MultiFab
暂无分享,去创建一个
Wojciech Matusik | Yuwang Wang | Pitchaya Sitthi-amorn | Joyce Kwan | Javier E. Ramos | Justin T. Lan | Wenshou Wang | W. Matusik | Pitchaya Sitthi-amorn | Joyce Kwan | J. Lan | Wenshou Wang | Yuwang Wang
[1] Wojciech Matusik,et al. Spec2Fab , 2013, ACM Trans. Graph..
[2] F. Pellacini,et al. Fabricating spatially-varying subsurface scattering , 2010, SIGGRAPH 2010.
[3] Javier Eduardo Ramos-Maltés. MultiFab : a multi-material 3D printing platform , 2014 .
[4] M. Boyce,et al. Co‐Continuous Composite Materials for Stiffness, Strength, and Energy Dissipation , 2011, Advanced materials.
[5] Markus H. Gross,et al. Computational design of actuated deformable characters , 2013, ACM Trans. Graph..
[6] M. Buehler,et al. Tough Composites Inspired by Mineralized Natural Materials: Computation, 3D printing, and Testing , 2013 .
[7] Nicholas M. Patrikalakis,et al. A dithering algorithm for local composition control with three-dimensional printing , 2003, Comput. Aided Des..
[8] C. Boccara,et al. Ultrahigh-resolution full-field optical coherence tomography. , 2004, Applied optics.
[9] Baining Guo,et al. Fabricating spatially-varying subsurface scattering , 2010, ACM Trans. Graph..
[10] Gordon Wetzstein,et al. Layered 3D: tomographic image synthesis for attenuation-based light field and high dynamic range displays , 2011, ACM Trans. Graph..
[11] M. Cima,et al. Three-Dimensional Printing: Rapid Tooling and Prototypes Directly from a CAD Model , 1990 .
[12] Vladimir Kolmogorov,et al. An experimental comparison of min-cut/max- flow algorithms for energy minimization in vision , 2001, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[13] M. Otaduy,et al. Design and fabrication of materials with desired deformation behavior , 2010, ACM Trans. Graph..
[14] Michael J. Cima,et al. Three Dimensional Printing: Rapid Tooling and Prototypes Directly from a CAD Model , 1992 .
[15] Thomas A. Campbell,et al. 3D printing of multifunctional nanocomposites , 2013 .
[16] Shuang Zhao,et al. Modular flux transfer , 2013, ACM Trans. Graph..
[17] Wei Sun,et al. Multi‐nozzle deposition for construction of 3D biopolymer tissue scaffolds , 2005 .
[18] Hod Lipson,et al. Automatic Design and Manufacture of Soft Robots , 2012, IEEE Transactions on Robotics.
[19] Jan Kautz,et al. Content-adaptive lenticular prints , 2013, ACM Trans. Graph..
[20] Joyce G Kwan. Design of electronics for a high-resolution, multi-material, and modular 3D printer , 2013 .
[21] Li-Hsin Han,et al. Fabrication of three-dimensional scaffolds for heterogeneous tissue engineering , 2010, Biomedical microdevices.
[22] Vladimir Kolmogorov,et al. An Experimental Comparison of Min-Cut/Max-Flow Algorithms for Energy Minimization in Vision , 2004, IEEE Trans. Pattern Anal. Mach. Intell..
[23] Fritz B. Prinz,et al. Shape deposition manufacturing of heterogeneous structures , 1997 .
[24] Wojciech Matusik,et al. Design and fabrication of materials with desired deformation behavior , 2010, SIGGRAPH 2010.
[25] Justin Lan,et al. Design and fabrication of a modular multi-material 3D printer , 2013 .
[26] Chi Zhou,et al. Digital material fabrication using mask‐image‐projection‐based stereolithography , 2013 .
[27] Neri Oxman,et al. Variable property rapid prototyping , 2011 .
[28] K. Ikuta,et al. Multi-polymer microstereolithography for hybrid opto-MEMS , 2001, Technical Digest. MEMS 2001. 14th IEEE International Conference on Micro Electro Mechanical Systems (Cat. No.01CH37090).
[29] Wojciech Matusik,et al. Physical reproduction of materials with specified subsurface scattering , 2010, ACM Trans. Graph..
[30] Wojciech Matusik,et al. OpenFab , 2013, ACM Trans. Graph..
[31] Gordon Wetzstein,et al. Layered 3D: tomographic image synthesis for attenuation-based light field and high dynamic range displays , 2011, SIGGRAPH 2011.
[32] Ivan Poupyrev,et al. Printed optics: 3D printing of embedded optical elements for interactive devices , 2012, UIST.
[33] Tim Weyrich,et al. Goal‐based Caustics , 2011, Comput. Graph. Forum.
[34] R. Wicker,et al. Development of an automated multiple material stereolithography machine , 2006 .
[35] Matthew E. Pepper,et al. Building off-the-shelf tissue-engineered composites , 2010, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[36] Pranav Kumar,et al. Direct‐write deposition of fine powders through miniature hopper‐nozzles for multi‐material solid freeform fabrication , 2004 .