Deformation Gradient Control of Physically Simulated Amorphous Solids

Author:

Xu Michael1ORCID,Levin David I.W.2ORCID

Affiliation:

1. Computing Science/Simon Fraser University/Gruvi Lab, Simon Fraser University, Canada

2. Computer Science/University of Toronto/Dynamic Graphics Project, University of Toronto, Canada

Publisher

ACM

Reference6 articles.

1. Deformable objects alive!

2. A moving least squares material point method with displacement discontinuity and two-way rigid body coupling

3. Yuanming Hu , Jiancheng Liu , Andrew Spielberg , Joshua  B. Tenenbaum , William  T. Freeman , Jiajun Wu , Daniela Rus , and Wojciech Matusik . 2018b. ChainQueen: A Real-Time Differentiable Physical Simulator for Soft Robotics. CoRR abs/1810.01054 ( 2018 ). arXiv:1810.01054http://arxiv.org/abs/1810.01054 Yuanming Hu, Jiancheng Liu, Andrew Spielberg, Joshua B. Tenenbaum, William T. Freeman, Jiajun Wu, Daniela Rus, and Wojciech Matusik. 2018b. ChainQueen: A Real-Time Differentiable Physical Simulator for Soft Robotics. CoRR abs/1810.01054 (2018). arXiv:1810.01054http://arxiv.org/abs/1810.01054

4. Chenfanfu Jiang , Craig Schroeder , Joseph Teran , Alexey Stomakhin , and Andrew Selle . 2016 . The Material Point Method for Simulating Continuum Materials. In ACM SIGGRAPH 2016 Courses ( Anaheim, California) (SIGGRAPH ’16). Association for Computing Machinery, New York, NY, USA, Article 24, 52 pages. https://doi.org/10.1145/2897826.2927348 10.1145/2897826.2927348 Chenfanfu Jiang, Craig Schroeder, Joseph Teran, Alexey Stomakhin, and Andrew Selle. 2016. The Material Point Method for Simulating Continuum Materials. In ACM SIGGRAPH 2016 Courses (Anaheim, California) (SIGGRAPH ’16). Association for Computing Machinery, New York, NY, USA, Article 24, 52 pages. https://doi.org/10.1145/2897826.2927348

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