Research & Development

NICKEL ALLOY G130

Goodwin Alloy G130 is a gamma prime strengthened Nickel alloy specifically design for high temperature application heavy section castings.

Goodwin has performed successful welding trials and ASME IX weld qualifications for the G130 material for both casting repair and fabrication welding.

  • Higher Creep Strength than cast Alloy 625 & 617
  • More castable than alloy cast 740H or Alloy 282
  • Better weldability than cast Alloy 282
  • More stable microstructure than cast Alloy 740H or 263
  • Better segregation characteristic than Nb or Mo containing Ni Alloys
  • Excellent microstructural stability during service aging
  • Lower cost than solid solution strengthened alloys – due to reduced wall thicknesses.
  • Lower wall thickness – reduce in service thermal stresses during start-up cycles. (more flexible plant operation)
Long Term Stability of G130

Alloy g130 outline chemistry:

 

ElementSymbolTypical
CarbonC0.015
SiliconSi0.20
ManganeseMn0.50
NickelNiBAL
ChromiumCr24.5
CobaltCo19.5
NiobiumNb60°
TitiniumTi60°
AluminumAl60°
OtherTa + B Addition
Long Term Stability of G130

Typical mechanical properties for Alloy G130

 

Test Temperature:20°
Section Size: 100mm to 200mm (t=1/2
PropertyUnitTypical
Tensile StrengthN/mm2560 – 700
Yield (0.2% proof)N/mm2360 – 420
Elongation%20 -30
Reduction in Area%25 – 40
Avg Impact StrengthJ80 – 130

Stress Rupture properties of G130

G130 Microstructure:

A clean microstructure with grains of gamma with M23C6 carbides precipitated along each grain boundary. The alloy is designed to produce a very low fraction MX phase and to have a stable microstructure during service aging.

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