chasing specific gloss or hardness targets while hitting production yards ahead of schedule. The resin’s broad compatibility lets us hit delivery windows for demanding projects, whether for clear coats in custom furniture or pigmented layers on engineered plastics.

    Quality Assurance Insights

    Quality control never stops. Every tank batch submits to rigorous checks for appearance, pH, particle size, and reactivity with isocyanates or other crosslinkers. We store lot samples, track deviation trends, and escalate issues long before customers ever see a worry. Bayhydrol UO 1711 brings a track record of low gel counts, stable viscosity, and no off-odor—parameters we audit because once in use, downstream failures get expensive quickly.

    Shelf-life testing forms a standing routine. Our warehouse stores batches across temperatures and seasons, tracking any signs of settling or microbial growth. For the past several years, Bayhydrol UO 1711 has ranked in the top tier of storage stability among all waterborne polyurethanes we handle. Shipments land at customer doors with live batch certificates, tracked from the tank farm to the dock. Everyone on the team takes pride in low complaint rates and prompt resolution when something does need adjustment.

    Customer Support and Troubleshooting

    We field application questions daily: climate shifts, substrate changes, even innovations in curing lamps or drying tunnels. Partners lean on our support chemists to adapt formulas, coach through machine calibrations, and deliver best practices for surface prep and post-coat testing. Bayhydrol UO 1711 forms the backbone of these conversations, not just through standard datasheets but by drilling down into the real conditions customers face.

    Should a customer encounter haze, adhesion dips, or unexpected drying delays, our troubleshooting draws on a mixture of lab testing and on-site visits. Experience shows most failures result from environmental factors—excess humidity, out-of-tolerance mixing, or contaminated surfaces. We guide operators through corrective measures, leveraging Bayhydrol UO 1711’s broad process window and forgiving chemistry to recover performance without scrapping whole lots. The ability to adapt and resolve issues directly on the shop floor saves resources and cements long-term trust with partners.

    Comparative Look: Bayhydrol UO 1711 vs. Other Polyurethane Dispersions

    Throughout my years in manufacturing, I’ve had a hand in processing many classes of polyurethane dispersions, from classic solvent types to newer hybridized systems. Solventborne resins still win on some speed and density metrics, but Bayhydrol UO 1711 stands apart for balancing health, safety, and versatility. Some competing waterborne resins claim higher gloss out of the can but lose it under everyday use, showing premature haze or softening when scrubbed. Others, especially earlier generations, left a noticeable odor or lengthy recoat times that slowed down busy shops. Bayhydrol UO 1711 scores well in gloss retention, chemical resistance, and fast recoat suitability—key wins for both industrial and consumer markets.

    Cost comparisons can’t ignore operational realities either. While the sticker price matters, fewer defects, less scrap, and lower VOC emission costs start to add up. Since many of our customers need coatings for regulated or sensitive environments—schools, hospitals, or residential interiors—the reduced emission profile of Bayhydrol UO 1711 comes with direct benefits for occupants. Some alternative resins require complex cure protocols (including elevated temperatures), which few shops can accommodate without costly upgrades. By working at standard ambient curing cycles, Bayhydrol UO 1711 drops into place without disrupting line flow.

    Feedback from the Field

    Our paint and coatings partners keep nothing back in feedback meetings. Carpenters want protection from mug rings and food splashes; contractors chase glaze levels and hand-feel. Automotive plastics finishers chase UV stability and chemical resistance, noting how some finishes dulled within weeks. Bayhydrol UO 1711 keeps winning repeat business not just from lab numbers but from how projects hold up month after month in the real world. Problems like early polish loss, swelling, or print-through from soft plastics do not surface as readily, even in rough use. We routinely get photos of finished surfaces that, after a year, remain clear, bright, and hard, outlasting competing systems.

    Line supervisors and shift leads regularly mention ease of clean-up and reduced odor, especially critical in poorly ventilated winter months. Trained eyes pick up subtle differences in recoat smoothness or ease of sanding between coats. Fewer call-backs and redo projects save both money and relationships. By investing in training for customer technicians, we reinforce best practices around mixing and application, further reducing the learning curve.

    Continuous Improvement and the Future

    In the manufacturing world, no product stays static. Our process improvement teams partner with both in-house research and application specialists across industries—flooring, automotive, furniture, and more. Discussions about up-and-coming raw materials, alternate crosslinkers, or new surface effect trends feed directly into roadmap plans for Bayhydrol UO 1711. Regular pilot trials and real-time feedback from both internal staff and active customers help us sharpen specifications, production protocols, and field usage instructions.

    Some of our newest initiatives involve adapting the resin to emerging fast-cure systems, low-energy ovens, or integrating antimicrobial additives for specialty markets. Bayhydrol UO 1711’s formulation flexibility lets us tune these attributes without starting over—a critical advantage as market trends shift or consumer preferences evolve. Climate mandates and sustainable building standards keep pressing for lower-emission, safer coatings. By starting with a proven waterborne backbone, our teams respond quickly and confidently to new requirements.

    Why Manufacturers Return to Bayhydrol UO 1711

    Trust builds through consistent, real-world performance. We watch production lines, listen to end users, and track field returns. By offering low VOCs, stable pH, good shelf life, and a field-tested blend of toughness and clarity, Bayhydrol UO 1711 earns its place at the top of our product line. Projects that cannot risk yellowing, odor, or sticky films keep coming back to this resin, and our technical team stands ready to support with every new challenge. It’s not simply about the base formulation—it’s about keeping up with rigorous quality standards, listening to industry feedback, and staying active with process support throughout the product lifecycle.

    As material demands evolve—faster build schedules, more stringent regulatory audits, or fresh design trends—we keep refining best practices and updating production guidance. Bayhydrol UO 1711 makes that possible, bridging advanced chemistry with daily practical needs. This resin isn’t just a product to us—it’s an integral part of how we help customers succeed in a changing market.