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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20%; open Vasey, L.., E. Baharlou, M. Dörstelmann, V. Koslowski, M. Prado, G. Schieber, A. Menges, and J. Knippers (2015) Find in CUMINCAD Behavioral Design and Adaptive Robotic Fabrication of a Fiber Composite Compression Shell with Pneumatic Formwork , Computational Ecologies: Design in the Anthropocene, Proceedings of the 35th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA) edited by L. Combs and C. Perry. University of Cincinnati, Cincinnati OH. 297–309.

20%; open Vasey, Lauren, Baharlou, Ehsan, Dörstelmann, Moritz, Koslowski, Valentin, Prado, Marshall, Schieber, Gundula, Menges, Achim and Knippers, Jan (2015) Find in CUMINCAD BEHAVIORAL DESIGN AND ADAPTIVE ROBOTIC FABRICATION OF A FIBER COMPOSITE COMPRESSION SHELL WITH PNEUMATIC FORMWORK , ACADIA 2015, Cincinnati, pp. 296-309

20%; open Vasey, Lauren, Ehsan Baharlou, Moritz Dorstelmann, Valentin Koslowski, Marshall Prado, Gundula Schieber, Achim Menges, and Jan Knippers (2015) Find in CUMINCAD Behavioral Design and Adaptive Robotic Fabrication of a Fiber Composite Compression Shell with Pneumatic Formwork , Computational Ecologies: Design in the Anthropocene, Proceedings of the 35th Annual Conference of the Association for Computer Aided Design in Architecture, edited by Lonn Combs and Chris Perry. Cincinnati, OH: ACADIA. 296–309

20%; open Vasey, Lauren, Ehsan Baharlou, Moritz Dorstelmann, Valentin Koslowski, Marshall Prado, Gundula Schieber, Achim Menges, and Jan Knippers (2015) Find in CUMINCAD Behavioral Design and Adaptive Robotic Fabrication of a Fiber Composite Compression Shell with Pneumatic Formwork , Computational Ecologies: Design in the Anthropocene, Proceedings of the 35th Annual Conference of the Association for Computer Aided Design in Architecture, edited by Lonn Combs and Chris Perry. Cincinnati, OH: ACADIA. 296–309

20%; open Vasey, Lauren, Ehsan Baharlou, Moritz Dörstelmann, Valentin Koslowski, Marshall Prado, Gundula Schieber, Achim Menges, and Jan Knippers (2015) Find in CUMINCAD Behavioral Design and Adaptive Robotic Fabrication of a Fiber Composite Compression Shell with Pneumatic Formwork , Computational Ecologies: Design in the Anthropocene, Proceedings of the 35th Annual Conference of the Association for Computer Aided Design in Architecture, edited by Lonn Combs and Chris Perry, 297–309. Cincinnati, OH: ACADIA

20%; open Vasey, Lauren, Ehsan Baharlou, Moritz Dörstelmann, Valentin Koslowski, Marshall Prado, Gundula Schieber, Achim Menges, and Jan Knippers (2015) Find in CUMINCAD Behavioral Design and Adaptive Robotic Fabrication of a Fiber Composite Compression Shell with Pneumatic Formwork , Computational Ecologies: Design in the Anthropocene, Proceedings of the 35th Annual Conference of the Association for Computer Aided Design in Architecture, edited by Lonn Combs and Chris Perry, 297–309. Cincinnati, OH: ACADIA

20%; open Vasey. Lauren, Ehsan Baharlou. Moritz Dörstelmann, Valentin Koslowski, Marshall Prado, Gundula Schieber, Achim Menges, and Jan Knippers (2015) Find in CUMINCAD Behavioral Design and Adaptive Robotic Fabrication of a Fiber Composite Compression Shell with Pneumatic Formwork , Computational Ecologies: Design in the Anthropocene—Proceedings of the 35th Annual Conference of the Association for Computer Aided Design in Architecture, edited by Lon Combs and Chris Perry. Cincinnati: ACADIA. 297–309.

20%; open Weissenbock, R. (2015) Find in CUMINCAD Robotic Design-fabrication Exploring Robotic Fabrication As a Dynamic Design Process , Real Time - Proceedings of the 33rd eCAADe Conference (Vol 2, pp. 39-318). The Association for Education and Research Computer Aided Architectural Design Europe. Available at: https://doi.org/1.52842/conf.ecaade.215.2.39

20%; open Weissenböck, R (2015) Find in CUMINCAD Robotic Design-Fabrication , Real Time - Proceedings of the 33rd eCAADe Conference - Volume 2, Vienna, pp. 309-318

20%; open Willmann, J., Knauss, M., Bonwetsch, T., Apolinarska, A. A., Gramazio, F., & Kohler, M. (2016) Find in CUMINCAD Robotic timber construction - Expanding additive fabrication to new dimensions [Article] , Automation in Construction, 61, 16-23. https://doi.org/10.1016/j.autcon.2015.09.011

20%; open Willmann, Jan , Michael Knauss, Tobias Bonwetsch, Anna Aleksandra Apolinarska, Fabio Gramazio, and Matthias Kohler (2015) Find in CUMINCAD Robotic Timber Construction: Expanding Additive Fabrication to New Dimensions , Automation in Construction 61: 16–23

20%; open Willmann, Jan, Michael Knauss, Tobias Bonwetsch. et al. (2015) Find in CUMINCAD Robotic timber construction-Expanding additive fabrication to new dimensions , Automation in Construction. 61:16–23

20%; open Wit, AJ, Eisinger, D and Putt, S (2015) Find in CUMINCAD Human Interaction-Oriented Robotic Form Generation , Reis, LP, Moreira, AP, Lima, PU, Montano, L and Munoz-Martinez, V (eds), Robot 2015: Second Iberian Robotics Conference, Springer International Publishing, pp. 353-364

20%; open Wit, Andrew, Daniel Eisinger, and Steven Putt (2016) Find in CUMINCAD Human Interaction-Oriented Robotic Form Generation , Robot 2015: Second Iberian Robotics Conference: Advances in Robotics, vol. 2, edited by L. P. Reis, A. P. Moreira, P. U. Lima, L. Montano, and V. Mu?oz-Martinez. Switzerland: Springer Verlag. 353–364.

20%; open Yang, F., Jianmib, L., Chen, y. and You, Z. (2015) Find in CUMINCAD A deployable bennett Network in saddle Surface , The 14th IFToMM World Congress, Taipei, pp. 428-434

20%; open P. Aejmelaeus-Lindström, A. Mirjan, F. Gramazio, M. Kohler, S. Kernizan, B. Sparrman, J. Laucks, and S. Tibbits (2017) Find in CUMINCAD Granular Jamming of Loadbearing and Reversible Structures: Rock Print and Rock Wall , Architectural Design 87 (4): 82–87

20%; open Petrus Aejmelaeus-Lindström, Ammar Mirjan, Fabio Gramazio, Matthias Kohler, Schendy Kernizan, Björn Sparrman, Jared Laucks, and Skylar Tibbits (2017) Find in CUMINCAD Granular Jamming of Loadbearing and Reversible Structures: Rock Print and Rock Wall , Architectural Design 87 (4): 82–87

20%; open (2010) Find in CUMINCAD You must remember this: What makes something memorable? , Scientific American, September, 2010

20%; open Yi-Luen Do, E. (2002) Find in CUMINCAD Digital Sandbox, integrating landform making and analysis for landscape design , Artificial Intelligence in Design, AID ‘02, Kluwer Academic Publishers, pp 165-188. Will be modified, as I have used this title for a poster

20%; open Bedarf, P., Szabo, A., Zanini, M. & Dillenburger, B. (2021) Find in CUMINCAD Machine Sensing for Mineral Foam 3D Printing , International Conference on Intelligent Robots and Systems: Workshop Robotic Fabrication, IROS 2021. https://doi.org/10.3929/ethz-b-000506097BubbleDeck. (2021). The Original Voided Slab. Retrieved May 11 2021, from https://www.bubbledeck.comCobiax. (2021). Voided flat plate slab technologies available worldwide. Retrieved May 11 2021, from https://www.cobiax.com/intl/en/Compas. (2020). Retrieved May 11 2021, from https://compas.dev/index.htmlFernández-Jiménez, A., & Palomo, A. (2005). Composition and microstructure of alkali activated fly ash binder: Effect of the activator. Cement and Concrete Research, 35(10), 1984–1992. https://doi.org/10.1016/j.cemconres.2005.03.003Furet, B., Poullain, P., & Garnier, S. (2019). 3D printing for construction based on a complex wall of polymer-foam and concrete. Additive Manufacturing, 28, 58–64. https://doi.org/10.1016/j.addma.2019.04.002Georgopoulos, C., & Minson, A. (2014). Sustainable concrete solutions. Wiley-Blackwell.Halpern, A. B., Billington, D. P., & Adriaenssens, S. (2013). The Ribbed Floor Slab Systems of Pier Luigi Nervi. Proceedings of the International Association for Shell and Spatial Structures (IASS), 7. http://formfindinglab.princeton.edu/wp-content/uploads/2011/09/Nervi_ribbed_floors.pdfHansemann, G., Schmid, R., Holzinger, C., Tapley, J. P., Peters, S., Trummer, A., & Kupelwieser, H. (2021). Lightweight Reinforced Concrete Slab: 130 different 3D printed voids. CPT Worldwide - Construction Printing Technology, 2021(2), 68.Jipa, A., Calvo Barentin, C., Lydon, G., Rippmann, M., Chousou, G., Lomaglio, M., Schlüter, A., Block, P., & Dillenburger, B. (2019). 3D-Printed Formwork for Integrated Funicular Concrete Slabs. Proceedings of the IASS Annual Symposium 2019, 10. https://www.researchgate.net/publication/335175125_3D-Printed_Formwork_for_Integrated_Funicular_Concrete_SlabsJipa, A., & Dillenburger, B. (2021). 3D Printed Formwork for Concrete: State-of-the-Art, Opportunities, Challenges, and Applications. 3D Printing and Additive Manufacturing, 00, 24. https://doi.org/10.1089/3dp.2021.0024Keating, S. J., Leland, J. C., Cai, L., & Oxman, N. (2017). Toward site-specific and self-sufficient robotic fabrication on architectural scales. Science Robotics, 2(5), 1-15. https://doi.org/10.1126/scirobotics.aam8986Liew, A., López, D. L., Van Mele, T., & Block, P. (2017). Design, fabrication and testing of a prototype, thin-vaulted, unreinforced concrete floor. Engineering Structures, 137, 323–335. https://doi.org/10.1016/j.engstruct.2017.01.075Palomo, A., Grutzeck, M. W., & Blanco, M. T. (1999). Alkali-activated fly ashes: A cement for the future. Cement and Concrete Research, 29(8), 1323–1329. https://doi.org/10.1016/S0008-8846(98)00243-9UN Environment Programme. (2020). Global Status Report for Buildings and Construction. Retrieved May 11 2021, from https://globalabc.org/sites/default/files/inline-files/2020%20Buildings%20GSR_FULL%20REPORT.pdfXu, H., & Van Deventer, J. S. J. (2000). The geopolymerisation of alumino-silicate minerals. International Journal of Mineral Processing, 59(3), 247–266. https://doi.org/10.1016/S0301-7516(99)00074-5Zhao, H., Gu, F., Huang, Q.-X., Garcia, J., Chen, Y., Tu, C., Benes, B., Zhang, H., Cohen-Or, D., & Chen, B. (2016). Connected fermat spirals for layered fabrication. ACM Transactions on Graphics, 35(4), 1–10. https://doi.org/10.1145/2897824.2925958

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