Mild Steel Pipe with Ceramic Line Coating

Mild Steel Pipe with Ceramic Line Coating

Wear Protection

Mild steel pipes internally coated with industrial-grade ceramic coating for enhanced abrasion, corrosion, and thermal resistance.

Mild Steel Pipe with Ceramic Line Coating

Wear Protection

Mild steel pipes internally coated with industrial-grade ceramic coating for enhanced abrasion, corrosion, and thermal resistance.

Ceramic Coated Pipe
Mild Steel Ceramic Pipe
Wear-Resistant Coating
Abrasion Resistant Pipe
Corrosion Proof Pipe
Mild Steel Pipe with Ceramic Line Coating (Image 6)

Mild steel pipes with internal ceramic line coating offer excellent wear, corrosion, and heat resistance—ideal for slurry, ash, and abrasive industrial systems.

Mild steel pipes with ceramic line coating are steel pipes internally coated with a tough, high-hardness ceramic material—such as alumina or silicon carbide—applied via spray, slurry, or thermal spray processes. This coating creates a protective barrier that shields the steel from aggressive wear, corrosion, and elevated temperatures, significantly boosting durability and operational uptime.

Core Benefits

  • Enhanced Abrasion Resistance

    Ceramic coating (Mohs ~8–9) extends pipe life by 5–10×

  • Corrosion & Chemical Defense

    Resists acids, alkalis, and saline solutions

  • Thermal Stability

    Operates from –50°C to 600°C

  • Smooth Bore & Flow Efficiency

    Reduces flow resistance and clogging

  • Structural Integrity

    0.5–3 mm thick coatings retain steel strength

  • Cost-Effective Retrofit

    Upgrades existing pipelines with minimal downtime

Applications

  • Slurry lines in mining, power generation, and cement industries

  • Ash or dust transport in boilers and exhaust systems

  • Chemical effluent pipelines requiring corrosion protection

  • Pneumatic conveying lines and bulk material transfer systems

  • Refurbishing worn steel pipelines with internal ceramic protection

Product Specifications

  • Pipe Sizes DN25–DN1200+ mm
  • Coating Thickness 0.5–3 mm
  • Operating Temperature –50°C to 600°C
  • Coating Methods Thermal spray, fused slurry, or plasma spray
  • Surface Finish Smooth bore or textured

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