In this paper, the influences of build orientation and post-fabrication processes, including stress-relief, machining, and shot-peening, on the fatigue behavior of stainless steel (SS) 316L manufactured using selective laser melting (SLM) are studied. It was found that horizontally-built (XY) and machined (M) test pieces, which had not been previously studied in the literature, in both stress-relieved (SR) or non-stress-relieved (NSR) conditions show superior fatigue behavior compared to vertically-built (ZX) and conventionally-manufactured SS 316L. The XY, M, and SR (XY-M-SR) test pieces displayed fatigue behavior similar to the XY-M-NSR test pieces, implying that SR does not have a considerable effect on the fatigue behavior of XY and M t...
Additive Layer Manufacturing (ALM) processes like Selective Laser Melting (SLM) enable the conceptio...
Abstract Selective laser melting (SLM) is an effective way to produce optimized metallic parts in r...
The powder bed additive manufacturing (AM) process is known to produce defects that can trigger prem...
In this paper, the influences of build orientation and post-fabrication processes, including stress-...
n this study, the effects of build orientation on the mechanical properties and fatigue life of sta...
This study is focused on stainless steel type 316L produced by selective laser melting (SLM). This s...
Axial fully-reversed strain-controlled (R = -1) fatigue experiments were performed to obtain data de...
Axial fully-reversed strain-controlled (R=−1) fatigue experiments were performed to obtain data demo...
In this study, the fatigue strength of 316 L stainless steel manufactured by selective laser melting...
This paper investigates the influence of post treatments on the fatigue properties of 316L stainless...
AbstractAxial fully-reversed strain-controlled (R=−1) fatigue experiments were performed to obtain d...
To exploit the whole potential of Additive Manufacturing, it is essential to investigate the complex...
The tensile, fracture, and fatigue crack growth properties of 316L stainless steel (SS) produced usi...
Stainless steel is an age old and popular alloy known for its high corrosion resistance. This paper ...
In this investigation, fully-reversed strain-controlled fatigue tests were conducted on Selective L...
Additive Layer Manufacturing (ALM) processes like Selective Laser Melting (SLM) enable the conceptio...
Abstract Selective laser melting (SLM) is an effective way to produce optimized metallic parts in r...
The powder bed additive manufacturing (AM) process is known to produce defects that can trigger prem...
In this paper, the influences of build orientation and post-fabrication processes, including stress-...
n this study, the effects of build orientation on the mechanical properties and fatigue life of sta...
This study is focused on stainless steel type 316L produced by selective laser melting (SLM). This s...
Axial fully-reversed strain-controlled (R = -1) fatigue experiments were performed to obtain data de...
Axial fully-reversed strain-controlled (R=−1) fatigue experiments were performed to obtain data demo...
In this study, the fatigue strength of 316 L stainless steel manufactured by selective laser melting...
This paper investigates the influence of post treatments on the fatigue properties of 316L stainless...
AbstractAxial fully-reversed strain-controlled (R=−1) fatigue experiments were performed to obtain d...
To exploit the whole potential of Additive Manufacturing, it is essential to investigate the complex...
The tensile, fracture, and fatigue crack growth properties of 316L stainless steel (SS) produced usi...
Stainless steel is an age old and popular alloy known for its high corrosion resistance. This paper ...
In this investigation, fully-reversed strain-controlled fatigue tests were conducted on Selective L...
Additive Layer Manufacturing (ALM) processes like Selective Laser Melting (SLM) enable the conceptio...
Abstract Selective laser melting (SLM) is an effective way to produce optimized metallic parts in r...
The powder bed additive manufacturing (AM) process is known to produce defects that can trigger prem...