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Erschienen in: Rock Mechanics and Rock Engineering 4/2021

03.02.2021 | Original Paper

Analysis of Local Creep Strain Field and Cracking Process in Claystone by X-Ray Micro-Tomography and Digital Volume Correlation

verfasst von: Hai-Ling Shi, Jerome Hosdez, Thomas Rougelot, Shou-Yi Xie, Jian-Fu Shao, Jean Talandier

Erschienen in: Rock Mechanics and Rock Engineering | Ausgabe 4/2021

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Abstract

X-ray micro-tomography (XMT) is an efficient technique for non-destructive imaging of morphological structures. It is suitable for monitoring local displacement fields of heterogeneous materials. Digital volume correlation (DVC) methods are widely used for the quantification of local strain fields from highly contrasted XMT images. The aim of this work is to investigate strain localization and cracking process in a hard clayey rock. For this purpose, three-dimensional images have been taken by in situ X-ray micro-tomography on a tested sample under different loading levels and time steps. These images are analyzed with a DVC based method to calculate both local strain fields and averaged global strains. In particular, the progressive localization of strain field with applied stress and creep time is investigated in relation with material heterogeneities. It is found that the strain field localization as well as the cracking process is clearly influenced by the presence of stiff inclusions, pores, weak clayey zones and layered microscopic structure of claystone.

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Metadaten
Titel
Analysis of Local Creep Strain Field and Cracking Process in Claystone by X-Ray Micro-Tomography and Digital Volume Correlation
verfasst von
Hai-Ling Shi
Jerome Hosdez
Thomas Rougelot
Shou-Yi Xie
Jian-Fu Shao
Jean Talandier
Publikationsdatum
03.02.2021
Verlag
Springer Vienna
Erschienen in
Rock Mechanics and Rock Engineering / Ausgabe 4/2021
Print ISSN: 0723-2632
Elektronische ISSN: 1434-453X
DOI
https://doi.org/10.1007/s00603-021-02375-5

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