Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone

In this work, the surface heterogeneity in mechanical compressive strain of cancellous bone was investigated with digital image correlation (DIC). Moreover, the onset and progression of failure was studied by acoustic emission (AE). Cubic cancellous bone specimens, with side of 15 mm, were obtained...

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Main Authors: Athanasios Tsirigotis, Despoina D. Deligianni
Format: Article
Language:English
Published: Frontiers Media S.A. 2017-12-01
Series:Frontiers in Materials
Subjects:
Online Access:http://journal.frontiersin.org/article/10.3389/fmats.2017.00044/full
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spelling doaj-7777b671114646918d23bed6484464d42020-11-25T00:08:12ZengFrontiers Media S.A.Frontiers in Materials2296-80162017-12-01410.3389/fmats.2017.00044307610Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous BoneAthanasios Tsirigotis0Despoina D. Deligianni1Laboratory of Biomechanics and Biomedical Engineering, Department of Mechanical Engineering and Aeronautics, University of Patras, Rio, GreeceLaboratory of Biomechanics and Biomedical Engineering, Department of Mechanical Engineering and Aeronautics, University of Patras, Rio, GreeceIn this work, the surface heterogeneity in mechanical compressive strain of cancellous bone was investigated with digital image correlation (DIC). Moreover, the onset and progression of failure was studied by acoustic emission (AE). Cubic cancellous bone specimens, with side of 15 mm, were obtained from bovine femur and kept frozen at −20°C until testing. Specimen strain was analyzed by measuring the change of distance between the platens (crosshead) and via an optical method, by following the strain evolution with a camera. Simultaneously, AE monitoring was performed. The experiments showed that compressive Young’s modulus determined by crosshead strain is underestimated at 23% in comparison to optically determined strain. However, surface strain fields defined by DIC displayed steep strain gradients, which can be attributed to cancellous bone porosity and inhomogeneity. The cumulative number of events for the total AE activity recorded from the sensors showed that the activity started at a mean load level of 36% of the maximum load and indicated the initiation of micro-cracking phenomena. Further experiments, determining 3D strain with μCT apart from surface strain, are necessary to clarify the issue of strain inhomogeneity in cancellous bone.http://journal.frontiersin.org/article/10.3389/fmats.2017.00044/fullcancellous boneacoustic emissiondigital image correlationmicrodamageevolution
collection DOAJ
language English
format Article
sources DOAJ
author Athanasios Tsirigotis
Despoina D. Deligianni
spellingShingle Athanasios Tsirigotis
Despoina D. Deligianni
Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone
Frontiers in Materials
cancellous bone
acoustic emission
digital image correlation
microdamage
evolution
author_facet Athanasios Tsirigotis
Despoina D. Deligianni
author_sort Athanasios Tsirigotis
title Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone
title_short Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone
title_full Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone
title_fullStr Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone
title_full_unstemmed Combining Digital Image Correlation and Acoustic Emission for Monitoring of the Strain Distribution until Yielding during Compression of Bovine Cancellous Bone
title_sort combining digital image correlation and acoustic emission for monitoring of the strain distribution until yielding during compression of bovine cancellous bone
publisher Frontiers Media S.A.
series Frontiers in Materials
issn 2296-8016
publishDate 2017-12-01
description In this work, the surface heterogeneity in mechanical compressive strain of cancellous bone was investigated with digital image correlation (DIC). Moreover, the onset and progression of failure was studied by acoustic emission (AE). Cubic cancellous bone specimens, with side of 15 mm, were obtained from bovine femur and kept frozen at −20°C until testing. Specimen strain was analyzed by measuring the change of distance between the platens (crosshead) and via an optical method, by following the strain evolution with a camera. Simultaneously, AE monitoring was performed. The experiments showed that compressive Young’s modulus determined by crosshead strain is underestimated at 23% in comparison to optically determined strain. However, surface strain fields defined by DIC displayed steep strain gradients, which can be attributed to cancellous bone porosity and inhomogeneity. The cumulative number of events for the total AE activity recorded from the sensors showed that the activity started at a mean load level of 36% of the maximum load and indicated the initiation of micro-cracking phenomena. Further experiments, determining 3D strain with μCT apart from surface strain, are necessary to clarify the issue of strain inhomogeneity in cancellous bone.
topic cancellous bone
acoustic emission
digital image correlation
microdamage
evolution
url http://journal.frontiersin.org/article/10.3389/fmats.2017.00044/full
work_keys_str_mv AT athanasiostsirigotis combiningdigitalimagecorrelationandacousticemissionformonitoringofthestraindistributionuntilyieldingduringcompressionofbovinecancellousbone
AT despoinaddeligianni combiningdigitalimagecorrelationandacousticemissionformonitoringofthestraindistributionuntilyieldingduringcompressionofbovinecancellousbone
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