Data of "A Thermo-Mechanical, Viscoelasto-Plastic Model for Semi-Crystalline Polymers Exhibiting One-Way and Two-Way Shape Memory Effects Under Phase Change"
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https://zenodo.org/record/7991457
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Id: Data of following publicationtitle = "A Thermo-Mechanical, Viscoelasto-Plastic Model for Semi-Crystalline Polymers Exhibiting One-Way and Two-Way Shape Memory Effects Under Phase Change",journal = "International Journal of Solids and Structures",pages = "112814",year = "2024",doi = "https://doi.org/10.1016/j.ijsolstr.2024.112814",author = "Hasan Gulasik, Maxime Houbben, Clara Pereira Sànchez, Juan Manuel Calleja Vázquez, Philippe Vanderbemdec, Christine Jérôme, Ludovic Noels"
Data doi on 10.5281/zenodo.10822690
General description
The experimental results used in the BI are reported in [PEI21,PEI22]If you use these data or model, we would be grateful if you could cite the related papers:
[GUL23] H. Gulasik, M. Houbben, C. A. Pereira Sànchez, J. M. Calleja Vázquez, P. Vanderbemden, C. Jérôme, L. Noels, A Thermo-Mechanical, Viscoelasto-Plastic Model for Semi-Crystalline Polymers Exhibiting One-Way and Two-Way Shape Memory Effects Under Phase Change, International Journal of Solids and Structures (2024), 112814 https://doi.org/10.1016/j.ijsolstr.2024.112814
[HOU23] M Houbben, C. Pereira Sànchez, P. Vanderbemden, L. Noels, C. Jérôme, MWCNTs filled PCL covalent adaptable networks: Towards reprocessable, self-healing and fast electrically-triggered shape-memory composites, Polymer 278 (2023), 125992, https://doi.org/10.1016/j.polymer.2023.125992.
[PEI22] C. A. Pereira Sanchez, M. Houbben, J.F. Fagnard, P. Harmeling, C. Jérôme, L. Noels, P. Vanderbemden, Experimental characterization of the thermo-electro-mechanical properties of a shape memory composite during electric activation. Smart Materials and Structures 31 (2022), 095029. https://dx.doi.org/10.1088/1361-665x/ac8297.
[PEI21] C.A. Pereira Sanchez, M. Houbben, J.F. Fagnard, P. Laurent, C. Jérôme, L. Noels, P. Vanderbemden,Resistive heating of a shape memory composite: Analytical, numerical and experimental study. Smart Materials and Structures 31 (2021), 025003. https://dx.doi.org/10.1088/1361-665x/ac3ebd
SoftwareRequires python3 with packages numpy, matplotlib, pandasTo run the model you need the open source code https://gitlab.onelab.info/cm3/cm3Libraries
SMP_V3.zip is the revised last version.
Files descriptions
Directory experimentalTests : experimental measurements
benchTests.xlsx gathers to the data of Figs. 12 and 13
Results_G05A_0C_65C_v2.xlsx gathers to the data of Figs. 6-9
S3CM3_Tests_Results_G05A_VF.xlsx gathers the data of Figs. 10-11
Files to run the tests
runTests.py is used to launch all the simulations
SMP_test.py is the model definition on the geometry cube.geo
utils.py gathers different python functions
results gather the results of the numerical simulations
Cyclic_0: for Fig. 9
Cyclic_65: for Fig. 7
Cyclic_T: for Fig. 11
Expansion0: for Fig 14b
Expansion600: for Fig. 14a
Recovery_06: for Figs. 12, 13
Recovery_10: for Figs. 12, 13
Recovery_17: for Figs. 12, 13
Recovery_Load: for Fig. 15
Files to plot the figures:
Figs. 7 and 8: plotCyclic65.py
Figs. 9 and 10: plotCyclic0bis.py
Fig. 11: plotCyclicT.py
Figs. 12, 13: plotRecovery.py
Fig. 14: plotExpansion.py
Fig. 15: plotLoadRecovery.py
创建时间:
2024-04-12



