Dynamic Infrared Linear Dichroism Study of the Temperature-Dependent, Viscoelastic Behavior of a Poly(Ester Urethane)

Author:

Wang Yanqia1,Aubuchon Steven R.1,Smith Mark E.1,Schoonover Jon R.1,Palmer Richard A.1

Affiliation:

1. Duke University, Department of Chemistry, Durham, North Carolina 27708-0346 (Y.W., R.A.P.); TA Instruments-Waters, LLC, 109 Lukens Drive, New Castle, Delaware 19720 (S.R.A.); and Materials Science and Technology Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545 (M.E.S. J.R.S.)

Abstract

In the study reported here, of the poly(ester urethane), Estane® 5703, simultaneous dynamic mechanical analysis (DMA) and dynamic infrared linear dichroism (DIRLD) measurements have been carried out at continuously variable temperatures from −50 to +30 °C. Multivariate curve resolution–alternating least squares (MCR-ALS) analysis of the spectral data has been correlated with the thermo-mechanical properties. Spectral changes, analyzed as a function of temperature, are compared with the storage and loss moduli to provide insight into viscoelastic behavior at the molecular level. In addition, the data for pure Estane have been compared to those for plasticized Estane samples, which contain 10 and 30% plasticizer by weight. These comparisons show a strong and consistent correlation between the macroscopic rheological properties and the microscopic (molecular, inter-molecular, and sub-molecular) responses of this block co-polymer.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

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