Polymers (Feb 2022)

Rheology and Tack Properties of Biodegradable Isodimorphic Poly(butylene succinate)-<i>Ran</i>-Poly(ε-caprolactone) Random Copolyesters and Their Potential Use as Adhesives

  • Aleida J. Sandoval,
  • María Mercedes Fernández,
  • María Virginia Candal,
  • Maryam Safari,
  • Antxon Santamaria,
  • Alejandro J. Müller

DOI
https://doi.org/10.3390/polym14030623
Journal volume & issue
Vol. 14, no. 3
p. 623

Abstract

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The sole effect of the microstructure of biodegradable isodimorphic poly(butylene succinate)-ran-poly(ε-caprolactone) random copolyesters on their rheological properties is investigated. To avoid the effect of molecular weight and temperature, two rheological procedures are considered: the activation energy of flow, Ea, and the phase angle versus complex modulus plots. An unexpected variation of both parameters with copolyester composition is observed, with respective maximum and minimum values for the 50/50 composition. This might be due to the peculiar chain configurations of the copolymers that vary as a function of comonomer distribution within the chains. The same chain configuration variations are responsible for the isodimorphic character of the copolymers in the crystalline state. Tack tests, performed to study the viability of the copolyesters as environmentally friendly hot melt adhesives (HMA), reveal a correlation with rheological results. Tackiness parameters, particularly the energy of adhesion obtained from stress-strain curves during debonding experiments, are enhanced as melt elasticity increases. Based on the carried-out analysis, the link microstructure-rheology-tackiness is established, allowing selecting the best performing HMA sample considering the polymer chemistry of the system.

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