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Synthetic Resins, Paints, Auxiliary Materials, Coatings And Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃]

    • Product Name Synthetic Resins, Paints, Auxiliary Materials, Coatings And Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃]
    • Alias SRP
    • Einecs 01-2119458048-35-XXXX
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
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    Specifications

    HS Code

    612126

    Product Name Synthetic Resins, Paints, Auxiliary Materials, Coatings And Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃]
    Physical State Liquid or semi-solid
    Color Varies (commonly clear, white, or colored)
    Odor Solvent-like, pungent
    Flash Point Closed Cup ≤60℃
    Flammability Highly flammable
    Solvent Content Contains volatile organic solvents
    Viscosity Medium to high
    Boiling Point Typically 50-200℃ (depends on solvent)
    Density 0.8 - 1.2 g/cm³
    Explosive Limits Lower Explosive Limit (LEL) ~1%, Upper Explosive Limit (UEL) ~10% (varies by solvent)
    Storage Requirements Store in cool, well-ventilated area away from ignition sources
    Main Uses Surface coating, protection, and decorative purposes
    Evaporation Rate Moderate to fast
    Toxicity May be harmful if inhaled or ingested

    As an accredited Synthetic Resins, Paints, Auxiliary Materials, Coatings And Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃] factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 20-liter metal drum, labeled with hazard symbols, tightly sealed, UN-approved for flammable liquids, compliant with GHS and transport regulations.
    Shipping This chemical is classified as a flammable liquid with a closed-cup flash point of ≤60℃. It must be shipped in accordance with dangerous goods regulations, using approved, sealed containers. Ensure clear labeling, avoid heat, sparks, and open flames, and provide appropriate documentation. Specialized handling and transportation precautions are required for safety.
    Storage Store **synthetic resins, paints, auxiliary materials, coatings, and similar products containing flammable solvents (closed-cup flash point ≤60℃)** in a cool, well-ventilated area away from heat, sparks, and open flames. Use approved, tightly sealed containers. Prevent exposure to direct sunlight. Ensure proper labeling and keep away from incompatible substances and ignition sources. Comply with relevant fire safety and chemical storage regulations.
    Application of Synthetic Resins, Paints, Auxiliary Materials, Coatings And Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃]

    Applications of Synthetic Resins, Paints, Auxiliary Materials, Coatings and Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃] in Industrial Manufacturing

    As an established manufacturer specializing in chemical raw materials with controlled flash point properties, we support a diverse set of industrial applications that demand stringent safety, compliance, and reproducibility. Below we detail key downstream uses, highlighting the technical, regulatory, and process-specific integration of our solvent-containing synthetic resins, paints, and coatings in various manufacturing scenarios.

    1. Automotive OEM and Aftermarket Paint Systems

    Automotive manufacturers rely on high-performance solvent-based resins and coatings for basecoat and clearcoat processes in both OEM assembly lines and aftermarket repair operations. Stringent control of solvent selection, including closed-cup flash point limitations, ensures compliance with plant safety regulations and final surface durability under UV exposure, corrosion, and mechanical stress. The application requires precise formulation to balance leveling, adhesion, and rapid curing time during high-volume automated spraying and subsequent baking cycles, while minimizing volatile organic compound (VOC) emissions within regulated thresholds.

    Industry compliance standards

    • ISO 16925: Paints and varnishes—Performance requirements for automotive coatings
    • EU Directive 2004/42/EC: VOC emissions in paints and varnishes
    • China GB 24409—Automotive coatings for passenger cars
    • US EPA 40 CFR Part 59—National Volatile Organic Compound Emission Standards

    Typical usage ratio

    • Resins and flammable solvents comprise 35–60% of paint weight, varying with paint type (basecoat, clearcoat), application method, and targeted film thickness. Ratio adjustment depends on climate, drying process, and customer OEM line specification.

    Downstream process integration

    • Resin-solvent mixtures added during paint blending and dispersing.
    • Formulated paints transferred to robotic or manual spray zones.
    • Baking and curing ovens set with ventilation adapted for solvent flash point and air exchange rates.

    Final product types

    • Automotive body basecoats and clearcoats
    • Touch-up kits for repair shops
    • Primers and specialty effect paints (metallic, pearlescent)
    • Corrosion-resistant underbody coatings

    2. Industrial Protective Metal Coatings

    Protective coatings for metal substrates in industrial sectors—such as steel structures, pipelines, and heavy machinery—require carefully engineered synthetic resins dissolved in solvents with a specific flash point range to achieve field-applied film durability and environmental resistance. On-site application, especially in outdoor or confined spaces, mandates adherence to occupational health and explosion prevention rules. Compatibility with anti-corrosion pigments and hardener systems is critical to achieve specified dry film thickness and service life in aggressive conditions like marine, oil & gas, or infrastructure environments.

    Industry compliance standards

    • ISO 12944: Paints and varnishes—Corrosion protection of steel structures by protective paint systems
    • SSPC-PA2: Measurement of dry coating thickness with magnetic gauges
    • OSHA 29 CFR 1910: Flammable and combustible liquids safety
    • China GB/T 17219—Safety regulation for protective coatings

    Typical usage ratio

    • Solvent-based resin content ranges from 50–75% by weight in primer and intermediate layers; ratio tailored for site conditions, expected wet/dry film build, and specified atmospheric service category.

    Downstream process integration

    • Mixing resin-solvent blends with pigments and additives on-site or prior to shipment.
    • Deployment via airless spray, brush, or roller by certified applicators.
    • Controlled curing under specified temperature and humidity, with ventilation adapted for flammable solvent management.

    Final product types

    • Tank and pipeline coatings
    • Structural steel corrosion barriers
    • Heavy equipment primer and finish coats
    • Fire-retardant topcoats for critical infrastructure

    3. Wood Furniture and Flooring Finishes

    Manufacturers of furniture and engineered wood products apply solvent-borne resins and auxiliary materials with controlled volatility for high-clarity, rapid-drying stains, sealers, and lacquer finishes. These materials enhance substrate penetration, blocking, and surface resilience while maintaining machinability and environmental resistance. Compliance with formaldehyde and VOC emissions is essential for exports to North America, Europe, and Japan. Plant operators tailor the resin/solvent ratio for manual or automated spray, curtain coater, or roller coater systems, optimizing for substrate absorption, working time, and desired gloss.

    Industry compliance standards

    • EN 71-3: Safety of toys—Migration of certain elements (for coated children’s furniture)
    • California Air Resources Board (CARB) ATCM for Composite Wood Products
    • US EPA TSCA Title VI: Formaldehyde Standards for Composite Wood Products
    • GB 18581—Indoor decorating and refurbishing materials: solvent coatings of woodware

    Typical usage ratio

    • Solvent and resin content varies from 20–60% of total formulation, depending on viscosity requirements, substrate type, and finishing technique.

    Downstream process integration

    • Preparation of clear and pigmented finish batches in factory blending tanks.
    • Delivery to finishing lines for spray, dipping, or roller application.
    • Flash-off and forced-air oven drying to meet throughput and emission control targets.

    Final product types

    • Dining table and chair finishes
    • Hardwood flooring topcoats
    • Cabinet, veneer, and MDF surface sealers
    • High-gloss or matte furniture lacquers

    4. Flexible Packaging Printing Inks

    Producers of flexible packaging materials such as food-grade films, labels, and pouches utilize solvent-based synthetic resins and auxiliaries to formulate gravure and flexographic inks with stringent requirements on printability, interlayer adhesion, and migration. The flammable solvent content, regulated by closed-cup flash point criteria, ensures controlled evaporation and rapid ink setting during high-speed web printing. Adherence to packaging migration standards and food safety legislation is critical for primary food contact packaging exported globally.

    Industry compliance standards

    • Swiss Ordinance on Materials and Articles (SR 817.023.21)—printing inks for food contact
    • EU Regulation (EC) No 1935/2004—Materials and Articles Intended to Come into Contact with Food
    • US FDA 21 CFR 175.105—Adhesives and Components of Coatings
    • Japan Positive List System for Printing Inks

    Typical usage ratio

    • Solvent-resin phase constitutes 30–50% of ink formulation; ratio optimized for print unit speed, substrate absorbency, and drying system performance.

    Downstream process integration

    • Direct blending in ink formulation tanks for gravure and flexo lines.
    • Loading into press inking units; precise solvent control to maintain ink transfer and set-off properties.
    • Thermal or IR drying units manage solvent recovery and emission limits.

    Final product types

    • Food pouch graphic inks
    • Flexible film laminated labels
    • Snack and confectionery wraps
    • Industrial and pharmaceutical flexible packaging

    5. Electronic Component Encapsulation and Conformal Coating

    Electronics fabrication plants employ solvent-based synthetic resin systems to encapsulate, insulate, and protect circuit boards, sensors, and specialty electronic modules. The selected closed-cup flash point enables safe mixing, potting, and dip-coating processes in anti-static and explosion-protected environments. Material adjustments satisfy dielectric insulation requirements and thermal cycling performance. Production scale and automation level determine batch volumes and working viscosity, with precision-metered dosing implemented for thin-film application or resin transfer molding.

    Industry compliance standards

    • IPC-CC-830: Qualification and Performance of Electrical Insulating Compounds for Printed Wiring Assemblies
    • UL 94: Flammability testing for plastic materials
    • IEC 60664-3: Insulation coordination for equipment within low-voltage systems
    • RoHS Directive (2011/65/EU)—Restriction of hazardous substances

    Typical usage ratio

    • Encapsulation and coating systems include 15–40% solvent phase by mass, regulated to achieve required flow, coat thickness, and cure speed; adjusted for circuit density and environmental class.

    Downstream process integration

    • Preparation in sealed mixing containers in ESD-protected plant zones.
    • Application via robotic or manual potting and coating equipment.
    • Curing in temperature- and humidity-controlled ovens; exhaust systems configured for solvent removal based on flash point data.

    Final product types

    • Printed circuit board (PCB) conformal coatings
    • SMD sensor encapsulants
    • Relays and transformer casings
    • Optoelectronics protective resins

    6. Industrial Adhesives and Sealants Manufacturing

    Producers of industrial adhesives and sealants use flammable-solvent-containing synthetic resins for formulating contact adhesives, primer solutions, and structural sealants. The flash point specification enables regulatory compliance during high-shear blending and ensures safe transport and storage. Key factors for process engineers include wettability, open time, and solvent evaporation control, especially for large-format flooring, automotive trim, and industrial assembly lines. Adherence to end-market standards for VOCs and material compatibility is mandatory for acceptance by downstream OEM clients.

    Industry compliance standards

    • ASTM D1337: Standard Practice for Storage Life of Adhesives
    • REACH Regulation (EC) No 1907/2006—Substance Registration and Safety
    • LEED v4 Low-Emitting Materials (for adhesives and sealants)
    • China GB 18583—Indoor decorating adhesives

    Typical usage ratio

    • Solvent phase composes 20–45% of adhesive bulk; ratio balanced depending on application method (brush, spray, extrusion), substrate porosity, and required set time.

    Downstream process integration

    • Bulk blending of resin and solvent phases with fillers and plasticizers in closed reactors.
    • Transfer to filling, canning, and cartridge packaging lines.
    • Quality testing for viscosity, open time, and bond strength before shipment.

    Final product types

    • Contact adhesives for laminate and textile assembly
    • Automotive trim and flexible weatherstrip adhesives
    • Multi-purpose sealant cartridges
    • Primer solutions for construction joints
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    Certification & Compliance
    More Introduction

    Synthetic Resins, Paints, Auxiliary Materials, Coatings and Other Products Containing Flammable Solvents [Closed-Cup Flash Point ≤60℃]

    Meeting the Demands of Modern Manufacturing

    Synthetic resins and coatings with flammable solvents have become an essential part of modern production floors, construction sites, and industrial maintenance routines. Working directly in the chemical plant, our team sees the demand for products that deliver strength, protection, and vibrant finishes under tough conditions. Each batch that comes from our reactors is the result of years honing the formula to deliver real performance where it counts.

    The Role of Synthetic Resins in Paints and Coatings

    Synthetic resins shape the backbone of countless paints and coatings on the market today. By modifying molecules and controlling reaction conditions, our chemists design resins with the right balance of hardness, adhesion, and flexibility. Some resins are built for speed, curing in minutes for automotive workshops; others are designed to resist weather, holding up on bridges or factory exteriors. Whether we are making acrylic, alkyd, polyester, or polyurethane, choosing the right base directly shapes how the final coatings behave.

    Why Flammable Solvents Matter

    For certain paint and coating applications, including many that require quick drying or smooth levelling, flammable solvents with closed-cup flash points at or below 60℃ are simply unmatched. These solvents penetrate deeply and evaporate off at just the right rate, giving applicators better control and manufacturers greater throughput. There is always scrutiny over workplace safety, and our training covers every step, from raw material receipt to finished product storage. Teams know these solvents deliver a consistent, reliable finish that meets industry standards where water-based products fall short.

    Product Models and Specifications

    We know that end users care about performance, durability, and safety far more than technical jargon. Our production lines roll out synthetic resins and coatings in a range of viscosities and solid content levels, built for roller, brush, or spray application. Each product line goes through rigorous QC, including viscosity checks, adhesion pull-tests, and accelerated weathering. Paint grades run from high-gloss architectural coatings to industrial metal primers, with auxiliary materials like curing agents and flow additives included when a full system is required. For custom applications—like anti-corrosive coatings in marine environments or abrasion-resistant floors for logistics hubs—the formula gets dialed in based on years of feedback from site engineers and applicators.

    What Sets These Products Apart from Alternatives

    Manufacturers have their pick of solvent systems. While water-based and high-solid options are available, solvent-based chemistries with lower flash points often outperform others in challenging environments. An alkyd resin coating using fast-evaporating solvents bonds tightly to steel, forming a protective shell against moisture and chemicals. Polyurethane coatings with these solvents allow for a finish that resists impact, all while curing rapidly so the worksite can return to service. Waterborne paints often struggle to cure under low humidity or cold weather, where solvent-based options keep projects on track.

    Our engineers spend their days in the plant and their evenings checking field performance reports, exchanging ideas with foremen, maintenance supervisors, and logistics partners. This direct experience drives upgrades to product lines—improving open time, enhancing gloss retention, or making batches more robust against pigment separation. Formulations aren’t static; they grow and adapt as customer problems come back to the lab in the form of a sample can or a short video from a jobsite.

    Practical Applications Across Industries

    From protective coatings for industrial machinery to decorative finishes for public spaces, flammable solvent-based paints and auxiliaries offer versatility that other chemistries can seldom match. Shipbuilding yards favor our resins for their strong adhesion and fast recoat times. Car manufacturers trust selected models to give exterior panels a mirror-like gloss that endures highway conditions. Factory maintenance crews keep stocked with our metal primers and touch-up paints, knowing they dry fast without losing toughness.

    These products also see use in infrastructure projects—railings at train stations, pipelines, transmission towers, and airport equipment. On construction sites, spray crews appreciate that flammable, low flash point solvents cut ambient humidity and lower application time while keeping surface defects in check. In the furniture and joinery sectors, wood stains and topcoats built on quick-flashing solvents bring out woodgrain depth and mar resistance, all without the waiting game of slower-drying formulas.

    Addressing Flammability and Safety Concerns

    Every product containing flammable solvents comes with responsibilities. As a manufacturer, the safety culture starts with our engineers, who review Safety Data Sheets in person and lead regular drills. Storage protocols demand careful control of temperature and ventilation. Production technicians run regular checks of explosion-proof lighting and solvent recovery systems. During large batch runs, management stands floor-level—there’s no substitute for vigilance when working with low flash point materials.

    On the customer side, our partners receive direct education from our technical service teams. Training covers site ventilation, static discharge prevention, and correct PPE. Conversations with insurance consultants and site supervisors keep misuse in check. Regulations change, but daily discipline never goes out of style.

    Environmental Factors and Regulations

    Over the years, emission rules have evolved. Solvent vapor control is a top priority, both to meet legal obligations and to take good care of people living near production sites. Our emission control units get routine upgrades. Solvent storage and recovery processes have moved from simple tanks to multi-stage separators, reducing total volatile organic compound (VOC) discharge. Besides regulatory compliance, cutting unwanted emissions saves money and reduces waste. Field audits and third-party safety inspections are now part of our normal operations calendar.

    Switching to lower flash point solvents means greater care at every point, but skipping these products would cut off whole sectors from the finish and durability their work demands. Our management team weighs every new piece of legislation against the technical needs of our end users, adjusting production where it supports both safety and performance.

    Innovation Rooted in Practical Challenges

    Breakthroughs do not come from corporate boardrooms but from the shop floor and the jobsite. Maintenance crews asked for better block resistance on stacked metal beams, so the lab increased cross-linking in the resin, cutting down on sticking issues. Applicators wanted cleaner edges with fewer roller marks, so we added slip agents and rebalanced solvent blends. Logistics supervisors needed products that wouldn’t settle in drums during long trips, driving improvements to stability and shelf life. Every pipeline or high-rise paint job has details that matter, and real improvement happens batch by batch, not through broad claims.

    Having direct access to plant-level testing lets us troubleshoot field complaints far faster than resellers or traders. If a batch has air entrapment or sagging, the team can re-run the application on identical surfaces in our in-house application booth. Feedback from these cycles is logged and used to update standard operating procedures. This hands-on loop keeps products sharp and tuned to actual user experience, not just lab numbers.

    Supporting the Customer’s Process, Not Just the Can

    Paint and coating users care as much about the way a material handles as they do about unboxing the container. Our technical service team comprises career plant engineers and lab chemists, not just sales reps reading a script. Trouble-shooting doesn’t end at the loading dock; customers call us about anything from pressure pot settings to reduction ratios for humidity swings. Application tips based on field visits often wind up incorporated into technical guides.

    Users often request guidance on batch mixing or want to consult on new spray equipment setups. Our factory supervisors have tested nearly every combination of nozzle and solvent mix out there and bring that knowledge to field support. Sharing what works and what doesn’t is part of our commitment to the industry. We welcome customer questions and adjust our own production practices based on feedback loops with seasoned contractors and plant technicians.

    Comparing to Water-Based and High-Solid Products

    Every chemistry has its place. Water-based and high-solid paints answer important needs for indoor air quality and environmental compliance. Yet, they rarely match the dry times, chemical resistance, or tolerance for poor weather conditions that solvent-based formulas with flash points under 60℃ achieve. In commercial floor coatings, quick return-to-service often outweighs minimal VOC content as companies scramble to finish weekend overhauls. For metal protection outdoors, weather windows may be short. Cold, moisture, or dust can keep water-based materials tacky long after project deadlines. Robust solvent-based options still save time and money across dozens of sectors because they complete last-mile work reliably, and customers working with tight schedules notice the difference.

    Our own operations track returns and complaints. Whenever the industry pushes harder toward greener formulas, we test side by side. If a new water-based resin lags in coverage or shows soft spots after two winters, it gets reevaluated. Staying grounded means watching not only what our marketing claims, but also what the crews actually achieve with the product on job sites under tough conditions.

    Adapting to Solutions for Future Challenges

    Environmental standards will only grow stricter, and the industry must evolve. Our approach weighs risk, benefit, and the reality of current market needs. Solvent recycling, production process optimization, and emissions abatement are part and parcel of our technology backbone. Back at the plant, teams invest in batch tracking systems to link raw material changes to field performance. Every reformulation gets stress-tested before hitting full production.

    Customers frequently ask about upcoming shifts in regulations and how product lines may change. The answer is rooted in transparency. If emissions limits demand different solvents or require additional abatement, production lines and packaging adapt. But we refuse to compromise the quality and performance standards that built our reputation in the first place. The foundation of our business is a direct dialogue with auditors and government inspectors, aiming for solutions that keep workers safe and customers productive.

    Listening to the Field—Continuous Feedback

    As a chemical manufacturer, feedback loops drive progress. Regular shop visits, customer interviews, and supplier reviews shape our development priorities. The voice of the maintenance mechanic, the finish carpenter, or the industrial painter reaches the plant floor directly. They ask for products that roll longer, dry harder, and resist more. We test in real-world conditions—cold storage warehouses, outdoor scaffolds, and dusty machinery enclosures. If performance dips, the batch is pulled for investigation and improvement.

    Our role in the market isn’t to follow trends from a distance. We build for the people who lose sleep over meeting project deadlines and delivering long-lasting results. The chemical formulas, solvent blends, and auxiliary materials we produce reflect the reality experienced on actual worksites, not just lab simulations. From managers supervising hundred-ton batch runs to logistics staff loading barrels onto the next outbound truck, every hand and mind plays a part in meeting today’s industrial demands.

    The Strength Behind Every Batch

    Every can or drum leaving the plant represents not just a formula, but a philosophy rooted in real-world performance. We invest in the relationships behind every order—whether that’s routine paint for a fabrication line or complex multilayer coatings for bridges. The chemical sector rewards hard-earned expertise and flexibility. Experience on the production floor, responsiveness to changing standards, and a constant drive to solve challenges set our products apart.

    Synthetic resins, paints, auxiliary materials, and coatings built around flammable solvents with a closed-cup flash point of 60℃ or less play a key role in keeping industries moving forward. Of all the tasks in modern manufacturing, getting more out of every coat—faster curing, better adhesion, or sharper color—isn’t only about chemistry. It’s about bringing together deep product knowledge, commitment to safety, willingness to adapt, and the discipline of continuous improvement. That’s the foundation our team builds on and the reason our products keep earning trust at the worksite year after year.