Tricon Steel & Alloys is the largest supplier and manufacturer of 16Mo3 Pipe, catering to diverse industries with unparalleled expertise. From chemical processing and petrochemicals to pharmaceuticals and beyond, these pipes stand out as the top choice, demonstrating exceptional reliability and resilience in critical applications.
16Mo3 Pipe is a high-temperature alloy steel pipe renowned for its excellent performance under elevated temperatures and pressures. Composed primarily of molybdenum (Mo) and chromium (Cr), this pipe exhibits exceptional resistance to oxidation and corrosion, making it ideal for applications in chemical processing, petrochemicals, power generation, and boiler manufacturing. Its superior mechanical properties, including high tensile strength and good weldability, make it suitable for high-temperature and high-pressure environments where reliability and durability are paramount.
The ability of 16Mo3 pipe to retain its mechanical qualities at high temperatures—typically up to 600°C/1112°F)—is one of its primary characteristics. Its temperature resistance allows it to tolerate harsh conditions in various industrial processes, such as steam pipelines, heat exchangers, and boiler components. Its ability to withstand thermal fatigue and creep deformation guarantees long-term performance, reducing the possibility of unplanned failures.
16Mo3 Pipe boasts a versatile range of applications across diverse industries and processes. Within chemical processing, it serves as a reliable conduit for transporting corrosive fluids and gases under high-temperature conditions. The petrochemical sector is crucial in refining operations, offering resilience against the harsh environments prevalent in oil and gas processing facilities. Furthermore, in power generation, 16Mo3 Pipe is indispensable for fabricating boiler tubes and superheaters, thanks to its exceptional capacity to endure the rigorous conditions of steam generation processes, including elevated temperatures and pressures.
Testing conducted on 16Mo3 Pipe is comprehensive to ensure compliance with industry standards and specifications. Common tests include tensile testing, impact testing, hardness testing, and non-destructive testing methods such as ultrasonic and radiographic testing. These tests evaluate the pipe's mechanical properties, integrity, and quality, ensuring it meets the stringent requirements for use in critical applications.
Pipe Specifications | ASTM A335 / ASME SA335 |
Dimensions | ANSI/ASME B36.19M, ANSI/ASME B36.10M |
Seamless Pipe & Tube Size | 1 / 8" NB - 24" NB |
Outside Diameter | 6.00 mm OD up to 914.4 mm OD, Sizes up to 24” NB available Ex-stock, OD Size Steel Tubes available Ex-stock |
Shape | Hydraulic, Round, Rectangle, Square, Hex, Honed |
Heat Treatment | Normalized, Normalized & Tempered |
Manufacturing Techniques | Seamless, Hot-Dipped Galvanized |
Thickness Range | SCH 5, SCH10, SCH 40, SCH 80, SCH 80S, SCH 160, SCH XXS, SCH XS |
Pipes End Types | Plain End, Beveled End, Treaded One End, TBE (Treaded Both Ends) |
Pipe Length | Standard, Double & In Cut length also |
Value Added Services | Cutting, Beveling, Polishing, Threading, Destructive, Non Destructive, Ultrasonic Testing |
Packing | Packed in Wooden Boxes, Plastic Bags, Steel Strips Bundled, or as per Customers Requests |
Specials | Sizes and Specifications other than above can be on request |
The Rolling and Welding Stage
To begin our process, we first need to go through the rolling and welding stage. The stainless steel is placed through a checking process and cut at the edges in this stage.
Cleaning and Warming Stage
The rolled stainless steel pipes thus manufactured are cut to the required lengths depending upon the industrial demand.
Cold-Drawing Stage
Sometimes, the required size isn’t obtained when the steel is brought through the mill directly. When using the cold-drawing process, the desired size is achieved when the pipes and tubing are coated with oxalic and soap solution and dragged over die plugs—the oxalic and soap solution help reduce friction when going through the cold cycle.
The Finishing Process
The final process is the finisher. Once the process of manufacturing stainless steel pipes and tubing is completed, you’ll now have to take them to a jet printer.
Grade | C | Mn | Si | P | S | Cr | Mo |
P91 | 0.12 - 0.20 | 0.40 - 0.90 | 0.35 | 0.025 max | 0.025 max | 0.30 | 0.25 - 0.35 |
Element | Tensile Strength, MPa | Yield Strength, MPa | Elongation, % |
16Mo3 | 450 - 600 | 270 min | 27 min |
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