Finite element modeling of 3D-printed part with cellular internal structure using homogenized properties
Author:
Funder
NIST AMTech
Publisher
Springer Science and Business Media LLC
Subject
Industrial and Manufacturing Engineering
Link
http://link.springer.com/content/pdf/10.1007/s40964-018-0070-2.pdf
Reference30 articles.
1. Casavola C et al (2016) Orthotropic mechanical properties of fused deposition modelling parts described by classical laminate theory. Mater Des 90:453–458
2. Somireddy MC, Aleksander (2017) Mechanical characterization of additively manufactured parts by FE modeling of mesostructure. J Manuf Mater Process 1(2):18
3. Guessasma S et al (2016) Anisotropic damage inferred to 3D printed polymers using fused deposition modelling and subject to severe compression. Eur Polym J 85:324–340
4. Karamooz Ravari MR et al (2014) Numerical investigation on mechanical properties of cellular lattice structures fabricated by fused deposition modeling. Int J Mech Sci 88:154–161
5. Karamooz Ravari MR, Kadkhodaei M (2014) A computationally efficient modeling approach for predicting mechanical behavior of cellular lattice structures. J Mater Eng Perform 24(1):245–252
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