Detail publikace
Dynamic mechanical analysis of agarose hydrogels and its relationship to shear oscillation
KADLEC, M. SMILEK, J. PEKAŘ, M.
Originální název
Dynamic mechanical analysis of agarose hydrogels and its relationship to shear oscillation
Typ
článek ve sborníku ve WoS nebo Scopus
Jazyk
angličtina
Originální abstrakt
Hydrogels are materials, which offers a number of usage due to its unique properties such a biocompatibility or high water content. They might be utilized in wound dressing, tissue engineering or extracellular matrix modelling. For each application, materials with different characteristics are desired. Therefore, rheology characterization is essential in case of hydrogel studies. Besides more common shear rheology, dynamic mechanical analysis can provide a useful information about the material viscoelastic behaviour. In this case, an ability to resist to deformation is in form of tension/compression contrary to shear deformation in shear rheology. In this study, strain sweep testing both in shear as well as in DMA mode is studied on the agarose hydrogel. Besides comparison between these two approaches including Poisson’s ratio, some other variables, which can influence results, are discussed. Particularly, axial force during measurement and/or different measuring geometries were studied. Regarding to results, even small changes in axial force can have a significant impact on the viscoelastic modulus values. Therefore, control axial force measurement are preferred over the gap control measurement. Moreover, using the same geometry systems during measurement is essential in order to obtain valid and comparable results.
Klíčová slova
Agarose, hydrogels, dynamic mechanical analysis, shear oscillation
Autoři
KADLEC, M.; SMILEK, J.; PEKAŘ, M.
Vydáno
26. 7. 2023
Nakladatel
AIP Publishing Conference Proceedings
Místo
Melville, New York, 2023
ISBN
978-0-7354-4547-5
Kniha
Novel Trends in Rheology IX
ISSN
0094-243X
Periodikum
AIP conference proceedings
Ročník
2997
Číslo
1
Stát
Spojené státy americké
Strany od
040005-1
Strany do
040005-7
Strany počet
7
URL