Characterization of the dynamic and viscoelastic behavior of Pinus radiata wood impregnated with a bio-based organic phase change material (bio-PCM)
Abstract
This study examines the impact of bio-based phase change material (bio-PCM) impregnation on the dynamic and viscoelastic properties of Pinus radiata wood. Specimens were impregnated with PlusICE Organic A26 through a controlled vacuum-pressure process, and their microstructure, dynamic properties, and time-dependent mechanical response were analyzed using X-ray micro-computed tomography, the Impulse Excitation Technique, and uniaxial stress relaxation tests fitted to a generalized Maxwell model. PCM impregnation resulted in a 24.7% reduction in volumetric porosity, an increase in the flexural complex modulus (E-flex*), and a decrease in the loss factor (tan(s)), indicating a stiffer and less damped response in all anatomical directions. Moreover, stress-relaxation tests showed higher residual stress ratios (sigma(infinity)/sigma(0)) in impregnated wood, indicating reduced viscoelastic relaxation capacity across different strain levels. These findings indicate that bio-PCM impregnation increased the stiffness and long-term stability of Pinus radiata while limiting energy dissipation. Such modifications provide a mechanical reliability assessment of PCM-impregnated Pinus radiata wood, which is required when phase change materials are incorporated into construction systems for thermal energy storage.
Más información
| Título según WOS: | ID WOS:001810558600001 Not found in local WOS DB |
| Título de la Revista: | POLYMER TESTING |
| Volumen: | 161 |
| Editorial: | ELSEVIER SCI LTD |
| Fecha de publicación: | 2026 |
| DOI: |
10.1016/j.polymertesting.2026.109265 |
| Notas: | ISI |