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Bimetallic wear-resistant elbows are wear-resistant pipe fittings that are manufactured in one step using lost foam casting with high-chromium alloy and rare earth wear-resistant materials. They possess properties such as wear resistance, corrosion resistance, high-temperature resistance, and high-pressure resistance, making them ideal pipe fittings for use in industries where corrosion resistance, erosion resistance, and high-temperature tolerance are required. Application areas of bimetallic wear-resistant elbows: 1. Power industry: silos, hoppers, funnels in the raw coal system, as well as powder delivery pipelines. 2. Coal industry: heavy mineral separation pipelines in coal preparation plants, wet coal transportation systems, and sediment backfilling in mining. 3. Mining industry: mine backfilling, concentrate powder transportation, tailings transportation pipelines. 4. Steel industry: coke pellet conveying pipes, coal grinder pipes, separators, elbows, cones, and separation baffles. 5. Cement industry: coal powder transportation, mineral powder transportation. 6. Machinery industry: Linings for equipment in power plant powder generation, dust removal, and ash discharge systems, as well as linings for dust removal equipment in steel mills. Main technical parameters of bimetallic composite wear-resistant elbow: Wear-resistant material: BTMCr20-G ; Operating temperature: 800℃ ; Abrasive wear:
KMTBCr28 is a high-chromium bimetallic wear-resistant pipe lined with such material. Product overview of bimetallic wear-resistant fittings: KMTBCr28 high-chromium bimetallic wear-resistant pipes, bimetallic wear-resistant elbows, bimetallic wear-resistant tees, and bimetallic wear-resistant reducers are all manufactured through a special casting process using high-chromium alloy materials; they possess excellent properties such as wear resistance, corrosion resistance, high-temperature tolerance, and good thermal conductivity. These make them ideal piping and fitting solutions for applications involving corrosion, erosion, and high temperatures. They can be used over long periods at temperatures up to 1100°C, with a maximum operating temperature of 1200°C, and their performance remains stable.