Crashworthiness design is an evolving discipline that combines vehicle crash simulation and design synthesis. The goal is to increase passenger safety subject to manufacturing cost constraints. The crashworthiness design process requires modeling of the complex interactions involved in a crash event. Current approaches utilize a parametrized optimization approach that requires response surface approximations of the design space. This is due to the expensive nature of numerical crash simulations and the high nonlinearity and noisiness in the design space. These methodologies usually require a significant effort to determine an initial design concept. In this paper, a heuristic approach to continuum-based topology optimization is developed for crashworthiness design. The methodology utilizes the cellular automata paradigm to generate three-dimensional design concepts. Furthermore, a constraint on maximum displacement is implemented to maintain a desired performance of the structures synthesized. Example design problems are used to demonstrate that the proposed methodology converges to a final topology in an efficient manner.
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e-mail: npatel@nd.edu
e-mail: bkang1@nd.edu
e-mail: jrenaud@nd.edu
e-mail: atovarp@unal.edu.co
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June 2009
Research Papers
Crashworthiness Design Using Topology Optimization
Neal M. Patel,
Neal M. Patel
Graduate Student Research Assistant
Department of Aerospace and Mechanical Engineering, Design Automation Laboratory,
e-mail: npatel@nd.edu
University of Notre Dame
, Notre Dame, IN 46556
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Byung-Soo Kang,
Byung-Soo Kang
Postdoctoral Research Assistant
Department of Aerospace and Mechanical Engineering, Design Automation Laboratory,
e-mail: bkang1@nd.edu
University of Notre Dame
, Notre Dame, IN 46556
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John E. Renaud,
John E. Renaud
Professor
Fellow ASME
Department of Aerospace and Mechanical Engineering, Design Automation Laboratory,
e-mail: jrenaud@nd.edu
University of Notre Dame
, Notre Dame, IN 46556
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Andrés Tovar
Andrés Tovar
Associate Professor
Mem. ASME
Department of Mechanical and Mechatronic Engineering,
e-mail: atovarp@unal.edu.co
National University of Colombia
, Bogotá, Colombia
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Neal M. Patel
Graduate Student Research Assistant
Department of Aerospace and Mechanical Engineering, Design Automation Laboratory,
University of Notre Dame
, Notre Dame, IN 46556e-mail: npatel@nd.edu
Byung-Soo Kang
Postdoctoral Research Assistant
Department of Aerospace and Mechanical Engineering, Design Automation Laboratory,
University of Notre Dame
, Notre Dame, IN 46556e-mail: bkang1@nd.edu
John E. Renaud
Professor
Fellow ASME
Department of Aerospace and Mechanical Engineering, Design Automation Laboratory,
University of Notre Dame
, Notre Dame, IN 46556e-mail: jrenaud@nd.edu
Andrés Tovar
Associate Professor
Mem. ASME
Department of Mechanical and Mechatronic Engineering,
National University of Colombia
, Bogotá, Colombiae-mail: atovarp@unal.edu.co
J. Mech. Des. Jun 2009, 131(6): 061013 (12 pages)
Published Online: May 21, 2009
Article history
Received:
April 10, 2008
Revised:
January 30, 2009
Published:
May 21, 2009
Citation
Patel, N. M., Kang, B., Renaud, J. E., and Tovar, A. (May 21, 2009). "Crashworthiness Design Using Topology Optimization." ASME. J. Mech. Des. June 2009; 131(6): 061013. https://doi.org/10.1115/1.3116256
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