The variation in thermal conductivity of 316L stainless steel samples produced with selective laser melting with a varying process parameters is investigated in the bulk and in the microscale. A critical scan rate was observed, while holding all other process parameters constant, above which the porosity started to rapidly increase. For the lowest-porosity sample, a local thermal conductivity map was produced using frequency-domain thermoreflectance. The local stainless steel thermal conductivity varied between 10.4 and 19.8 W/m-K. The average thermal conductivity of the thermal conductivity map agrees within measurement uncertainty with flash diffusivity measurements. The reduction in thermal conductivity with increasing scan rate i...
The austenitic stainless steel 316L was additively manufactured using Selective Laser Melting (SLM)....
In this study, thermo-mechanical simulation was conducted to predict thermal and stress behavior in ...
Selective Laser Melting (SLM) demonstrates the 21st century’s manufacturing infrastructure in which ...
This study verifies a novel approach to determine the thermal conductivity developed by the first tw...
Previous studies have revealed that laser power and energy density are significant factors affecting...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
A low-cost parametric finite element thermal model is proposed to study the impact of the initial po...
A low-cost parametric finite element thermal model is proposed to study the impact of the initial po...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The present study employs fast scanning speeds to fabricate high-density stainless steel 316L (SS316...
Master's thesis in Mechanical engineeringAdditive manufacturing by Selective Laser Melting were used...
The austenitic stainless steel 316L was additively manufactured using Selective Laser Melting (SLM)....
In this study, thermo-mechanical simulation was conducted to predict thermal and stress behavior in ...
Selective Laser Melting (SLM) demonstrates the 21st century’s manufacturing infrastructure in which ...
This study verifies a novel approach to determine the thermal conductivity developed by the first tw...
Previous studies have revealed that laser power and energy density are significant factors affecting...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
This study investigates the porosity and microhardness of 316L stainless steel samples fabricated by...
A low-cost parametric finite element thermal model is proposed to study the impact of the initial po...
A low-cost parametric finite element thermal model is proposed to study the impact of the initial po...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The microstructure homogeneity and variability in mechanical properties of 316L stainless steel comp...
The present study employs fast scanning speeds to fabricate high-density stainless steel 316L (SS316...
Master's thesis in Mechanical engineeringAdditive manufacturing by Selective Laser Melting were used...
The austenitic stainless steel 316L was additively manufactured using Selective Laser Melting (SLM)....
In this study, thermo-mechanical simulation was conducted to predict thermal and stress behavior in ...
Selective Laser Melting (SLM) demonstrates the 21st century’s manufacturing infrastructure in which ...