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YASİN ÇAPAR
PORTFOLIO
 Portfoilo
 Undergraduate Projects
 Air Deflector Machine Design
 Thermoelectric Module Design and Productivity
 Personal Project
 3D Printer Design
 Customer Project
 Structural Staircase Design and Engineering
 Concrete Crane Machine Design and Engineering
 CPU Air Cooling System Design and Engineering
Undergraduate Projects
Undergraduate Projects
Air Deflector Machine Desing
 PROJECT DETAIL:
Marmara University Faculty of Technology Mechanical Engineering
Department
Air deflector machine design project for use in the experiments be carried out at
Marmara University Faculty of Technology Mechanical Engineering
Department laboratories.
Experiments
Undergraduate Projects
Air Deflector Machine Desing
 I completed the air
deflector machine parts
design with computer
aided design software.
 After the design of the
machine parts process, the
machine parts were
assembled in the
mounting environment.
 After the design and
assembly process of the
machine, Computer-aided
design study and turbine
movements preview were
completed.
Undergraduate Projects
Air Deflector Machine Desing
 Machine has an air inlet
area and an air outlet
area
 Air outlet velocity and
flow rate depend on the
turbine rotation speed.
 Air flow rate changes if air
inlet geometry or area
change.
 Computer aided experiments
were carried out to measure
the difference in air
exchange parameters.
Undergraduate Projects
Thermoelectric Module Design and Productivity
 PROJECT DETAIL:
Thermoelectric module design and engineering project as Dissertation -
Graduation Project at Marmara University Faculty of Technology Mechanical
Engineering Department
Thermoelectric Module includes product design, engineering calculations
project and thesis.
Energy Recovery
 It was designed to generate
energy from the resulting
heat differences.
 Thermoelectric module has 2
different contact surface
area.
 One surface touches the hot
area and other surface
touches the cold area.
 Electricity was generated
due to the heat difference.
 I completed thermoelectric
module, heat radiator and
cold radiator parts design
with computer aided design
software.
Undergraduate Projects
Thermoelectric Module Design and Productivity
Undergraduate Projects
Thermoelectric Module Design and Productivity
 After the design and
assembly process of the
thermoelectric module,
computer aided
engineering was done
 Structural and flow
analysis process of the
machine were completed.
 Flow simulation, static,
thermal and frequency
analysis were done.
 After the analysis process of
the engineering calculations
process were completed
 Prototype formed and
experiments were carried out.
 At the end of the experiments,
we obtained 1.96 watts of
energy from 6 modules.
Personal Project
Personal Project
3D Printer Design
 PROJECT DETAIL:
3D Printer design project.
3D Design and Print
Personal Project
3D Printer Design
 I completed the 3D printer
machine parts design with
computer aided design
software.
 After the design of the
machine parts process, the
machine parts were
assembled in the mounting
environment.
 Separate mechanical
connections were defined for
the mechanical parts of the
3D printer during the
assembly process.
 Limitations and connections
were defined so that can act
a true way.
Personal Project
3D Printer Design
 After the design and
assembly process of the 3D
printer machine , computer
aided engineering process
was started.
 Mechanic analysis process of
the 3D printer machine was
completed with computer
aided engineering software.
 I got the calculation of
critical points and critical
areas with mechanic
movements to the design.
 3D printer’s serve motors
were animated with computer
aided engineering software.
 After the analysis process of
the engineering calculations
process were completed
Customer Projects
Customer Project
Structural Staircase Design and Enginnering
 PROJECT DETAIL:
Structural staircase design and engineering project.
Building and Structures
Customer Project
Structural Staircase Design and Enginnering
 I completed the structural
staircase parts design with
computer aided design
software.
 After the design of the
structural staircase parts
process, the structural
staircase parts were
assembled in the mounting
environment.
 After the design and
assembly process of the
structural staircase material
and other structural features
were defined.
Customer Project
Structural Staircase Design and Enginnering
 After the design and
assembly process of the
structural staircase,
computer aided
engineering process was
started.
 Structural analysis process
of the structural staircase
was completed with computer
aided engineering software.
 static, thermal and
frequency analysis were
done.
 I got the calculation of
critical points and critical
areas with loads applied to
the design.
 After the analysis process of
the engineering calculations
process were completed
Customer Project
Concrete Crane Machine Design and Engineering
 PROJECT DETAIL:
Concrete crane machine design and engineering project.
Construction Sector
Customer Project
Concrete Crane Machine Design and Engineering
 I completed the concrete
crane machine parts
design with computer
aided design software.
 Additional fasteners were
designed separately
depending on the design.
 After the design of the
concrete crane machine
parts process, the machine
parts were assembled in the
mounting environment.
 After the design and
assembly process of the
concrete crane machine
material and other structural
features were defined.
Customer Project
Concrete Crane Machine Design and Engineering
 After the design and
assembly process of the
concrete crane machine,
computer aided
engineering process was
started.
 Structural analysis process
of the concrete crane machine
were completed with computer
aided engineering software.
 static, thermal and
frequency analysis were
done.
 I got the calculation of
critical points and critical
areas with loads applied to
the design.
 After the analysis process of
the engineering calculations
process were completed
Customer Project
CPU Air Cooling System Design and Engineering
 PROJECT DETAIL:
Air cooled processer cooling system design and engineering project.
Computer and Data processing
Customer Project
CPU Air Cooling System Design and Engineering
 I completed air cooling
system parts design with
computer aided design
software.
 Additional heat transfer
pipes and ducts were
designed separately.
 After the design of the air
cooling system parts process,
the machine parts were
assembled in the mounting
environment.
 After the design and
assembly process of the air
cooling system material and
other structural features were
defined.
Customer Project
CPU Air Cooling System Design and Engineering
 After the design and
assembly process of the
structural staircase,
computer aided
engineering process was
started.
 Structural and flow
analysis process of the air
cooling system were
completed with computer
aided engineering
software.
 Flow simulation, static,
thermal and frequency
analysis were done.
 I got the calculation of
critical points and critical
areas with loads applied to
the design.
 After the analysis process of
the engineering calculations
process were completed
YASİN ÇAPAR
Mechanical Engineer / Simulation Specialist

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Yasin ÇAPAR - Portfoilo

  • 2.  Portfoilo  Undergraduate Projects  Air Deflector Machine Design  Thermoelectric Module Design and Productivity  Personal Project  3D Printer Design  Customer Project  Structural Staircase Design and Engineering  Concrete Crane Machine Design and Engineering  CPU Air Cooling System Design and Engineering
  • 4. Undergraduate Projects Air Deflector Machine Desing  PROJECT DETAIL: Marmara University Faculty of Technology Mechanical Engineering Department Air deflector machine design project for use in the experiments be carried out at Marmara University Faculty of Technology Mechanical Engineering Department laboratories. Experiments
  • 5. Undergraduate Projects Air Deflector Machine Desing  I completed the air deflector machine parts design with computer aided design software.  After the design of the machine parts process, the machine parts were assembled in the mounting environment.  After the design and assembly process of the machine, Computer-aided design study and turbine movements preview were completed.
  • 6. Undergraduate Projects Air Deflector Machine Desing  Machine has an air inlet area and an air outlet area  Air outlet velocity and flow rate depend on the turbine rotation speed.  Air flow rate changes if air inlet geometry or area change.  Computer aided experiments were carried out to measure the difference in air exchange parameters.
  • 7. Undergraduate Projects Thermoelectric Module Design and Productivity  PROJECT DETAIL: Thermoelectric module design and engineering project as Dissertation - Graduation Project at Marmara University Faculty of Technology Mechanical Engineering Department Thermoelectric Module includes product design, engineering calculations project and thesis. Energy Recovery
  • 8.  It was designed to generate energy from the resulting heat differences.  Thermoelectric module has 2 different contact surface area.  One surface touches the hot area and other surface touches the cold area.  Electricity was generated due to the heat difference.  I completed thermoelectric module, heat radiator and cold radiator parts design with computer aided design software. Undergraduate Projects Thermoelectric Module Design and Productivity
  • 9. Undergraduate Projects Thermoelectric Module Design and Productivity  After the design and assembly process of the thermoelectric module, computer aided engineering was done  Structural and flow analysis process of the machine were completed.  Flow simulation, static, thermal and frequency analysis were done.  After the analysis process of the engineering calculations process were completed  Prototype formed and experiments were carried out.  At the end of the experiments, we obtained 1.96 watts of energy from 6 modules.
  • 11. Personal Project 3D Printer Design  PROJECT DETAIL: 3D Printer design project. 3D Design and Print
  • 12. Personal Project 3D Printer Design  I completed the 3D printer machine parts design with computer aided design software.  After the design of the machine parts process, the machine parts were assembled in the mounting environment.  Separate mechanical connections were defined for the mechanical parts of the 3D printer during the assembly process.  Limitations and connections were defined so that can act a true way.
  • 13. Personal Project 3D Printer Design  After the design and assembly process of the 3D printer machine , computer aided engineering process was started.  Mechanic analysis process of the 3D printer machine was completed with computer aided engineering software.  I got the calculation of critical points and critical areas with mechanic movements to the design.  3D printer’s serve motors were animated with computer aided engineering software.  After the analysis process of the engineering calculations process were completed
  • 15. Customer Project Structural Staircase Design and Enginnering  PROJECT DETAIL: Structural staircase design and engineering project. Building and Structures
  • 16. Customer Project Structural Staircase Design and Enginnering  I completed the structural staircase parts design with computer aided design software.  After the design of the structural staircase parts process, the structural staircase parts were assembled in the mounting environment.  After the design and assembly process of the structural staircase material and other structural features were defined.
  • 17. Customer Project Structural Staircase Design and Enginnering  After the design and assembly process of the structural staircase, computer aided engineering process was started.  Structural analysis process of the structural staircase was completed with computer aided engineering software.  static, thermal and frequency analysis were done.  I got the calculation of critical points and critical areas with loads applied to the design.  After the analysis process of the engineering calculations process were completed
  • 18. Customer Project Concrete Crane Machine Design and Engineering  PROJECT DETAIL: Concrete crane machine design and engineering project. Construction Sector
  • 19. Customer Project Concrete Crane Machine Design and Engineering  I completed the concrete crane machine parts design with computer aided design software.  Additional fasteners were designed separately depending on the design.  After the design of the concrete crane machine parts process, the machine parts were assembled in the mounting environment.  After the design and assembly process of the concrete crane machine material and other structural features were defined.
  • 20. Customer Project Concrete Crane Machine Design and Engineering  After the design and assembly process of the concrete crane machine, computer aided engineering process was started.  Structural analysis process of the concrete crane machine were completed with computer aided engineering software.  static, thermal and frequency analysis were done.  I got the calculation of critical points and critical areas with loads applied to the design.  After the analysis process of the engineering calculations process were completed
  • 21. Customer Project CPU Air Cooling System Design and Engineering  PROJECT DETAIL: Air cooled processer cooling system design and engineering project. Computer and Data processing
  • 22. Customer Project CPU Air Cooling System Design and Engineering  I completed air cooling system parts design with computer aided design software.  Additional heat transfer pipes and ducts were designed separately.  After the design of the air cooling system parts process, the machine parts were assembled in the mounting environment.  After the design and assembly process of the air cooling system material and other structural features were defined.
  • 23. Customer Project CPU Air Cooling System Design and Engineering  After the design and assembly process of the structural staircase, computer aided engineering process was started.  Structural and flow analysis process of the air cooling system were completed with computer aided engineering software.  Flow simulation, static, thermal and frequency analysis were done.  I got the calculation of critical points and critical areas with loads applied to the design.  After the analysis process of the engineering calculations process were completed
  • 24. YASİN ÇAPAR Mechanical Engineer / Simulation Specialist