Additive manufacturing (AM) of metals often results in parts with unfavorable mechanical properties. Laser peening (LP) is a high strain rate mechanical surface treatment that hammers a workpiece and induces favorable mechanical properties. Peening strain hardens a surface and imparts compressive residual stresses improving the mechanical properties of a material. This work investigates the role of LP on layer-by-layer processing of 3D printed metals using finite element analysis. The objective is to understand temporal and spatial residual stress development after thermal and mechanical cancellation caused by cyclically coupling printing and peening. Results indicate layer peening frequency is a critical process parameter affecting residua...
Published ArticleDirect Metal Laser Sintering (DMLS) fabricates parts using a track-by-track, layer-...
Direct Metal Laser Sintering (DMLS) has great potential in additive manufacturing because it allows...
Additive Manufacturing (AM) is an increasingly attractive advanced manufacturing technology that man...
The term “hybrid” has been widely applied to many areas of manufacturing. Naturally, that term has f...
The field of additive manufacturing (AM) has rapidly developed and expanded over the past decade. Th...
The overarching objective of this research was to investigate the dynamic mechanical behavior from a...
Hybrid manufacturing has traditionally targeted efficiency and productivity as improvement criteria...
Cold working individual layers during additive manufacturing (AM) by mechanical surface treatments, ...
Additive Manufacturing (AM) in whole and especially Selective Laser Melting (SLM) are already making...
This paper describes a hybrid additive manufacturing process – 3D Laser Shock Peening (3D LSP), base...
Heat treatments commonly used for post-processing in additive manufacturing (AM) deal with relieving...
Additive Manufacturing (AM) is a valid and economically viable technique to produce fully functional...
Residual stresses are one of the primary causes for the failure of parts or systems in metal additiv...
The Additive Manufacturing (AM) process is the scale-able, flexible and prospective way of fabricati...
Detrimental subsurface tensile residual stresses occur in laser powder bed fusion (LPBF) due to sign...
Published ArticleDirect Metal Laser Sintering (DMLS) fabricates parts using a track-by-track, layer-...
Direct Metal Laser Sintering (DMLS) has great potential in additive manufacturing because it allows...
Additive Manufacturing (AM) is an increasingly attractive advanced manufacturing technology that man...
The term “hybrid” has been widely applied to many areas of manufacturing. Naturally, that term has f...
The field of additive manufacturing (AM) has rapidly developed and expanded over the past decade. Th...
The overarching objective of this research was to investigate the dynamic mechanical behavior from a...
Hybrid manufacturing has traditionally targeted efficiency and productivity as improvement criteria...
Cold working individual layers during additive manufacturing (AM) by mechanical surface treatments, ...
Additive Manufacturing (AM) in whole and especially Selective Laser Melting (SLM) are already making...
This paper describes a hybrid additive manufacturing process – 3D Laser Shock Peening (3D LSP), base...
Heat treatments commonly used for post-processing in additive manufacturing (AM) deal with relieving...
Additive Manufacturing (AM) is a valid and economically viable technique to produce fully functional...
Residual stresses are one of the primary causes for the failure of parts or systems in metal additiv...
The Additive Manufacturing (AM) process is the scale-able, flexible and prospective way of fabricati...
Detrimental subsurface tensile residual stresses occur in laser powder bed fusion (LPBF) due to sign...
Published ArticleDirect Metal Laser Sintering (DMLS) fabricates parts using a track-by-track, layer-...
Direct Metal Laser Sintering (DMLS) has great potential in additive manufacturing because it allows...
Additive Manufacturing (AM) is an increasingly attractive advanced manufacturing technology that man...