SlideShare a Scribd company logo
1 of 20
Topology Optimization

   P Venkat Vijay Kumar
    Mechanical branch
       KLUniversity
What is Topology???


Topology is a major area of mathematics
  concerned with properties that are preserved
  under continuous deformations of objects,
  such as deformations that involve stretching,
  but no tearing or gluing
Then… Optimization???


In      mathematics, computational science, or
     management science, mathematical optimization
     (alternatively, optimization or mathematical
     programming) refers to the selection of a best
     element from some set of available alternatives.
Finally… Topology Optimization

Topology optimization is a mathematical
  approach that optimizes material layout
  within a given design space, for a given set of
  loads and boundary conditions such that the
  resulting layout meets a prescribed set of
  performance targets.
How???
• Any optimization technique can be used as
  tool of optimization in Topology Optimization.
• An objective function has to be formulated
  which has to be optimized / maximized /
  minimized.
• Then using the optimization techniques
  number of probabilities are produced and the
  result that suits best is choosen.
Detailed how????
• Lets start with little more detail.
• Consider a structure or component, say a
  cantilever beam. Let our objective be
  minimizing the deflection if possible,
  minimizing the mass

                               Cantilever beam


                                                 Load F
Original deflections and stresses in the beam in the
      initial conditions of load and structure
Divide the cantilever
  into number of
                        1   1   1 1 1 1 1          1   1   1
  checks i.e. rows      1   1   1 1 1 1 1
                                 Cantilever beam
                                                   1   1   1
                        1   1   1 1 1 1 1          1   1   1
  and columns.          1   1   1 1 1 1 1          1   1   1




    Now, considering the presence of
     material as 1 and void as 0, number
     the checks one by one
• Now would be the task of optimization.
• The numbers considered are taken into a row
  matrix
           [1 1 1 .. .. .. 40 1’s]
• From the original analysis its clear that some
  portion of the beam is not taking the load,
  therefore lets remove the portion with less
  stress.
1    1    1 1 1 1 1          1   1   1
                         0    0    0 1 1 1 1          1   1   1
                                    Cantilever beam
                         0    0    0 1 1 1 1          1   1   1
                         1    1    1 1 1 1 1          1   1   1




[1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 1 1 1 0 0 0 1
   1 1 1 1 1 1 1 1 1 1 1 1 1]



                      - A parent
1    1 1 1 1 1 1          1   1   1
                       0   0 0 0 0 0 0           1   1   1
                               Cantilever beam
                       0   0 0 0 0 0 1           1   1   1
                       1   1 1 1 1 1 1           1   1   1




[1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 1 1 1 0
   0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1]



                      - One more parent
• For each parent we analyze the amount of
  mass and deflection that occurs
• And keep doing until our objective is met.
• A topology optimized cantilever beam is as
  follows…
Software… soft procedure
   •   Modeling
   •   Analysis
   •   Optimizing
   •   Remodeling
   •   Producing manufacturable design
Applications
• Now Topology optimization is
  being spread to composite
  structures
• Topology optimization is the major
  tool for optimizing aero structures
• There are lot of things around us
  that have to be optimized… ..
Topology optimization
Topology optimization

More Related Content

What's hot

Introduction to ANSYS Workbench
Introduction to ANSYS WorkbenchIntroduction to ANSYS Workbench
Introduction to ANSYS Workbenchnagesh surner
 
Design Faster and Lighter:Applications of Topology Optimization in Additive M...
Design Faster and Lighter:Applications of Topology Optimization in Additive M...Design Faster and Lighter:Applications of Topology Optimization in Additive M...
Design Faster and Lighter:Applications of Topology Optimization in Additive M...Altair
 
Finite Element Analysis - UNIT-1
Finite Element Analysis - UNIT-1Finite Element Analysis - UNIT-1
Finite Element Analysis - UNIT-1propaul
 
Module 1 Additive Manufacturing
Module 1 Additive ManufacturingModule 1 Additive Manufacturing
Module 1 Additive Manufacturingtaruian
 
ME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOK
ME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOKME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOK
ME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOKASHOK KUMAR RAJENDRAN
 
Optistruct Optimization 10 Training Manual
Optistruct Optimization 10 Training ManualOptistruct Optimization 10 Training Manual
Optistruct Optimization 10 Training ManualAltairKorea
 
Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...
Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...
Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...piyushsingh376
 
Mf5103 advances-in-casting-and-welding
Mf5103 advances-in-casting-and-weldingMf5103 advances-in-casting-and-welding
Mf5103 advances-in-casting-and-weldingDineshS158
 
Rapid prototyping
Rapid prototypingRapid prototyping
Rapid prototypingWael_helal
 
Introduction to finite element method(fem)
Introduction to finite element method(fem)Introduction to finite element method(fem)
Introduction to finite element method(fem)Sreekanth G
 
FEA good practices presentation
FEA good practices presentationFEA good practices presentation
FEA good practices presentationMahdi Damghani
 
Intro to fea software
Intro to fea softwareIntro to fea software
Intro to fea softwarekubigs
 
Finite Element Analysis - UNIT-2
Finite Element Analysis - UNIT-2Finite Element Analysis - UNIT-2
Finite Element Analysis - UNIT-2propaul
 
Crashworthiness Workshop - Altair HTC 2012
Crashworthiness Workshop - Altair HTC 2012Crashworthiness Workshop - Altair HTC 2012
Crashworthiness Workshop - Altair HTC 2012Altair
 
Large scale topological optimisation: aircraft engine pylon case
Large scale topological optimisation: aircraft engine pylon caseLarge scale topological optimisation: aircraft engine pylon case
Large scale topological optimisation: aircraft engine pylon caseAltair
 
Design of helical spring
Design of helical springDesign of helical spring
Design of helical springKunj Thummar
 

What's hot (20)

Introduction to ANSYS Workbench
Introduction to ANSYS WorkbenchIntroduction to ANSYS Workbench
Introduction to ANSYS Workbench
 
Design Faster and Lighter:Applications of Topology Optimization in Additive M...
Design Faster and Lighter:Applications of Topology Optimization in Additive M...Design Faster and Lighter:Applications of Topology Optimization in Additive M...
Design Faster and Lighter:Applications of Topology Optimization in Additive M...
 
Finite Element Analysis - UNIT-1
Finite Element Analysis - UNIT-1Finite Element Analysis - UNIT-1
Finite Element Analysis - UNIT-1
 
Module 1 Additive Manufacturing
Module 1 Additive ManufacturingModule 1 Additive Manufacturing
Module 1 Additive Manufacturing
 
ME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOK
ME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOKME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOK
ME6603 - FINITE ELEMENT ANALYSIS FORMULA BOOK
 
Optistruct Optimization 10 Training Manual
Optistruct Optimization 10 Training ManualOptistruct Optimization 10 Training Manual
Optistruct Optimization 10 Training Manual
 
Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...
Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...
Topology Optimization for Additive Manufacturing as an Enabler for Robotic Ar...
 
Mf5103 advances-in-casting-and-welding
Mf5103 advances-in-casting-and-weldingMf5103 advances-in-casting-and-welding
Mf5103 advances-in-casting-and-welding
 
Rapid prototyping
Rapid prototypingRapid prototyping
Rapid prototyping
 
Introduction to finite element method(fem)
Introduction to finite element method(fem)Introduction to finite element method(fem)
Introduction to finite element method(fem)
 
FEA good practices presentation
FEA good practices presentationFEA good practices presentation
FEA good practices presentation
 
CAD CAM CAE
CAD CAM CAECAD CAM CAE
CAD CAM CAE
 
Intro to fea software
Intro to fea softwareIntro to fea software
Intro to fea software
 
MECHANICS OF MATERIALS
MECHANICS OF MATERIALSMECHANICS OF MATERIALS
MECHANICS OF MATERIALS
 
Finite Element Analysis - UNIT-2
Finite Element Analysis - UNIT-2Finite Element Analysis - UNIT-2
Finite Element Analysis - UNIT-2
 
Crashworthiness Workshop - Altair HTC 2012
Crashworthiness Workshop - Altair HTC 2012Crashworthiness Workshop - Altair HTC 2012
Crashworthiness Workshop - Altair HTC 2012
 
Axis symmetric
Axis symmetricAxis symmetric
Axis symmetric
 
Stress concentration
Stress concentrationStress concentration
Stress concentration
 
Large scale topological optimisation: aircraft engine pylon case
Large scale topological optimisation: aircraft engine pylon caseLarge scale topological optimisation: aircraft engine pylon case
Large scale topological optimisation: aircraft engine pylon case
 
Design of helical spring
Design of helical springDesign of helical spring
Design of helical spring
 

Viewers also liked

AM3D Conference - How Software and the Cloud are Revolutionizing 3D Printing
AM3D Conference - How Software and the Cloud are Revolutionizing 3D PrintingAM3D Conference - How Software and the Cloud are Revolutionizing 3D Printing
AM3D Conference - How Software and the Cloud are Revolutionizing 3D PrintingGrant Thomas-Lepore
 
Escalate Design with Topology Optimization: Design Lighter, Faster and Stronger
Escalate Design with Topology Optimization: Design Lighter, Faster and StrongerEscalate Design with Topology Optimization: Design Lighter, Faster and Stronger
Escalate Design with Topology Optimization: Design Lighter, Faster and StrongerDesign World
 
Airbus - Topology Optimization Methods for Optimal Aircraft Components
Airbus - Topology Optimization Methods for Optimal Aircraft ComponentsAirbus - Topology Optimization Methods for Optimal Aircraft Components
Airbus - Topology Optimization Methods for Optimal Aircraft ComponentsAltair ProductDesign
 
130226 open innovation in additive manufacturing v3
130226 open innovation in additive manufacturing v3130226 open innovation in additive manufacturing v3
130226 open innovation in additive manufacturing v3dajkersten
 
Business models for Additive Manufacturing
Business models for Additive ManufacturingBusiness models for Additive Manufacturing
Business models for Additive Manufacturingponfoort
 
Introduction to 3D printing and its applications within Art and Design
Introduction to 3D printing and its applications within Art and DesignIntroduction to 3D printing and its applications within Art and Design
Introduction to 3D printing and its applications within Art and DesignAnn Marie Shillito, FRSA
 
Additive Manufacturing (2.008x Lecture Slides)
Additive Manufacturing (2.008x Lecture Slides)Additive Manufacturing (2.008x Lecture Slides)
Additive Manufacturing (2.008x Lecture Slides)A. John Hart
 
Additive Manufacturing 3D printing
Additive Manufacturing 3D printingAdditive Manufacturing 3D printing
Additive Manufacturing 3D printingJeffrey Funk
 

Viewers also liked (9)

AM3D Conference - How Software and the Cloud are Revolutionizing 3D Printing
AM3D Conference - How Software and the Cloud are Revolutionizing 3D PrintingAM3D Conference - How Software and the Cloud are Revolutionizing 3D Printing
AM3D Conference - How Software and the Cloud are Revolutionizing 3D Printing
 
Topology optimization2 for sir
Topology optimization2 for sirTopology optimization2 for sir
Topology optimization2 for sir
 
Escalate Design with Topology Optimization: Design Lighter, Faster and Stronger
Escalate Design with Topology Optimization: Design Lighter, Faster and StrongerEscalate Design with Topology Optimization: Design Lighter, Faster and Stronger
Escalate Design with Topology Optimization: Design Lighter, Faster and Stronger
 
Airbus - Topology Optimization Methods for Optimal Aircraft Components
Airbus - Topology Optimization Methods for Optimal Aircraft ComponentsAirbus - Topology Optimization Methods for Optimal Aircraft Components
Airbus - Topology Optimization Methods for Optimal Aircraft Components
 
130226 open innovation in additive manufacturing v3
130226 open innovation in additive manufacturing v3130226 open innovation in additive manufacturing v3
130226 open innovation in additive manufacturing v3
 
Business models for Additive Manufacturing
Business models for Additive ManufacturingBusiness models for Additive Manufacturing
Business models for Additive Manufacturing
 
Introduction to 3D printing and its applications within Art and Design
Introduction to 3D printing and its applications within Art and DesignIntroduction to 3D printing and its applications within Art and Design
Introduction to 3D printing and its applications within Art and Design
 
Additive Manufacturing (2.008x Lecture Slides)
Additive Manufacturing (2.008x Lecture Slides)Additive Manufacturing (2.008x Lecture Slides)
Additive Manufacturing (2.008x Lecture Slides)
 
Additive Manufacturing 3D printing
Additive Manufacturing 3D printingAdditive Manufacturing 3D printing
Additive Manufacturing 3D printing
 

More from Venkat Vijay Kumar Pentapati (6)

Report hyper mesh
Report hyper meshReport hyper mesh
Report hyper mesh
 
One day trip in hyderabad
One day trip in hyderabadOne day trip in hyderabad
One day trip in hyderabad
 
It vsp
It vspIt vsp
It vsp
 
Gyroscope
GyroscopeGyroscope
Gyroscope
 
Toolmaker’s microscope(tmm)
Toolmaker’s microscope(tmm)Toolmaker’s microscope(tmm)
Toolmaker’s microscope(tmm)
 
Window stoppers
Window stoppersWindow stoppers
Window stoppers
 

Topology optimization

  • 1. Topology Optimization P Venkat Vijay Kumar Mechanical branch KLUniversity
  • 2. What is Topology??? Topology is a major area of mathematics concerned with properties that are preserved under continuous deformations of objects, such as deformations that involve stretching, but no tearing or gluing
  • 3.
  • 4. Then… Optimization??? In mathematics, computational science, or management science, mathematical optimization (alternatively, optimization or mathematical programming) refers to the selection of a best element from some set of available alternatives.
  • 5.
  • 6. Finally… Topology Optimization Topology optimization is a mathematical approach that optimizes material layout within a given design space, for a given set of loads and boundary conditions such that the resulting layout meets a prescribed set of performance targets.
  • 7.
  • 8. How??? • Any optimization technique can be used as tool of optimization in Topology Optimization. • An objective function has to be formulated which has to be optimized / maximized / minimized. • Then using the optimization techniques number of probabilities are produced and the result that suits best is choosen.
  • 9. Detailed how???? • Lets start with little more detail. • Consider a structure or component, say a cantilever beam. Let our objective be minimizing the deflection if possible, minimizing the mass Cantilever beam Load F
  • 10. Original deflections and stresses in the beam in the initial conditions of load and structure
  • 11. Divide the cantilever into number of 1 1 1 1 1 1 1 1 1 1 checks i.e. rows 1 1 1 1 1 1 1 Cantilever beam 1 1 1 1 1 1 1 1 1 1 1 1 1 and columns. 1 1 1 1 1 1 1 1 1 1 Now, considering the presence of material as 1 and void as 0, number the checks one by one
  • 12. • Now would be the task of optimization. • The numbers considered are taken into a row matrix [1 1 1 .. .. .. 40 1’s] • From the original analysis its clear that some portion of the beam is not taking the load, therefore lets remove the portion with less stress.
  • 13. 1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 Cantilever beam 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 [1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1] - A parent
  • 14. 1 1 1 1 1 1 1 1 1 1 0 0 0 0 0 0 0 1 1 1 Cantilever beam 0 0 0 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1 [1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 1 1 1 0 0 0 1 1 1 1 1 1 1 1 1 1 1 1 1 1] - One more parent
  • 15. • For each parent we analyze the amount of mass and deflection that occurs • And keep doing until our objective is met. • A topology optimized cantilever beam is as follows…
  • 16.
  • 17. Software… soft procedure • Modeling • Analysis • Optimizing • Remodeling • Producing manufacturable design
  • 18. Applications • Now Topology optimization is being spread to composite structures • Topology optimization is the major tool for optimizing aero structures • There are lot of things around us that have to be optimized… ..