Future Challenges in Functionally Graded Additive Manufacturing

Author:

Pei Eujin,Loh Giselle Hsiang

Publisher

Springer International Publishing

Reference26 articles.

1. 3D Systems Inc. (2015). Design guide. Retrieved February 4, 2018, from https://www.3dsystems.com/resources .

2. Birman, V., & Byrd, L. W. (2007). Modelling and analysis of functionally graded materials and structure. ASME Applied Mechanics Reviews, 60(5), 195–216.

3. Bodaghi, M., Damanpack, A., & Liao, W. (2016). Self-expanding/shrinking structures by 4D Printing. Smart Material Structures, 25.

4. Cotteleer, M., & Joyce, J. (2014) 3D opportunity: Additive manufacturing paths to performance, innovation, and growth. Deloitte Review, 2014.

5. Doubrovski, E. L., Verlinden, J. C., & Horvath, I. (2012) First steps towards collaboratively edited design for additive manufacturing knowledge. In Solid Freeform Fabrication Symposium (pp. 891–901).

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1. Performance evaluation of fatigue behavior in extrusion-based functionally graded materials;The International Journal of Advanced Manufacturing Technology;2023-07-21

2. IZOD impact properties of full-density fused deposition modeling polymer materials with respect to raster angle and print orientation;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2019-04-10

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