Features:
We are your single source for stations complete with piping and instrumentation. Our stations are supplied complete and ready to fit on your piping. We have a station to suit every need.
Our steam pressure reducing stations are pre-fabricated manufactured ready to install units for steam system management. The pre-assembled steam pressure reducing stations are individually sized to meet end-user's specific needs inlet and outlet piping & valve are sized as per best engineering practices. Each unit is custom engineered and designed to meet specific system requirements.
All upstream & downstream pipe work & fittings are adequately sized to ensure that only the required pressure drop occurs across the control valve itself.
Easy for maintenance
Size: 15 NB x 15 NB to 300 NB x 500 NB and higher size as per requirement
Rating: IBR approved ANSI Class 150, 300, 600, 900, 1500 & higher on request.
MOC: Carbon Steel (A216 GrWCB) / Alloy Steel (A217 GrWC6) / 55 (CF8M)
End connections: Flanged & Butt Weld
Options: IBR / Non IBR
Incoloy alloy G-3 is a highly corrosion-resistant nickel-chromium-iron alloy. It is designed for use in highly aggressive environments, such as chemical processing plants, petrochemical refineries, and nuclear power plants. The alloy exhibits excellent resistance to both oxidizing and reducing acids, as well as to chloride-containing solutions. Conclusion Incoloy alloy G-3 is a highly corrosion-resistant nickel-chromium-iron alloy that exhibits excellent resistance to both oxidizing and reducing acids, as well as to chloride-containing solutions. The alloy has high strength and excellent toughness, even at high temperatures, and is used in a wide range of applications in highly aggressive environments. Incoloy alloy G-3 is a nickel-chromium-iron alloy with additions of molybdenum and copper. Here are some international standards and specifications for this alloy: American standards: ASTM B582, ASTM B462, ASTM B472, ASTM B366, ASTM B462, ASTM B463, ASTM B472, ASTM B574, ASTM B575, ASME SB-582, ASME SB-462, ASME SB-472, ASME SB-366, ASME SB-462, ASME SB-463, ASME SB-472, ASME SB-574, ASME SB-575 European standards: EN 2.4619, EN 2.4650 German standards: DIN NiCr23Mo16Cu, DIN 2.4619, DIN 2.4650 British standards: BS NA 24 Japanese standards: JIS NW 6200 We can provide the following the form:Incoloy alloyG-3 coil; Incoloy alloyG-3 strip;Incoloy alloy G-3 plate; Incoloy alloy G-3 sheets; Incoloy alloy G-3 tube; Incoloy alloy G-3 pipe;Incoloy alloy G-3 flat; Incoloy alloy G-3 bar BS:NA 24/JIS:NW 6200/UNSN06985/W.Nr:2.4619 Incoloy alloy G-3 is used in a wide range of applications, including: Chemical processing plants: The alloy is used in equipment such as heat exchangers, valves, pumps, and reactors that are exposed to highly corrosive acids and other chemicals. Petrochemical refineries: Incoloy alloy G-3 is used in equipment such as distillation columns, piping, and heat exchangers that are exposed to high temperatures and corrosive chemicals. Nuclear power plants: The alloy is used in equipment such as steam generators and reactor vessels that are exposed to high temperatures and radiation.
INCOLOY ALLOY 020 is a nickel-chromium-iron-molybdenum alloy with excellent resistance to corrosion in a wide range of environments. This alloy has a high nickel content, which provides superior resistance to oxidizing chemicals and reduces the risk of stress corrosion cracking. INCOLOY ALLOY 020 also has high resistance to pitting and crevice corrosion, making it ideal for use in harsh chemical processing environments. In conclusion, INCOLOY ALLOY 020 is a highly versatile alloy with excellent corrosion resistance and mechanical properties, making it suitable for use in a variety of industries and applications. Incoloy alloy 020 is also known as Alloy 20. Here are some international standards and specifications for this alloy: American standards: ASTM B473, ASTM B462, ASTM B729, ASTM B464, ASTM B729, ASTM B366, ASTM B462, ASTM B463, ASTM B464, ASTM B468, ASTM B729, ASTM B729, ASTM B729, ASTM B462, ASTM B729, ASME SB-473, ASME SB-462, ASME SB-729, ASME SB-464, ASME SB-366, ASME SB-462, ASME SB-463, ASME SB-464, ASME SB-468, ASME SB-729, ASME SB-729, ASME SB-729, ASME SB-462, ASME SB-729 European standards: EN 2.4660, EN 2.4663 German standards: DIN NiCr20CuMo, DIN 2.4660, DIN 2.4663 British standards: BS NA 24 Japanese standards: JIS NW 024 (similar to Alloy 20) It's important to note that these standards may have slightly different compositions or properties than Incoloy alloy 020/Alloy 20, so it's important to verify that they meet your specific requirements before specifying them. Regenerate response We can provide the following the form:Incoloy alloy020 coil; Incoloy alloy 020 strip;Incoloy alloy 020 plate; Incoloy alloy 020 sheets; Incoloy alloy 02 tube; Incoloy alloy 020 pipe; Incoloy alloy 020 flat; Incoloy alloy 020 bar BS:NA 24/JIS:NW024/UNS:N08020/W.Nrï¼?2.4663 INCOLOY ALLOY 020 is widely used in a variety of industries due to its excellent corrosion resistance and high strength. Some common applications include: Chemical processing: INCOLOY ALLOY 020 is frequently used in chemical processing equipment such as heat exchangers, tanks, and piping. Oil and gas: INCOLOY ALLOY 020 is used in oil and gas production due to its resistance to sulfur-containing gases and high temperatures. Power generation: INCOLOY ALLOY 020 is used in power generation equipment such as boilers, steam generators, and turbine components due to its high strength and corrosion resistance. Marine: INCOLOY ALLOY 020 is used in marine environments due to its resistance to seawater and other harsh corrosive environments.
Forged Pipe Fittings offered comprise high pressure forged steel pipe fitting in different choices like elbow, street elbow, coupling, cap, bushing, swage nipple, reducer insert, pipe nipple and others with thread options of NPT/BSP and others as demanded by the customers. Some of the materials these can be offered in include carbon steel, stainless steel and others in size range of up to 4 or others with use in industry sectors like power station, nuclear power plants, natural gas, petrochemical, ship buildings, engineering fields and others
A forged hex nipple reducing size is a type of threaded pipe fitting that is made by forging, a process that involves shaping metal by hammering or pressing it. It has a hexagonal head on one end and a threaded bore on the other end. The bore is smaller than the outside diameter of the nipple, which allows it to be used to reduce the size of a pipe. Technical Specifications: The following are the technical specifications of a forged hex nipple reducing size: 1. Size: 1/8 Inch to 2 Inch 2. Class: 3,000#, 6,000# Lbs. 3. Material: Carbon steel, Alloy Steel, Stainless steel, Duplex 4. Finish: The nipple is available in a variety of finishes, including hot-dipped galvanized, black oxide, and electroplated nickel. 5. Strength: The nipple is strong and durable, and can withstand a variety of stresses. 6. Thread: NPT, BSP, BSPT Applications: Forged hex nipple reducing sizes are used in a variety of applications, including: 1. Plumbing 2. HVAC (heating, ventilation, and air conditioning) 3. Machinery 4. Automotive 5. Oil and gas Advantages: The following are some of the advantages of using forged hex nipple reducing sizes: 1. They are strong and durable. 2. They can withstand high pressure and temperatures. 3. They are corrosion resistant. 4. They are easy to install. Overall, forged hex nipple reducing sizes are a versatile and reliable type of pipe fitting that can be used in a variety of applications. They are strong, durable, and corrosion resistant, making them a good choice for demanding environments. However, they are also more expensive than other types of pipe fittings and may not be available in all sizes.
Threaded fittings are piping components that join two pipes or other components together using threaded connections. They are made from a variety of materials, including steel, stainless steel, brass, and plastic. The most common types of threaded fittings are: Elbows: These fittings are used to change the direction of a pipe. Tees: These fittings are used to create a branch in a pipe. Couplings: These fittings are used to connect two pipes of the same size. Unions: These fittings are used to disconnect two pipes for maintenance or repair. Caps: These fittings are used to close off the end of a pipe. Plugs: These fittings are used to block a hole in a pipe. Bushings: These fittings are used to reduce the size of a pipe. Threaded fittings are specified by their size, material, and type. The size of a threaded fitting is the nominal diameter of the pipe it is designed to connect. The material of a threaded fitting is the type of metal or plastic it is made from. The type of a threaded fitting is the specific design of the fitting, such as an elbow, tee, or coupling. The technical specifications of threaded fittings include the following: Pressure rating: This is the maximum pressure that the fitting can withstand. Temperature rating: This is the maximum temperature that the fitting can withstand. Thread type: This is the type of thread used on the fitting. The most common thread types are NPT (National Pipe Thread) and PT (Pipe Thread). Finish: This is the surface finish of the fitting. The most common finishes are smooth and threaded. Coating: This is a protective coating applied to the fitting. The most common coatings are zinc and epoxy.
Socket weld fittings are a type of pipe fitting that is joined to a pipe by a socket weld. The socket is a recess in the fitting that the pipe is inserted into. The pipe is then welded to the socket, creating a strong and leak-proof joint. Socket weld fittings are made from a variety of materials, including carbon steel, stainless steel, brass, and copper. They are available in a variety of sizes and styles, including elbows, tees, couplings, and reducers. The technical specifications of socket weld fittings vary depending on the material, size, and style. However, some of the common specifications include: Pressure rating: Socket weld fittings are available in a variety of pressure ratings, from 2000 psi to 9000 psi. Temperature rating: Socket weld fittings are available for a variety of temperature applications, from cryogenic temperatures to high temperatures. Finish: Socket weld fittings are available in a variety of finishes, including galvanized, black, and stainless steel. Socket weld fittings are used in a variety of applications, including: Oil and gas pipelines Chemical processing plants Water and wastewater treatment plants Heating and cooling systems Fire sprinkler systems Socket weld fittings are a versatile and reliable type of pipe fitting that can be used in a variety of demanding applications.
A TEE is a type of pipe fitting that is used to create a 90-degree branch in a pipe system. It is made of a socket, which is a recessed area that the pipe is inserted into, and a weld neck, which is a flange that is welded to the pipe. Socket weld tees are typically made of carbon steel, stainless steel, or alloy steel. They are available in a variety of sizes and classes, and can be used for a variety of applications, including water, gas, steam, and oil. Here are the technical specifications of a socket weld tee: ANSI/ASME B16.11: This is the standard that specifies the dimensions and tolerances for socket weld tees. Class: The class of a socket weld tee indicates its pressure rating. Classes 150, 300, and 600 are the most common. Material: Socket weld tees can be made of carbon steel, stainless steel, or alloy steel. Size: Socket weld tees are available in a variety of sizes, from 1/8 inch to 24 inches. End connections: The end connections of a socket weld tee are typically threaded or socket weld. Here are some of the features of a socket weld tee: Leak-proof: Socket weld tees are designed to be leak-proof. The socket and weld neck are machined to tight tolerances, and the weld is made using a high-quality process. Corrosion resistant: Socket weld tees are available in a variety of materials that are resistant to corrosion. Carbon steel tees are typically coated with a protective finish, while stainless steel and alloy steel tees are naturally corrosion resistant. Durable: Socket weld tees are made of strong materials and are designed to withstand high pressure and temperature applications. Easy to install: Socket weld tees are relatively easy to install. The pipe is inserted into the socket and welded to the weld neck.
This reducing valve the new type pilot extra-huge membrane pressure reducing valve developed by our company. It is greatly improved on basis of normal pressure reducing valve. The membrane use new material, enlarging the working area, so the slight change of upper pressure or lower pressure can be fed back to membrane of main valve, and adjust the opening of main valve to ensure the constant pressure of lower stream pressure.
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