This paper aims at predicting the fatigue crack initiation life in maraging steel manufactured by selective laser melting under in-phase bending-torsion loading. Three relationships between the bending moment and the torsion moment were studied, namely B/T=2, B/T=1, and B/T=2/3. The tested geometries consisted of hollow cylindrical specimens with lateral holes. The crack initiation and the crack paths were detected in-situ using a high-resolution digital camera. The local stress-strain states at the notch region were accounted for using two alternative numerical models developed within linear-elastic frameworks: (1) a parametric structured mesh; and (2) an automatic unstructured mesh. Fatigue crack initiation sites and fatigue crack in...
Selective laser melting has received a great deal of attention in recent years. Nevertheless, resear...
AbstractThe torsional fatigue behaviour of circumferentially notched specimens made of austenitic st...
The most important failure cause in automotive industry is believed to be fatigue. Hence, predicting...
This paper studies the multiaxial fatigue behaviour of maraging steel samples produced by selective ...
This paper deals with the notch fatigue behaviour and crack initiation life estimation in maraging s...
The current work aims at characterizing the fatigue behaviour of an additively manufactured maraging...
This work deals with the effect of build orientation and of allowance formachining on DMLS‐produced ...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
The microstructure and room temperature mechanical properties of a18Ni (300) grade maraging steel (M...
Maraging steels are characterised by an exceptional combination of mechanical properties making them...
Selective laser melting has received a great deal of attention in recent years. Nevertheless, resear...
An investigation of the failure process of maraging steel grade X3NiCoTi18-9-5 produced by the SLM m...
Structural parts in metal materials such as steels, aluminium and titanium alloys can be manufacture...
This paper addresses the fatigue behaviour of AISI 18Ni300 samples manufactured by selective laser m...
Selective laser melting has received a great deal of attention in recent years. Nevertheless, resear...
AbstractThe torsional fatigue behaviour of circumferentially notched specimens made of austenitic st...
The most important failure cause in automotive industry is believed to be fatigue. Hence, predicting...
This paper studies the multiaxial fatigue behaviour of maraging steel samples produced by selective ...
This paper deals with the notch fatigue behaviour and crack initiation life estimation in maraging s...
The current work aims at characterizing the fatigue behaviour of an additively manufactured maraging...
This work deals with the effect of build orientation and of allowance formachining on DMLS‐produced ...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
Maraging steels are precipitation hardening steels used for highly loaded components in aeronautical...
The microstructure and room temperature mechanical properties of a18Ni (300) grade maraging steel (M...
Maraging steels are characterised by an exceptional combination of mechanical properties making them...
Selective laser melting has received a great deal of attention in recent years. Nevertheless, resear...
An investigation of the failure process of maraging steel grade X3NiCoTi18-9-5 produced by the SLM m...
Structural parts in metal materials such as steels, aluminium and titanium alloys can be manufacture...
This paper addresses the fatigue behaviour of AISI 18Ni300 samples manufactured by selective laser m...
Selective laser melting has received a great deal of attention in recent years. Nevertheless, resear...
AbstractThe torsional fatigue behaviour of circumferentially notched specimens made of austenitic st...
The most important failure cause in automotive industry is believed to be fatigue. Hence, predicting...