Effective elastic properties of biocomposites using 3D computational homogenization and X-ray microcomputed tomography
Karakoç, A., Miettinen, A., Virkajarvi, J., & Joffe, R. (2021). Effective elastic properties of biocomposites using 3D computational homogenization and X-ray microcomputed tomography. Composite Structures, 273, Article 114302. https://doi.org/10.1016/j.compstruct.2021.114302
Julkaistu sarjassa
Composite StructuresPäivämäärä
2021Tekijänoikeudet
© 2021 The Author(s). Published by Elsevier Ltd.
A 3D computational homogenization method based on X-ray microcomputed tomography (μCT) was proposed and implemented to investigate how the fiber weight fraction, orthotropy and orientation distribution affect the effective elastic properties of regenerated cellulose fiber-polylactic acid (PLA) biocomposites. Three-dimensional microstructures reconstructed by means of the X-ray μCT were used as the representative volume elements (RVEs) and incorporated into the finite element solver within the computational homogenization framework. The present method used Euclidean bipartite matching technique so as to eliminate the generation of artificial periodic boundaries and use the in-situ solution domains. In addition, a reconstruction algorithm enabled finding the volume and surface descriptions for each individual fiber in a semi-automatic manner, aiming at reducing the time and labor required for fiber labeling. A case study was presented, through which the method was compared and validated with the experimental investigations. The present study is thus believed to give a precise picture of microstructural heterogeneities for biocomposites of complex fiber networks and to provide an insight into the influences of the individual fibers and their networks on the effective elastic properties.
...
Julkaisija
Elsevier BVISSN Hae Julkaisufoorumista
0263-8223Asiasanat
Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/98970511
Metadata
Näytä kaikki kuvailutiedotKokoelmat
Lisätietoja rahoituksesta
AK gratefully acknowledges the funding through the postdoctoral researcher position at Aalto University Department of Bioproducts and Biosystems, Academy of Finland BESIMAL (Decision No. 334197) and the research fellowship at Aalto University Department of Communications and Networking.Lisenssi
Samankaltainen aineisto
Näytetään aineistoja, joilla on samankaltainen nimeke tai asiasanat.
-
Characterization of three-dimensional microstructure of composite materials by X-ray tomography
Miettinen, Arttu (University of Jyväskylä, 2016)Analysis methods for X-ray microtomographic images of short fibre composite materials were developed. The methods enable estimation of microstructural properties of the material, e.g., aspect ratio and orientation of ... -
Analysis of microtomographic images of porous heterogeneous materials
Turpeinen, Tuomas (University of Jyväskylä, 2015)In this work, we study the phases of image processing chain of microtomographic imag- ing in order to obtain reliable results while optimizing the time spent on denoising and segmentation. We consider that the decisions ... -
How and why does willow biochar increase a clay soil water retention capacity?
Rasa, Kimmo; Heikkinen, Jaakko; Hannula, Markus; Arstila, Kai; Kulju, Sampo; Hyväluoma, Jari (Elsevier Ltd., 2018)Addition of biochar into a soil changes its water retention properties by modifying soil textural and structural properties. In addition, internal micrometer-scale porosity that is able to directly store readily plant ... -
Low-Dose Mouse Micro-CT Image Segmentation Based on Multi-Resolution Multi-Organ Shape Prior Knowledge Model
Chen, Zhonghua; Wang, Hongkai; Cong, Fengyu; Kettunen, Lauri (IEEE, 2022)Automatic segmentation of computed tomography (CT) images of mice is a step toward computer-assisted preclinical image analysis. Due to the low image quality of micro-CT images, fully-automatic methods may not achieve ... -
The effect of steric hindrance on the packing of elongated objects
Ekman, Axel (University of Jyväskylä, 2016)Fibres of various materials can be deposited to form planar mats of fibres. These kinds of structures have gained substantial attention owing to their direct relation to both large industrial fields, such as paper and ...
Ellei toisin mainittu, julkisesti saatavilla olevia JYX-metatietoja (poislukien tiivistelmät) saa vapaasti uudelleenkäyttää CC0-lisenssillä.