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Haynes Hastelloy® G-30® alloy, 50% cold rolled and 5000 hours at 500°C, air cooled
Categories: Metal; Nonferrous Metal; Nickel Alloy; Superalloy

Material Notes: HASTELLOY® G-30® alloy is a high chromium nickel-base alloy which shows superior corrosion resistance in commercial phosphoric acids as well as many complex environments containing highly oxidizing acids such as nitric/hydrochloric, nitric/hydrofluoric and sulfuric acids. The resistance of G-30 alloy to the formation of grain boundary precipitates in the heat-affected zone makes it suitable for use in most chemical process applications in the as-welded condition.

HASTELLY G-30 alloy is available in the form of plate, sheet, strip, billet, bar, wire, covered electrodes, pipe and tubing.

Typical Applications:

  • Phosphoric Acid Service
  • Sulfuric Acid Service
  • Nitric Acid Service
  • Nuclear Fuel Reprocessing
  • Nuclear Waste Processing
  • Pickling Operations
  • Petrochemicals
  • Fertilizer Manufacture
  • Pesticide Manufacture
  • Gold Ore Extraction

Heat Treatment: The standard solution heat treatment consists of heating to 2150°F (1177°C) followed by rapid air-cooling or water quenching. Parts which have been hot formed should be solution heat-treated prior to final fabrication or installation.

Forming: G-30 alloy has excellent forming characteristics and cold forming is the preferred method of forming. Because of its good ductility, it can be easily cold-worked. The alloy is generally stiffer than the austenitic stainless steels so more energy is required during cold forming.

Data provided by the manufacturer, Haynes International, Inc.

Key Words: ASME SB622, ASME SB626, ASME SB366, UNS N06030, ASME SB581, ASME SB582, ASME SB619
Vendors: Visit metalmen for your metals needs. Products include special chemistry, tight tolerances, custom tempers, odd dimensions/forms, and small quantities. Phone 1-800-767-9494.

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Physical PropertiesOriginal ValueComments
Density 8.22 g/cc
 
Mechanical PropertiesOriginal ValueComments
Tensile Strength, Ultimate 1324 MPa
Tensile Strength, Yield 1158 MPa
@Strain 0.2 %
Elongation at Break 8.0 %in 50.8 mm
Reduction of Area 14 %
Modulus of Elasticity 202 GPaplate heat treated to 1177°C, rapid quenched
 184 GPa
@Temperature 538 °C
plate heat treated to 1177°C and rapid quenched
 192 GPa
@Temperature 427 °C
plate heat treated to 1177°C and rapid quenched
 194 GPa
@Temperature 316 °C
plate heat treated to 1177°C and rapid quenched
 196 GPa
@Temperature 204 °C
plate heat treated to 1177°C and rapid quenched
Charpy Impact 15.0 J50% cold rolled and 500 hours at 500°C (930°F)
 
Electrical PropertiesOriginal ValueComments
Electrical Resistivity 0.000116 ohm-cm
@Temperature 24.0 °C
 0.000117 ohm-cm
@Temperature 100 °C
 0.000119 ohm-cm
@Temperature 200 °C
 0.000119 ohm-cm
@Temperature 300 °C
 0.000123 ohm-cm
@Temperature 400 °C
 0.000124 ohm-cm
@Temperature 500 °C
 0.000125 ohm-cm
@Temperature 600 °C
 
Thermal PropertiesOriginal ValueComments
CTE, linear 14.4 µm/m-°C
@Temperature 30.0 - 316 °C
 14.9 µm/m-°C
@Temperature 30.0 - 427 °C
 15.5 µm/m-°C
@Temperature 30.0 - 538 °C
 16.0 µm/m-°C
@Temperature 30.0 - 760 °C
 16.0 µm/m-°C
@Temperature 30.0 - 649 °C
Thermal Conductivity 10.2 W/m-K
@Temperature 24.0 °C
 11.9 W/m-K
@Temperature 100 °C
 14.4 W/m-K
@Temperature 200 °C
 16.7 W/m-K
@Temperature 300 °C
 18.7 W/m-K
@Temperature 400 °C
 20.3 W/m-K
@Temperature 500 °C
 21.4 W/m-K
@Temperature 600 °C
 
Component Elements PropertiesOriginal ValueComments
Carbon, C <= 0.030 %
Chromium, Cr 28 - 31.5 %
Cobalt, Co <= 5.0 %
Copper, Cu 1.0 - 2.4 %
Iron, Fe 13 - 17 %
Manganese, Mn <= 1.5 %
Molybdenum, Mo 4.0 - 6.0 %
Nb + Ta 0.30 - 1.5 %
Nickel, Ni 43 %As Remainder
Phosphorus, P <= 0.040 %
Silicon, Si 0.80 %
Sulfur, S <= 0.020 %
Tungsten, W 1.5 - 4.0 %

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to go back to viewing the property data in MatWeb's normal format.

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