CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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100%; open Lee, Jae Hwang, Jonathan P. Singer, and Edwin L. Thomas (2012) Find in CUMINCAD Micro-/nanostructured Mechanical Metamaterials , Advanced Materials 24 (36): 4782–4810

100%; open Lee, Jae Hwang, Jonathan P. Singer, and Edwin L. Thomas (2012) Find in CUMINCAD Micro-/nanostructured Mechanical Metamaterials , Advanced Materials 24 (36): 4782–4810

100%; open Lee, Jae-Hwang, Jonathan P. Singer, and Edwin L. Thomas (2012) Find in CUMINCAD Micro-/Nanostructured Mechanical Metamaterials , Advanced Materials 24 (36): 4782–810

40%; open (2012) Find in CUMINCAD Interactive construction: interactive fabrication of functional mechanical devices , 25th ACM symposium, ACM, 599-606

40%; open (2012) Find in CUMINCAD Micro-Simulation Function to Display Textual Data in Virtual Reality , Int. J. Archit. Comput. 10, 205–218

40%; open Abdelhameed WA (2012) Find in CUMINCAD Micro-simulation function to display textual data in virtual reality , Int J Archit Comput 2012; 10: 205–218

40%; open Abdelhameed WA. (2012) Find in CUMINCAD Micro-Simulation function to display textual data in virtual reality , Int J Archit Comput; 10(2): 205–218.

40%; open Appelfeld, D, McNeil, A and Svendsen, S (2012) Find in CUMINCAD An hourly based performance comparison of an integrated micro-structural perforated shading screen with standard shading systems , Energy & Buildings, 50, pp. 166-176

40%; open Araya, S, Zolotovsky, E and Gidekel, M (2012) Find in CUMINCAD Living Architecture: Micro Performances of Bio Fabrication , Digital Physicality - Proceedings of the 30th eCAADe Conference, Prague, pp. 447-457

40%; open Araya, S, Zolotovsky, E and Gidekel, M (2012) Find in CUMINCAD Living architecture: Micro performances of bio fabrication , Proceedings of eCAADe 2012, Prague, p 447-457

40%; open Araya, S, Zolotovsky, E and Gidekel, M (2012) Find in CUMINCAD Living Architecture: Micro Performances of Bio Fabrication , Proceedings of the 30th eCAADe Conference: Digital Physicality, Prague, pp. 447-457

40%; open Araya, S, Zolotovsky, E and Gidekel, M (2012) Find in CUMINCAD Living architecture: Micro performances of bio fabrication , Proceedings of eCAADe 2012, Prague, p. 447-457

40%; open Araya, S, Zolotovsky, E, Gidekel, M (2012) Find in CUMINCAD Living Architecture: Micro Performances of Bio Fabrication” En ACHTEN, Henri; PAVLICEK, Jiri; HULIN, Jaroslav; MATEJDAN, Dana (eds , Digital Physicality - Proceedings of the 30th eCAADe Conference - Volume 2 / ISBN 978-9-4912070-3-7

40%; open Brad Holschuh, Edward Obropta, Leah Buechley, and Dava Newman (2012) Find in CUMINCAD Materials and Textile Architecture Analyses for Mechanical Counter-Pressure Space Suits Using Active Materials , AIAA SPACE 2012 Conference & Exposition. AIAA SPACE Forum. American Institute of Aeronautics and Astronautics

40%; open Gosselin, C., Duballet, R., Roux, P., Gaudilliere, N., Dirrenberger, J. & Morel, P. (2016) Find in CUMINCAD Large-scale 3D printing of ultra-high performance concrete–a new processing route for architects and builders , Materials & Design, 100, 102-109. https://doi.org/10.1016/j.matdes.2016.03.097Khoshnevis, B. (2004). Automated construction by contour crafting—related robotics and information technologies. Automation in construction, 13(1), 5-19. https://doi.org/10.1016/j.autcon.2003.08.012Le, T. T., Austin, S. A., Lim, S., Buswell, R. A., Gibb, A. G., & Thorpe, T. (2012). Mix design and fresh properties for high-performance printing concrete. Materials and structures, 45(8), 1221-1232. https://doi.org/10.1617/s11527-012-9828-zLi, Z., Wang, L., Ma, G., Sanjayan, J., & Feng, D. (2020). Strength and ductility enhancement of 3D printing structure reinforced by embedding continuous micro-cables. Construction and Building Materials, 264, 120196. https://doi.org/10.1016/j.conbuildmat.2020.120196Lim, J. H., Weng, Y., & Pham, Q. C. (2020). 3D printing of curved concrete surfaces using Adaptable Membrane Formwork. Construction and Building Materials, 232, 117075. https://doi.org/10.1016/j.conbuildmat.2019.117075Ma, G., Li, Z., Wang, L., & Bai, G. (2019). Micro-cable reinforced geopolymer composite for extrusion-based 3D printing. Materials Letters, 235, 144-147. https://doi.org/10.1016/j.matlet.2018.09.159Masoud Akbarzadeh. Andrei Nejur.(2019). Polyframe. From https://psl.design.upenn.edu/polyframe/Mechtcherine, V., Nerella, V. N., Will, F., Näther, M., Otto, J., & Krause, M. (2019). Large-scale digital concrete construction–CONPrint3D concept for on-site, monolithic 3D-printing. Automation in Construction, 107, 102933. https://doi.org/10.1016/j.autcon.2019.102933Salet, T. A., Ahmed, Z. Y., Bos, F. P., & Laagland, H. L. (2018). Design of a 3D printed concrete bridge by testing. Virtual and Physical Prototyping, 13(3), 222-236. https://doi.org/10.1080/17452759.2018.1476064

40%; open Hammond FL, Weisz J, De La Llera Kurth AA, et al. (2012) Find in CUMINCAD Towards a design optimization method for reducing the mechanical complexity of underactuated robotic hands , Proceedings - IEEE international conference on robot-ics and automation, Minnesota, MN, pp. 2843–2850. Piscataway, NJ: IEEE

40%; open Hansmeyer, M. and B. Dillenburger. (2012) Find in CUMINCAD Digital Grotesque: Towards a Micro-tectonic Architecture , SAJ, Serbain Architectural Journal 5(2): 194-201

40%; open Ilankeeran, P.K., Mohite, P.M. and Kamle, S. (2012) Find in CUMINCAD Axial Tensile Testing of Single Fibres , Modern Mechanical Engineering, 02(04), pp. 151-156

40%; open Jura, J 2012 (2012) Find in CUMINCAD Interpretation process in conceptual re-design of systems , PhD thesis, Faculty of Mechanical Engineering of the CTU in Prague, Prague

40%; open Kazanas, Panagiotis, Preetam Deherkar, Pedro Almeida, Helen Lockett, and Stewart Williams (2012) Find in CUMINCAD Fabrication of Geometrical Features Using Wire and Arc Additive Manufacture , Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 226 (6): 1042–51

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