Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L stainless steel have been studied. Using integrated experimental efforts and calculations, the evolution of microstructure entities such as dislocation density, organization, cellular structure and recrystallization behaviors were characterized as a function of heat treatments. Furthermore, the evolution of dislocation-type, namely the geometrically necessary dislocations (GNDs) and statistically stored dislocations (SSDs), and their impacts on the hardness variation during annealing treatments for L-PBF alloy were experimentally investigated. The GND and SSD densities were statistically measured utilizing the Hough-based EBSD method and Taylo...
The overarching goal of this research is to investigate the processing, structure, properties, and p...
This article overviews the scientific results of the microstructural features observed in 316 L stai...
This article overviews the scientific results of the microstructural features observed in 316 L stai...
Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L s...
Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L s...
The relationship between the microstructural features (such as the solidification cells and initial ...
Of the many benefits of the additive manufacturing process, laser powder bed fusion (L-PBF) has spec...
The microstructure-properties relations and strengthening mechanisms of additively manufactured 316L...
The fatigue properties and microstructural evolution of 316 L stainless steel (316LSS) manufactured ...
The understanding of relationships between processing, microstructure and mechanical properties in l...
A modelling approach is presented to identify the deformation mechanisms of 316L stainless steel pro...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
The overarching goal of this research is to investigate the processing, structure, properties, and p...
This article overviews the scientific results of the microstructural features observed in 316 L stai...
This article overviews the scientific results of the microstructural features observed in 316 L stai...
Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L s...
Relationships between microstructures and hardening nature of laser powder bed fused (L-PBF) 316 L s...
The relationship between the microstructural features (such as the solidification cells and initial ...
Of the many benefits of the additive manufacturing process, laser powder bed fusion (L-PBF) has spec...
The microstructure-properties relations and strengthening mechanisms of additively manufactured 316L...
The fatigue properties and microstructural evolution of 316 L stainless steel (316LSS) manufactured ...
The understanding of relationships between processing, microstructure and mechanical properties in l...
A modelling approach is presented to identify the deformation mechanisms of 316L stainless steel pro...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
The overarching goal of this research is to investigate the processing, structure, properties, and p...
This article overviews the scientific results of the microstructural features observed in 316 L stai...
This article overviews the scientific results of the microstructural features observed in 316 L stai...