4.7 Article

Compression Molding of Thermoplastic Polyurethane Foam Sheets with Beads Expanded by Supercritical CO2 Foaming

Journal

POLYMERS
Volume 13, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/polym13040656

Keywords

thermoplastic polyurethane; expanded bead; supercritical CO2 foaming; expansion ratio; resilience; hardness

Funding

  1. Gyeonggi-do through the Gyeonggi-do Regional Research Center (GRRC) Program [2016-B02]

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ETPU beads were prepared using a supercritical CO2 foaming process and compression molded into foam sheets. The cell structure of the foamed beads influenced the properties of the foam sheets. By controlling the pressure and temperature, the properties of the ETPU foam sheets, including foam resilience, hardness, tensile strength, and elongation, could be adjusted.
Expanded thermoplastic polyurethane (ETPU) beads were prepared by a supercritical CO2 foaming process and compression molded to manufacture foam sheets. The effect of the cell structure of the foamed beads on the properties of the foam sheets was studied. Higher foaming pressure resulted in a greater number of cells and thus, smaller cell size, while increasing the foaming temperature at a fixed pressure lowered the viscosity to result in fewer cells and a larger cell size, increasing the expansion ratio of the ETPU. Although the processing window in which the cell structure of the ETPU beads can be maintained was very limited compared to that of steam chest molding, compression molding of ETPU beads to produce foam sheets was possible by controlling the compression pressure and temperature to obtain sintering of the bead surfaces. Properties of the foam sheets are influenced by the expansion ratio of the beads and the increase in the expansion ratio increased the foam resilience, decreased the hardness, and increased the tensile strength and elongation at break.

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