Graphene-Enhanced Barrier Coating for Long-Term Corrosion Protection of Steel and Metal Surfaces.”

₹5250.00

Anti-Corrosion Graphene Paint — Technical Specifications

Below is a professional TDS-style specification suitable for a product catalogue, quotation, or datasheet. Exact values should be validated against your formulation and test reports.

Parameter

Typical / Target Specification

Product Name

Anti-Corrosion Graphene Paint

Coating Type

Graphene-enhanced protective anti-corrosion coating

Base Chemistry

Epoxy / polyurethane / acrylic / hybrid*

Graphene Content

0.1–2.0 wt.%*

Appearance

Smooth, homogeneous coating

Color

Black / dark grey / customized

Physical Form

Liquid coating

Solid Content

40–70 wt.%*

Viscosity

500–5,000 cP @ 25°C*

Density

1.0–1.5 g/cm³*

pH

6–9 for water-based systems*

Recommended Dry Film Thickness (DFT)

50–150 µm per coat*

Number of Coats

1–3, depending on application

Surface Drying Time

30–120 min*

Full Cure

24–168 h*, depending on chemistry

Application Method

Brush / roller / spray / airless spray*

Adhesion to Steel

≥4B target, ASTM D3359*

Salt Spray Resistance

≥500–1,000 h target*, ASTM B117

Water Resistance

Good to excellent

Chemical Resistance

Good against common oils, salts and mild chemicals

Abrasion Resistance

Good to excellent

UV Resistance

Good; dependent on binder and pigmentation

Corrosion Protection

High barrier protection; formulation dependent

Operating Temperature

Approx. −20°C to +120°C*

Substrate

Carbon steel, mild steel, galvanized steel and selected metals*

Storage Temperature

5–30°C

Shelf Life

Typically 6–12 months*

Packaging

1 kg, 5 kg, 20 kg, 25 kg or customized

Key Features

  • Graphene-enhanced barrier protection helps reduce penetration of water, oxygen and corrosive ions.

  • Excellent coating adhesion on properly prepared metal surfaces.

  • Helps improve resistance to salt, moisture and environmental corrosion.

  • Good mechanical and abrasion resistance.

  • Suitable for industrial and infrastructure applications.

  • Can be formulated as water-based or solvent-based systems.

  • Suitable for primer, intermediate-coat or topcoat applications depending on formulation.

Typical Applications

  • Structural steel

  • Industrial machinery

  • Pipelines and tanks

  • Automotive components

  • Bridges and infrastructure

  • Marine and coastal equipment

  • Steel structures

  • Chemical-processing equipment

  • Industrial flooring and equipment

  • Metal fabrication

Recommended Surface Preparation

For optimum performance:

Steel → Degreasing → Abrasive blasting → Dust removal → Graphene coating

For high-performance industrial systems, abrasive blasting to approximately Sa 2½ is commonly targeted, with the exact surface-preparation standard selected according to the coating system and service environment.

Recommended Characterization & Testing

For a commercial TDS, I recommend testing:

  • Salt Spray: ASTM B117

  • Adhesion: ASTM D3359

  • Dry Film Thickness: ASTM D7091

  • Hardness: ASTM D3363

  • Abrasion Resistance: ASTM D4060

  • Water Resistance: ASTM D870

  • Chemical Resistance: ASTM D1308

  • Gloss: ASTM D523

  • Pull-Off Adhesion: ASTM D4541

  • Electrochemical Impedance Spectroscopy (EIS): for advanced corrosion evaluation

  • SEM/Raman: graphene distribution and structure

Important: Graphene concentration alone does not determine corrosion performance. The binder chemistry, graphene dispersion, coating thickness, surface preparation, porosity, curing and formulation have a major effect. Salt-spray hours should therefore be listed as a tested value, not simply a guaranteed specification.