High-temperature Alloy Technical Paper Guide

 

Industrial Heating/Heat-Treating Applications

“High-Alloy, Thin-Section Baskets Reduce Vacuum Cooling Time,” R. J. Myers, HEAT TREATING, April, 1990. (IH-10)

“Reliability and Longevity of Furnace Components as Influenced by Alloy of Construction,” M. F. Rothman and I. J. Storey, FURNACES 90, Solihull, UK, March, 1990. (IH-9)

“Aerospace Alloys Land in Heat-Treat Furnaces,” R. J. Myers, ADVANCED MATERIALS and PROCESSES, March, 1990. (IH-8)

“Performance of High Temperature Alloys in a Natural Gas-Fired Combustion Environment,” J. J. Barnes & S. K. Srivastava, CORROSION 89. (IH-7)

“Selecting High-Strength Alloys for Furnace Hardware,” M. F. Rothman, HEAT TREATING, April 1988. (IH-6)

“Advanced Alloys for Industrial Heating Equipment Subject to Severe Service Conditions,” M.F. Rothman and G. Y. Lai, INDUSTRIAL HEATING, August, 1986. (IH-5)

“Selecting Alloys for Heat-Treating Equipment,” D. E. Fluck, R. B. Herchenroeder,G. Y. Lai and M. F. Rothman, METAL PROGRESS, September, 1985. (IH-4)

“Field Experience with Engineering Materials in Industrial Heat Recovery Systems,”M.F. Rothman, G. Y. Lai, D. E. Fluck, CORROSION 85. (IH-3)

“High-Temperature Corrosion of Materials for Heat Recovery Systems,” G. Y. Lai, S. Baranow, and M. F. Rothman, CORROSION 84. (IH-2)

“Recuperator Alloys for High-Temperature Waste Heat Recovery,” G. Y. Lai, M. F. Rothman, S. Baranow, and R. B Herchenroeder, JOURNAL OF METALS, July 1983. (IH-1)

 

Gas Turbine/Aerospace Applications

“Heat Treatment/Property Relationships for Solid-Solution-Strengthened Heat-Resisting Alloys,” D. L. Klarstrom, First International Conference on Heat-Resistant Materials, Lake Geneva, WI, September, 1991. (GT-10)

“Effect of Aging on the LCF Behavior of Three Solid-Solution-Strengthened Super Alloys,” D. L. Klarstrom and G. Y. Lai, 6th International Symposium on Super Alloys, Seven Springs, September 1988. (GT-8)

“Modern Alloys in Gas Turbines,” M. F. Rothman, WORLD AEROSPACE PROFILE,1988. (GT-7)

“New Materials for Fabricated Gas Turbine Hot Section Components,” M. F. Rothman and C. R. Patriarca, ASME Gas Turbine Conference, Anaheim, CA, June 1987. (GT-6)

“Fabrication Effects Upon the Structure and Properties of Solid Solution Strengthened High-Temperature Alloys,” C. H. Cadden and H. M. Tawancy, ASME Gas Turbine Conference, Houston, March 1985. (GT-5)

“Oxidation Resistance of Gas Turbine Combustion Materials,” M. F. Rothman, ASME Gas Turbine Conference, Houston, March 1985. (GT-4)

“Structure/Property Relationships in Solid- Solution Strengthened Superalloys,” D. L. Klarstrom, H.M. Tawancy and M.F. Rothman, 5th International Symposium on Superalloys, Seven Springs, October 1984. (GT-3)

“Materials Selection for Gas Turbine Seal Ring Applications,” H. M. Tawancy and E.J. Bickel, ASME Gas Turbine Conference, Amsterdam, June 1984. (GT-2)

“Role of Refractory Elements in Cobalt-Base Alloys,” M. F. Rothman, R. D. Zordan, D. R. Muzyka, Refractory Alloying Elements in Superalloys-Effects and Availability, Rio de Janeiro, April 1984. (GT-1)

 

Process Industry Applications

“High Temperature Corrosion and Selection of Materials for Various Industrial Processing Equipment,” G. Y. Lai, M. F. Rothman, and D. E. Fluck, INDUSTRIAL HEATING, August1985. (PI-3)

“High Temperature Corrosion Problems in the Process Industries,” G. Y. Lai, JOURNAL OF METALS, July 1985. (PI-2)

 

Waste Incineration Applications

“Solving a Waste Incinerator Soot Blower Element Material Problem,” C. M. Antony, S. K. Srivastava, G. Y. Lai, UK CORROSION, 1990. (WI-5)

“Materials Selection for Waste Incinerator/Resource Recovery Equipment,” C. M. Antony, S. K. Srivastava and G. Y. Lai, WASTE MANAGEMENT, 1991. (WI-4)

“High Temperature Corrosion in Various Waste Incineration Environments,” S. K. Srivastava, G. Y. Lai and D. E. Fluck, CORROSION 87. (WI-3)

“Selection of Materials for Combustion Environments Associated with Waste Incineration,” D. E. Fluck, G. Y. Lai and M. F. Rothman, CORROSION 85. (WI-2)

“Materials Problems in Incineration Plants,” S. Baranow, G. Y. Lai, and M. F. Rothman, 1984 Waste Processing Conference, Orlando, June 1984. (WI-1)

 

HAYNES® 214® Alloy

“Microstructural Characteristics of HAYNES alloy 214: A New Superalloy Developed for Applications in Hostile High-Temperature Environments,” K. V. Rao and R. B. Herchenroeder, Fall Meeting TMS-AIME, Detroit, September 1984. (AA-4)

“A Wrought Ni-Cr-Al-Fe-Y Superalloy, HAYNES alloy 214, for High Temperature Applications,” G. Y. Lai, R. B. Herchenroeder, M. F. Rothman, K. V. Rao, and S. Baranow, 9th International Conference on Metallic Corrosion, Toronto, June 1984. (AA-3)

“Wrought, Nickel-Base Alloy Introduced for Rugged Service at High Temperatures,” (alloy 214), K. Boiko, HEAT TREATING, Dec. 1983. (AA-2)

 

HAYNES® 230® Alloy

“Pressure Vessel Code Construction Capabilities for a Ni-Cr-W-Mo Alloy”, M. F. Rothman, New Alloys for Pressure Vessels and Piping Conference, Nashville, June, 1990. (AB-3)

“Development of a New Nickel-Base Superalloy,” H. M. Tawancy, D. L. Klarstrom, and M. F. Rothman, JOURNAL OF METALS, September, 1984. (AB-2)

“A New Gas Turbine Alloy” (230 alloy), D. L. Klarstrom, H. M. Tawancy, D. E. Fluck, and M. F. Rothman, ASME Gas Turbine Conference, Amsterdam, June 1984. (AB-1)

 

HAYNES® 242® Alloy

“Effect of Cold Work and Aging Upon the Properties of a Ni-Mo-Cr Fastener Alloy,” M. F. Rothman & S. K. Srivastava, ASME Gas Turbine Conference, Orlando, June, 1991. (AC-3)

“A New Low-Thermal-Expansion, High-Strength Alloy for Gas Turbines,” S. K. Srivastava & G. Y. Lai, ASME Gas Turbine Conference, Toronto, June 1989. (AC-2)

“A New Long-Range-Order-Strengthened Superalloy,” M. F. Rothman & S. K. Srivastava, WORLD AEROSPACE PROFILE, 1989. (AC-1)

 

HAYNES® 556® Alloy

“An Fe-Ni-Co-Cr Alloy for Hot-Dip Galvanizing Hardware,” C. M. Antony and S. K. Srivastava, American Galvanizers Association Conference, Toronto, October, 1989. (AD-2)

“A New Fe-Ni-Co-Cr Filler Metal for Joining Alloy 800H,” S. C. Ernst & G. Y. Lai, CORROSION 89. (AD-1)

 

HAYNES® HR-160® Alloy

“The Corrosion Behavior of a New Sulfidation-Resistant Alloy in a Sulfidizing/Oxidizing/Carburizing Atmosphere,” G. Y. Lai, J. F. Norton, F. G. Hodge, FIRST INTERNATIONAL CONFERENCE ON HEAT-RESISTANT MATERIALS. Lake Geneva, WI, September 1991. (AE-4)

“A Ni-Co-Cr-Si Alloy for High-Temperature Corrosion Resistance in Waste Incinerators,” C.M. Antony, S. K. Srivastava & G. Y. Lai, FIRST INTERNATIONAL CONFERENCE ON HEATRESISTANT MATERIALS. Lake Geneva, WI, September 1991. (AE-3)

“A New Alloy for Solving Fireside Corrosion Problems in Waste Incineration,” G. Y. Lai, CORROSION 91. (AE-2)

 

HAYNES® HR-120® Alloy

“A New High Strength Fe-Ni-Cr-Nb-N Alloy for Elevated Temperature Applications,” S. C. Ernst & G. Y. Lai, FIRST INTERNATIONAL CONFERENCE ON HEAT-RESISTANT MATERIALS, Lake Geneva, WI, September, 1991. (AF-2)

“New Nitrogen-Strengthened Fe-Ni-Cr Alloy Exhibits Favorable Properties for Use up to 2000°F,” R. J. Myers, INDUSTRIAL HEATING, February, 1991. (AF-1)

 

Sulfidation/Hot Corrosion

“Oxidation of Iron-Base Alloys in Environments with and Without SO2,” J. J. Barnes and G. Y. Lai, CORROSION 90. (SC-3)

“Sulfidation Resistance of Various High-Temperature Alloys in Low Oxygen Potential Atmospheres,” G. Y. Lai, High Temperature Corrosion in Energy Systems, Detroit, September 1984. (SC-2)

“Materials Behavior in High-Temperature, Sulfidizing Environments,” G. Y. Lai, CORROSION 84. (SC-1)

 

Carburization

“Resistance to Carburization of Various Heat-Resistant Alloys,” G. Y. Lai, High Temperature Corrosion in Energy Systems, Detroit, September 1984. (CC-4)

“High Temperature Corrosion and Embrittlement of Alloys in Gaseous Environments (carburization),” M. F. Rothman, G.Y. Lai, M.M. Antony and A. E. Miller, 9th International Conference on Metallic Corrosion, Toronto, June 1984. (CC-3)

 

Molten Salt Corrosion

“Exploratory Corrosion Tests on Alloys in Molten Salts at 900°C,” R. T. Coyle, T. M. Thomas, and G. Y. Lai, High-Temperature Corrosion in Energy Systems, Detroit, September 1984. (MS-1)

 

Halogen-Bearing Environments

“Long Term High Temperature Corrosion Studies of High Temperature Alloys in Chlorine Contaminated Environment,” M. H. Rhee, M. J. McNallan, and M. F. Rothman, High Temperature Corrosion in Energy Systems, Detroit, September 1984. (HC-2)

“Materials Performance in High-Temperature Halogen-Bearing Environments,” S. Baranow, G. Y. Lai, M. F. Rothman, M. J. McNallan, and M. H. Rhee, CORROSION 84(HC-1)