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

PDF papers
References

Hits 1 to 20 of 8160

Details Citation Select
100%; open Gebhardt, A (2012) Find in CUMINCAD Understanding Additive Manufacturing: Rapid Prototyping - Rapid Tooling - Rapid Manufacturing , Carl Hanser Verlag

80%; open Junk, S and Tränkle, M (2011) Find in CUMINCAD Design for Additive Manufacturing technologies: New Applications of 3D-Printing for Rapid Prototyping and Rapid Tooling , Culley, S (eds), Proceedings of the 18th International Conference on Engineering Design (ICED 11), Impacting Society through Engineering Design, Vol. 5: Design for X / Design to X, Design Society, pp. 12-18

70%; open Junk S and Côté S (2012) Find in CUMINCAD A practical approach to comparing energy effectiveness of rapid prototyping technologies , Proceedings of AEPR’12, 17th European Forum on Rapid Prototyping and Manufacturing, Paris, France

70%; open Chee Kai Chua and Kah Fai Leong (2014) Find in CUMINCAD 3D Printing and Additive Manufacturing: Principles and Applications (with Companion Media Pack) , Rapid Prototyping, 4th ed. World Scientific Publishing Company

70%; open Chua, CK and Leong, KF (2017) Find in CUMINCAD 3D Printing And Additive Manufacturing - Fifth Edition of Rapid Prototyping: Principles and Applications , World Scientific Publishing Co. Pte. Ldt., Singapore

70%; open Costa, EC, Duarte, JP and Bartolo, P (2017) Find in CUMINCAD A review of additive manufacturing for ceramic production , Rapid Prototyping Journal, 23(5), pp. 954-963

70%; open Faludi, J., Bayley, C., Bhogal, S. and Iribarne, M. (2015) Find in CUMINCAD Comparing environmental impacts of additive manufacturing vs traditional machining via life-cycle assessment , Rapid Prototyping Journal, 21(1), pp. 14-33

70%; open Faludi, J., C. Bayley, S. Bhogal, and M. Iribarne. (2015) Find in CUMINCAD Comparing environmental impacts of additive manufacturing vs traditional machining via life-cycle assessment , Rapid Prototyping Journal 21(1): 14-33

70%; open Gibson, I, Rosen, D and Stucker, B (ed) (2010) Find in CUMINCAD Additive Manufacturing Technologies: 3D Printing, Rapid Prototyping, and Direct Digital Manufacturing , Springer

70%; open Gibson, I, Rosen, D and Stucker, B (2015) Find in CUMINCAD Additive manufacturing technologies: 3D printing, rapid prototyping, and direct digital manufacturing, second edition , Springer

70%; open Gibson, I, Rosen, D and Stucker, B (2015) Find in CUMINCAD Additive Manufacturing Technologies. Additive Manufacturing Technologies: 3D Printing, Rapid Prototyping, and Direct Digital Manufacturing, Second Edition , Springer

70%; open Gibson, I, Rosen, D and Stucker, B (2015) Find in CUMINCAD Development of Additive Manufacturing Technology , Naboni, RP (eds), Additive manufacturing technologies 3D printing, rapid prototyping and direct digital manufacturing, Springer

70%; open Gibson, I, Rosen, D and Stucker, B (2016) Find in CUMINCAD Additive manufacturing technologies. 3D printing, rapid prototyping and direct digital manufacturing. , Springer

70%; open Gibson, I., D.W. Rosen, and B. Stucker. (2014) Find in CUMINCAD Development of Additive Manufacturing Technology , Additive Manufacturing Technologies: 3D Printing, Rapid Prototyping, and Direct Digital Manufacturing, 19-42. New York/Heidelberg/Dordrecht/London: Springer

70%; open Gibson, I., Rosen D.W. & Stucker, B. (2010) Find in CUMINCAD Additive Manufacturing Technologies Rapid Prototyping to Direct Digital Manufacturing , Springer, New York, http://link.springer.com.ezproxy.lib.rmit.edu.au/book/10.1007/978-1-4419-1120-9/page/1

70%; open Gibson, I., Rosen D.W. & Stucker, B. (2010) Find in CUMINCAD Additive Manufacturing Technologies Rapid Prototyping to Direct Digital Manufacturing , Springer, New York, http://link.springer.com.ezproxy.lib.rmit.edu.au/book/10.1007/978-1-4419-1120-9/page/1

70%; open Krieg O.D. et al. (2015) Find in CUMINCAD Modeling curved-layered printing paths for fabricating large-scale construction components , Additive Manufacturing, 12, 216–230. https://doi.org/10.1016/j.addma.2016.06.004Rael, R., & Fratello, V. S. (2015). Bloom [Project]. Retrieved from http://emergingobjects.com/project/bloom-2/Raspall, F., Banon, C., & Maheshwary, S. (2020). Timescapes: Design and Additive Manufacturing Workflows for freeform, ornamental architectural surfaces. Congreso SIGraDi 2020. Sao Paulo: Blucher, 2020, 306–311. https://doi.org/10.5151/sigradi2020-42Sass, L. (2004). Design for Self Assembly of Building Components using Rapid Prototyping. Retrieved from http://diyhpl.us/~bryan/papers2/Design%20for%20Self%20Assembly%20of%20Building%20Components%20using%20Rapid%20Prototyping.pdf Proceedings/ISBN 0–9541183-2-4, Architecture in the Network Society. 22nd eCAADe Conference, 95–104

70%; open Liang H, David R, Chunze Y, Ahmed H and Philippe Y. (2011) Find in CUMINCAD Design and additive manufacturing of cellular lattice structures , The international conference on advanced research in virtual and rapid prototyping (VRAP) (eds Bártolo PJ, et al.), 28 September–1 October 2011, Leiria, Portugal

70%; open Turner, BN, Strong, R and Gold, SA (2014) Find in CUMINCAD A review of melt extrusion additive manufacturing processes: I. Process design and modeling , Rapid Prototyping Journal, 20(3), pp. 192-204

70%; open Wang, Y, Zhong, RY and Xu, X (2018) Find in CUMINCAD A decision support system for additive manufacturing process selection using a hybrid multiple criteria decision-making method , Rapid Prototyping, 9, pp. 1544-1553

For more results click below:

this is page 0show page 1show page 2show page 3show page 4show page 5... show page 407HOMELOGIN (you are user _anon_914648 from group guest) CUMINCAD References Powered by SciX Open Publishing Services 1.002