Thermal fatigue is the main failure mode for chromium hot-work steels. In this study, pre-alloyed chromium hot-work steel powders with three different Cr, Mo, and V addition levels (low content (LH), medium content (MH), and high content (HH)) were used for selective laser melting (SLM). The microstructure and thermal fatigue properties of these SLM-processed materials were investigated. After thermal fatigue tests, LH possessed the lowest hardness (approximately 573 HV5) and longest crack length, MH possessed the highest hardness (approximately 688 HV5) and HH (with the hardness of approximately 675 HV5) possessed the shortest crack length. It can be concluded that the increase of V content in MH is the main reason for the refined grains w...
The influence of temperature on the fatigue crack growth parameter, was analyzed by testing chromium...
AbstractThe high strength of 5% chromium steels at elevated temperature is directly related to their...
M2 High Speed Steel (HSS) parts are produced with an Additive Manufacturing (AM) technique, Selectiv...
In this paper Cobalt-Chromium-Molybdenum (Co-Cr-Mo) specimens produced by Selective Laser Melting (S...
Although post-heat treatment can improve the fatigue life of selective laser melting (SLM)-fabricate...
The paper presents results of the effect of laser surface remelting and alloying by carbides powders...
Chromium martensitic hot-work tool steel (AISI H13) is commonly used as die material in hot forming ...
Improvement of crankshaft fatigue properties can be approached by altering its mechanical properties...
Laser hardening brings a great increase in part life and it is an industry-proven process, typically...
The microstructure of three types of Cr steel weld metals, containing 5%, 9% and 12% chromium, was s...
AbstractThis research project presents the investigation results of laser remelting and alloying esp...
The present study investigates the effect of two heat treatments on the microstructure, the tensile ...
AbstractThe paper contains results of a study aimed at an experimental evaluation of fatigue resista...
The X38CrMoV5-1 hot-work tool steel produced by laser powder bed fusion was investigated to assess t...
The influence of melting atmosphere and impurity elements on the hot workability of Fe-30%Cr alloys ...
The influence of temperature on the fatigue crack growth parameter, was analyzed by testing chromium...
AbstractThe high strength of 5% chromium steels at elevated temperature is directly related to their...
M2 High Speed Steel (HSS) parts are produced with an Additive Manufacturing (AM) technique, Selectiv...
In this paper Cobalt-Chromium-Molybdenum (Co-Cr-Mo) specimens produced by Selective Laser Melting (S...
Although post-heat treatment can improve the fatigue life of selective laser melting (SLM)-fabricate...
The paper presents results of the effect of laser surface remelting and alloying by carbides powders...
Chromium martensitic hot-work tool steel (AISI H13) is commonly used as die material in hot forming ...
Improvement of crankshaft fatigue properties can be approached by altering its mechanical properties...
Laser hardening brings a great increase in part life and it is an industry-proven process, typically...
The microstructure of three types of Cr steel weld metals, containing 5%, 9% and 12% chromium, was s...
AbstractThis research project presents the investigation results of laser remelting and alloying esp...
The present study investigates the effect of two heat treatments on the microstructure, the tensile ...
AbstractThe paper contains results of a study aimed at an experimental evaluation of fatigue resista...
The X38CrMoV5-1 hot-work tool steel produced by laser powder bed fusion was investigated to assess t...
The influence of melting atmosphere and impurity elements on the hot workability of Fe-30%Cr alloys ...
The influence of temperature on the fatigue crack growth parameter, was analyzed by testing chromium...
AbstractThe high strength of 5% chromium steels at elevated temperature is directly related to their...
M2 High Speed Steel (HSS) parts are produced with an Additive Manufacturing (AM) technique, Selectiv...