Polypropylene-Alumina Composite Properties with 1-5 phr Concentrations
by Alves, Amanda Maciel
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Description
An experimental dataset from a research paper on polypropylene-alumina composites. The data likely contains results from X-Ray Diffraction, Differential Scanning Calorimetry, Scanning Electron Microscopy, mechanical tests, flammability, and rheological analysis for alumina concentrations of 1, 3, and 5 parts per hundred of resin. The work was authored by Alves, Amanda Maciel and sourced from the paperswithcode platform.
Use Cases
Modeling the relationship between alumina concentration and composite crystallinity based on XRD and DSC results mentioned in the description.
Predicting mechanical property changes (modulus, tensile strength, impact strength) in polypropylene composites based on SEM-observed agglomerates.
Analyzing the effect of alumina filler on flammability and smoke emission behavior of polymer composites.
Studying the shear-thinning rheological behavior and viscosity reduction in filled polymer systems under oscillatory shear flow.
Strengths
Data covers multiple characterization techniques (XRD, DSC, SEM, mechanical, flammability, rheology) for a comprehensive property evaluation.
Experiments were conducted at three specific alumina concentration levels (1, 3, and 5 phr), allowing for concentration-dependent analysis.
The description provides detailed experimental results linking material structure (e.g., crystallinity, agglomerates) to measured properties.
Limitations
Row count and dataset size are unknown, which may limit suitability assessment for large-scale ML tasks.
Column-level documentation is absent; field semantics must be inferred from the paper description after download.
Last update date is unknown; freshness unverified.
Provenance
Source
paperswithcode
Collection Method
Laboratory synthesis and characterization of polypropylene-alumina composites, as described in the associated research paper.
License is listed as Open Access (green), but specific terms should be verified from the original source.