China Steel Pipe Elbow Fittings - Premium Quality from Leading Suppliers and Factory for Piping Systems
Angle Type
| Angle | Description | Typical Applications |
| 45° Elbow | Changes flow direction by 45 degrees | Gradual direction changes, reducing pressure loss |
| 90° Elbow | Changes flow direction by 90 degrees | Standard corner turns in piping systems |
| 180° Elbow (Return Bend) | Changes flow direction by 180 degrees | Heat exchanger tubes, U-bends for thermal expansion |
Radius Type
| Radius Type | Description | Characteristics |
| Long Radius (LR) | Center-to-face dimension = 1.5 x NPS | Lower pressure drop, smoother flow, less erosion |
| Short Radius (SR) | Center-to-face dimension = 1.0 x NPS | Compact installation, higher pressure drop |
| 3D / 5D Elbow | Radius = 3 or 5 times pipe diameter | Very gradual bend, minimal flow resistance, used in pigging applications |
Connection Type
| Connection Type | Description | Size Range |
| Butt Weld | Ends beveled for welding directly to pipe | Seamless: ½" – 24" / Welded: 4" – 78" |
| Socket Weld | Pipe inserts into socket and fillet welded | Small diameter, high-pressure applications |
| Threaded | NPT or BSPT threads for screwing onto pipe | ⅛" – 4" |
| Stainless Steel | For corrosion-resistant applications | Various sizes per standard |
Material Standard
| Material Type | Standard | Common Grades |
| Carbon Steel | ASTM A234 | WPB (most common), WPC (high temperature) |
| Stainless Steel | ASTM A403 | WP304, WP304L, WP316, WP316L |
| Alloy Steel | ASTM A234 | WP11, WP22, WP91 (chrome-moly for high temp) |
| Duplex / Super Duplex | ASTM A815 | UNS S31803, S32750 (corrosion resistant) |
Wall Thickness Schedules
Available in various schedules to match pipe wall thickness:
Surface Finishes
Application
Widely used in onshore and offshore pipeline networks, refineries, and natural gas processing plants. Long radius elbows are preferred for main transmission lines to minimize pressure loss, while short radius elbows are used in space-constrained areas.
Elbows facilitate the routing of process piping around equipment and obstacles. Stainless steel and alloy elbows are commonly specified for handling corrosive chemicals and high-temperature processes.
Power plants utilize elbows extensively in steam lines, cooling water systems, and boiler connections. They accommodate thermal expansion and withstand high pressures for reliable operation.
Vessels and offshore structures rely on elbows for engine room piping, ballast systems, and fuel lines. Corrosion-resistant materials such as stainless steel and copper-nickel alloys are often selected.
Municipal water distribution networks and treatment facilities use elbows to navigate terrain and connect to pumps and valves. Ductile iron and coated carbon steel elbows provide long-term durability in buried service.
Building services including plumbing, heating, ventilation, and air conditioning systems incorporate elbows for space-efficient routing. Threaded elbows are common in smaller diameter domestic systems.
Sanitary applications demand stainless steel elbows with polished interior surfaces to prevent bacterial growth and facilitate cleaning. Used in dairy, brewery, and food processing lines.
Sprinkler systems and standpipes utilize elbows to direct water flow throughout buildings. Grooved-end elbows are increasingly popular for quick installation without welding.
Abrasion-resistant elbows with thickened walls or ceramic linings are employed in mining operations to handle the erosive wear of slurry materials.
High-purity stainless steel elbows with electropolished finishes are specified for cleanroom piping systems carrying purified water, steam, and process gases.














