Fe–15 wt-%Cr–X wt-%C hardfacing surface layer: wear resistance and its enhanced mechanism with C additive
Author:
Publisher
Informa UK Limited
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
http://www.tandfonline.com/doi/pdf/10.1179/1743284713Y.0000000241
Reference21 articles.
1. Effect of the surface segregation of chromium on oxidation of high-purity FeCr alloys at room temperature
2. Microstructure change caused by (Cr,Fe)23C6 carbides in high chromium Fe–Cr–C hardfacing alloys
3. Effect of Ti additive on (Cr, Fe)7C3 carbide in arc surfacing layer and its refined mechanism
4. Strain hardening of austenite in Fe–Cr–C–V alloys under repeated impact
5. Effects of silicon content on the microstructure and corrosion behavior of Fe–Cr–C hardfacing alloys
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1. Corrosion resistance of niobium-added slag-free self-shielded flux-cored welding overlay in neutral solution;Materials Science and Technology;2022-05-10
2. Effects of B contents on the microstructure and wear resistance of hypereutectic Fe-Cr-C hardfacing alloy coating;Materials Research Express;2019-09-20
3. Refining effect of nitrogen on M7C3 carbides in hypereutectic Fe–25Cr–4C–0.5Ti–0.5Nb hardface coatings;Materials Science and Technology;2019-05-08
4. The effect of nitrogen alloying to the microstructure and mechanical properties of martensitic stainless steel hardfacing;Surface and Coatings Technology;2016-05
5. Microstructure and wear mechanism change by Nb added in slag free self-shielded flux cored wire;Science and Technology of Welding and Joining;2015-06-26
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