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 Landmann, M., Heist, S., Dietrich, P., Lutzke, P., Gebhart, I., Templin, J., Kühmstedt, P., Tünnermann, A. & Notni, G. (2019) Find in CUMINCAD High-speed 3D thermography , Optics and Lasers in Engineering, 121, 448-455

60%; open Bard, J, Cupkova, D, Washburn, N and Zeglin, G (2019) Find in CUMINCAD Thermally Informed Robotic Topologies:Pro fi le-3D-Printing for the RoboticConstruction of Concrete Panels, ThermallyTuned Through High ResolutionSurface Geometry , Willmann, J, Block, P, Hutter, M, Byrne, K and Schork, T (eds), Robotic Fabrication in Architecture, Art and Design 2018, Springer Nature Switzerland AG, Basel, pp. 113-125

60%; 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

60%; open Kruger, J, Cho, S, Zeranka, S, Viljoen, C and van Zijl, G (2020) Find in CUMINCAD 3D concrete printer parameter optimisation for high rate digital construction avoiding plastic collapse , Composites Part B: Engineering, 183(October 2019), p. 107660

60%; open Sanguinetti P, Almazam K, Humaidan O, Colistra J. (2019) Find in CUMINCAD Evaluating the Potential of High-Performance Concrete 3D-Printing for Zero Energy Homes , Proceedings of the 16th IBPSA Conference. 2019;(16):5068-5075

60%; open Kontiza, I., Spathi, T and Bedarf, P (2018) Find in CUMINCAD Spatial Graded Patterns - A case study for large-scale differentiated space frame structures utilizing high-speed 3D-printed joints , Proceedings of the 36th InterInternational Conference on Education and Research in Computer Aided Architectural Design in Europe, £odŸ, Poland

60%; open Zhang, S. (2018) Find in CUMINCAD High-speed 3D shape measurement with structured light methods: A review , Optics and Lasers in Engineering, 106, pp. 119-131. Available at: https://doi.org/10.1016/j.optlaseng.2018.02.017

40%; open A. Anton, A. Yoo, P. Bedarf, L. Reiter, T. Wangler, and B. Dillenburger (2019) Find in CUMINCAD Vertical Modulations:Computational Design for Concrete 3D Printed Columns , ACADIA 2019: Ubiquity and Autonomy; PaperProceedings of the 39th Annual Conference of the Association forComputer Aided Design in Architecture (ACADIA). 596–605

40%; open A. Jipa, C. Calvo Barentin, G. Lydon, M. Rippmann, G. Chousou, M. Lomaglio, A. Schlueter, P. Block, and B. Dillenburger (2019) Find in CUMINCAD 3D-Printed Formwork for Integrated Funicular Concrete Slabs , Proceedings ofthe IASS Annual Symposium 2019 – Structural Membranes 2019: Formand Force.

40%; open A. Jipa, C. Calvo Barentin, G. Lydon, M. Rippmann, M. Lomaglio, A. Schlüter, and P. Block (2019) Find in CUMINCAD 3D-Printed Formwork for Integrated Funicular Concrete Slabs , Proceedings of the IASS AnnualSymposium 2019 – Structural Membranes 2019. Barcelona, Spain

40%; open A. Jipa, F. Giacomarra, R. Giesecke, G. Chousou, M. Pacher, B. Dillenburger, M. Lomaglio, and M. Leschok (2019) Find in CUMINCAD 3D-Printed Formwork for Bespoke Concrete Stairs: From Computational Design to Digital Fabrication , Proceedings of the ACM Symposium onComputational Fabrication. Pittsburgh Pennsylvania: ACM. 1–12

40%; open Abergel, V., Jacquot, K., De Luca, L. & Veron, P. (2019) Find in CUMINCAD Towards a SLAM-based augmented reality application for the 3D annotation of rock art , International Journal of Virtual Reality, 19(2), 17–26. https://doi.org/10.20870/IJVR.2019.19.2.2910

40%; open Abou Yassin, A. A., Hamzeh, F., & al Sakka, F. (2020) Find in CUMINCAD Agent based modeling to optimize workflow of robotic steel and concrete 3D printers , Automation in Construction, 110 (November 2019), 103040. https://doi.org/10.1016/j.autcon.2019.103040

40%; open Aghaei Meibodi M, Giesecke R and Dillenburger B. (2019) Find in CUMINCAD 3D printing sand molds for casting bespoke metal connections , Intelligent & informed: 24th annual conference of the association for computer-aided architectural design research in Asia (CAADRIA), Wellington, New Zealand, pp. 133–142. Hong Kong: Association for the Computer-Aided Design Research in Asia (CAADRIA)

40%; open Aghaei Meibodi, Mania, Rena Giesecke, and Benjamin Dillenburger. (2019) Find in CUMINCAD 3D Printing Sand Molds for Casting Bespoke Metal Connections , Intelligent & Informed: Proceedings of the 24th International Conference on Computer-Aided Architectural Design Research Asia (CAADRIA 2019), Volume 1, edited by M.H. Haeusler, M.A. Schnabel, and T. Fukuda, 1:142. Wellington, New Zealand: Association for Computer-Aided Architectural Design Research Asia (CAADRIA)

40%; open Ahlers, D., Wasserfall, F., Hendrich, N., & Zhang, J. (2019) Find in CUMINCAD 3D printing of nonplanar layers for smooth surface generation , 2019 IEEE 15th International Conference on Automation Science and Engineering (CASE) (pp. 1737-1743). IEEE

40%; open Ahmed, E, Saint, A, Shabayek, AER, Cherenkova, K, Das, R, Gusev, G, Aouada, D and Ottersten, B (2019) Find in CUMINCAD A Survey on Deep Learning Advances on Different 3D Data Representations , arXiv:1808.01462 [cs]

40%; open Al Bondakji L, Lammich AL and Werner LC. (2019) Find in CUMINCAD Vibe (virtual berlin) -immersive interactive 3d urban data visualization , 37th conference on education and research in computer aided architectural design in Europe (eCAADe) and 23rd SIGraDi architecture in the age of the 4th industrial revolution, Porto, pp. 83–90. eCAADe-SIGraDi

40%; open Al Bondakji, L, Lammich, A L and Werner, L C (2019) Find in CUMINCAD ViBe (Virtual Berlin)-Immersive Interactive 3D Urban Data Visualization-Immersive interactive 3D urban data visualization , Proceedings of eCAADe 2019, Portugal, pp. 83-90

40%; open Al Bondakji, L., Lammich, A. L., & Werner, L. C. (2019) Find in CUMINCAD Vibe (virtual Berlin) - Immersive Interactive 3D Urban Data Visualization Immersive Interactive 3D Urban Data Visualization , 37th eCAADe and 23rd SIGraDi Conference - Architecture in the Age of the 4th Industrial Revolution, eCAADe (pp. 83-9). Available at: https://doi.org/1.52842/conf.ecaade.219.3.83.

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