FREE delivery to all EXCLUSIVE BOOKS stores nationwide. FREE delivery to your door on all orders over R450. Excludes all international deliveries.

Topology Optimization Design of Heterogeneous Materials and Structures

Daicong Da
    Product form
      FORMAT: Hardback
      YOU COULD EARN 0 FUTURE RETAIL DISCOUNTS.

      This product is either out of print or out of stock. Add it to your wishlist and we will automatically let you know if it comes back into stock. Add to Wishlist

      ESTIMATED DELIVERY: Possibly out of print
      BUY NOW PAY LATER
      From R 0.00 per month!
      3x monthly payments of R 0.00 with
      4x fortnightly payments of R 0.00 with

      This product is either out of print or out of stock. Add it to your wishlist and we will automatically let you know if it comes back into stock. Add to Wishlist

      This book pursues optimal design from the perspective of mechanical properties and resistance to failure caused by cracks and fatigue. The book abandons the scale separation hypothesis and takes up phase-field modeling, which is at the cutting edge of research and is of high industrial and practical relevance. Part 1 starts by testing the limits of the homogenization-based approach when the size of the representative volume element is non-negligible compared to the structure. The book then introduces a non-local homogenization scheme to take into account the strain gradient effects. Using a phase field method, Part 2 offers three significant contributions concerning optimal placement of the inclusion phases. Respectively, these contributions take into account fractures in quasi-brittle materials, interface cracks and periodic composites. The topology optimization proposed has significantly increased the fracture resistance of the composites studied.
      Format: Hardback CONTRIBUTORS: Daicong Da EAN: 9781786305589 COUNTRY: United Kingdom PAGES: WEIGHT: 476 g HEIGHT: 236 cm
      PUBLISHED BY: ISTE Ltd and John Wiley & Sons Inc DATE PUBLISHED: 2020-01-21 CITY: GENRE: MATHEMATICS / General WIDTH: 158 cm SPINE:

      Book Themes:

      Topology, Optimization

      Customer Reviews

      Be the first to write a review
      0%
      (0)
      0%
      (0)
      0%
      (0)
      0%
      (0)
      0%
      (0)
      Daicong Da is a research associate in the Mechanical Engineering department at the University of Wisconsin-Madison, USA. His research interests cover structural topology optimization and its applications.
      This book pursues optimal design from the perspective of mechanical properties and resistance to failure caused by cracks and fatigue. The book abandons the scale separation hypothesis and takes up phase-field modeling, which is at the cutting edge of research and is of high industrial and practical relevance. Part 1 starts by testing the limits of the homogenization-based approach when the size of the representative volume element is non-negligible compared to the structure. The book then introduces a non-local homogenization scheme to take into account the strain gradient effects. Using a phase field method, Part 2 offers three significant contributions concerning optimal placement of the inclusion phases. Respectively, these contributions take into account fractures in quasi-brittle materials, interface cracks and periodic composites. The topology optimization proposed has significantly increased the fracture resistance of the composites studied.
      Format: Hardback CONTRIBUTORS: Daicong Da EAN: 9781786305589 COUNTRY: United Kingdom PAGES: WEIGHT: 476 g HEIGHT: 236 cm
      PUBLISHED BY: ISTE Ltd and John Wiley & Sons Inc DATE PUBLISHED: 2020-01-21 CITY: GENRE: MATHEMATICS / General WIDTH: 158 cm SPINE:

      Book Themes:

      Topology, Optimization

      Customer Reviews

      Be the first to write a review
      0%
      (0)
      0%
      (0)
      0%
      (0)
      0%
      (0)
      0%
      (0)
      Daicong Da is a research associate in the Mechanical Engineering department at the University of Wisconsin-Madison, USA. His research interests cover structural topology optimization and its applications.

      Recently viewed products

      Login

      Forgot your password?

      Don't have an account yet?
      Create account