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783 Inconel Alloy Rod Low Expansion Alloy For High Temperature Applications

783 Inconel Alloy Rod Low Expansion Alloy For High Temperature Applications

MOQ: 150kgs
Price: Negotiatable
Standard Packaging: Wood box for Rod
Delivery Period: 2-30days
Payment Method: ,L/C,T/T,Western Union,MoneyGram
Supply Capacity: 300 Ton per Month
Detail Information
Place of Origin
China
Brand Name
NikTech
Certification
ISO 9001:2008
Model Number
Inconel 783
Yield Strengt:
607 MPa
Edge:
Mill Edge/ Slit Edge
Packing:
Standard Export Packing
Delivery State:
Sosoloid
Finish Condition:
Soft ,anneled
Type Of Material:
Nickel Based Alloy
Keyword:
Incoloy Alloy 20 Plate Sheet
Place Of Orig:
China
Condition:
Hard / Soft
Specific Heat Capacity:
455 J/kg·K
Shape:
Round, Square, Flat
Elongation:
30%
Young's Modulus:
177.3 GPa
Shear Modulus:
67.8 GPa
Thermal Conductivity:
10.1W/m-°C
Highlight:

783 Inconel Alloy

,

High Temperature Inconel Alloy

,

Low Expansion inconel 783

Product Description

Inconel 783 Rod: Advanced Low-Expansion Alloy for High-Temperature Applications

Inconel 783 rods are engineered for high-performance applications requiring a combination of low thermal expansion, superior oxidation resistance, and high strength. This nickel-cobalt-iron alloy, enhanced with aluminum, chromium, and niobium, is particularly suited for components in gas turbines and steam turbines, where maintaining precise tolerances and resisting thermal degradation are critical.

Chemical Composition

The chemical composition of Inconel 783 ensures its exceptional properties:

Element Composition (%)
Nickel (Ni) 26.0–30.0
Cobalt (Co) Balance
Iron (Fe) 24.0–27.0
Aluminum (Al) 5.0–6.0
Chromium (Cr) 2.5–3.5
Niobium (Nb) 2.5–3.5
Titanium (Ti) 0.10–0.40
Boron (B) 0.003–0.012
Carbon (C) ≤0.03
Manganese (Mn) ≤0.50
Silicon (Si) ≤0.50
Phosphorus (P) ≤0.015
Sulfur (S) ≤0.005
Copper (Cu) ≤0.50

 

Mechanical Properties

In the standard heat-treated condition, Inconel 783 rods exhibit the following mechanical properties:

Property Value
Tensile Strength 1130 MPa
Yield Strength (0.2% Offset) 779 MPa
Elongation 24%
Reduction of Area 44%
Hardness Rockwell C 27

 

Physical Properties

Inconel 783 rods possess the following physical characteristics:

Property Value
Density 7.81 g/cm³
Melting Range 1336–1407°C
Specific Heat 455 J/kg·°C
Thermal Conductivity 10.1 W/m·°C at 21°C
Coefficient of Thermal Expansion 10.08 µm/m·°C at 93°C

 

Applications

Due to its unique combination of properties, Inconel 783 rods are ideal for:

  • Gas Turbine Components: Utilized in rings, casings, shrouds, and seals where low thermal expansion and high strength are essential.

  • Steam Turbine Parts: Employed in components requiring oxidation resistance and dimensional stability under high temperatures.

  • Aerospace Engineering: Applied in structural parts that demand a balance of lightweight, strength, and thermal stability.

Frequently Asked Questions (FAQ)

Q: What distinguishes Inconel 783 rods from other superalloys?

A: Inconel 783 rods offer a unique blend of low thermal expansion, high strength, and excellent oxidation resistance, making them particularly suitable for precision high-temperature applications.

Q: Can Inconel 783 rods be machined and welded?

A: Yes, Inconel 783 rods can be machined and welded using conventional techniques suitable for high-strength nickel alloys. It's recommended to perform rough machining in the annealed condition for optimal results.

Q: What heat treatment is applied to Inconel 783 rods?

A: The standard heat treatment involves solution annealing at 1121°C for 1 hour followed by air cooling, beta aging at 845°C for 4 hours with air cooling, and a two-step age hardening process at 718°C and 621°C.

Q: Are there specific standards governing Inconel 783 rods?

A: Yes, Inconel 783 rods conform to standards such as SAE AMS 5940, ensuring consistent quality and performance.

Inconel 783 rods represent a significant advancement in materials engineering, providing solutions for industries that demand reliability and performance in extreme environments.

products
PRODUCTS DETAILS
783 Inconel Alloy Rod Low Expansion Alloy For High Temperature Applications
MOQ: 150kgs
Price: Negotiatable
Standard Packaging: Wood box for Rod
Delivery Period: 2-30days
Payment Method: ,L/C,T/T,Western Union,MoneyGram
Supply Capacity: 300 Ton per Month
Detail Information
Place of Origin
China
Brand Name
NikTech
Certification
ISO 9001:2008
Model Number
Inconel 783
Yield Strengt:
607 MPa
Edge:
Mill Edge/ Slit Edge
Packing:
Standard Export Packing
Delivery State:
Sosoloid
Finish Condition:
Soft ,anneled
Type Of Material:
Nickel Based Alloy
Keyword:
Incoloy Alloy 20 Plate Sheet
Place Of Orig:
China
Condition:
Hard / Soft
Specific Heat Capacity:
455 J/kg·K
Shape:
Round, Square, Flat
Elongation:
30%
Young's Modulus:
177.3 GPa
Shear Modulus:
67.8 GPa
Thermal Conductivity:
10.1W/m-°C
Minimum Order Quantity:
150kgs
Price:
Negotiatable
Packaging Details:
Wood box for Rod
Delivery Time:
2-30days
Payment Terms:
,L/C,T/T,Western Union,MoneyGram
Supply Ability:
300 Ton per Month
Highlight

783 Inconel Alloy

,

High Temperature Inconel Alloy

,

Low Expansion inconel 783

Product Description

Inconel 783 Rod: Advanced Low-Expansion Alloy for High-Temperature Applications

Inconel 783 rods are engineered for high-performance applications requiring a combination of low thermal expansion, superior oxidation resistance, and high strength. This nickel-cobalt-iron alloy, enhanced with aluminum, chromium, and niobium, is particularly suited for components in gas turbines and steam turbines, where maintaining precise tolerances and resisting thermal degradation are critical.

Chemical Composition

The chemical composition of Inconel 783 ensures its exceptional properties:

Element Composition (%)
Nickel (Ni) 26.0–30.0
Cobalt (Co) Balance
Iron (Fe) 24.0–27.0
Aluminum (Al) 5.0–6.0
Chromium (Cr) 2.5–3.5
Niobium (Nb) 2.5–3.5
Titanium (Ti) 0.10–0.40
Boron (B) 0.003–0.012
Carbon (C) ≤0.03
Manganese (Mn) ≤0.50
Silicon (Si) ≤0.50
Phosphorus (P) ≤0.015
Sulfur (S) ≤0.005
Copper (Cu) ≤0.50

 

Mechanical Properties

In the standard heat-treated condition, Inconel 783 rods exhibit the following mechanical properties:

Property Value
Tensile Strength 1130 MPa
Yield Strength (0.2% Offset) 779 MPa
Elongation 24%
Reduction of Area 44%
Hardness Rockwell C 27

 

Physical Properties

Inconel 783 rods possess the following physical characteristics:

Property Value
Density 7.81 g/cm³
Melting Range 1336–1407°C
Specific Heat 455 J/kg·°C
Thermal Conductivity 10.1 W/m·°C at 21°C
Coefficient of Thermal Expansion 10.08 µm/m·°C at 93°C

 

Applications

Due to its unique combination of properties, Inconel 783 rods are ideal for:

  • Gas Turbine Components: Utilized in rings, casings, shrouds, and seals where low thermal expansion and high strength are essential.

  • Steam Turbine Parts: Employed in components requiring oxidation resistance and dimensional stability under high temperatures.

  • Aerospace Engineering: Applied in structural parts that demand a balance of lightweight, strength, and thermal stability.

Frequently Asked Questions (FAQ)

Q: What distinguishes Inconel 783 rods from other superalloys?

A: Inconel 783 rods offer a unique blend of low thermal expansion, high strength, and excellent oxidation resistance, making them particularly suitable for precision high-temperature applications.

Q: Can Inconel 783 rods be machined and welded?

A: Yes, Inconel 783 rods can be machined and welded using conventional techniques suitable for high-strength nickel alloys. It's recommended to perform rough machining in the annealed condition for optimal results.

Q: What heat treatment is applied to Inconel 783 rods?

A: The standard heat treatment involves solution annealing at 1121°C for 1 hour followed by air cooling, beta aging at 845°C for 4 hours with air cooling, and a two-step age hardening process at 718°C and 621°C.

Q: Are there specific standards governing Inconel 783 rods?

A: Yes, Inconel 783 rods conform to standards such as SAE AMS 5940, ensuring consistent quality and performance.

Inconel 783 rods represent a significant advancement in materials engineering, providing solutions for industries that demand reliability and performance in extreme environments.