|
HS Code |
283731 |
| Product Name | Epoxy Resin E51 (0164) |
| Appearance | Clear to pale yellow liquid |
| Epoxy Equivalent Weight | 184-194 g/eq |
| Viscosity 25c | 11000-15000 mPa·s |
| Color Gardner | ≤1 |
| Density 25c | 1.16-1.18 g/cm³ |
| Volatile Content | ≤0.3 % |
| Chlorine Content Organic | ≤0.10 % |
| Hydrolyzable Chlorine | ≤0.10 % |
| Refractive Index 25c | 1.570-1.575 |
| Flash Point | ≥150 °C |
| Shelf Life | 12 months |
As an accredited Epoxy Resin E51(0164) factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Epoxy Resin E51(0164) is packaged in 20 kg tightly sealed metal drums, ensuring safe handling, storage, and transport. |
| Shipping | Epoxy Resin E51 (0164) is typically shipped in sealed, moisture-proof containers to prevent contamination and degradation. Standard packaging includes steel drums or plastic pails, usually ranging from 20 kg to 220 kg. The product should be stored and transported in a cool, dry area, away from direct sunlight and sources of ignition. |
| Storage | Epoxy Resin E51 (0164) should be stored in a cool, dry, and well-ventilated area, away from direct sunlight, heat sources, and open flames. Keep containers tightly sealed to prevent contamination and moisture absorption. Avoid contact with strong acids, bases, and oxidizing agents. Proper storage ensures product stability and extends shelf life. Follow all safety data sheet (SDS) recommendations. |
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[Viscosity]: Epoxy Resin E51(0164) with a viscosity of 11000-14000 mPa·s is used in electronic potting compounds, where it ensures uniform flow and complete encapsulation. [Epoxy Equivalent]: Epoxy Resin E51(0164) with an epoxy equivalent of 0.51-0.54 mol/100g is utilized in structural adhesives, where it provides high bonding strength and durability. [Purity]: Epoxy Resin E51(0164) with a purity above 99% is applied in coatings for corrosion protection, where it results in superior surface finish and chemical resistance. [Glass Transition Temperature]: Epoxy Resin E51(0164) with a glass transition temperature (Tg) of 90°C is used in printed circuit board manufacturing, where it delivers thermal stability and dimensional accuracy. [Color Index]: Epoxy Resin E51(0164) with a color index ≤ 40 APHA is used in high-performance paints, where it achieves excellent optical clarity and aesthetic appeal. [Volatile Content]: Epoxy Resin E51(0164) with a volatile content below 0.3% is employed in composite materials, where it minimizes void formation and enhances mechanical strength. [Hydrolytic Stability]: Epoxy Resin E51(0164) with high hydrolytic stability is used in marine coatings, where it provides long-term resistance to water ingress. [Mechanical Strength]: Epoxy Resin E51(0164) formulated for high mechanical strength is used in industrial flooring systems, where it ensures load-bearing capability and impact resistance. [Storage Stability]: Epoxy Resin E51(0164) with storage stability of over 12 months at 25°C is used in bulk packaging, where it maintains consistent performance throughout its shelf life. [Reactivity]: Epoxy Resin E51(0164) with high reactivity is used in rapid-cure repair mortars, where it allows for quick setting and fast turnaround time. |
Competitive Epoxy Resin E51(0164) prices that fit your budget—flexible terms and customized quotes for every order.
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In our factory, a batch of Epoxy Resin E51(0164)cures on a steel plate—another reminder of why this product has become essential in our daily manufacturing life. Strength, consistency, and clarity define this resin, earning its status as a go-to solution for customers who demand dependable performance from every kilogram they buy. Manufacturers, fabricators, and composite specialists return to E51(0164)because it stands up to real-world pressures—thermal cycles, impact, and even the unpredictability that comes with large-scale production.
Decades of refining the process give us confidence in every pail that leaves the plant. Each run still draws on lessons learned—monitoring batch reactions as heat rises, controlling impurity levels, and checking the clarity and viscosity by hand before final packaging. Every step matters, whether blending for a flooring contractor, a coating line, or electronics encapsulation. There is no shortcut to consistency; hands-on attention along every stage makes the difference.
Epoxy Resin E51(0164)doesn’t trade on abstract claims. Its roots run deep in practical applications—adhesives, advanced composites, aerospace-grade laminates, automotive parts, intricate electrical assemblies, and durable construction coatings. We have watched this product go from our kettles to marine docks, wind turbine blades, even bullet-proof panels. Customers who return year after year need strength and reliability, not marketing promises.
Our E51(0164)offers a medium viscosity balanced for handling and workability, reacting smoothly with standard hardeners in most ambient environments. Whether being gravity-fed onto concrete or sprayed in a mist onto circuit board assemblies, it cures into a tough, water-resistant, and chemically stable matrix. With an epoxy value close to optimal for most mixing ratios, it gives strong adhesion not only to traditional substrates like metals and glass fiber, but also to newer materials—carbon fabrics, engineered stones, and high-performance plastics.
Every manufacturer likes to claim their resin “stands out.” But across years of production, we have learned which physical properties shift outcomes for our customers. E51(0164)develops a tighter cross-link density than standard resins, which means it resists yellowing and softening in sunlight. We have customers who work in electronic encapsulation, where even a small impurity can eat away years off a product’s reliable use. E51(0164)limits outgassing, reducing the risk of bubbles and voids after curing, an essential quality for potting sensitive electronic circuits.
Unlike lower-cost resins that can lose clarity or develop fish eyes, our E51(0164)forms a transparent finish useful for art, high-end countertops, and thick-pour castings. Paint and coating companies depend on it for strong binding to pigments and fillers—even under high-shear mixing, the resin stays stable. Flooring contractors have told us how E51(0164)handles both early and late-stage chemical resistance. Oil, diluted acids, common cleaning agents—surfaces coated with this resin shrug off daily chemical attack.
In composite manufacturing, the resin flows easily into glass and carbon cloths, fully wetting fibers without excessive heating, which could risk damaging heat-sensitive reinforcements. When tested, laminates retain their full strength after temperature cycling, resisting both cracking and delamination.
Our plant has processed tens of thousands of tons of epoxy resin. Human oversight at every stage—not just computer automation—keeps results dependable. You cannot skip daily checks of raw epichlorohydrin and bisphenol-A stocks, nor ignore the subtle effects of temperature shifts during ring-opening reactions. Any off-specification result travels backward to root causes: a minor adjustment in catalyst load, an extra rinse, tighter temperature control. That is how you keep product inside specification limits—measurable, but also tangible to those who use their hands and eyes every shift.
Customer audits have walked our production lines, asking about traceability from incoming drums to finished packaging. With E51(0164), batch records tell the full story. Each drum and pail carries the story of the men and women who checked, double-checked, and signed off at every phase. Results matter—viscosity, color, gel time—because they translate directly into finished products, warranty claims, and customer trust.
Long-term users mention our product’s glass transition temperature as a key advantage. After full cure with compatible hardeners, panels finished with E51(0164)handle both winter frost and summer heat without softening or warping. We have tested flexural and impact strength through standard methods. Panels come back without broken bonds, even after repeated drops, thermal shocks, or soak testing in water baths.
Other resins sometimes leave manufacturers guessing if a drum will meet last week’s performance. With E51(0164), the margin for error narrows—mix times remain consistent regardless of season or warehouse conditions. Pot life is reliable, gel time is predictable, and cured surfaces emerge without amine blush or surface haze. This makes scale-up projects smoother, whether using a hand-held paddle mixer on small test batches or large high-shear mixers on tonnage orders.
Dentists and dental labs use E51(0164)when formulating precision molds or dental appliance bases. These applications demand extremely low shrinkage upon curing and resistance to staining agents. Our product gives these qualities year after year, even as resin blends and pigment demands shift.
No resin succeeds only in the laboratory. E51(0164)faces the true test once workers pour it onto floor screeds, spread it inside wind blade molds, or use it for patching water pipes. In aerospace work, the resin binds together multi-layered carbon sheets to form lightweight structures. In civilian construction, it holds quartz particles inside seamless countertops. Shipbuilders rely on its saltwater resistance to coat engine rooms, bulkheads, and deck surfaces.
One clear difference from lower-priced options: installers see reduced sagging on vertical applications and longer working times even as humidity varies. Resin-rich layers don’t foam or lose shape at edges. Finished pieces keep a clean profile, without pitting, cloudy patches, or the “orange peel” texture that plagues lesser resins.
We talk to our composite customers, who push E51(0164)into demanding automotive parts—think under-hood heat shields or composite body panels—which must pass flammability and impact standards. Epoxy formulations based on E51(0164)test consistently above certification thresholds, in both single-lot production and larger manufacturing runs.
Inside the plant, each batch of E51(0164)undergoes filtration and degassing cycles to eliminate microbubbles and debris. This matters most when you’re building large, glass-smooth surfaces. For electrical and electronics clients, the resin’s ultra-low chloride content protects against corrosion—reducing long-term failure rates. For art casting, clarity and low yellowing secure repeat orders from studios that demand perfect results each time.
Our team never stops reviewing regulatory standards and restrictions, updating process controls to keep pace with requirements. E51(0164)meets RoHS guidelines for lead and cadmium content, and complies with international specifications for use inside food-safe coatings or potable water systems. Factory operators record every step, and quality assurance teams test retained samples well past shelf-life to anticipate any late-stage failures.
Producing E51(0164)never means trading volume for safety. Over the years, we have retooled reactors to capture waste streams and recycle solvents, reducing VOC emissions. Employees wear the right gear and use enclosed handling systems to keep workplace exposures below safe thresholds. Even resin containers come with updated closure designs, reducing spurting and splashing when drums are opened on customer sites.
Every change—whether minimizing formaldehyde trace levels or optimizing energy use during distillation—pushes the product line closer to top environmental standards. Partners rely on us to provide detailed chemical inventories and support recycling or return programs, lowering the environmental cost of each use.
E51(0164)adapts easily to new advances. Manufacturers working with nanomaterials or specialty additives find the resin accepts charge-dispersed fillers or pigments without phase separation. This feature opens doors to a wider range of advanced coatings, electrical potting compounds, and even additive manufacturing projects. At the same time, legacy users in boat-building, electrical motor repair, or industrial flooring continue with proven blend ratios and get the same results as ever.
This balance between history and innovation comes from understanding customer challenges on a personal level. We handle questions about everything from optimal mixing procedures to troubleshooting odd batch results. If a customer experiences blushing or slow cure times, we review not only the resin, but also the hardener choice, the mixing environment, and substrate prep. No batch leaves the facility without repair, replacement, or a detailed records check if a problem surfaces.
Real improvements never come from a marketing department alone. Our team tests updates in small pilot batches, pushing beyond common resin properties—higher wetting, faster cure speeds, thicker castings without heat build-up. We learn from customer feedback. For example, a boatbuilder may notice improved resilience after hurricanes, or an electronic assembler may report lower shrinkage. Each field report sharpens the next production run.
We invite customer teams to visit the factory, see QC checks, and evaluate in-house comparison panels formed with E51(0164)and with competitors’ brands. These hands-on trials make the differences obvious—hardness, gloss, clarity, tensile strength, and failure points under flexural load.
Listening also saves costs. When a major client reported issues with drum residue, we developed a rinsing process, reducing stuck product while improving pour-out for volume users. Lessons like this come from keeping direct lines open with users at every stage, from warehouse staff through plant engineers up to the purchase manager signing the order.
Our plant culture centers around constant evaluation. Factory leaders walk lines daily, talking to the operators who can sense when a batch is drifting from its target even before lab data confirms it. Regular feedback sessions draw on both top-line management and production workers’ firsthand experience. Each chart and testing graph translates directly to production tweaks that sustain the consistency of E51(0164).
We have built partnerships with universities and test labs, not only to validate performance but to investigate additives, curing agents, and reinforcement combinations. Some smaller customers—artisans, makers, even high school chemistry clubs—benefit from this research, using smaller pails or kits that mirror the formulations used in high-volume manufacturing.
Our resin arrives in industries as varied as defense, wind energy, automotive, flooring, construction, marine, and precision electronics. Each application brings its own technical hurdle, but E51(0164)has met these challenges by remaining stable, tough, and user-friendly. Whether a flooring crew needs quick turnaround in airport refurbishments or a wind turbine company needs maximum durability for offshore installations, the product adapts to their process with minimal tuning.
As regulations tighten and standards shift, customers look for long-term relationships, not just transactions. Working with E51(0164)means more than buying resin—it brings direct access to teams who make, test, document, and review every drum before it moves out the door. Our after-sales support stays close throughout the project lifecycle, whether providing support data, troubleshooting application issues, or accommodating custom blends for emerging uses.
Each year adds new data, tougher tests, and broader scope for E51(0164). As fiber reinforcements evolve and more demanding environmental conditions challenge ordinary polymers, users can expect ongoing refinement. Our commitment holds: precise manufacturing, repeatable chemistry, and hands-on accountability. Results show up in the field, not just at the lab bench. For everyone still demanding more from their resin supplier—clearer finishes, stronger laminates, cleaner production—E51(0164)offers proof that close attention to process and open lines with end-users outlast marketing claims.