This paper presents a characterization study of specimens manufactured from Ti-6Al-4V powder with the use of laser engineered net shaping technology (LENS). Two different orientations of the specimens were considered to analyze the loading direction influence on the material mechanical properties. Moreover, two sets of specimens, as-built (without heat treatment) and after heat treatment, were used. An optical measurement system was also adopted for determining deformation of the specimen, areas of minimum and the maximum principal strain, and an effective plastic strain value at failure. The loading direction dependence on the material properties was observed with a significant influence of the orientation on the stress and strain level. M...
Additive manufacturing (AM) is a technique used to create sophisticated tools. This research employs...
Additive manufacturing of metals is an innovative technology that stimulates much interest. In the p...
Purpose - The aim of the paper is the study of the change in the mechanical properties (and in parti...
International audienceLaser Engineered Net Shaping (LENS®) is a Direct LaserDeposition (DLD) additiv...
This paper presents an evaluation of the tensile properties and microstructural characterization of...
In the present study, pre-alloyed Ti-6Al-4V powder is deposited on CP-Titanium substrate by laser en...
AbstractFatigue behaviour of Ti-6Al-4V specimens additively-manufactured via Laser Engineered Net Sh...
Commercially pure titanium was produced using laser engineered net shaping (LENS) and selective lase...
The core aim of this research project was to improve understanding of the effects of microstructure ...
Laser Engineered Net Shaping (LENSTM) is currently a promising and developing technique. It allows f...
The processing of materials has become a specialist field and the industry will continue to grow due...
AbstractThis paper presents a characterization study of titanium alloy (Ti-6Al-4V) micro-struts manu...
The objective of this project is to examine and analyse the microstructures and mechanical propertie...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
Additive manufacturing (AM) is a technique used to create sophisticated tools. This research employs...
Additive manufacturing of metals is an innovative technology that stimulates much interest. In the p...
Purpose - The aim of the paper is the study of the change in the mechanical properties (and in parti...
International audienceLaser Engineered Net Shaping (LENS®) is a Direct LaserDeposition (DLD) additiv...
This paper presents an evaluation of the tensile properties and microstructural characterization of...
In the present study, pre-alloyed Ti-6Al-4V powder is deposited on CP-Titanium substrate by laser en...
AbstractFatigue behaviour of Ti-6Al-4V specimens additively-manufactured via Laser Engineered Net Sh...
Commercially pure titanium was produced using laser engineered net shaping (LENS) and selective lase...
The core aim of this research project was to improve understanding of the effects of microstructure ...
Laser Engineered Net Shaping (LENSTM) is currently a promising and developing technique. It allows f...
The processing of materials has become a specialist field and the industry will continue to grow due...
AbstractThis paper presents a characterization study of titanium alloy (Ti-6Al-4V) micro-struts manu...
The objective of this project is to examine and analyse the microstructures and mechanical propertie...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
Additive manufacturing has recently expanded its potential with the development of selective laser m...
Additive manufacturing (AM) is a technique used to create sophisticated tools. This research employs...
Additive manufacturing of metals is an innovative technology that stimulates much interest. In the p...
Purpose - The aim of the paper is the study of the change in the mechanical properties (and in parti...