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UNS N07718 Inconel 718 Nickel-chromium Based Alloy Rod High Temperature for Chemical Industry

Categories Nickel Alloy Forging Bar
Brand Name: DINGSCO
Model Number: According to customers' requirements
Certification: ISO 9001:2015,PED 2014/68/EU,API 6A,API-20B,TSG,NORSOK
Place of Origin: China
MOQ: Negotiable
Price: Negotiable
Payment Terms: T/T
Supply Ability: Negotiable
Delivery Time: (Sample order) 7 days
Packaging Details: According to customers' requests
Product Name: UNS N07718 Inconel 718 Nickel-chromium Based High Temperature Alloy Rod
Material: Nickel based Alloys
Grade: Alloy 718
Size: Customized
Surface: As per your demands
Application Areas: Aerospace, energy, and chemical industry
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UNS N07718 Inconel 718 Nickel-chromium Based Alloy Rod High Temperature for Chemical Industry

UNS N07718 Inconel 718 Nickel-chromium Based High Temperature Alloy Rod


Inconel 718 nickel-chromium-based high-temperature alloy rods have become an important material in the fields of aerospace, energy, and chemical industry due to their excellent high-temperature strength, corrosion resistance, and creep resistance.


Material:

Inconel 718 (UNS N07718) is a precipitation-strengthened nickel-chromium-based high-temperature alloy. By adding elements such as niobium (Nb), molybdenum (Mo), aluminum (Al) and titanium (Ti), γ'' (Ni₃Nb) and γ' (Ni₃(Al,Ti)) strengthening phases are formed, so that it can maintain excellent mechanical strength, creep resistance and corrosion resistance at high temperatures.


Main components (wt.%):

Nickel (Ni): 50-55% (matrix)

Chromium (Cr): 17-21% (anti-oxidation/corrosion)

Iron (Fe): Balance (reduces cost and stabilizes austenite structure)

Niobium + Molybdenum (Nb+Mo): ~5% (main strengthening element)

Aluminum + Titanium (Al+Ti): 0.8-1.2% (auxiliary strengthening)


Core characteristics:

  1. High temperature performance: long-term working temperature can reach 700°C (1290°F), short-term resistance to 980°C (1800°F).
  2. High strength: yield strength (≥1030 MPa) and tensile strength (≥1240 MPa) far exceed ordinary stainless steel.
  3. Corrosion resistance: Resistant to chloride stress corrosion, oxidation, and sulfidation environments, suitable for acidic and marine environments.
  4. Processing friendliness: Mechanical properties can be further improved by age-hardening.
Core performance advantages

Features

Description
High temperature strengthHigh yield strength (≥800 MPa) at 650°C (1200°F) and short-term resistance to 980°C (1800°F).
Oxidation resistance/corrosion resistanceResistant to chloride stress corrosion, sulfide environment, acid and seawater corrosion, more than 5 times better than 304 stainless steel.
Fatigue and creep resistanceNot prone to deformation or cracking under high-frequency cyclic loads and long-term high-temperature stress.
Weldability and formabilityWeldable (TIG/electron beam welding), recoverable by age hardening after cold working.

Heat treatment:

Solution treatment: 955°C ±10°C, 1 hour/25mm thickness, water quenching.

Age hardening: 720°C ±5°C (8 hours) → 620°C ±5°C (8 hours), air cooling.


  • Selection comparison (Inconel 718 vs. other high temperature alloys)
    AlloyMaximum operating temperatureKey BenefitsLimitation
    Inconel718700℃Best comprehensive performance, high cost performanceWhen the temperature is >650℃ for a long time, the γ" phase will coarsen.
    Inconel 625870℃Higher corrosion resistance, no age hardeningLower strength (yield strength ~550 MPa).
    Haynes 282800℃Better creep resistanceHigh cost and difficult processing.

  • Typical application areas

    Aerospace: jet engine turbine discs, compressor shafts, combustion chamber components (accounting for more than 50% of aviation alloy usage)

    Energy industry: gas turbine blades, nuclear reactor pressure vessel bolts

    Petrochemical: downhole tools, valve stems, high-corrosion environment pump shafts

    Automobile racing: turbocharger housings, exhaust system high-temperature bolts


    Quality Assurance:

  • Full process control: vacuum induction melting (VIM) + electroslag remelting (ESR) to ensure low oxygen/sulfur content.


More grades:


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