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 Loveridge, R and Coray, T (2017) Find in CUMINCAD Robots on Construction Sites: The Potential and Challenges of On-Site Digital Fabrication , Science Robotics, 2

67%; open M. Yablonina, M. Prado, E. Baharlou, T. Schwinn, and A. Menges (2017) Find in CUMINCAD Mobile Robotic Fabrication System For Filament Structures , Fabricate 2017, 202–209

67%; open Madeline Gannon (2017) Find in CUMINCAD Human-centered Interfaces for autonomous fabrication machines , Doctoral Dissertation

67%; open Markus Giftthaler, Timothy Sandy, Kathrin Dörfer, Ian Brooks, Mark Buckingham, Gonzalo Rey, Matthias Kohler, Fabio Gramazio, and Jonas Buchli (2017) Find in CUMINCAD Mobile Robotic Fabrication at 1:1 Scale: The In Situ Fabricator , Construction Robotics 1 (1–4): 3–14

67%; open Martín-Pastor, A., López-Martínez, A. & Santos-Calvo, H. (2017) Find in CUMINCAD Digital fabrication and ephemeral architecture: teaching Innovation in the final degree project for the creation of new Professional opportunities , Proceedings of the 9th International Conference on Education and New Learning Technologies, EDULEARN (pp. 3830-3835). IATED. DOI: 10.21125/edulearn.2017.1830. Barcelona

67%; open Mather, R.R. & Wilson, J.I.B. (2017) Find in CUMINCAD Fabrication of Photovoltaic Textiles , Coatings, 7(5), 63

67%; open Menges. A, Coorea. D (2017) Find in CUMINCAD Fused Filament Fabrication for Multi-kinematicstate climate , Responsive Aperture, Institure for Computational Design, Stuttgart, Fabricate, 2017

67%; open Menges. A, Coorea. D (2017) Find in CUMINCAD Fused Filament Fabrication for Multi-kinematicstate climate , Responsive Aperture, Institure for Computational Design, Stuttgart, Fabricate, 2017

67%; open Mitchell, P (2017) Find in CUMINCAD A Robotic Fabrication Methodology for Dovetail and Finger Jointing: An Accessible & Bespoke Digital Fabrication Process for Robotically-Milled Dovetail & Finger Joints , Proceedings of ACADIA, pp. 456- 463

67%; open Mohite, A, Kochneva, M and Kotnik, T (2017) Find in CUMINCAD Surface ornamentation as Byproduct of digital fabrication , project catalog of ACADIA 2017, Cambridge, pp. 204-209

67%; open Moreira, E. et al. (2017) Find in CUMINCAD Documentation and digital fabrication methods for restoration of eclectic metal ornaments , CELANI, Gabriela; KANOUN, Olfa (Orgs.). Frontiers of Science and Technology. Berlin, Boston: De Gruyter

67%; open Mouratidis, K. (2017) Find in CUMINCAD Built environment and social well-being: How does urban form affect social life and personal relationships? , Cities, 74, 7-20. https://doi.org/10.1016/j.cities.2017.10.020

67%; open Muhammad, H, Ceseracciu, L, Canale, C, Heredia-Guerrero, J and Athanassiou, A (2017) Find in CUMINCAD Advanced Materials From Fungal Mycelium: Fabrication and Tuning of Physical Properties , Scientific Reports, 7, pp. 1-11

67%; open Nicholas P, Zwierzycki M, Norgaard Clausen E, et al. (2017) Find in CUMINCAD Adaptive robotic fabrication for conditions of material inconsistency increasing the geometric accuracy of incrementally formed metal panels , Menges A, Sheil B, Glynn R, et al. (eds) Fabricate: rethinking design and construction - proceedings of fabricate 2017. London: UCL Press, p. 114–121

67%; open Nicholas P, Zwierzycki M, Norgaard EC, et al. (2017) Find in CUMINCAD Adaptive robotic fabrication for conditions of material inconsist-ency: increasing the geometric accuracy of incrementally formed metal panels , Menges A, Sheil B, Glynn R, et al. (eds.) Fabricate 2017. London: UCL Press, pp. 114–121

67%; open Nicholas P, Zwierzycki M, Norgaard EC, et al. (2017) Find in CUMINCAD Adaptive robotic fabrication for conditions of material inconsist-ency: increasing the geometric accuracy of incrementally formed metal panels , Fabricate 2017. London: UCL Press, pp. 114–121

67%; open Nicholas P., Zwierzycki M., N?rgaard E. et al. (2017) Find in CUMINCAD Adaptive robotic fabrication for conditions of material inconsistency: increasing the geometric accuracy of incrementally formed metal panels , Proceedings of the Fabricate confer- ence, Stuttgart, 6–8 April 2017, pp. 114–121. London: UCL Press

67%; open Nicholas, P, Zwierzycki, M, N?rgaard, D, Ramsgaard Thomsen, M and Hutchinson, C (2017) Find in CUMINCAD Adaptive Robotic Fabrication For Conditions Of Material Inconsistency: Increasing The Geometric Accuracy Of Incrementally Formed Metal Panels , Fabricate 2017, pp. 114-121

67%; open Nicholas, P, Zwierzycki, M, Norgaard, E, Leinweber, S, Stasiuk, D, Ramsgaard Thomsen, M and Hutchinson, C (2017) Find in CUMINCAD Adaptive robotic fabrication for conditions of material inconsistency: Increasing the geometric accuracy of incrementally formed metal panels , Fabricate 2017

67%; open Nicholas, P, Zwierzycki, M, Nørgaard Clausen, E, Hutchinson, C and Thomsen, M (2017) Find in CUMINCAD Adaptive Robotic Fabrication For Conditions Of Material Inconsistency Increasing The Geometric Accuracy Of Incrementally Formed Metal Panels , Fabricate 2017, pp. 114-121

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