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 Abdol R. Chini, and Stuart F. Bruening (2003) Find in CUMINCAD Deconstruction and Materials Reuse in the United States , International Electronic Journalof Construction, The Future of Sustainable Construction (Special Issue)

100%; open Alcorn A. (2003) Find in CUMINCAD Embodied energy and CO2 coefficients for NZ building materials , Wellington, New Zealand: Centre for Building Performance Research

100%; open Argun, A.A. and Cirpan, A. and Reynolds, J.R. (1990) Find in CUMINCAD The first truly all-polymer electrochromic devices , Advanced Materials, 2003, 15(16): p. 1338-1341

100%; open Callister, William (2003) Find in CUMINCAD An Introduction to Materials Science and Engineering , New York: John Wiley and Sons

100%; open Chiellini, E, Corti, A, D'Antone, S and Solaro, R (2003) Find in CUMINCAD Biodegradation of Poly(Vinyl Alcohol) based Materials , Progress in Polymer Science, 28, pp 963-1014

100%; open Degarmo, E. Paul; Black, J.T. (2003) Find in CUMINCAD Materials and Processes in Manufacturing (9th ed) , 60, 375-376. New York: Wiley

100%; open Draganescu, F., Gheorghe, M., Doicin, C.V. (2003) Find in CUMINCAD Models of machine tool efficiency and specific consumed energy , Journal of Materials Processing Technology 141, 9–15

100%; open Dyskin A., Extrin Y., Kanel-Belov A. et al. (2003) Find in CUMINCAD Topological interlocking of platonic solids: a way to new materials and structures , Phil Mag Lett; 83(3): 197–203

100%; open Dyskin, A, Estrin, Y, Kanel-Belov, A and Pasternak, E (2003) Find in CUMINCAD Topological interlocking of platonic solids: a way to new materials and structures , Philosophical magazine letters, 83(3), pp. 197-203

100%; open Dyskin, A, Estrin, Y, Pasternak, E, Khor, H.C. and Kanel-Belov, A (2003) Find in CUMINCAD Fracture Resistant Structures Based on Topological Interlocking with Non?planar Contacts , Advanced Engineering Materials

100%; open Dyskin, A. V. et al. (2003) Find in CUMINCAD Topological interlocking of platonic solids: A way to new materials and structures , Philosophical Magazine Letters, 83(3), pp. 197-203. Available at: https://doi.org/10.1080/0950083031000065226

100%; open Dyskin, A. V., Estrin, Y., Kanel-Belov, A. J., & Pasternak, E. (2003) Find in CUMINCAD Topological interlocking of platonic solids: A way to new materials and structures , Philosophical magazine letters, 83(3), 197-203. https://doi.org/10.1080/0950083031000065226

100%; open Dyskin, A. V., Estrin, Y.,Pasternak, E., Khor, H. C., & Kanel-Belov, A. J. (2003) Find in CUMINCAD Fracture Resistant Structures Based on Topological Interlocking with Non-planar Contacts , Advanced Engineering Materials, 5(3), 116–119

100%; open Dyskin, A.V., Estrin, Y., Kanel-Belov, A.J. and Pasternak, E. (2003) Find in CUMINCAD Topological Interlocking of Platonic Solids: A Way to New Materials and Structures , Philosophical Magazine Letters, 83(3), pp. 197-203

100%; open Dyskin, AV, Estrin, Y, Pasternak, E, Khor, HC and Kanel Belov, AJ (2003) Find in CUMINCAD Fracture Resistant Structures Based on Topological Interlocking with Non?planar Contacts , Advanced Engineering Materials, 5(3), pp. 116-119

100%; open FERREIRA, J. (2003) Find in CUMINCAD Integration of reverse engineering and rapid tooling in foundry technology , Journal of Materials Processing Technology, 142, p. 374?382

100%; open Gay, D. and Hoa, S.V. and Tsai, S.W. (eds.) (2003) Find in CUMINCAD Composite Materials: Design and Applications , CRC Press, London

100%; 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

100%; open Jung, K., S. J. Kim, T. J., Kang, K. Chung, and J. R. Youn (2003) Find in CUMINCAD Optimum Modeling of 3-D Circular Braided Composites , Proceedings of the 14th International Committee on Composite Materials Conference, 14–18. San Diego, CA: ICCM

100%; open Jung, K., S. J. Kim, T. J., Kang, K. Chung, and J. R. Youn (2003) Find in CUMINCAD Optimum Modeling of 3-D Circular Braided Composites , Proceedings of the 14th International Committee on Composite Materials Conference, 14–18. San Diego, CA: ICCM

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