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Meeting 2020 TMS Annual Meeting & Exhibition
Symposium Frontiers of Materials Award Symposium: Leveraging Materials in Topology Optimization
Presentation Title Materials, Design and Emerging Objects
Author(s) Virginia San Fratello
On-Site Speaker (Planned) Virginia San Fratello
Abstract Scope San Fratello’s research revolves around the convergence of digital, ecological, and building component design in architecture. She believes design for the 21st century absolutely must incorporate sustainable methods and take advantage of local and ecological material resources. In an era of throw away consumerism and over consumption, excessive energy use, too much waste, and toxic materials, designers have a responsibility to the public and the planet, to change our mindset about what our buildings are made of, how they function and to inform the manufacturing processes used to fabricate architecture. This presentation will highlight the innovations from Emerging Objects in their unique approach to materials, sizes, and 3D printing.
Proceedings Inclusion? Undecided


Large Scale Level Set Topology Optimization
Level Set Topology Optimization with the Reproducing Kernel Particle Method
Leveraging Materials in Topology Optimization
Materials, Design and Emerging Objects
Multiscale Design Optimization for Integrated Structural-material Systems
Multiscale/Level Design of Materials and Structures
Nonlinear Composite Materials Design through Multi-material Topology Optimization Frameworks
Part-Scale Support Structure Optimization for Minimizing Residual Stress for Laser Powder Bed Fusion Additive Manufacturing
Sustainable Fashion Design, 3D and 4D Printing, and The New Age Lab
Topology Optimization Design of Negative Stiffness and Stretchable Metamaterial via Bezier-based Explicit Density Representation Algorithm
Topology Optimization for Additive Manufacturing
Topology Optimization for Architected Materials
Topology Optimization of Load Carrying Heat Exchangers and Battery Packs
Topology Optimization of the Fast Heat Responsive Structures via a Level-set Method

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