Polymer Phononic Materials Data with Simulation Models and Experimental Measurements
by Beniwal, S. / DataverseNL Harvested Dataverse·Updated 1mo ago
Available on 1 platform
Sign in to view source links and access this dataset
Description
Complete underlying data for a study on predictive wave engineering in polymer phononic materials. The dataset includes COMSOL simulation models, raw and processed experimental data from tensile testing, Poisson’s ratio measurements, TGA, DSC, and DMA, as well as STL files for 3D printing. Beniwal, S. authored this dataset, which was last updated on 2026-06-22.
Use Cases
Reproduce simulation results for wave propagation based on the provided COMSOL models.
Analyze material properties like viscoelastic behavior based on dynamic mechanical analysis (DMA) data.
Validate geometric coupling effects using tensile testing and Poisson’s ratio measurement data.
Generate 3D-printed samples for experimental validation based on the included STL files.
Perform thermogravimetric and calorimetric analysis based on the TGA and DSC datasets.
Strengths
Includes the complete set of data and files underlying the associated article, sufficient to reproduce all results, figures, tables, and analyses.
Contains both raw and processed experimental data from multiple characterization techniques: tensile testing, Poisson’s ratio, TGA, DSC, and DMA.
Provides executable COMSOL simulation models and STL files for 3D printing, enabling direct reproduction and extension of the study.
Limitations
Column-level documentation is absent; field semantics must be inferred after download.
Row count and overall data size are unknown, which may limit suitability assessment for large-scale ML tasks.
Provenance
Source
DataverseNL Harvested Dataverse
Collection Method
Data generated from COMSOL simulations and laboratory experiments (tensile testing, TGA, DSC, DMA) as part of a research study.
Freshness
Last updated 2026-06-22 06:10:10; freshness should be verified.
Requires COMSOL software to run the provided simulation models directly.