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Ceramic pipe

The wear resistance of wear-resistant ceramic pipes is more than 10 times that of ordinary steel pipes
  • Product description
  • 1. Product Overview

    1.1 Definition and Characteristics
    Wear-resistant ceramic pipes are tubular products made from alumina as the base material, produced through isostatic pressing, featuring extremely high wear resistance and excellent chemical corrosion resistance.

    1.2 Technical Advantages
    The wear resistance of wear-resistant ceramic pipes is more than 10 times that of ordinary steel pipes, effectively reducing replacement frequency and lowering maintenance costs.

    1.3 Application Fields
    Wear-resistant ceramic pipes are widely used in industries such as chemicals, steel, electricity, and food processing for transporting highly abrasive and corrosive media.

    2. Industry Applications

    2.1 Chemical Industry

    2.1.1 Transport of Corrosive Media
    Wear-resistant ceramic pipes can safely and effectively transport corrosive powder media, reducing pipeline corrosion and wear, and preventing leakage risks.

    2.1.2 High-Temperature Powder Transport
    In chemical production, wear-resistant ceramic pipes can be used for transporting high-temperature powders, such as boiler flue gas and drying hot air, ensuring safety and stability during the transport process.

    2.2 Steel Industry

    2.2.1 Transport of Smelting Slag
    During the steel smelting process, wear-resistant ceramic pipes are used for transporting slag, with their wear resistance and high-temperature performance effectively extending the service life of the pipes.

    2.3 New Energy Transport

    2.3.1 Lithium Battery Material Transport
    Wear-resistant ceramic pipes are used in lithium battery production for transporting positive and negative electrode materials, ensuring material purity and transport efficiency.

    2.4 Thermal Power Industry

    2.4.1 Dust Removal and Desulfurization
    Wear-resistant ceramic pipes are used in thermal power plants' flue gas, dust, and desulfurization systems for transporting powder media, with their wear resistance and corrosion resistance ensuring stable system operation.

    2.4.2 Ash Transport
    In thermal power plants, wear-resistant ceramic pipes are used for ash transport, with their wear resistance reducing pipeline wear and lowering maintenance costs.

    2.5 Powder Material Transport Industry

    2.5.1 Pneumatic Conveying System
    Wear-resistant ceramic pipes in pneumatic conveying systems for powder materials can withstand high-speed airflow and particle scouring, ensuring transport efficiency and system stability.

    2.5.2 Material Classification and Separation
    In material classification and separation equipment, wear-resistant ceramic pipes serve as wear-resistant and corrosion-resistant components, improving equipment work efficiency and service life.

    3. Production Process

    3.1 Raw Material Selection
    Select high-purity alumina powder to ensure the purity and performance of wear-resistant ceramic pipes.

    3.2 Processing Technology
    Advanced forming and sintering technologies are employed to ensure the shape and dimensional accuracy of wear-resistant ceramic pipes, as well as excellent mechanical properties.

    3.3 Quality Control
    Implement a strict quality management system to ensure the quality and consistency of each batch of products.

    4. Services and Support

    4.1 After-Sales Service
    Provide professional installation guidance and technical support to ensure the correct installation and use of wear-resistant ceramic pipes.

    4.2 Customized Services
    Provide customized design and manufacturing services for wear-resistant ceramic pipes based on customer needs.

    4.3 Continuous Improvement
    Continuously conduct technological research and product upgrades to meet the ever-changing market demands.

Key words:

Wear-resistant materials/various bending pipe fittings

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