Albert C. To, Ph.D.

Affiliations: 
2005 University of California, Berkeley, Berkeley, CA, United States 
Area:
Civil Engineering, Mechanical Engineering
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"Albert To"
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Parents

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Steven Dan Glaser grad student 2005 UC Berkeley
 (Crack propagation and wave scattering in piezoelectric materials.)
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Publications

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Takezawa A, To AC, Chen Q, et al. (2020) Sensitivity analysis and lattice density optimization for sequential inherent strain method used in additive manufacturing process Computer Methods in Applied Mechanics and Engineering. 370: 113231
Deng H, Hinnebusch S, To AC. (2020) Topology optimization design of stretchable metamaterials with Bézier skeleton explicit density (BSED) representation algorithm Computer Methods in Applied Mechanics and Engineering. 366: 113093
Chen Q, Liu J, Liang X, et al. (2020) A level-set based continuous scanning path optimization method for reducing residual stress and deformation in metal additive manufacturing Computer Methods in Applied Mechanics and Engineering. 360: 112719
Deng H, Cheng L, Liang X, et al. (2020) Topology optimization for energy dissipation design of lattice structures through snap-through behavior Computer Methods in Applied Mechanics and Engineering. 358: 112641
Paul S, Liu J, Strayer ST, et al. (2020) A Discrete Dendrite Dynamics Model for Epitaxial Columnar Grain Growth in Metal Additive Manufacturing with Application to Inconel Additive Manufacturing. 101611
Tran HT, Liang X, To AC. (2020) Efficient prediction of cracking at solid-lattice support interface during laser powder bed fusion via global-local J-integral analysis based on modified inherent strain method and lattice support homogenization Additive Manufacturing. 101590
Baykasoğlu C, Akyildiz O, Tunay M, et al. (2020) A process-microstructure finite element simulation framework for predicting phase transformations and microhardness for directed energy deposition of Ti6Al4V Additive Manufacturing. 35: 101252
Liang X, Dong W, Hinnebusch S, et al. (2020) Inherent strain homogenization for fast residual deformation simulation of thin-walled lattice support structures built by laser powder bed fusion additive manufacturing Additive Manufacturing. 32: 101091
Tran HT, Chen Q, Mohan J, et al. (2020) A new method for predicting cracking at the interface between solid and lattice support during laser powder bed fusion additive manufacturing Additive Manufacturing. 32: 101050
Deng H, To AC. (2020) Topology optimization based on deep representation learning (DRL) for compliance and stress-constrained design Computational Mechanics. 66: 449-469
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