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 (2009) Find in CUMINCAD Biodegradable composites based on lignocellulosic fibers - An overview , Progress in polymer science, 2009: 982-1021

100%; open Abdul Khalil, HPS, Tye, YY, Saurabh, CK, Leh, CP, Lai, TK, Chong, EWN, Nurul Fazita, MR, Mohd Hafiidz, J, Banerjee, A and Syakir, MI (2017) Find in CUMINCAD Biodegradable polymer films from seaweed polysaccharides: A review on cellulose as a reinforcement material , eXPRESS Polymer Letters, 4(11), p. 244-265

100%; open Chiellini, E., Cinelli, P., Ilieva, V.I. and Martera, M. (2008) Find in CUMINCAD Biodegradable Thermoplastic Composites Based on Polyvinyl and Algae , Biomacromolecules, 9(3), pp.1007-1013

100%; open Fernandez & Ingber (2014) Find in CUMINCAD Manufacturing of Large-Scale Functional Objects Using Biodegradable Chitosan Bioplastic , Macromolecular Materials and Engineering; 10.1002/mame.201300426

100%; open Fernandez, J.G. & Ingber, D.E. (2014) Find in CUMINCAD Manufacturing of Large-Scale Functional Objects Using Biodegradable Chitosan Bioplastic , Macromolecular Materials and Engineering, 299, 932-938

100%; open Fernandez, JG and Ingber, DE (2014) Find in CUMINCAD Manufacturing of Large-Scale Functional Objects Using Biodegradable Chitosan Bioplastic , Macromolecular Materials Engineering, 299, p. 932-938

100%; open Gómez-Guillén, MC, Pérez-Mateos, M, Gómez-Estaca, J, López-Caballero, E, B.Giménez, B and Montero, P (2009) Find in CUMINCAD Fish gelatin: a renewable material for developing active biodegradable films , Trends in Food science and Technology, 20, pp. 3-16

100%; open Holt, G, Mcintyre, G, Flagg, D, Bayer, E, Wanjura, J and Pelletier, M (2012) Find in CUMINCAD Fungal Mycelium and Cotton Plant Materials in the Manufacture of Biodegradable Molded Packaging Material: Evaluation Study of Select Blends of Cotton Byproducts , Journal of Biobased Materials and Bioenergy, 6(4), pp. 431-439

100%; open Holt, G.A. et al. (2012) Find in CUMINCAD Fungal mycelium and cotton plant materials in the manufacture of biodegradable molded packaging material: Evaluation study of select blends of cotton byproducts , Journal of Biobased Materials and Bioenergy, 6(4), pp. 431-439 https://doi.org/10.1166/jbmb.2012.1241

100%; open Khalil, A., Tye, Y., Saurabh, C., Peng, L.C., Lai, T.K., Chong, E., Fazita, M., Jaafar, M.H., Banerjee, A., Syakir, M.I., (2017) Find in CUMINCAD Biodegradable polymer films from seaweed polysaccharides: A review on cellulose as a reinforcement material , Express Polymer Letters 11, 244–265

100%; open Kretzer, M., & Mostafavi, S. (2020) Find in CUMINCAD Robotic Fabrication with Bioplastic Materials: Digital Design and Robotic Production of Biodegradable Objects , L. C. Werner, & D. Koering (Eds.), Proceedings of the 38th eCAADe Conference on Education and Research Computer Aided Architectural Design Europe: Anthropologic - Architecture and Fabrication the cognitive age (Vol. 1, pp. 63-612). (Proceedings of the International Conference on Education and Research Computer Aided Architectural Design Europe; Vol. 1). eCAADe (Education and Research Computer Aided Architectural Design Europe) and University of Ljubljana, Faculty of Architecture, Slovenia, Available at: https://doi.org/1.52842/conf.ecaade.22.1.63.

100%; open Lai P, Hong D, Lin C, et al. (2012) Find in CUMINCAD Effect of mixing ceramics with a thermosensitive biodegradable hydrogel as compositegraft. , Compos Part B: Eng; 43(8): 3088–3095.

100%; open Lim, A. & Thomsen, M. (2021) Find in CUMINCAD Multi-Material Fabrication for Biodegradable Structures - Enabling the printing of porous mycelium composite structures , Stojakovic, V & Tepavcevic, B (eds). - Towards a new configurable architecture - Proceedings of the 39th eCAADe Conference - Volume 1, pp. 85-94

100%; open Lim, A.C.S.; Thomsen, M.R. (2021) Find in CUMINCAD Multi-material Fabrication for Biodegradable Structures-enabling the Printing of Porous Mycelium Composite Structures , eCAADe 221: Towards a New, Configurable Architecture, Proceedings of the Bionics, Bioprinting, Living Materials (Vol. 1, pp. 85-94). The Association for Education and Research Computer Aided Architectural Design Europe. Available at: https://doi.org/1.52842/conf.ecaade.221.1.85

100%; open Lim, Ariel Cheng Sin and Thomsen, Mette Ramsgaard (2021) Find in CUMINCAD Multi-Material Fabrication for Biodegradable Structures - Enabling the printing of porous mycelium composite structures , Stojakovic, V & Tepavcevic, B (eds). - Towards a new configurable architecture - Proceedings of the 39th eCAADe Conference - Volume 1, pp. 85-94

100%; open Mitterberger D and Derme T. (2019) Find in CUMINCAD Soil 3D-printing: combining robotic binder-jetting processes with organic composites for biodegradable soil structures , ACADIA: Ubiquity and autonomy [Proceedings of the 39th annual conference of the association for computer aided design in architecture (ACADIA)], The University of Texas at AustinSchool of Architecture, Austin, TX, 21–26 October 2019, pp. 586–595. New York: ACADIA

100%; open Richard A. Gross, and Bhanu Kalra (2002) Find in CUMINCAD Biodegradable Polymers for the Environment , Science 297 (5582): 803–807

100%; open Shreyas M., Meenal S.; (2020) Find in CUMINCAD Green Charcoal: Developing Biodegradable Construction Materials for a Circular Economy , book: Examining the Environmental Impacts of Materials and Buildings. Doi: 10.4018/978-1-7998-2426-8.ch005

100%; open Stevens, E. S. (2002) Find in CUMINCAD Green Plastics: An Introduction to the New Science of Biodegradable Plastics , Princeton University Press, Princeton

100%; open Zeidler, H; Klemm, D; Böttger-Hiller, F; Fritsch, S. (2018) Find in CUMINCAD 3D printing of biodegradable parts using renewable biobased materials , Procedia Man 21 117-124

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