Numerical modeling and simulation of material extrusion-based 3-D printing processes with a material point method framework
Author:
Funder
TUBITAK
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,Mechanics of Materials,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s00161-023-01273-1.pdf
Reference41 articles.
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2. dell’Isola, F., Giorgio, I., Pawlikowski, M., Rizzi, N.L.: Large deformations of planar extensible beams and pantographic lattices: heuristic homogenization, experimental and numerical examples of equilibrium. In: Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 472(2185), 20150790 (2016)
3. Turco, E., dell’Isola, F., Cazzani, A., Rizzi, N.L.: Hencky-type discrete model for pantographic structures: Numerical comparison with second gradient continuum models. Z. Angew. Math. Phys. 67, 1–28 (2016)
4. Golaszewski, M., Grygoruk, R., Giorgio, I., Laudato, M., Cosmo, F.D.: Metamaterials with relative displacements in their microstructure: Technological challenges in 3d printing, experiments and numerical predictions. Continuum Mech. Thermodyn. 31, 1015–1034 (2019)
5. Turco, E., Barchiesi, E., Giorgio, I., dell’Isola, F.: A lagrangian hencky-type non-linear model suitable for metamaterials design of shearable and extensible slender deformable bodies alternative to timoshenko theory. Int. J. Non-Linear Mech. 123, 103481 (2020)
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