Analysis and modelling of damage mechanism in FDM 3D-printed lattice structure under compression loading
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials
Link
https://link.springer.com/content/pdf/10.1007/s12206-022-2104-4.pdf
Reference25 articles.
1. A. R. Torrado et al., Characterizing the effect of additives to ABS on the mechanical property anisotropy of specimens fabricated by material extrusion 3D printing, Additive Manufacturing, 6 (2015) 16–29.
2. C. S. Lee, S. G. Kim, H. J. Kim and S. H. Ahn, Measurement of anisotropic compressive strength of rapid prototyping parts, Journal of Materials Processing Technology, 187–188 (2007) 627–630.
3. V. Vega et al., The effect of layer orientation on the mechanical properties and microstructure of a polymer, Journal of Materials Engineering and Performance, 20(6) (2011) 978–988.
4. W. Wu et al., Influence of layer thickness and raster angle on the mechanical properties of 3D-printed PEEK and a comparative mechanical study between PEEK and ABS, Materials, 8(9) (2015) 5834–5846.
5. C. Ursini and L. Collini, FDM layering deposition effects on mechanical response of TPU lattice structures, Materials, 14 (2021) 5645.
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