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Tensile performance data of 3D printed photopolymer gyroid lattices.

Publication ,  Journal Article
Peloquin, J; Kirillova, A; Mathey, E; Rudin, C; Brinson, LC; Gall, K
Published in: Data in brief
August 2023

Additive manufacturing has provided the ability to manufacture complex structures using a wide variety of materials and geometries. Structures such as triply periodic minimal surface (TPMS) lattices have been incorporated into products across many fields due to their unique combinations of mechanical, geometric, and physical properties. Yet, the near limitless possibility of combining geometry and material into these lattices leaves much to be discovered. This article provides a dataset of experimentally gathered tensile stress-strain curves and measured porosity values for 389 unique gyroid lattice structures manufactured using vat photopolymerization 3D printing. The lattice samples were printed from one of twenty different photopolymer materials available from either Formlabs, LOCTITE AM, or ETEC that range from strong and brittle to elastic and ductile and were printed on commercially available 3D printers, specifically the Formlabs Form2, Prusa SL1, and ETEC Envision One cDLM Mechanical. The stress-strain curves were recorded with an MTS Criterion C43.504 mechanical testing apparatus and following ASTM standards, and the void fraction or "porosity" of each lattice was measured using a calibrated scale. This data serves as a valuable resource for use in the development of novel printing materials and lattice geometries and provides insight into the influence of photopolymer material properties on the printability, geometric accuracy, and mechanical performance of 3D printed lattice structures. The data described in this article was used to train a machine learning model capable of predicting mechanical properties of 3D printed gyroid lattices based on the base mechanical properties of the printing material and porosity of the lattice in the research article [1].

Duke Scholars

Published In

Data in brief

DOI

EISSN

2352-3409

ISSN

2352-3409

Publication Date

August 2023

Volume

49

Start / End Page

109396
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Peloquin, J., Kirillova, A., Mathey, E., Rudin, C., Brinson, L. C., & Gall, K. (2023). Tensile performance data of 3D printed photopolymer gyroid lattices. Data in Brief, 49, 109396. https://doi.org/10.1016/j.dib.2023.109396
Peloquin, Jacob, Alina Kirillova, Elizabeth Mathey, Cynthia Rudin, L Catherine Brinson, and Ken Gall. “Tensile performance data of 3D printed photopolymer gyroid lattices.Data in Brief 49 (August 2023): 109396. https://doi.org/10.1016/j.dib.2023.109396.
Peloquin J, Kirillova A, Mathey E, Rudin C, Brinson LC, Gall K. Tensile performance data of 3D printed photopolymer gyroid lattices. Data in brief. 2023 Aug;49:109396.
Peloquin, Jacob, et al. “Tensile performance data of 3D printed photopolymer gyroid lattices.Data in Brief, vol. 49, Aug. 2023, p. 109396. Epmc, doi:10.1016/j.dib.2023.109396.
Peloquin J, Kirillova A, Mathey E, Rudin C, Brinson LC, Gall K. Tensile performance data of 3D printed photopolymer gyroid lattices. Data in brief. 2023 Aug;49:109396.
Journal cover image

Published In

Data in brief

DOI

EISSN

2352-3409

ISSN

2352-3409

Publication Date

August 2023

Volume

49

Start / End Page

109396