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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67%; open B. Felbrich, N. Frueh, M. Prado, S. Saffarian, J. Solly, L. Vasey, J. Knippers, and A. Menges (2017) Find in CUMINCAD Multi-machine fabrication: An integrative design process utilising an autonomous UAV and Industrial robots for the fabrication of long span composite structures , Acadia 2017 Disciplines & Disruption: Proceedings of the 37th Annual Conference of the Association for Computer Aided Design in Architecture (ACADIA), 248–259

67%; open Baharlou, E (2017) Find in CUMINCAD Generative Agent-Based Architectural Design Computation: Behavioral strategies for integrating material, fabrication and construction characteristics in design processes , Ph.D. Thesis, ICD - University of Stuttgart

67%; open Baharlou, E (2017) Find in CUMINCAD Generative Agent-Based Architectural Design Computation: Behavioral strategies for integrating material, fabrication and construction characteristics in design processes , Ph.D. Thesis, Institute for Computational Design and Construction

67%; 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

67%; open Benjamin, Felbrich, Nikolas, Frueh, Marshall, Prado and Saman, Saffarian (2017) Find in CUMINCAD Multi-Machine Fabrication: An Integrative Design Process Utilising an Autonomous UAV and Industrial Robots for the Fabrication of Long Span Composite Structures , ACADIA 2017, Cambridge, pp. 248-259

67%; open Beorkrem, C (2017) Find in CUMINCAD Material Strategies in Digital Fabrication , Routledge, New York

67%; open Beorkrem, C. (2017) Find in CUMINCAD Material strategies in digital fabrication , Routledge, New York

67%; open Beorkrem, C. (2017) Find in CUMINCAD Material strategies in digital fabrication , Routledge.

67%; open Berdos G. and Cheng C. (2017) Find in CUMINCAD Towards active fabrication , Proceedings of the IASS Annual Symposium 2017, Interfaces – Architecture, Engineering, Science (eds A Boegle and M Grohmann), Hamburg, 25–28 September 2017)

67%; open Borrego, I (eds) (2017) Find in CUMINCAD Fold>Unfold: Deployable Structures Digital Fabrication. , Berlin: TU Berlin, Berlin

67%; open Bujari, A, Ciman, M, Gaggi, O and Palazzi, CE (2017) Find in CUMINCAD Using gamification to discover cultural heritage locations from geo-tagged photos , Personal and Ubiquitous Computing, 21(2), pp. 235-252

67%; open Cascone P., Galdi F., Giglio A. & Ciancio E. (2017) Find in CUMINCAD Architectural self-fabrication , International Journal of Parallel, Emergent and Distributed Systems, 32, S39-S53

67%; open CBE Center for the Built Environment (2017) Find in CUMINCAD Advanced Personal Comfort System Development and Testing ,

67%; open CBE Center for the Built Environment (2017) Find in CUMINCAD Advanced Personal Comfort System Development and Testing ,

67%; open Celani G and Kanoun O. (2017) Find in CUMINCAD Frontiers of science and technology: automation, sustainability, digital fabrication – selected extended papers of the 7th Brazilian-German conference, Campinas 2016 Brazil , Berlin: De Gruyter

67%; open Celani, G and Kanoun, O (2017) Find in CUMINCAD Frontiers of Science and Technology: Automation, Sustainability, Digital Fabrication - Selected Extended Papers of the 7th Brazilian-German Conference , de Gruyter, Brazil

67%; open Celani, G and Veloso, V (2017) Find in CUMINCAD The intersection of theory and technology: computational concepts applied to architectural design since the late 1980s - a literature review , Frontiers of Science and TechnologyAutomation, Sustainability, Digital Fabrication

67%; open Correa, D. and Menges, A. (2017) Find in CUMINCAD Fused Filament Fabrication for Multi-kinematic-state Climate-responsive Aperture , Menges A. et al (eds.) Fabricate 2017: 'Rethinking Design and Construction' [online]. UCL Press, pp. 190-195. Available at: http://doi.org/10.14324/111.9781787352148 (Accessed: 17 March 2024)

67%; open Craveiro, F, Bártolo, HM, Gale, A, Duarte, JP and Bartolo, PJ (2017) Find in CUMINCAD A design tool for resource-efficient fabrication of 3d-graded structural building components using additive manufacturing , Automation in Construction, 82, p. 75-83

67%; open Dahy, H (2017) Find in CUMINCAD Biocomposite materials based on annual natural fibres and biopolymers - Design, fabrication and customized applications in architecture , Construction and Building Materials

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