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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33%; open Textile Blog (2020) Find in CUMINCAD Hemp Fiber: Properties , Processing and Uses [online]. Available at: https://www.textileblog.com/hemp-fiber-properties-processing-and-uses/ (Accessed 14 March 2022)

33%; open Turhan GD, Afsar S, Ozel B, Doyuran A, Varinlioglu G and Bengisu M (2022) Find in CUMINCAD 3D printing with bacterial cellulose-based bioactive composites for design applications , eCAADe 2022: Co-creating the Future: Inclusion in and through Design. September 2022; 1: 1377–1684

33%; open Arunavathi S, Eithiraj RD and Veluraja K (2018) Find in CUMINCAD Physical and mechanical properties of jute fiber and jute fiber reinforced paper bag with tamarind seed gum as a binder - an eco-friendly material , AIP Conference Proceedings, Bydgoszcz, Poland, 9-11 May 2018; 1832, p. 40026

33%; open August, Z, Ostrander, G, Michasiow, J and Hauber, D (2014) Find in CUMINCAD Recent Developments in Automated Fiber Placement of Thermoplastic Composites , SAMPE J, 50, pp. 30-37

33%; open Bishop-Moser, J and Kota, S (2015) Find in CUMINCAD Design and Modeling of Generalized Fiber-Reinforced Pneumatic Soft Actuators , IEEE Transactions on Robotics, 31(3), pp. 536-545

33%; open Cuvilliers, P, Douthe, C, du Peloux, L and Le Roy, R (2017) Find in CUMINCAD Hybrid Structural Skin: Prototype of a GFRP Elastic Gridshell Braced by a Fiber-Reinforced Concrete Envelope , Journal of the International Association for Shell and Spatial Structures, 58(1), pp. 65-78

33%; open Elanchezhian C, Ramnath BV, Ramakrishnan G, et al (2018) Find in CUMINCAD Review on mechanical properties of natural fiber composites , Mater Today: Proc 2018; 5: 1785–1790

33%; open Galloway, K. C., P. Polygerinos, C. J. Walsh and R. J. Wood (2013) Find in CUMINCAD Mechanically Programmable Bend Radius for Fiber-reinforced Soft Actuators , 2013 16th International Conference on Advanced Robotics (ICAR), Montevideo, Uruguay

33%; open Galloway, Kevin, Panagiotis Polygerinos, Conor Walsh, and Robert Wood (2013) Find in CUMINCAD Mechanically Programmable Bend Radius for Fiber-Reinforced Soft Actuators , Proceedings for the 16th International Conference on Advanced Robotics. Montevideo, Uruguay: ICAR

33%; open Galloway, Kevin, Panagiotis Polygerinos, Conor Walsh, and Robert Wood (2013) Find in CUMINCAD Mechanically Programmable Bend Radius for Fiber-Reinforced Soft Actuators , Proceedings for the 16th International Conference on Advanced Robotics. Montevideo, Uruguay: ICAR

33%; open Hebel, D. E. (2014) Find in CUMINCAD Process-controlled optimization of the tensile strength of bamboo fiber composites for structural applications , Composites Part B: Engineering, 67, pp. 125-131

33%; open Jaafar, J., Siregar, J. P., Salleh, S. M., Hamdan, M. H. M., Cionita, T., Rihayat, T. (2019) Find in CUMINCAD Important considerations in manufacturing of natural fiber composites: a review , International Journal of Precision Engineering and Manufacturing-Green Technology, 1- 18

33%; open Jayashankar, DK, Gupta, SS, Sanandiya, ND, Fernandez, JG and Tracy, K (2019) Find in CUMINCAD Fiber Reinforced Composite Manufacturing for Passive Actuators , 40th MATADOR International Conference on Advanced Manufacturing and Design, p. 191

33%; open Kim, JW, Kim, HS & Lee, D G (2012) Find in CUMINCAD Tensile Strength of Glass Fiber-reinforced Plastic by Fiber Orientation and Fiber Content Variations, , International Journal of Modern Physics: Conference Series, Vol6, World Scientific, Singapore

33%; open Kwon H, Eichenhofer M, Kyttas T, et al. (2019) Find in CUMINCAD Digital composites: robotic 3D printing of continuous carbon fiber-rein-forced plastics for functionally-graded building components , Robotic fabrication in architecture, art and design 2018. Cham: Springer

33%; open L. Vasey, B. Felbrich, M. Prado, B. Tahanzadeh, and A. Menges (2020) Find in CUMINCAD Physically distributed multi-robot coordination and collabo[1]ration in construction: A case study in long span coreless filament winding for fiber composites , Construction Robotics 4 (1–2): 3–18

33%; open Liu S, Li Y and Li N. (2018) Find in CUMINCAD A novel free-hanging 3D printing method for continuous carbon fiber reinforced thermoplasticlattice truss core structures , Mater Des; 137: 235–244

33%; open Liu, S., Li, Y. and Li, N. (2018) Find in CUMINCAD A novel free-hanging 3D printing method for continuous carbon fiber reinforced thermoplastic lattice truss core structures , Materials and Design, 137, pp. 235-244

33%; open Love, Lonnie J., Vlastamil Kunc, Orlando Rios, Chad E. Duty, Amelia M. Elliott, Brian K. Post, Rachel J. Smith, and Craig A. Blue (2014) Find in CUMINCAD The Importance of Carbon Fiber to Polymer Additive Manufacturing , Journal of Materials Research 29 (17): 1893

33%; open M. Kayser, L. Cai, S. Falcone, C. Bader, N. Inglessis, B. Darweesh, and N. Oxman (2018) Find in CUMINCAD FIBERBOTS: an autonomous swarm-based robotic system for digital fabrication of fiber-based composites , Construction Robotics 2 (1-4): 67–79

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