
doi: 10.2172/5910319 , 10.2172/7185088
The objective of this task is to study the corrosion and arc erosion of MHD materials in a cooperative effort with, and to support, the MHD topping cycle program. Materials tested in the Avco Research Laboratory/Textron facility, or materials which have significant MHD importance, will be analyzed to document their physical deterioration. Conclusions shall be drawn about their wear mechanisms and lifetime in the MHD environment with respect to the following issues; sulfur corrosion, electrochemical corrosion, and arc erosion. The impact of any materials or slag conditions on the level of power output and on the level of leakage current in the MHD channel will also be noted, where appropriate.
Direct Energy Converters, Design, Topping Cycles, Wear, Currents, Information, Materials Testing, Mhd Channels, Electrochemistry, Mhd Generator Cdif, Testing 300103* -- Mhd Generators-- Materials, Service Life, Materials, Components, Data, Progress Report, Chemical Reactions, Mhd Generators, Electric Discharges, Elements, Document Types, Electric Currents, Nonmetals 300103* -- Mhd Generators-- Materials, Corrosion, & Auxiliaries, Electric Arcs, Chemistry, Manufacturing, Numerical Data, Erosion, 30 Direct Energy Conversion, Experimental Data, Sulfur, Coal-Fired Mhd Generators
Direct Energy Converters, Design, Topping Cycles, Wear, Currents, Information, Materials Testing, Mhd Channels, Electrochemistry, Mhd Generator Cdif, Testing 300103* -- Mhd Generators-- Materials, Service Life, Materials, Components, Data, Progress Report, Chemical Reactions, Mhd Generators, Electric Discharges, Elements, Document Types, Electric Currents, Nonmetals 300103* -- Mhd Generators-- Materials, Corrosion, & Auxiliaries, Electric Arcs, Chemistry, Manufacturing, Numerical Data, Erosion, 30 Direct Energy Conversion, Experimental Data, Sulfur, Coal-Fired Mhd Generators
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