Literature DB >> 32244868

In-situ X-ray Differential Micro-tomography for Investigation of Water-weakening in Quasi-brittle Materials Subjected to Four-point Bending.

Petr Koudelka1, Tomas Fila1, Vaclav Rada1, Petr Zlamal1, Jan Sleichrt1, Michal Vopalensky1, Ivana Kumpova1, Pavel Benes1, Daniel Vavrik1, Leona Vavro2, Martin Vavro2, Milos Drdacky1, Daniel Kytyr1.   

Abstract

Several methods, including X-ray radiography, have been developed for the investigation of the characteristics of water-saturated quasi-brittle materials. Here, the water content is one of the most important factors influencing their strength and fracture properties, in particular, as regards to porous building materials. However, the research concentrated on the three-dimensional fracture propagation characteristics is still significantly limited due to the problems encountered with the instrumentation requirements and the size effect. In this paper, we study the influence of the water content in a natural quasi-brittle material on its mechanical characteristics and fracture development during in-situ four-point bending by employing high-resolution X-ray differential micro-tomography. The cylindrical samples with a chevron notch were loaded using an in-house designed four-point bending loading device with the vertical orientation of the sample. The in-house designed modular micro-CT scanner was used for the visualisation of the specimen's behaviour during the loading experiments. Several tomographic scans were performed throughout the force-displacement diagrams of the samples. The reconstructed 3D images were processed using an in-house developed differential tomography and digital volume correlation algorithms. The apparent reduction in the ultimate strength was observed due to the moisture content. The crack growth process in the water-saturated specimens was identified to be different in comparison with the dry specimens.

Entities:  

Keywords:  differential tomography; digital volume correlation; four-point bending; fracture propagation; in-situ X-ray 4D micro-CT; quasi-brittle materials; water-weakening

Year:  2020        PMID: 32244868     DOI: 10.3390/ma13061405

Source DB:  PubMed          Journal:  Materials (Basel)        ISSN: 1996-1944            Impact factor:   3.623


  1 in total

1.  Study on Mechanical Properties and Crack Propagation of Raw Coal with Different Bedding Angles based on CT Scanning.

Authors:  Tao Yuan; Yuanlong Wei; Shiwan Chen; Wei Liu; Lingyun Zhao; Xiong Zhang
Journal:  ACS Omega       Date:  2022-07-29
  1 in total

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