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Showing 1 to 5 of 5 for “"Inconel 617"”.
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High temperature creep behavior of Inconel 617 and Haynes 230
… a design life of 60 years. Currently, Ni-based Inconel 617 (Alloy 617) and Haynes 230 (Alloy 230) are considered to be the leading metallic candidate materials for applications in the HTGR due to their favorable mechanical properties at high temperatures. In the present study, focus is placed on …
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Surface degradation and creep of Inconel 617 and Haynes 230 at high temperatures
… the design and long-term operation of the HTGR. Inconel 617 (alloy 617) and Haynes 230 (alloy 230) are considered as primary candidate materials for serving in the HTGR, due to their exceptional combination of high temperature strength and oxidation resistance. In this study, surface degradation …
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3D characterization of oxidation and crack propagation in Inconel 617 fatigue and creep-fatigue tests
Includes bibliographical references (pages 64-69).
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Nanoengineered surfaces for improvements in energy systems : application to concentrated solar and geothermal power plants
… tested for the solar receiver application were Inconel 617, Inconel 617 with a 150 nm layer of platinum, Inconel 617 with a 150 nm layer of platinum and a 550 nm layer of nickel oxide, oxidized nickel, and silicon carbide. The experimental results indicated that the platinum was an ineffective …
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High temperature creep-fatigue behavior of alloy 617 and alloy 230
… Currently, Ni-based superalloy alloy 617 (Inconel 617) and alloy 230 (Haynes 230) are considered as the leading metallic candidate materials for applications in the VHTR because of their favorable mechanical properties at elevated temperatures. The major damage mechanism for materials …