关于我们
Home > Tags > SHS Ceramic Lined Pipe

SHS Ceramic Lined Pipe

SHS Ceramic Lined Pipe: A High-Performance Solution for Abrasive and Corrosive Applications SHS (Self-propagating High-temperature Synthesis) ceramic lined pipe is an advanced composite material designed to withstand extreme abrasive and corrosive conditions in various industrial applications. This innovative pipe combines the mechanical strength of steel with the exceptional wear and corrosion resistance of ceramic, making it ideal for transporting highly abrasive slurries, powders, and corrosive fluids in industries such as mining, power generation, cement production, and chemical processing. Structure and Manufacturing Process The SHS ceramic lined pipe consists of an outer steel pipe and an inner alumina (Al₂O₃) ceramic layer. The ceramic lining is bonded to the steel pipe through a unique SHS process, which involves a high-temperature reaction between aluminum and iron oxide. This reaction generates intense heat, melting the alumina ceramic and forming a dense, uniform lining that adheres firmly to the steel substrate. The result is a seamless, high-strength composite structure with superior resistance to wear, impact, and thermal shock. Key Advantages 1. Exceptional Wear Resistance – The alumina ceramic lining has a hardness of 9.0 on the Mohs scale, significantly outperforming traditional steel pipes in abrasive environments. This extends service life by 5–10 times compared to unlined pipes. 2. Corrosion Resistance – The chemically inert ceramic layer resists acids, alkalis, and other corrosive media, making it suitable for harsh chemical transport applications. 3. Smooth Surface & Reduced Friction – The ceramic lining has a low surface roughness, minimizing flow resistance and preventing material buildup, which enhances efficiency in slurry transportation. 4. High-Temperature Stability – The ceramic-steel composite structure maintains integrity in temperatures up to 800°C, making it suitable for thermal power plants and high-heat processes. 5. Lightweight & Easy Installation – Despite its durability, the pipe is lighter than solid steel or cast basalt alternatives, reducing installation and maintenance costs. Applications - Mining & Mineral Processing – Transporting ore slurries, tailings, and abrasive mining waste. - Coal-Fired Power Plants – Ash handling systems, fly ash pipelines, and pneumatic conveying. - Cement Industry – Raw material and clinker transportation. - Chemical & Petrochemical – Handling corrosive acids, alkalis, and abrasive catalysts. Conclusion SHS ceramic lined pipe offers a cost-effective, long-lasting solution for industries facing severe wear and corrosion challenges. Its unique manufacturing process ensures a robust bond between ceramic and steel, delivering unmatched performance in demanding environments. By reducing downtime and replacement costs, this technology enhances operational efficiency and sustainability in heavy industrial applications.

Products

Category:
view:
  • Self-propagating Ceramic Pipe

    Self-propagating Ceramic Pipe

    Category: Self-propagating Ceramic Pipe
    Browse number: 37
    Number:
    Release time: 2025-11-03 17:33:21
    The full name of the ceramic self-propagating composite pipe is corundum ceramic-lined wear-resistant composite pipe. It is a type of ceramic composite steel pipe and is manufactured using a self-propagating high-temperature ionization synthesis method.

News

Category:
No search results found!

Case

Category:
No search results found!

Video

Category:
No search results found!

Download

Category:
No search results found!

Job

Category:
No search results found!

Featured Products

No search results found!
Improve your manufacturing efficiency and quality with our technical ceramics.
Contact Us

Zibo Taili Industrial Ceramics Co., Ltd.

Tel: +86 18764326777

Email: admin@tailiindustrialceramics.com

Address: Liuwa Industrial Park, Kunlun Town, Zichuan District, Zibo City, Shandong Province


Copyright ©  2025 Zibo Taili Industrial Ceramics Co., Ltd  All rights reserved

Sitemap

This website uses cookies to ensure you get the best experience on our website.

Accept Reject