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3D PRINTER DESIGN USING
FUSED DEPOSITION MODELING (FDM) TECHNIQUE
Name Roll No. Registration No:
SUBHASHIS DAS 11700315112 151170110297
SURAJ KUMAR SINGH 11700315120 151170110305
SATYA PRAKASH
PARIDA
11700315086 151170110271
ANKSHUK RAY 11700315020 151170110205
A comprehensive project report has been submitted in partial
fulfillment of the requirements for the degree of Bachelor of
Technology in
ELECTRONICS & COMMUNICATION ENGINEERING
Under the supervision of
Mrs. SARASWATI SAHA
Presented by:
What is 3D PRINTING ?
 3D printing or additive manufacturing is a process of
making three dimensional solid objects from a digital file.
 The creation of a 3D printed object is achieved using
additive processes. In an additive process an object is
created by laying down successive layers of material until
the object is created. Each of these layers can be seen as
a thinly sliced horizontal cross-section of the eventual
object.
Fused Deposition Modeling (FDM)
Fused deposition modeling (FDM) is a additive manufacturing technology commonly
used for modeling, prototyping, and production applications.
The thermoplastics are liquefied and deposited by an extrusion head, which follows a
tool-path defined by the CAD file. The materials are deposited in layers as fine as 0.04
mm (0.0016") thick, and the part is built from the bottom up – one layer at a time. A
plastic filament or metal wire is unwound from a coil and supplies material to an
extrusion nozzle which can turn the flow on and off.
3D PRINTER
COMPONENTS
Software used:
1.Arduino based Marlin firmware.
2.Slicing software to design gcode fies eg Slic3r,cura
Arduino Mega with RAMPS 1.4 Controller
Aluminum Extruder Kit
0.4mm Extrusion Head
Endstops
A4988 Stepper
Motor Driver PLA & ABS
Filaments
:Filaments used:
Other Filaments:
PVA: Polyvinyl Alcohol: Because it is soluble, this material is generally used
to manufacture supports, as they can be easily removed from the part after
manufacture
TPU: Polyurethane: Used to create flexible parts
CIRCUIT DIAGRAM
BLOCK DIAGRAM
Working Algorithm
Interfacing Firmware, Host controller and
Microcontroller.
.STL files are Sliced into many
2D layers based on different
parameters using Slic3r and
corresponding G-code file is
generated which is platform
independent as java’s
bytecode.
Slic3r
Host Pronterface reads the G-code
commands and send it to Marlin
firmware in arduino board which in
turn commands Stepper motors
to move specific steps.
pronterface
PROCESS IN A NUTSHELL
FINAL RESULTS:
Orthodontic appliance, temporary
teeth
Daily used Products – Mobile
cover , Utensils, vase etc
Eiffel Tower Alice Easter Island
Statue
BUILDING STRUCTURES,SPARE PARTS AND
ARTIFACTS
AND MANY MORE
FEATURES of material (PLA) :
• CAS Number :26100-51-6
• Chem Spider: none
• Cost efficient – 11000 INR.
Identifiers
• Density:1.210–1.430 g·cm−3
• Melting point:150 to 160 °C (302 to 320 °F; 423 to
433 K)
• Solubility in water: Insoluble in water
• PLA polymers range from amorphous glassy
polymer to semi-crystalline and highly crystalline
polymer with a glass transition of 60 °C and
melting points of 130-180 °C. PLA has a glass
transition temperature 60–65 °C, a melting
temperature 173–178 °C and a tensile modulus
2.7–16 Gpa.
Properties
APPLICATIONS AND FUTURE SCOPE :
A Process called bio texture modeling allows us to print
stimulated organs with texture & wetness of real things.
3D Scans of patients can help create custom
built prosthetic and face prosthetics.
Customized bone replacements can be
executed 3D printing.
Orthodontic appliances, temporary teeth,
dental crowns can be 3D printed.
Bio printing is the process of printing out
organic tissue which could facilitate organ
transplants.
CONCLUSION
We get high precision regardless of uneven heating or bowed
build plate.
Sensors ensure the print head is always moving parallel to
the build plate.
No wasting time fiddling with the bed and Z height .It’s easy
of for inexperienced machinists to use it .
Use of filament effective reduces the wasting of filaments.
Hence we are intended to produce a low cost 3D printer for all
with an estimated cost of 11000 INR.
REFERENCES
 1.3D Printing for Model Engineers
A Practical Guide
Neil Wyatt
 2. 3D Printing Failures
2019 Edition: How to Diagnose and Repair ALL Desktop 3D Printing
Issues
Sean Aranda
 3. Cutting-Edge 3D Printing
Karen Latchana Kenney
 4. Fusion 360 for Makers
Design Your Own Digital Models for 3D Printing and CNC
Fabrication
Lydia Sloan Cline
3 d printer design using fused deposition modeling (2)

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3 d printer design using fused deposition modeling (2)

  • 1. 3D PRINTER DESIGN USING FUSED DEPOSITION MODELING (FDM) TECHNIQUE Name Roll No. Registration No: SUBHASHIS DAS 11700315112 151170110297 SURAJ KUMAR SINGH 11700315120 151170110305 SATYA PRAKASH PARIDA 11700315086 151170110271 ANKSHUK RAY 11700315020 151170110205 A comprehensive project report has been submitted in partial fulfillment of the requirements for the degree of Bachelor of Technology in ELECTRONICS & COMMUNICATION ENGINEERING Under the supervision of Mrs. SARASWATI SAHA Presented by:
  • 2. What is 3D PRINTING ?  3D printing or additive manufacturing is a process of making three dimensional solid objects from a digital file.  The creation of a 3D printed object is achieved using additive processes. In an additive process an object is created by laying down successive layers of material until the object is created. Each of these layers can be seen as a thinly sliced horizontal cross-section of the eventual object.
  • 3. Fused Deposition Modeling (FDM) Fused deposition modeling (FDM) is a additive manufacturing technology commonly used for modeling, prototyping, and production applications. The thermoplastics are liquefied and deposited by an extrusion head, which follows a tool-path defined by the CAD file. The materials are deposited in layers as fine as 0.04 mm (0.0016") thick, and the part is built from the bottom up – one layer at a time. A plastic filament or metal wire is unwound from a coil and supplies material to an extrusion nozzle which can turn the flow on and off.
  • 5. COMPONENTS Software used: 1.Arduino based Marlin firmware. 2.Slicing software to design gcode fies eg Slic3r,cura Arduino Mega with RAMPS 1.4 Controller Aluminum Extruder Kit 0.4mm Extrusion Head Endstops A4988 Stepper Motor Driver PLA & ABS Filaments
  • 6. :Filaments used: Other Filaments: PVA: Polyvinyl Alcohol: Because it is soluble, this material is generally used to manufacture supports, as they can be easily removed from the part after manufacture TPU: Polyurethane: Used to create flexible parts
  • 10. Interfacing Firmware, Host controller and Microcontroller. .STL files are Sliced into many 2D layers based on different parameters using Slic3r and corresponding G-code file is generated which is platform independent as java’s bytecode. Slic3r Host Pronterface reads the G-code commands and send it to Marlin firmware in arduino board which in turn commands Stepper motors to move specific steps. pronterface
  • 11. PROCESS IN A NUTSHELL
  • 12. FINAL RESULTS: Orthodontic appliance, temporary teeth Daily used Products – Mobile cover , Utensils, vase etc
  • 13. Eiffel Tower Alice Easter Island Statue BUILDING STRUCTURES,SPARE PARTS AND ARTIFACTS AND MANY MORE
  • 14. FEATURES of material (PLA) : • CAS Number :26100-51-6 • Chem Spider: none • Cost efficient – 11000 INR. Identifiers • Density:1.210–1.430 g·cm−3 • Melting point:150 to 160 °C (302 to 320 °F; 423 to 433 K) • Solubility in water: Insoluble in water • PLA polymers range from amorphous glassy polymer to semi-crystalline and highly crystalline polymer with a glass transition of 60 °C and melting points of 130-180 °C. PLA has a glass transition temperature 60–65 °C, a melting temperature 173–178 °C and a tensile modulus 2.7–16 Gpa. Properties
  • 15. APPLICATIONS AND FUTURE SCOPE : A Process called bio texture modeling allows us to print stimulated organs with texture & wetness of real things. 3D Scans of patients can help create custom built prosthetic and face prosthetics. Customized bone replacements can be executed 3D printing. Orthodontic appliances, temporary teeth, dental crowns can be 3D printed. Bio printing is the process of printing out organic tissue which could facilitate organ transplants.
  • 16. CONCLUSION We get high precision regardless of uneven heating or bowed build plate. Sensors ensure the print head is always moving parallel to the build plate. No wasting time fiddling with the bed and Z height .It’s easy of for inexperienced machinists to use it . Use of filament effective reduces the wasting of filaments. Hence we are intended to produce a low cost 3D printer for all with an estimated cost of 11000 INR.
  • 17. REFERENCES  1.3D Printing for Model Engineers A Practical Guide Neil Wyatt  2. 3D Printing Failures 2019 Edition: How to Diagnose and Repair ALL Desktop 3D Printing Issues Sean Aranda  3. Cutting-Edge 3D Printing Karen Latchana Kenney  4. Fusion 360 for Makers Design Your Own Digital Models for 3D Printing and CNC Fabrication Lydia Sloan Cline

Hinweis der Redaktion

  1. 1. Arduino Mega with RAMPS 1.4 Controller 2. Aluminum Extruder Kit 3. 0.4mm Extrusion Head 4. 12 / 24 volt SMPS. 5. DVD Writer x2 or Printer Body Frame 6. Floppy Drive etc. 7.Heating bed. 8.A4988 9.LJ12A3-4-Z/B Inductive proximity sensor 10.optocouper pc817