Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated for titanium-component manufacturing and repair based on its cost-reduction potential and flexibility. Laser additive manufacturing also has the potential to improve mechanical properties due to the high cooling rates involved. However, the effect of the layered manufacturing process and any lack-of-fusion porosity and texture on the magnitude and anisotropy of mechanical properties is of concern. Hence, a preliminary effort was undertaken to assess these effects for bulk Ti-6Al-4V deposits manufactured using the LENS™ process. Tension, fatigue, and crack-growth tests were performed on both stress-relieved and HIP’ed deposits in three pr...
Abstract: Laser metal deposition (LMD) presents a suitable substitute for conventional machining of ...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
The room temperature tensile properties of Ti-6Al-4V alloy prepared under two different processi...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
Parts or products from high performance metal are very expensive, partly due to the processing compl...
AbstractFatigue behaviour of Ti-6Al-4V specimens additively-manufactured via Laser Engineered Net Sh...
Ti6Al4V alloy is an ideal lightweight structural metal for a huge variety of engineering application...
Abstract Additive manufacturing has recently expanded its potential with the developm...
Abstract: Laser additive technology (LAT) uses a laser beam which locally melts the target material ...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
Abstract: Laser additive technology (LAT) uses a laser beam which locally melts the target material ...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
Additive manufacturing is now capable of delivering high-quality, complex-shaped metallic components...
AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) T...
Abstract: Modern industrial applications require materials with special surface properties such as h...
Abstract: Laser metal deposition (LMD) presents a suitable substitute for conventional machining of ...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
The room temperature tensile properties of Ti-6Al-4V alloy prepared under two different processi...
Laser additive manufacturing is a solid-freeform-fabrication process which is being investigated fo...
Parts or products from high performance metal are very expensive, partly due to the processing compl...
AbstractFatigue behaviour of Ti-6Al-4V specimens additively-manufactured via Laser Engineered Net Sh...
Ti6Al4V alloy is an ideal lightweight structural metal for a huge variety of engineering application...
Abstract Additive manufacturing has recently expanded its potential with the developm...
Abstract: Laser additive technology (LAT) uses a laser beam which locally melts the target material ...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
Abstract: Laser additive technology (LAT) uses a laser beam which locally melts the target material ...
Parts or products from high performance metal are very expensive, partly due to the processing comp...
Additive manufacturing is now capable of delivering high-quality, complex-shaped metallic components...
AbstractThis paper presents our recent progress on the applications of laser metal deposited (LMD) T...
Abstract: Modern industrial applications require materials with special surface properties such as h...
Abstract: Laser metal deposition (LMD) presents a suitable substitute for conventional machining of ...
Metal additive manufacturing is becoming a popular manufacturing process in industries requiring geo...
The room temperature tensile properties of Ti-6Al-4V alloy prepared under two different processi...