Application of Caputo fractional rheological model to determine the viscoelastic and mechanical properties of fruit and vegetables

, , , , Langrish, Timothy, & (2020) Application of Caputo fractional rheological model to determine the viscoelastic and mechanical properties of fruit and vegetables. Postharvest Biology and Technology, 163, Article number: 111147 1-9.

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Description

Determination of accurate viscoelastic and mechanical properties of fruit and vegetables (FV) is essential not only for designing appropriate equipment for harvesting, transporting, sorting and storing but also to determine the most appropriate process parameters in any food processing operation. Traditionally, classical models are used to determine these properties, which require many parameters and therefore deemed complex and computationally expensive. Moreover, many of these properties are not available in the literature. In this research, a comprehensive experimental investigation has been carried out to determine some rheological and mechanical properties such as relaxation modulus, apparent modulus, Poisson's ratio and Lame's coefficient of eight different fruit and vegetables using both classical and fractional viscoelastic models. The Caputo Fractional Rheological Model was found to be the better model than the classical models for determining viscoelastic properties as the single element fractional model was found to be sufficient to predict the viscoelastic properties with fewer parameters compared with the three elements classical model. A database of the mechanical properties of different fruit and vegetables have been presented. A relationship between the viscoelastic properties and the porosity has been established. It was also found that the Poisson's ratio of the fruit and vegetables widely varied with changing loading rates.

Impact and interest:

38 citations in Scopus
28 citations in Web of Science®
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ID Code: 200602
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Feng, Liboorcid.org/0000-0002-1320-7946
Liu, Fawangorcid.org/0000-0003-1034-2349
Karim, M. A.orcid.org/0000-0001-9074-0384
Measurements or Duration: 9 pages
Keywords: Caputo fractional viscoelastic model, Compression test, Fresh produce, Mechanical properties, Rheological properties, Single stage relaxation test
DOI: 10.1016/j.postharvbio.2020.111147
ISSN: 0925-5214
Pure ID: 59656048
Divisions: Current > Research Centres > Centre for Data Science
Current > Research Centres > Centre for Agriculture and the Bioeconomy
Past > Institutes > Institute for Future Environments
Past > QUT Faculties & Divisions > Science & Engineering Faculty
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Current > QUT Faculties and Divisions > Faculty of Science
Current > Schools > School of Mechanical, Medical & Process Engineering
Current > Research Centres > Centre for Tropical Crops and Biocommodities
Funding Information: The authors wish to thank the Queensland University of Technology, Brisbane, Australia , for funding support by QUT Postgraduate Research Award (QUTPRA) scholarship and HDR tuition fee sponsorship to carry out the research. The authors acknowledge the support from AQF . The authors also would like to thank Melissa Johnston, Senior Technician–Additive Manufacturing/Medical Engineering Lab, Science and Engineering Faculty, QUT for her active support during performing experiments in Instron Machine.
Copyright Owner: Elsevier B.V.
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Deposited On: 01 Jun 2020 05:32
Last Modified: 03 Aug 2024 14:41