Dataset: Dataset: Characterization, processing, and modeling of industrial recycled polyolefins

https://doi.org/10.34863/k1mm-cf38
Authors: Sixtus O. Nzeh1, Beijun Shen2, Thao D. Nguyen2
Author affiliations:
1:Department of Plastics Engineering, University of Massachusetts Lowell,Lowell, Massachusetts 01854 USA
2:Department of Mechanical Engineering, Johns Hopkins University,Baltimore, MD 21218 USA
3:Hopkins Extreme Materials Institute, Johns Hopkins University, Baltimore, MD 21218 USA
:
: Corresponding author sixtusdika@gmail.com

Dataset for figures in Nzeh et al, 2024

Keywords: materials science, polyolefins, recycled polymers
Figure 11 (Die Geometry)
ItemTypeFile
Mesh-Inlet.pngimageFigure 11 (Die Geometry)/Mesh-Inlet.png
Quarter-Model Die Design.STEPdataFigure 11 (Die Geometry)/Quarter-Model Die Design.STEP
Mesh-Outlet.pngimageFigure 11 (Die Geometry)/Mesh-Outlet.png
Figure 12-13 (Simulation)
ItemTypeFile
(a) PP1, Capillary, Iso, U4.txttextFigure 12-13 (Simulation)/(a) PP1, Capillary, Iso, U4.txt
(e) PP2, Parallel, Non-iso, H50, U4.txttextFigure 12-13 (Simulation)/(e) PP2, Parallel, Non-iso, H50, U4.txt
(b) PP2, Capillary, Iso, U4.txttextFigure 12-13 (Simulation)/(b) PP2, Capillary, Iso, U4.txt
(f) PP2, Parallel, Non-iso, H50, U20.txttextFigure 12-13 (Simulation)/(f) PP2, Parallel, Non-iso, H50, U20.txt
PlotContourMirror_Comparison.mdataFigure 12-13 (Simulation)/PlotContourMirror_Comparison.m
(d) PP2, Parallel, Non-Iso, H500, U4.txttextFigure 12-13 (Simulation)/(d) PP2, Parallel, Non-Iso, H500, U4.txt
(c) PP2, Parallel, Iso, U4.txttextFigure 12-13 (Simulation)/(c) PP2, Parallel, Iso, U4.txt
Figure 3 (Pellet Count)
ItemTypeFile
Plot_Pellet_Bars.mdataFigure 3 (Pellet Count)/Plot_Pellet_Bars.m
Figure 4 (Extrusion Data)
ItemTypeFile
Plot_Extrusion.mdataFigure 4 (Extrusion Data)/Plot_Extrusion.m
PP1.xlsspreadsheetFigure 4 (Extrusion Data)/PP1.xls
PP2.xlsspreadsheetFigure 4 (Extrusion Data)/PP2.xls
Figure 5 (Rheology)
ItemTypeFile
FitRheology.mdataFigure 5 (Rheology)/FitRheology.m
PP1 Capillary.csvdataFigure 5 (Rheology)/PP1 Capillary.csv
PP2 Capillary.csvdataFigure 5 (Rheology)/PP2 Capillary.csv
R31-311 (1).txttextFigure 5 (Rheology)/R31-311 (1).txt
PP2 Parallel Plate.txttextFigure 5 (Rheology)/PP2 Parallel Plate.txt
PP1 Parallel Plate.txttextFigure 5 (Rheology)/PP1 Parallel Plate.txt
Figure 6-7 (DSC)
ItemTypeFile
DoDSC.mdataFigure 6-7 (DSC)/DoDSC.m
PP1 film.csvdataFigure 6-7 (DSC)/PP1 film.csv
PP2
PP2 film cooling.csvdataFigure 6-7 (DSC)/PP2/PP2 film cooling.csv
PP2 film 1st heating.csvdataFigure 6-7 (DSC)/PP2/PP2 film 1st heating.csv
PP2 film 2nd heating.csvdataFigure 6-7 (DSC)/PP2/PP2 film 2nd heating.csv
NIST Reference Data
PP_Amorphous.csvdataFigure 6-7 (DSC)/NIST Reference Data/PP_Amorphous.csv
PE_Amorphous.csvdataFigure 6-7 (DSC)/NIST Reference Data/PE_Amorphous.csv
PE and PP Data from 1981 Gaur and Wunderlich.xlsxspreadsheetFigure 6-7 (DSC)/NIST Reference Data/PE and PP Data from 1981 Gaur and Wunderlich.xlsx
PP_Crystalline.csvdataFigure 6-7 (DSC)/NIST Reference Data/PP_Crystalline.csv
PE_Crystalline.csvdataFigure 6-7 (DSC)/NIST Reference Data/PE_Crystalline.csv
PP1
Brown
Brown 1st heating.csvdataFigure 6-7 (DSC)/PP1/Brown/Brown 1st heating.csv
Brown 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Brown/Brown 2nd heating.csv
Brown cooling.csvdataFigure 6-7 (DSC)/PP1/Brown/Brown cooling.csv
Green
Green cooling.csvdataFigure 6-7 (DSC)/PP1/Green/Green cooling.csv
Green 1st heating.csvdataFigure 6-7 (DSC)/PP1/Green/Green 1st heating.csv
Green 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Green/Green 2nd heating.csv
Light white
Light white 1st heating.csvdataFigure 6-7 (DSC)/PP1/Light white/Light white 1st heating.csv
Light white cooling.csvdataFigure 6-7 (DSC)/PP1/Light white/Light white cooling.csv
Light white 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Light white/Light white 2nd heating.csv
PP1 film 2nd heating.csvdataFigure 6-7 (DSC)/PP1/PP1 film 2nd heating.csv
Blue
Blue 1st heating.csvdataFigure 6-7 (DSC)/PP1/Blue/Blue 1st heating.csv
Blue 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Blue/Blue 2nd heating.csv
Blue cooling.csvdataFigure 6-7 (DSC)/PP1/Blue/Blue cooling.csv
Deep black
Deep black 1st heating.csvdataFigure 6-7 (DSC)/PP1/Deep black/Deep black 1st heating.csv
Deep black cooling.csvdataFigure 6-7 (DSC)/PP1/Deep black/Deep black cooling.csv
Deep black 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Deep black/Deep black 2nd heating.csv
Grey
Grey 1st heating.csvdataFigure 6-7 (DSC)/PP1/Grey/Grey 1st heating.csv
Grey cooling.csvdataFigure 6-7 (DSC)/PP1/Grey/Grey cooling.csv
Grey 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Grey/Grey 2nd heating.csv
Deep white
Deep white 2nd heating.csvdataFigure 6-7 (DSC)/PP1/Deep white/Deep white 2nd heating.csv
Deep white cooling.csvdataFigure 6-7 (DSC)/PP1/Deep white/Deep white cooling.csv
Deep white 1st heating.csvdataFigure 6-7 (DSC)/PP1/Deep white/Deep white 1st heating.csv
PP1 film 1st heating.csvdataFigure 6-7 (DSC)/PP1/PP1 film 1st heating.csv
PP1 film cooling.csvdataFigure 6-7 (DSC)/PP1/PP1 film cooling.csv
PP2 film.csvdataFigure 6-7 (DSC)/PP2 film.csv
Figure 8 (TGA)
ItemTypeFile
TGA PP2-2 100.csvdataFigure 8 (TGA)/TGA PP2-2 100.csv
TGA PP1 10.csvdataFigure 8 (TGA)/TGA PP1 10.csv
TGA PP2-1 100.csvdataFigure 8 (TGA)/TGA PP2-1 100.csv
TGA PP1-1 100.csvdataFigure 8 (TGA)/TGA PP1-1 100.csv
CalcTGA.mdataFigure 8 (TGA)/CalcTGA.m
TGA PP2 10.csvdataFigure 8 (TGA)/TGA PP2 10.csv
TGA PP1-2 100.csvdataFigure 8 (TGA)/TGA PP1-2 100.csv
Figure 9-10 (FTIR)
ItemTypeFile
PP1 1.SPAdataFigure 9-10 (FTIR)/PP1 1.SPA
PP1 3.SPAdataFigure 9-10 (FTIR)/PP1 3.SPA
PP1 1 ATR.CSVdataFigure 9-10 (FTIR)/PP1 1 ATR.CSV
PP1 2.SPAdataFigure 9-10 (FTIR)/PP1 2.SPA
PP1 1.CSVdataFigure 9-10 (FTIR)/PP1 1.CSV
PP1 1 ATR.SPAdataFigure 9-10 (FTIR)/PP1 1 ATR.SPA
PP1 3.CSVdataFigure 9-10 (FTIR)/PP1 3.CSV
PP1 2.CSVdataFigure 9-10 (FTIR)/PP1 2.CSV
PP2 1.SPAdataFigure 9-10 (FTIR)/PP2 1.SPA
PP1 2 ATR.CSVdataFigure 9-10 (FTIR)/PP1 2 ATR.CSV
PP2 2.SPAdataFigure 9-10 (FTIR)/PP2 2.SPA
PP1 3 ATR.SPAdataFigure 9-10 (FTIR)/PP1 3 ATR.SPA
PP2 3.SPAdataFigure 9-10 (FTIR)/PP2 3.SPA
PP2 1.CSVdataFigure 9-10 (FTIR)/PP2 1.CSV
PP1 2 ATR.SPAdataFigure 9-10 (FTIR)/PP1 2 ATR.SPA
PP1 3 ATR.CSVdataFigure 9-10 (FTIR)/PP1 3 ATR.CSV
PP2 2.CSVdataFigure 9-10 (FTIR)/PP2 2.CSV
PP2 3.CSVdataFigure 9-10 (FTIR)/PP2 3.CSV
Polymer Engineering Sci - 2004 - Camacho - NIR DSC and FTIR as quantitative methods for compositional analysis of.pdfpdfFigure 9-10 (FTIR)/Polymer Engineering Sci - 2004 - Camacho - NIR DSC and FTIR as quantitative methods for compositional analysis of.pdf
PE PP blend composition by FTIR Perkin Elmer.pdfpdfFigure 9-10 (FTIR)/PE PP blend composition by FTIR Perkin Elmer.pdf
PP2 2 ATR.CSVdataFigure 9-10 (FTIR)/PP2 2 ATR.CSV
PP2 3 ATR.SPAdataFigure 9-10 (FTIR)/PP2 3 ATR.SPA
PP2 2 ATR.SPAdataFigure 9-10 (FTIR)/PP2 2 ATR.SPA
DoFTIR.mdataFigure 9-10 (FTIR)/DoFTIR.m
PP2 3 ATR.CSVdataFigure 9-10 (FTIR)/PP2 3 ATR.CSV
PP2 1 ATR.CSVdataFigure 9-10 (FTIR)/PP2 1 ATR.CSV
PP2 1 ATR.SPAdataFigure 9-10 (FTIR)/PP2 1 ATR.SPA
Table 2 (Melt flow rate)
ItemTypeFile
Pellet Count.csvdataTable 2 (Melt flow rate)/Pellet Count.csv
MFR Data.xlsxspreadsheetTable 2 (Melt flow rate)/MFR Data.xlsx
MFR Data.csvdataTable 2 (Melt flow rate)/MFR Data.csv