ASME SB167 Inconel600, UNS N06600 Nickel Alloy Seamless Tube For Heat Exchanger

Product Details
Place of Origin: China
Brand Name: TONG CHUANG
Certification: ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2015
Model Number: ASME SB167 Inconel 600, UNS N06600
Payment & Shipping Terms
Minimum Order Quantity: 200 KGS
Price: Negotiable
Packaging Details: According to Client Requirements/ Ply-wooden Case/ Iron Case/ Bundle with plastic Cap
Delivery Time: 15-35 Days
Payment Terms: T/T, L/C
Supply Ability: According to Client Requirements

SKU: 1880 Category:
Standard:ASTM B167, ASME SB167Grade:Inconel600, UNS NO6600, 2.4816
Surface Treatment:BAOuter Diameter(round):48.3 – 114.3 Mm
Wall Thickness:0.2MM To 60MMLength:6M, Or As Required
Section Shape:RoundTechnique:Cold Drawn,Cold Finished/Hot Finished
NDT:ET,UT,HTUsage:Boilier, Heat Exchanger, Oil And Gas Plant, Chemical Industry
High Light:

Nickel Alloy Duplex Steel Tube

Heat Exchanger Duplex Steel Pipe

Inconel 600 Stainless Steel

ASME SB167 Inconel600, UNS N06600 Nickel Alloy Seamless Tube For Heat Exchanger

 

ASME SB167 UNS N06600 Nickel Alloy Seamless Tubes are used in lots of applications, such as chemical industry, oil and gas plant, heat exchangers, boiloers, petrochemical industry. TONG CHUANG GROUP is one of the Nickel Alloy Pipes / Tube / Fitting / Flange suppliers in China , our Inconel600, alloy601,alloy625, alloy690, alloy718 tubes, pipes, fittings and flanges have been exported more than 40 countries now , and win a good reputation from the international market .

 

Benefits:

Using nickel alloy pipe brings three primary advantages:

Resistance to Heat

Some nickel pipe alloys can endure very high temperatures, making them advantageous in machinery or other environments where intense heat is present.

 

Resistance to corrosion

Oxidation reactions cause corrosion. Nickel alloys have a slower rate of oxidation than most metals, meaning they can resist corrosion for longer.

Low Rate Of Expansion

Many nickel alloys pipes have either a low rate of thermal expansion or a rate of thermal expansion that can be predicted very accurately. This makes them desirable in high-temperature environments where you need a uniform shape.

Manufacturing

Nickel alloy pipes are made with a complex manufacturing process that begins with the purest materials. Contaminated materials would lead to pipes without the beneficial properties mentioned above. The stages of the manufacturing process include:

  • melting
  • hot rolling
  • acid pickling
  • annealing
  • wire drawing
  • cold rolling/slitting

Throughout the process, quality control is maintained through a wide range of statistical tests.

 

Grades:

Nickel 625 Tube

This grade is comprised of 20 to 30 percent chromium, which is a greater amount than many other nickel alloys. It’s often found in engine exhaust systems.

Nickel 600 Pipe

Nickel 600 offers a handful of unique benefits: it can be joined with many different methods, it’s very workable, and it performs well in very high and low temperatures.

Nickel 601 Pipe

Often used in high temperature environments, Nickel alloy pipe 601 has a high creep rupture strength and good mechanical strength.

Nickel 400 Tube

Comprised of around 23% copper, Nickel 400 tubing is often used in oil towers, crude petroleum stills, de-aerating heaters, marine projects, heat exchangers, freshwater tanks and gas tanks. Furthermore, it also performs very well in alkaline salt and salt water.

 

Applications:

The beneficial properties of nickel alloys make them useful in a wide variety of applications. These include:

  • Turbine Blades, seals and combustors
  • Electric submersible well pump motor shafts
  • High temperature fasteners
  • Heat exchanger tubing
  • Steam generators in nuclear pressurized water reactors
  • Sound suppressors
  • Race car exhaust systems
  • Incinerator boilers
  • Rocket planes
  • Nuclear power systems

 

Chemical Composition:

ElementNickel + CobaltCarbonSiliconIronCopperManganese

Chromium

Avg. Nominal %72.0 Min0.15 Max0.50 Max6.0 – 10.01.0 Max1.0 Max14.0 – 17.0