
doi: 10.2172/6078309 , 10.2172/6463464
A technical demonstration was successfully completed of simulated reactor vessel sectioning using the combined techniques of air arc gouging and flame cutting. A 4-ft x 3-ft x 9-in. thick sample was fabricated of A36 carbon steel to simulate a reactor vessel wall. A 1/4-in. layer of stainless steel (SS) was tungsten inert gas (TIG)-welded to the carbon steel. Several techniques were considered to section the simulated reactor vessel; air arc gouging was selected to penetrate the stainless steel, and flame cutting was selected to sever the carbon steel. Three sectioning operations were demonstrated. For all three, the operating parameters were the same; but the position of the sample was varied. For the first cut, the sample was placed in a horizontal position, and it was successfully severed from the SS side. For the second cut, the sample was turned over and cut from the carbon steel side. Cutting from the carbon steel side has the advantages of cost reduction
22 General Studies Of Nuclear Reactors, Reactor Decommissioning, Carbon Steels, Mockup, Demonstration Programs, 21 Specific Nuclear Reactors And Associated Plants, Stainless Steels, Machining, Iron Base Alloys, Containers, Iron Alloys, Corrosion Resistant Alloys, Reactor Vessels, Cutting, Alloys, Steels 220900* -- Nuclear Reactor Technology-- Reactor Safety, Steels, Chromium Alloys, Structural Models 210801* -- Nuclear Power Plants-- Economics-- Construction & Operation-- (-1987), Simulation, Decommissioning
22 General Studies Of Nuclear Reactors, Reactor Decommissioning, Carbon Steels, Mockup, Demonstration Programs, 21 Specific Nuclear Reactors And Associated Plants, Stainless Steels, Machining, Iron Base Alloys, Containers, Iron Alloys, Corrosion Resistant Alloys, Reactor Vessels, Cutting, Alloys, Steels 220900* -- Nuclear Reactor Technology-- Reactor Safety, Steels, Chromium Alloys, Structural Models 210801* -- Nuclear Power Plants-- Economics-- Construction & Operation-- (-1987), Simulation, Decommissioning
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