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Title: Advanced Research and Technology Development Fossil Energy Materials Program. Quarterly progress report for the period ending September 30, 1983

Technical Report ·
OSTI ID:5576017

The objective of the AR and TD Fossil Energy Materials Program is to conduct research and development on materials for fossil energy applications with a focus on the longer-term and generic needs of the various fossil fuel technologies. The program includes research aimed toward a better understanding of materials behavior in fossil energy environments and the development of new materials capable of substantial enhancement of plant operations and reliability. The management of the Program has been decentralized to DOE Oak Ridge Operations Office (ORO) and the Oak Ridge National Laboratory (ORNL) as technical support contractor. The ORNL Fossil Energy Materials Program Office compiles and issues this combined quarterly progress report from camera-ready copies submitted by each of the participating subcontractor organizations. This report of activities on the program is organized in accordance with a work breakdown structure defined in the AR and TD Fossil Energy Materials Program Plan for FYs 1982 to 1986 in which projects are organized according to fossil energy technologies. It is the intent of the AR and TD Fossil Energy Materials Program to sponsor materials research which is generic to a number of fossil energy technologies. We hope this series of AR and TD Fossil Energy Materials Program quarterly progress reports will aid in the dissemination of information developed on the program.

Research Organization:
Oak Ridge National Lab., TN (USA)
DOE Contract Number:
W-7405-ENG-26
OSTI ID:
5576017
Report Number(s):
ORNL/FMP-83/4; ON: DE84004145
Resource Relation:
Other Information: Portions are illegible in microfiche products. Original copy available until stock is exhausted
Country of Publication:
United States
Language:
English

Related Subjects

01 COAL, LIGNITE, AND PEAT
36 MATERIALS SCIENCE
COAL GASIFICATION PLANTS
CORROSION
HEAT AFFECTED ZONE
MATERIALS
MEASURING METHODS
MECHANICAL PROPERTIES
METALLURGICAL EFFECTS
RESIDUAL STRESSES
YIELD STRENGTH
COAL LIQUEFACTION PLANTS
FLUIDIZED-BED COMBUSTORS
FOSSIL-FUEL POWER PLANTS
HEAT ENGINES
HEAT EXCHANGERS
HEAT RECOVERY EQUIPMENT
HYDROGEN
INTERMETALLIC COMPOUNDS
MHD GENERATORS
MOLTEN CARBONATE FUEL CELLS
PRESSURE VESSELS
DESIGN
ELECTROSLAG WELDING
FRACTURE PROPERTIES
REFRACTORIES
STEELS
WELDED JOINTS
ABRASION
ALUMINIUM
BUILDING MATERIALS
CARBON MONOXIDE
CAST IRON
CERAMICS
CHROMIUM-MOLYBDENUM STEELS
COAL GASIFICATION
COAL LIQUEFACTION
CORROSIVE EFFECTS
CREEP
ELONGATION
EROSION
FATIGUE
FUEL CELLS
INCOLOY 800
IRON
METALLOGRAPHY
NICKEL
NONDESTRUCTIVE TESTING
PHASE DIAGRAMS
SILICON CARBIDES
STAINLESS STEEL-304
STELLITE
SULFIDATION
TECHNOLOGY ASSESSMENT
TECHNOLOGY TRANSFER
TEMPERATURE DEPENDENCE
TEST FACILITIES
WEAR
WELDING
ALLOYS
CARBIDES
CARBON COMPOUNDS
CARBON OXIDES
CHALCOGENIDES
CHEMICAL REACTIONS
CHROMIUM ALLOYS
CHROMIUM STEELS
CHROMIUM-NICKEL STEELS
COBALT ALLOYS
COBALT BASE ALLOYS
COMBUSTORS
CONTAINERS
CORROSION RESISTANT ALLOYS
DIAGRAMS
DIRECT ENERGY CONVERTERS
ELECTROCHEMICAL CELLS
ELEMENTS
ENGINES
EQUIPMENT
FABRICATION
GASIFICATION
HEAT RESISTANT MATERIALS
HEAT RESISTING ALLOYS
HIGH-TEMPERATURE FUEL CELLS
INCOLOY ALLOYS
INDUSTRIAL PLANTS
IRON ALLOYS
IRON BASE ALLOYS
IRON CARBIDES
IRON COMPOUNDS
JOINING
JOINTS
LIQUEFACTION
MATERIALS TESTING
METALS
NICKEL ALLOYS
NONMETALS
OXIDES
OXYGEN COMPOUNDS
POWER PLANTS
SILICON COMPOUNDS
STAINLESS STEELS
STRESSES
TESTING
THERMAL POWER PLANTS
THERMOCHEMICAL PROCESSES
TRANSITION ELEMENT COMPOUNDS
TRANSITION ELEMENTS
TUNGSTEN ALLOYS
ZONES
010400* - Coal
Lignite
& Peat- Processing
360000 - Materials