Title
Fabrication and analysis of three-dimensional object using layerwise manufacturing technology
Abstract
Layerwise manufacturing technology exhibits a high potential in the field of rapid manufacturing, due to its capability to directly build up three-dimensional metallic components. In this research, we established a layerwise manufacturing platform having YLR 500 AC fiber laser and an enclosed chamber vacuumed and infused trace argon gas to minimize oxidation powdered material. From relationship of laser power and scanning speed can observe the variation of weld width. It assists to find the suitable laser parameters for laser additive manufacturing at blue region. The morphology of titanium specimen was analyzed by SEM image examined, and some porous structure formed due to the surface tension and oxide effect. The result of mechanical strength of 366.16 MPa was proved to be smaller than common bulk material. The X-ray diffraction patterns of titanium specimen has higher crystallization from R(110), R(101) and R(200). We have successfully fabrication a three-dimensional object and analysis its material properties.
Year
DOI
Venue
2013
10.1109/NEMS.2013.6559840
NEMS
Keywords
Field
DocType
x-ray diffraction,crystallisation,fibre lasers,layered manufacturing,manufacturing systems,oxidation,porosity,scanning electron microscopy,surface tension,titanium,welds,sem image,ylr 500 ac fiber laser,fabrication,higher crystallization,laser additive manufacturing,laser power,layerwise manufacturing platform,layerwise manufacturing technology,porous structure,rapid manufacturing,three dimensional metallic components,three dimensional object analysis,titanium specimen morphology,weld,layerwise,mechanical strength,rutile phase,additives,x ray diffraction
Titanium,Composite material,Porosity,Laser,Laser power scaling,Material properties,Materials science,Welding,Fabrication,Fiber laser
Conference
ISBN
Citations 
PageRank 
978-1-4673-6351-8
0
0.34
References 
Authors
0
4
Name
Order
Citations
PageRank
Lin, S.L.100.34
Lin, C.C.200.34
Lin, D.Y.300.34
Chuang, C.S.400.34