Purpose: This paper aims to present a comprehensive review of the laser engineered net shaping (LENS) process in an attempt to provide the reader with a deep understanding of the controllable and fixed build parameters of metallic parts. The authors discuss the effect and interplay between process parameters, including: laser power, scan speed and powder feed rate. Further, the authors show the interplay between process parameters is pivotal in achieving the desired microstructure, macrostructure, geometrical accuracy and mechanical properties. Design/methodology/approach: In this manuscript, the authors review current research examining the process inputs and their influences on the final product when manufacturing with the LENS process. T...
A study of laser energy transfer efficiency, melting efficiency, and deposition efficiency has been ...
Laser engineering net-shaping (LENS), based on directed energy deposition (DED), is one of the popul...
During the past few years, solid freeform fabrication has evolved into direct fabrication of metalli...
Laser Engineered Net Shaping (LENS) is a novel manufacturing process for fabricating metal parts dir...
Solid free form fabrication is one ofthe fastest growing automated manufacturing technologies that ...
Rapid prototyping (RP) has revolutionized the approach to fabricating geometrically complex hardware...
Application of 3D printing technologies for fabricating various metal products are receiving ever-in...
Laser Engineered Net Shaping, LENS®, is a multi-variable process of Additive Manufacturing that empl...
Direct laser metal deposition processing is a promising manufacturing technology which could signifi...
Solid free form fabrication is one of the fastest growing automated manufacturing technologies that ...
The Laser Engineered Net Shaping (LENS{trademark}) process, currently under development, has demonst...
During the past few years, solid freeform fabrication has evolved into direct fabrication of metall...
The Laser Engineered Net Shaping (LENS®) system at Sandia National Laboratories, a laser-based dire...
Solid free form fabrication is a fast growing automated manufacturing technology that has reduced th...
Laser Engineered Net Shaping, also known as LENSTM, is an advanced manufacturing technique used to ...
A study of laser energy transfer efficiency, melting efficiency, and deposition efficiency has been ...
Laser engineering net-shaping (LENS), based on directed energy deposition (DED), is one of the popul...
During the past few years, solid freeform fabrication has evolved into direct fabrication of metalli...
Laser Engineered Net Shaping (LENS) is a novel manufacturing process for fabricating metal parts dir...
Solid free form fabrication is one ofthe fastest growing automated manufacturing technologies that ...
Rapid prototyping (RP) has revolutionized the approach to fabricating geometrically complex hardware...
Application of 3D printing technologies for fabricating various metal products are receiving ever-in...
Laser Engineered Net Shaping, LENS®, is a multi-variable process of Additive Manufacturing that empl...
Direct laser metal deposition processing is a promising manufacturing technology which could signifi...
Solid free form fabrication is one of the fastest growing automated manufacturing technologies that ...
The Laser Engineered Net Shaping (LENS{trademark}) process, currently under development, has demonst...
During the past few years, solid freeform fabrication has evolved into direct fabrication of metall...
The Laser Engineered Net Shaping (LENS®) system at Sandia National Laboratories, a laser-based dire...
Solid free form fabrication is a fast growing automated manufacturing technology that has reduced th...
Laser Engineered Net Shaping, also known as LENSTM, is an advanced manufacturing technique used to ...
A study of laser energy transfer efficiency, melting efficiency, and deposition efficiency has been ...
Laser engineering net-shaping (LENS), based on directed energy deposition (DED), is one of the popul...
During the past few years, solid freeform fabrication has evolved into direct fabrication of metalli...