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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 02 | Feb 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 3072
A Review on 3D Printing Technology
Lakshya Chandwani1, Himanshu Sharma2, Pankaj Kumar 3
1B.tech Scholar, department of Mechanical Engineering, Arya Institute of Engg. & Technology, Rajasthan, India
2B.tech Scholar, department of Mechanical Engineering, Arya Institute of Engg. & Technology, Rajasthan, India
3Assistant Professor, department of Mechanical Engineering, Arya Institute of Engg. & Technology, Rajasthan, India
---------------------------------------------------------------------***---------------------------------------------------------------------
Abstract - This review paper tells us about the 3d printing
technology. And the various types of material which can be
used for 3d printing, and the different type of properties of
material that which material is used in 3d printing objects. 3d
printing is also known as additive manufacturing technology
because it uses layer by layer material build up approach for
making objects. It is a tool less manufacturing method. It is a
high precision & less cost processfor makingobjects. Thereare
different fields where we use 3d printing like medical,
automobile, aerospace and manufacturing etc.
Keyword—3d printing, material used in 3d printing,
additive manufacturing, applications.
1. INTRODUCTION
3D printing is also knownasadditivemanufacturingprocess.
Additive manufacturing refers tothemanufacturingwith the
help of layer by layer method, by joining with each other.
This technology changes the method of manufacturing in
world now any product can be made with simply making its
3D modal or by scanning with the 3D scanner. We uses a
CAD file to make objects on software then this file is
uploaded to the 3D printer and it is made by printer. It is a
tool less manufacturing method, it can be used in where
mass production with high accuracy is required. It also
requires less energy. Rapid prototyping has a wide range of
applications in various fields of human activity: research,
engineering, medical industry, military, construction,
architecture, fashion, education, the computer industry and
many others. [1]
In medical field most common technology used for 3D
printing is powder bed fusion. Powder bed fusion is
commonly used because it works with a variety of materials
used in medical devices, such as titanium and nylon. It is a
synthetic thermoplastic linear polyamide and is the most
common plastic material. It is a well-known 3D printing
filament because of its flexibility, durability, low frictionand
corrosion resistance.
Nylon is a popular material used in manufacturing ofclothes
and accessories.
In aerospace industries the first printer uses extrusion
additive manufacturing, which builds objects layer by layer
out of Acrylonitrile Butadiene Styrene (ABS) plastic. [2]
Fig no:- 1 (nomenclature of 3D printing machine)
Metal additive manufacturing canbeclassifiedintomaintwo
major groups Powder Bed Fusion based technologies (PBF)
and Directed Energy Deposition (DED) based technologies.
[3]
2. POWDER BED FUSION (PBF):-
Under PBF process, DMLS is anadditivemanufacturing(AM)
or rapid prototyping (RP) process that uses metal powder
and a high power laser to sinter together a useablepart.This
method is capable of producing verydensepartsbutinorder
to achieve gas or pressure tightness, post-treatment is often
required. Most trade names such as laser sintering, cussing
etc. are describing the same process but not different
technologies. The process is very similar to an existing AM
process called Selective Laser Sintering (SLS), both SLS and
DMLS are conceptually the same process, but instead of
using polymers or coated metal powders in the case of SLS,
DMLS uses polymers or coated metal powders in the case of
SLS, DMLS uses uncoated. [4]
Directed Energy Deposition (DED):-
In DED based technologies focusedthermal energyisused to
fuse materials (powder or wire form) by melting as they are
being deposited. Laser Engineered Net Shaping (LENS),
Direct Metal Deposition (DMD), Electron Beam Free Form
Fabrication (EBFFF) and arc based AM are some of the
popular DED based technology. [4]
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 02 | Feb 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 3073
3. PRINCIPAL
There are basic principles on which 3D printer works-
1] Stereo lithography – This process includes photopolymer
liquid and ultraviolet light, when UV light strikes with the
photo polymer then it solidifies and the modal is made.
Stereo lithography is a form of 3-D printing technology used
for creating models, prototypes, patterns in a layer by layer
fashion using photo polymerization, a processbywhichlight
causes chains of molecules to link together, forming
polymers. Those polymers then make up thebodyofa three-
dimensional solid. Research in the area had been conducted
during the 1970s, but the term was coined by Charles
(Chuck) W. Hull in 1986 when he patented the process. He
then set up 3D Systems Inc. to commercialize his patent. [5]
2] Fused Deposition Modelling – Itconsistofa filamentroller
from which filament is passed between to the two rollers,
then it goes to the nozzle in semi liquid form which makes
object. In this technique, the model is producedbyextruding
small beads of material which harden to form layers. A
thermoplastic filament or wire that is wound into a coil is
unwinding to supply material to an extrusion nozzle head.
The nozzle head heats the material up to the certain
temperature and turns the flow on and off. Typically the
stepper motors are employed to move the extrusion head in
the z-direction and adjust the flow according to the
requirements. The head canbemovedinbothhorizontal and
vertical directions, and control of the mechanism is done by
a computer-aided manufacturing (CAM) software package
running on a microcontroller. [6]
3] Selective Laser Melting - In this process the powder
material used in the printer is melted instead of combining
them. [7]
4] Electronic Beam Melting - 3D printers use the electron
beam instead of UV rays. [7]
5] Laminated Object Manufacturing - In this process the
plastic, paper, or metal are glued togetherandafterthatthey
are cut with laser to give them the desired shape. In it,layers
of adhesive-coated Paper, plastic, or metal laminates are
successively joined together and cut to appropriate shape
with a laser cutter. Objects printed with this technique may
be additionally modified by machining after the printing
process. The typical layer resolution for this process is
defined by material feedstock and usually ranges in
thickness from one to a many sheets of paper of a copy. [8]
4. CLASSIFICATION
3D printer’s uses different techniques for making objects so
that they are available on different price ranges depending
upon the use of 3D printer at home use or office use.
They can also classified on the basis of material used in 3D
printers to make object, for example FDM Thermoplastics,
Photopolymer, WDW materials and chocolate is alsousedas
a material for 3D printing. [9]
They are classified on the basis of their application, now a
days 3D printers are used in medical field for making
different body organs and parts. They are also used in
manufacturing process to make objects for real time
conditions. It also used in aerospace applications.
3D printers can also be classified on the basisoftheirsizefor
example there are some of 3D printers which used for
making automobile parts which are small in size, on the
other hand some are used for making big sculpture of any
human or things. [10]
5. APPLICATION
3D printing is used for manufacturinghearingaids,andsome
of the automobile parts which requires the greateraccuracy.
In automobile the buckets of crane.
Now a days aircraft components are made with 3D printers
because they are strong enough and light in weight. [11]
They are also used for making artificial eyes, jaw, faces and
artificial ears. In AI field there are many use of 3D printing
technology.
They are also used in making handgun with 3Dprinters.And
different components of a gun are made with 3D printer.
Nike produces a part of sports shoes with the help of 3D
printers. [12]
For making new products in medical and dental industries,
the technologies are also utilized to make Patterns for the
downstream metal casting of dental crowns and in the
manufacture of tools over which plastic is being vacuum
formed to make dental aligners.
For the jewellery sector, 3D printing has proved to be
particularly disruptive. There is a great deal of interest.
3D printing is used in fashion.3D printed accessories
including shoes, headpieces, hats, and bags have all made
their way on to global catwalks.
It uses in small level industry because of its high accuracy
and low cost. [13]
6. ADVANTAGES
3D printing allows ideas to developfaster.Beingabletoprint
a concept on the same day it was designed.
It also provides freedom of design, complexity for free,
potential elimination of tooling. [14]
A user can make any complex shape on 3D printer by just
making on CAD software or by scanning with 3D scanner.
[15]
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 07 Issue: 02 | Feb 2020 www.irjet.net p-ISSN: 2395-0072
© 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 3074
7. DISADVANTAGES
3D printing technology is currently limited by size
constraints. Very large objects are still not feasible when
built using 3D printers. [14]
At present, 3D printers can work with approximately 100
different raw materials. Research is required to devise
methods to enable 3D printed products to be more durable.
[15]
CONCLUSION
Introduction part is about the 3D printing technique that
what process is used for making it. It also tells us about the
additive manufacturingprocess,andrapidprototyping.Then
it tells us about the different principle methods whichcanbe
used for 3D printer which includes stereolithography,Fused
deposition modelling,selectivelasermeltingandmanyother
process. In next paragraph we classified the 3D printers on
different criteria. Then different application are discuss
which includes medical field, automobile and aerospace
industries. Then the advantages and disadvantages of 3D
printers are discussed.
Advances in 3D printing technology can significantly change
and improve the way we manufactureproductsandproduce
goods worldwide. An object is scanned or designed with
Computer Aided Design software, then sliced up into thin
layers, which can then be printed out to form a solid three
dimensional product. As now we all know that 3D printing
has application in all the stages of human need.
3D printing includes approximately 100 of materials now a
days and the research is going on for increasing the range of
material use in this technique.
REFERENCES
[1]Morris, G. 2014, Additive Manufacturing at GE –
www.gecapital.com/webinar-assets/pdf/3dprinting-capital.
[2] Surel, A. 2008, Direct Metal Laser-Sintering(DMLS),Avec
l’EOSINT M 270, Eighteenth International Conference &
Exhibit – Mouldings 2008, Feb 18-20, 2008, San Francisco,
California, USA
[3]Bhavar et al., 2014, A Review on Powder Bed Fusion
Technology of Metal Additive Manufacturing, 4th
International conference and exhibition on Additive
Manufacturing Technologies-AM-2014, September 1&2 ,
2014, Bangalore, India.
[4]Gratton, A.2012,ComparisonofMechanical,Metallurgical
Properties of 17-4PH Stainless Steel between Direct Metal
Laser Sintering (DMLS) and Traditional Manufacturing
Methods, Proceedings of The National Conference On
Undergraduate Research (NCUR) 2012, Weber State
University, Ogden Utah March 29 – 31, 2012
[5] Dongkeon Lee, Takashi Miyoshi, Yasuhiro Takaya and
Taeho Ha, “3D Micro fabrication of Photosensitive Resin
Reinforced with Ceramic Nanoparticles Using LCD
Microstreolithography”, Journal of Laser Micro/Nano
engineering Vol.1, No.2, 2006.
[6] Pshtiwan Shakor, Jay Sanjayan, Ali Nazari, Shami Nejadi,
“Modified 3D printed powder to cement-based material and
mechanical properties of cement scaffold used in 3D
printing”, Science Direct.
[7] Council, A. and Petch, M., 3D Printing: Rise of the Third
Industrial Revolution, Gyges, Tumwater, 3D, 2014, p. 116.
[8] Frank van der Klift, Yoichiro Koga, Akira Todoroki, “3D
Printing of Continuous Carbon Fiber Reinforced Thermo-
Plastic (CFRTP) Tensile Test Specimens”, Open Journal of
Composite Materials, 2016, 6, 18-27.
[9] Jacobs, P.F., Stereo Lithography and other RP&M
Technologies: From Rapid Prototyping to Rapid Tooling,
Society of Manufacturing Engineers (SME), Dearborn, 1996,
p. 450
[10] Huang, S.H. , Liu, P. , Makassar, A. and , and Hou, L. ,
Additive manufacturing and its societal impact: a literature
review, International Journal of Advanced Manufacturing
Technology , Vol. 67 Nos 5/8, 2013, pp. 1191-1203.
[11] Birtchnell, T. and Urry, J., 3D, SF andtheFuture,Futures,
Vol. 50, 2013, pp. 25-34.
[12] Young, D., Sampath, S., Chikov, B. and Chrisey, D.B.,The
future of direct writing in electronics, CircuiTree, Vol.
2,2005.
[13] Masood, S.H.,Advances in Rapid Manufacturing and
Tooling, Comprehensive Materials Processing, Elsevier
Science Direct, Glasgow, pp. 69-91, 2005.
[14] Berger 2013, A game changer for the manufacturing
industry? Additive manufacturing – RolandBerger,Strategic
Consultants, Munich, November 2013
[15] Bhavar et al., 2014, A Review on Powder Bed Fusion
Technology of Metal Additive Manufacturing, 4th
International conference and exhibition on Additive
Manufacturing Technologies-AM-2014, September 1&2 ,
2014, Bangalore, India.

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IRJET - A Review on 3D Printing Technology

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 02 | Feb 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 3072 A Review on 3D Printing Technology Lakshya Chandwani1, Himanshu Sharma2, Pankaj Kumar 3 1B.tech Scholar, department of Mechanical Engineering, Arya Institute of Engg. & Technology, Rajasthan, India 2B.tech Scholar, department of Mechanical Engineering, Arya Institute of Engg. & Technology, Rajasthan, India 3Assistant Professor, department of Mechanical Engineering, Arya Institute of Engg. & Technology, Rajasthan, India ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - This review paper tells us about the 3d printing technology. And the various types of material which can be used for 3d printing, and the different type of properties of material that which material is used in 3d printing objects. 3d printing is also known as additive manufacturing technology because it uses layer by layer material build up approach for making objects. It is a tool less manufacturing method. It is a high precision & less cost processfor makingobjects. Thereare different fields where we use 3d printing like medical, automobile, aerospace and manufacturing etc. Keyword—3d printing, material used in 3d printing, additive manufacturing, applications. 1. INTRODUCTION 3D printing is also knownasadditivemanufacturingprocess. Additive manufacturing refers tothemanufacturingwith the help of layer by layer method, by joining with each other. This technology changes the method of manufacturing in world now any product can be made with simply making its 3D modal or by scanning with the 3D scanner. We uses a CAD file to make objects on software then this file is uploaded to the 3D printer and it is made by printer. It is a tool less manufacturing method, it can be used in where mass production with high accuracy is required. It also requires less energy. Rapid prototyping has a wide range of applications in various fields of human activity: research, engineering, medical industry, military, construction, architecture, fashion, education, the computer industry and many others. [1] In medical field most common technology used for 3D printing is powder bed fusion. Powder bed fusion is commonly used because it works with a variety of materials used in medical devices, such as titanium and nylon. It is a synthetic thermoplastic linear polyamide and is the most common plastic material. It is a well-known 3D printing filament because of its flexibility, durability, low frictionand corrosion resistance. Nylon is a popular material used in manufacturing ofclothes and accessories. In aerospace industries the first printer uses extrusion additive manufacturing, which builds objects layer by layer out of Acrylonitrile Butadiene Styrene (ABS) plastic. [2] Fig no:- 1 (nomenclature of 3D printing machine) Metal additive manufacturing canbeclassifiedintomaintwo major groups Powder Bed Fusion based technologies (PBF) and Directed Energy Deposition (DED) based technologies. [3] 2. POWDER BED FUSION (PBF):- Under PBF process, DMLS is anadditivemanufacturing(AM) or rapid prototyping (RP) process that uses metal powder and a high power laser to sinter together a useablepart.This method is capable of producing verydensepartsbutinorder to achieve gas or pressure tightness, post-treatment is often required. Most trade names such as laser sintering, cussing etc. are describing the same process but not different technologies. The process is very similar to an existing AM process called Selective Laser Sintering (SLS), both SLS and DMLS are conceptually the same process, but instead of using polymers or coated metal powders in the case of SLS, DMLS uses polymers or coated metal powders in the case of SLS, DMLS uses uncoated. [4] Directed Energy Deposition (DED):- In DED based technologies focusedthermal energyisused to fuse materials (powder or wire form) by melting as they are being deposited. Laser Engineered Net Shaping (LENS), Direct Metal Deposition (DMD), Electron Beam Free Form Fabrication (EBFFF) and arc based AM are some of the popular DED based technology. [4]
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 02 | Feb 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 3073 3. PRINCIPAL There are basic principles on which 3D printer works- 1] Stereo lithography – This process includes photopolymer liquid and ultraviolet light, when UV light strikes with the photo polymer then it solidifies and the modal is made. Stereo lithography is a form of 3-D printing technology used for creating models, prototypes, patterns in a layer by layer fashion using photo polymerization, a processbywhichlight causes chains of molecules to link together, forming polymers. Those polymers then make up thebodyofa three- dimensional solid. Research in the area had been conducted during the 1970s, but the term was coined by Charles (Chuck) W. Hull in 1986 when he patented the process. He then set up 3D Systems Inc. to commercialize his patent. [5] 2] Fused Deposition Modelling – Itconsistofa filamentroller from which filament is passed between to the two rollers, then it goes to the nozzle in semi liquid form which makes object. In this technique, the model is producedbyextruding small beads of material which harden to form layers. A thermoplastic filament or wire that is wound into a coil is unwinding to supply material to an extrusion nozzle head. The nozzle head heats the material up to the certain temperature and turns the flow on and off. Typically the stepper motors are employed to move the extrusion head in the z-direction and adjust the flow according to the requirements. The head canbemovedinbothhorizontal and vertical directions, and control of the mechanism is done by a computer-aided manufacturing (CAM) software package running on a microcontroller. [6] 3] Selective Laser Melting - In this process the powder material used in the printer is melted instead of combining them. [7] 4] Electronic Beam Melting - 3D printers use the electron beam instead of UV rays. [7] 5] Laminated Object Manufacturing - In this process the plastic, paper, or metal are glued togetherandafterthatthey are cut with laser to give them the desired shape. In it,layers of adhesive-coated Paper, plastic, or metal laminates are successively joined together and cut to appropriate shape with a laser cutter. Objects printed with this technique may be additionally modified by machining after the printing process. The typical layer resolution for this process is defined by material feedstock and usually ranges in thickness from one to a many sheets of paper of a copy. [8] 4. CLASSIFICATION 3D printer’s uses different techniques for making objects so that they are available on different price ranges depending upon the use of 3D printer at home use or office use. They can also classified on the basis of material used in 3D printers to make object, for example FDM Thermoplastics, Photopolymer, WDW materials and chocolate is alsousedas a material for 3D printing. [9] They are classified on the basis of their application, now a days 3D printers are used in medical field for making different body organs and parts. They are also used in manufacturing process to make objects for real time conditions. It also used in aerospace applications. 3D printers can also be classified on the basisoftheirsizefor example there are some of 3D printers which used for making automobile parts which are small in size, on the other hand some are used for making big sculpture of any human or things. [10] 5. APPLICATION 3D printing is used for manufacturinghearingaids,andsome of the automobile parts which requires the greateraccuracy. In automobile the buckets of crane. Now a days aircraft components are made with 3D printers because they are strong enough and light in weight. [11] They are also used for making artificial eyes, jaw, faces and artificial ears. In AI field there are many use of 3D printing technology. They are also used in making handgun with 3Dprinters.And different components of a gun are made with 3D printer. Nike produces a part of sports shoes with the help of 3D printers. [12] For making new products in medical and dental industries, the technologies are also utilized to make Patterns for the downstream metal casting of dental crowns and in the manufacture of tools over which plastic is being vacuum formed to make dental aligners. For the jewellery sector, 3D printing has proved to be particularly disruptive. There is a great deal of interest. 3D printing is used in fashion.3D printed accessories including shoes, headpieces, hats, and bags have all made their way on to global catwalks. It uses in small level industry because of its high accuracy and low cost. [13] 6. ADVANTAGES 3D printing allows ideas to developfaster.Beingabletoprint a concept on the same day it was designed. It also provides freedom of design, complexity for free, potential elimination of tooling. [14] A user can make any complex shape on 3D printer by just making on CAD software or by scanning with 3D scanner. [15]
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 07 Issue: 02 | Feb 2020 www.irjet.net p-ISSN: 2395-0072 © 2020, IRJET | Impact Factor value: 7.34 | ISO 9001:2008 Certified Journal | Page 3074 7. DISADVANTAGES 3D printing technology is currently limited by size constraints. Very large objects are still not feasible when built using 3D printers. [14] At present, 3D printers can work with approximately 100 different raw materials. Research is required to devise methods to enable 3D printed products to be more durable. [15] CONCLUSION Introduction part is about the 3D printing technique that what process is used for making it. It also tells us about the additive manufacturingprocess,andrapidprototyping.Then it tells us about the different principle methods whichcanbe used for 3D printer which includes stereolithography,Fused deposition modelling,selectivelasermeltingandmanyother process. In next paragraph we classified the 3D printers on different criteria. Then different application are discuss which includes medical field, automobile and aerospace industries. Then the advantages and disadvantages of 3D printers are discussed. Advances in 3D printing technology can significantly change and improve the way we manufactureproductsandproduce goods worldwide. An object is scanned or designed with Computer Aided Design software, then sliced up into thin layers, which can then be printed out to form a solid three dimensional product. As now we all know that 3D printing has application in all the stages of human need. 3D printing includes approximately 100 of materials now a days and the research is going on for increasing the range of material use in this technique. REFERENCES [1]Morris, G. 2014, Additive Manufacturing at GE – www.gecapital.com/webinar-assets/pdf/3dprinting-capital. [2] Surel, A. 2008, Direct Metal Laser-Sintering(DMLS),Avec l’EOSINT M 270, Eighteenth International Conference & Exhibit – Mouldings 2008, Feb 18-20, 2008, San Francisco, California, USA [3]Bhavar et al., 2014, A Review on Powder Bed Fusion Technology of Metal Additive Manufacturing, 4th International conference and exhibition on Additive Manufacturing Technologies-AM-2014, September 1&2 , 2014, Bangalore, India. [4]Gratton, A.2012,ComparisonofMechanical,Metallurgical Properties of 17-4PH Stainless Steel between Direct Metal Laser Sintering (DMLS) and Traditional Manufacturing Methods, Proceedings of The National Conference On Undergraduate Research (NCUR) 2012, Weber State University, Ogden Utah March 29 – 31, 2012 [5] Dongkeon Lee, Takashi Miyoshi, Yasuhiro Takaya and Taeho Ha, “3D Micro fabrication of Photosensitive Resin Reinforced with Ceramic Nanoparticles Using LCD Microstreolithography”, Journal of Laser Micro/Nano engineering Vol.1, No.2, 2006. [6] Pshtiwan Shakor, Jay Sanjayan, Ali Nazari, Shami Nejadi, “Modified 3D printed powder to cement-based material and mechanical properties of cement scaffold used in 3D printing”, Science Direct. [7] Council, A. and Petch, M., 3D Printing: Rise of the Third Industrial Revolution, Gyges, Tumwater, 3D, 2014, p. 116. [8] Frank van der Klift, Yoichiro Koga, Akira Todoroki, “3D Printing of Continuous Carbon Fiber Reinforced Thermo- Plastic (CFRTP) Tensile Test Specimens”, Open Journal of Composite Materials, 2016, 6, 18-27. [9] Jacobs, P.F., Stereo Lithography and other RP&M Technologies: From Rapid Prototyping to Rapid Tooling, Society of Manufacturing Engineers (SME), Dearborn, 1996, p. 450 [10] Huang, S.H. , Liu, P. , Makassar, A. and , and Hou, L. , Additive manufacturing and its societal impact: a literature review, International Journal of Advanced Manufacturing Technology , Vol. 67 Nos 5/8, 2013, pp. 1191-1203. [11] Birtchnell, T. and Urry, J., 3D, SF andtheFuture,Futures, Vol. 50, 2013, pp. 25-34. [12] Young, D., Sampath, S., Chikov, B. and Chrisey, D.B.,The future of direct writing in electronics, CircuiTree, Vol. 2,2005. [13] Masood, S.H.,Advances in Rapid Manufacturing and Tooling, Comprehensive Materials Processing, Elsevier Science Direct, Glasgow, pp. 69-91, 2005. [14] Berger 2013, A game changer for the manufacturing industry? Additive manufacturing – RolandBerger,Strategic Consultants, Munich, November 2013 [15] Bhavar et al., 2014, A Review on Powder Bed Fusion Technology of Metal Additive Manufacturing, 4th International conference and exhibition on Additive Manufacturing Technologies-AM-2014, September 1&2 , 2014, Bangalore, India.