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GOMIN High-Temperature Coating Series (800C-1200C)

GOMIN High-Temperature Coating Series (800C-1200C)
GOMIN High-Temperature Coating Series (800C-1200C)GOMIN High-Temperature Coating Series (800C-1200C)
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CategoriesHigh-Temperature Coating
BrandGomin Industry Coating Wholesale Manufacturer
ModelGM-812/GM-1012/GM-1060/GM-1280
BrandGOMIN
ModelGM-812 / GM-1012 / GM-1060 / GM-1280
Temperature Range600°C - 1280°C
Coating TypeCeramic / Nano-Ceramic
ApplicationSpraying / Brush
Curing MethodAmbient / Heat Curing 180-200°C
Packaging10 kg / Iron Bucket
Shelf Life6-12 months
Detail Information

GOMIN 800°C-1200°C High-Temperature Coating Series

Advanced Ceramic & Nano-Ceramic Coatings for Extreme Heat Environments

800-1200°C Anti-Corrosion 4 Models Eco-Friendly
Industrial high-temperature coating applied on steel pipes in a petrochemical refinery with extreme heat glow

Product Overview

The GOMIN 800°C-1200°C High-Temperature Coating Series represents the pinnacle of protective coating technology for extreme thermal environments. Developed by Dalian Gomin Special Coating Co., Ltd., this series encompasses four specialized formulations—GM-812, GM-1012, GM-1060, and GM-1280—each engineered to deliver superior protection in industrial settings where temperatures reach 600°C to 1280°C. These advanced ceramic and nano-ceramic coatings combine inorganic-organic modified siloxane chemistry with cutting-edge nanotechnology to provide exceptional thermal resistance, anti-corrosion performance, and mechanical durability for petrochemical facilities, steel mills, power plants, and chemical processing equipment.

Whether protecting refinery gas pipelines from corrosive high-temperature gases, sealing boiler interiors against steam and chemical penetration, or safeguarding metallurgical equipment from thermal shock, the GOMIN 800°C-1200°C series offers a tailored solution. Each model is formulated with specific resin systems, functional pigments, and curing mechanisms to address the unique challenges of different high-temperature applications, ensuring long-lasting protection with service lifespans of 20 to 30 years.

Key Features & Advantages

Extreme Temperature Resistance

With sustained temperature ratings from 600°C to 1200°C and instantaneous ratings up to 1280°C, these coatings withstand the most demanding thermal conditions in heavy industry. The GM-812 and GM-1012 models achieve 1200°C continuous resistance, while the nano-ceramic GM-1280 formulation endures instantaneous temperatures of 1280°C.

Thermal Shock Resistance

The GM-1060 and GM-1280 nano-ceramic coatings survive 600°C-to-water quenching tests for 5 consecutive cycles without cracking or delamination. This exceptional thermal shock performance ensures coating integrity during rapid temperature fluctuations in boilers, furnaces, and thermal processing equipment.

Superior Anti-Corrosion Performance

GM-812 demonstrates 300 hours of 5% NaCl resistance with no change, while GM-1060 and GM-1280 withstand 30 days of neutral salt spray testing without rust formation. GM-1012 endures 72 hours in 10% NaOH without degradation, providing comprehensive protection against acids, alkalis, salts, and corrosive gases.

Covalent Bond Adhesion

The nano-ceramic formulations (GM-1060 and GM-1280) form covalent bonds with substrate materials during curing, creating a dense, defect-free coating layer. GM-812 achieves 6 MPa adhesion strength with a pencil hardness of 4-5H, while GM-1060 and GM-1280 achieve Grade 0 adhesion—the highest rating.

Advanced Material Science

Each formulation leverages proprietary material systems: modified flake pigments in GM-812, nano-graphite and alumina in GM-1012, and polysilazane with sericite powder and chromium black in the nano-ceramic series. This scientific approach ensures optimized performance for specific application environments.

Water-Based & Eco-Friendly

GM-812 is a water-based formulation using deionized water as diluent, minimizing VOC emissions and environmental impact. All models are designed for professional industrial application with comprehensive safety protocols, ensuring worker safety and environmental compliance.

Industrial Applications

Petrochemical & Refinery

High-temperature equipment, gas flue pipelines, acid/alkali tanks, and coke gas anti-corrosion protection in petroleum refineries and chemical plants.

Heating Boiler Systems

Interior boiler tube protection, high-temperature waterproof and moisture-proof substrates, and acid/alkali corrosion prevention in heating supply systems.

Metallurgical Equipment

Boiler components, pipeline networks, metallurgical processing equipment, electric heating elements, and high-temperature chemical processing parts.

Product Model Comparison

Parameter GM-812 GM-1012 GM-1060 GM-1280
Coating Type Ceramic Anti-Corrosion High-Temp Sealing Nano-Ceramic Anti-Corrosion Nano-Ceramic Anti-Corrosion
Resin System Inorganic-organic modified siloxane Inorganic-organic silicone resin Polysilazane Polysilazane
Key Pigments Modified flake fillers Nano-graphite, alumina, rare earth Sericite, chromium black, phosphate Sericite, chromium black, phosphate
Sustained Temp 1200°C 1200°C 600°C 800°C
Instantaneous Temp 1000°C 1280°C
Thermal Shock 800°C rapid change 600°C-water quench, 5x 600°C-water quench, 5x
Adhesion 6 MPa Grade 1 Grade 0 Grade 0
Pencil Hardness 4-5H
Salt Spray Resistance 5% NaCl, 300h 10% NaOH, 72h Neutral salt spray, 30d Neutral salt spray, 30d
Surface Dry 30 min 2 h
Full Cure 24h (ambient) 24h (ambient) 1-1.5h at 180-200°C 1-1.5h at 180-200°C
Diluents Deionized water Xylene/acetone Alkanes, esters, ethers Alkanes, esters, ethers
Test Standard GB/T 5210-2006, QB/C001-2005 GB/T 9286-1998, QB/C001-2005 GB/T 10125-1997, GB/T 30873-2014 GB/T 10125-1997, GB/T 30873-2014

Construction Guidelines

Surface Preparation

Product Preparation Method Required Roughness
GM-812 / GM-1012 Grinding to St3 or Sa2.5 grade 25-40 µm
GM-1060 / GM-1280 Sandblasting to Sa2.5 or grinding to St3 Per design specification

Universal requirement: The surface must be free of dust, oil, rust, and moisture—clean and dry before application.

Application Methods

  • Air Spraying: Recommended for GM-812 and GM-1012 with large-nozzle spray guns for uniform coverage on large surfaces.
  • Brush Application: Cross-hatch method suitable for all models, ensuring complete coverage on complex geometries and edge areas.

Drying & Curing Conditions

Product Surface Dry Full Cure Curing Method
GM-812 30 minutes 24 hours Ambient temperature
GM-1012 2 hours 24 hours Ambient temperature
GM-1060 / GM-1280 1-1.5 hours Heat curing at 180-200°C
Worker in protective gear spraying high-temperature ceramic coating onto metal boiler tubes

Packaging & Storage

Product Packaging Storage Temperature Shelf Life
GM-812 10 kg / iron bucket 0°C - 40°C, dry & cool 12 months
GM-1012 10 kg / iron bucket 0°C - 40°C, dry & cool 12 months
GM-1060 / GM-1280 10 kg / iron bucket 5°C - 30°C, dry & cool 6 months

Safety & Handling Precautions

Ventilation: Application must occur in well-ventilated environments to prevent inhalation of paint mist and vapors.

Protective Equipment: Operators must wear appropriate PPE including gloves, safety goggles, respirators, and protective clothing.

Skin Contact: Wash immediately with soap and clean water. Use specialized cleaner if necessary.

Eye Contact: Rinse immediately with copious amounts of clean water for at least 15 minutes and seek medical attention.

Professional Use Only: Application restricted to trained professionals with proper equipment and procedures.

Frequently Asked Questions

What is the maximum temperature the GOMIN 800-1200 series can withstand?

GM-812 and GM-1012 both sustain 1200°C continuously. The nano-ceramic GM-1060 endures 600°C long-term with 1000°C instantaneous, while GM-1280 achieves 800°C long-term with 1280°C instantaneous peak resistance.

How do the curing mechanisms differ between models?

GM-812 and GM-1012 cure at ambient temperature through water evaporation and crosslinking agents, forming an inorganic network structure—surface dry in 30 minutes to 2 hours, full cure in 24 hours. GM-1060 and GM-1280 require heat curing at 180-200°C for 1-1.5 hours to form covalent bonds with the substrate.

Which industries benefit most from these coatings?

The series is designed for petrochemical refineries (high-temp equipment, gas pipelines, acid/alkali tanks), heating boiler systems (interior tubes, waterproof/moisture-proof substrates), and metallurgical facilities (boiler components, pipes, electric heating elements, chemical high-temp parts).

What is the expected service life of the coating?

When properly applied and maintained, the GOMIN high-temperature coating series provides 20 to 30 years of protection. The exact lifespan depends on operating temperature, environmental conditions, substrate preparation quality, and maintenance practices.

Are these coatings environmentally friendly?

GM-812 is a water-based formulation using deionized water as diluent, minimizing VOC emissions. All models comply with industrial safety standards and require trained professional application with proper PPE and ventilation.

Request a Technical Consultation

Our engineering team provides customized coating solutions tailored to your specific high-temperature application requirements. Contact GOMIN for product selection guidance, technical data sheets, and field application support.

+86 411-87317868 www.mescocoating.com No.1 Liaohe Middle 2nd Road, Dalian Economic & Technical Development Zone, China
Steel mill facility with blast furnace and gas pipelines coated with heat-resistant protective coating at dusk
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