Our Company is China Steel Mill Sintering System Pipe Suppliers and Steel Mill Sintering System Pipe Factory. At Jianghe, we are dedicated to redefining industrial wear solutions through innovation, expertise, and sustainability. With decades of experience, we have become a trusted partner in providing high-performance wear-resistant materials and components across industries such as power generation, mining, metallurgy, petrochemicals, and cement manufacturing. Our mission is to enhance the efficiency and longevity of industrial equipment, helping our clients reduce maintenance costs and maximize operational uptime.
Technical Specifications
| Steel Housing Material | Thick-Walled Q345B / ASTM A53 Structural Steel |
| Ceramic Material Core | 95% High Alumina Ceramic or Reaction-Bonded SiC |
| Hardness Metric | Vickers Hardness ≥ 1400 HV / Mohs Scale 9 |
| Max Working Temperature | Up to 450°C (Standard Resin) / 850°C (Inorganic Bond) |
| Bonding Matrix Technology | High-Temperature Aerospace Inorganic Adhesive / Mechanical Welding |
| Available Pipe Diameters | DN150 to DN2500 Custom Structural Layouts |
The rigorous technical specifications of our steel mill sintering system pipes are meticulously calibrated to handle the extreme operational dynamics of metallurgical environments. The outer steel sleeve is fabricated from thick-walled carbon steel chosen for its superior weldability and high structural load-bearing capacity. Internally, we utilize high-density ceramic components with a minimum alumina content of 95% or advanced Silicon Carbide, achieving an exceptional Rockwell hardness of HRA 88 or greater. For areas immediately adjacent to the sintering strand or blast furnace gas cleaning loops, our factory utilizes an advanced mechanical interlocking plug-welding method. This technique secures each ceramic tile with a central alloy stud that is welded directly to the steel shell and covered with a matching ceramic cap, providing a dual-layered mechanical and chemical bond that cannot fail even at temperatures approaching 850°C. All component dimensions are held to tight industrial tolerances to ensure perfect alignment during structural installation.
Industrial Applications
Our specialized steel mill sintering system pipes are critically deployed throughout the most abusive material routing segments of modern integrated iron and steel manufacturing plants. They are primarily utilized in Sinter Ore Conveying Lines, moving hot, abrasive crushed sinter from the cooler beds to the storage bins and blast furnace charging hoppers. Additionally, these pipes are indispensable within Sinter Dust Extraction Systems and Primary Blast Furnace Gas Cleaning Loops, where high-velocity air streams carry fine, jagged ore particles and coke dust through complex ductwork and cyclones. Our ceramic-lined solutions are also installed in Coke Breeze Pneumatic Injection Lines and Flux Material Handling Systems, where mechanical abrasion is highly concentrated. By replacing standard carbon steel components with our engineered ceramic pipelines in these zones, steel mills prevent dangerous environmental dust leaks, eliminate unplanned mill stoppages, and protect sensitive secondary filtration equipment from catastrophic particulate damage.
Manufacturing Advantages
- Outstanding Thermal Resilience: Maintains complete structural integrity and mechanical hardness at extreme metallurgical operating temperatures.
- Unmatched Kinetic Wear Resistance: Outperforms standard hardened cast iron or chromium alloy liners by several hundred percent under intense sinter dust abrasion.
- Dual Mechanical-Chemical Bonding: Plug-welded options ensure that ceramic tiles cannot detach even under severe structural vibration.
- Flawless Geometric Alignment: Staggered tile arrangements eliminate the risk of linear joint tracking wear caused by high-velocity streams.
- Enhanced Flow Velocity: The exceptionally smooth internal ceramic face minimizes gas turbulence and reduces localized pressure drops.
- Direct Factory Customization: We engineer and fabricate highly complex geometries including large-diameter eccentric reducers, offset lateral tees, and custom segment bends.


русский
Español
عربى



