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Temperature Corrosion Resistant Inconel 600 Pipe Seamless Alloy Tubing

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Temperature Corrosion Resistant Inconel 600 Pipe Seamless Alloy Tubing

Brand Name : NikTech

Model Number : Inconel 600

Certification : ISO 9001:2008

Place of Origin : China

MOQ : 150kgs

Price : Negotiatable

Payment Terms : L/C,T/T,Western Union,MoneyGram

Supply Ability : 300 Ton per Month

Delivery Time : 2-30days

Packaging Details : Steel‑strapped Bundles

Material : Inconel Alloy

Electrical Conductivity : 1.2% IACS

Thickness : 0.3-200MM

Delivery Lead Time : 21-40 working days

Tensile Strength : 760 MPa

Edge : Mill edge/ slit edge

Melting : 1393-1427°C

Outer Diameter : 1/2''~48''

Curie Point : -319℉ (-195℃)

Application : Spring Wire

Thermal Expansion : 13-17 µm/mK

Wall Tolerance : ±3-5%

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Inconel 600 Pipe: Temperature Corrosion‑Resistant Seamless Alloy Tubing

Inconel 600 Pipe Description

Inconel 600 Pipe is a nickel‑chromium‑iron alloy piping solution engineered to deliver outstanding performance in extreme environments. With a minimum of 72 % nickel, 14 – 17 % chromium, and 6 – 10 % iron, this seamless piping exhibits unparalleled resistance to oxidation, high‑temperature corrosion, and chloride‑ion stress corrosion cracking. The robust metallurgy of Inconel 600 Pipe ensures dimensional stability and strength at temperatures ranging from cryogenic conditions up to 1093 °C (2000 °F), making it an ideal choice for chemical processing, oil & gas, power generation, and nuclear applications. Its low carbon content and controlled impurities further enhance weldability and formability, allowing fabrication into complex geometries without sacrificing mechanical integrity. Whether deployed in heat exchanger tubing, reactor piping, or superheater coils, Inconel 600 Pipe delivers reliable service life and reduced maintenance cycles. Engineered for global markets—including South Asia, Southeast Asia, the Middle East, Europe, and the Americas—this alloy piping solution meets stringent industry standards (ASTM B167, ASTM B163, ASTM B516, ASTM B829, BS 3072 NA14, DIN 17750, ISO 6208) while providing consistent quality across diverse supply chains. Elevate your critical infrastructure with the proven performance of Inconel 600 Pipe.

Inconel 600 Pipe Chemical Composition

Element Composition (wt %)
Nickel (Ni) 72.0 min
Chromium (Cr) 14.0 – 17.0
Iron (Fe) 6.0 – 10.0
Carbon (C) 0.15 max
Manganese (Mn) 1.00 max
Silicon (Si) 0.50 max
Copper (Cu) 0.50 max
Sulfur (S) 0.015 max

Inconel 600 Pipe Mechanical Properties

Property Annealed Condition
Tensile Strength 80 – 100 ksi (552 – 689 MPa)
Yield Strength (0.2 % offset) 25 – 50 ksi (172 – 345 MPa)
Elongation (in 2″) 35 – 55 %
Hardness (Rockwell B) 77 – 88

Inconel 600 Pipe Physical Parameters & Execution Standards

Parameter Value & Standards
Density 8.47 g/cm³ (0.306 lb/in³)
Melting Range 1354 – 1413 °C (2470 – 2575 °F)
Specific Heat 444 J/kg·°C (0.11 Btu/lb·°F)
Thermal Conductivity 14.9 W/m·K
Coefficient of Thermal Expansion 13.3 µm/m·°C
Poisson’s Ratio 0.29
Execution Standards ASTM B167, ASTM B163, ASTM B516, ASTM B829, BS 3072 NA14, DIN 17750, ISO 6208

Inconel 600 Pipe Applications

  • Chemical processing reactors and piping

  • Oil & gas transport lines and sour service tubing

  • Power generation boiler and superheater coils

  • Nuclear reactor internals and heat exchanger tubing

  • Aerospace exhaust systems and thermal shields

  • Cryogenic piping for LNG and refrigeration systems

Inconel 600 Pipe FAQs

Q1: What is Inconel 600 Pipe commonly used for?
Inconel 600 Pipe finds extensive use in chemical processing, oil & gas pipelines, heat exchanger tubing, superheater coils, nuclear reactor components, aerospace exhaust systems, and cryogenic piping due to its exceptional corrosion resistance and high‑temperature strength.

Q2: What temperature range can Inconel 600 Pipe handle?
Inconel 600 Pipe is suitable for continuous service from cryogenic temperatures up to 1093 °C (2000 °F) and can be hot‑worked between 870 – 1230 °C (1600 – 2250 °F).

Q3: How does Inconel 600 Pipe resist corrosion?
The high nickel content provides resistance to reducing environments, while chromium forms a stable oxide layer that protects against oxidation. It also offers excellent resistance to chloride‑ion stress corrosion cracking and caustic corrosion.


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