DocumentCode :
2064138
Title :
Laser assisted rapid manufacturing technique for the manufacturing of functionally graded materials
Author :
Joshi, Amit ; Patnaik, Amar ; Gangil, Brijesh ; Kumar, Sandeep
Author_Institution :
Dept. of Mech. Eng., Govindh Ballabh Pant Eng. Coll., Pauri Garhwal, India
fYear :
2012
fDate :
16-18 March 2012
Firstpage :
1
Lastpage :
3
Abstract :
Functionally Graded Material (FGM) is a material with engineered gradients of composition, structure and/or specific properties aiming to become superior over homogeneous material composed of same or similar constituents. In the recent years, research has been undertaken on manufacturing of functionally graded materials (FGM) using numerous techniques like powder metallurgy, melt processes, centrifugal casting, electrophoretic deposition, spark plasma sintering, physical vapor deposition, chemical vapor deposition etc. Most of these techniques may be well suited for a specific application yet they suffer from one or more limitations like lower graded thickness, low deposition rate, complexity in process requirement, or high processing cost. To circumvent these limitations innovative technique called laser assisted manufacturing technique is applied for manufacturing functionally graded materials. Three methods that employ Laser for synthesis of FGM is elaborated in this work (i) 3-D Laser Cladding, (ii) LENS and (iii) Selective laser sintering. Laser Cladding is used for obtaining coatings of FGM by direct powder injection into the laser beam. 3-D Laser-engineered net shaping (LENS) is used to fabricate FGM directly from CAD solid models and thus further reduce the lead times for metal art fabrication. Selective laser sintering (SLS) is a layered manufacturing based freeform fabrication approach for constructing three dimensional structures in functionally graded composites. All these methods are used to manufacture FGMs in a short interval of time and the process can be controlled digitally, thus all these methods come in the heading of rapid manufacturing (RM). These methods have a huge industrial potential and can be commercialized for manufacturing bulk FGM.
Keywords :
CAD; claddings; coatings; digital control; functionally graded materials; injection moulding; laser sintering; process control; rapid prototyping (industrial); solid modelling; 3D laser cladding; 3D laser-engineered net shaping; CAD solid models; FGM synthesis; LENS; bulk FGM manufacturing; digital control; direct powder injection; engineered gradients; functionally graded materials manufacturing; homogeneous material; innovative technique; laser assisted rapid manufacturing technique; laser beam; layered manufacturing-based freeform fabrication approach; manufacturing functionally graded materials; metal art fabrication; rapid manufacturing; selective laser sintering; three dimensional structures; Laser applications; Laser beams; Laser sintering; Materials; Powders; Power lasers; Solid lasers; 3-D laser cladding; FGM; LENS; manufacturing techniques; selective laser sintering;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering and Systems (SCES), 2012 Students Conference on
Conference_Location :
Allahabad, Uttar Pradesh
Print_ISBN :
978-1-4673-0456-6
Type :
conf
DOI :
10.1109/SCES.2012.6199074
Filename :
6199074
Link To Document :
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