Microstructure Characterization by Means of X-ray Micro-CT and Nanoindentation Measurements
References
- [1] HENRY M., DARMA I.S., SUGIYAMA T., Analysis of the effect of heating and re-curing on the microstructure of highstrength concrete using X-ray CT, Construction and Building Materials, 2014, Vol. 67, 37-46.
- [2] REN W., YANG Z., SHARMA R., ZHANG C., WITHERS P.J., Two-dimensional X-ray CT image based meso-scale fracture modelling of concrete, Engineering Fracture Mechanics, 2015, Vol. 133, 24-39.
- [3] BOSSA N., CHAURAND P., VICENTE J., BORSCHNECK D., LEVARD C., AGUERRE-CHARIOL O., ROSE J., Micro- and nano- X-ray computed-tomography: A step forward in the characterization of the pore network of a leached cement paste, Cement and Concrete Research, 2015, Vol. 67, 138-147.
- [4] KORATA L., DUCMANA V., LEGATA A., MIRTIC B., Characterization of the pore-forming process in lightweight aggregate based on silica sludge by means of X-ray microtomography (micro-CT) and mercury intrusion porosimetry (MIP), Ceramics International, 2013, Vol. 39, 6997-7005.
- [5] MUNKHOLM L.J., HECK R.J., DEEN B., Soil pore characteristics assessed from X-ray micro-CT derived images and correlations to soil friability, Geoderma, 2012, Vol. 181-182, 22-29.
- [6] LIU T., ZHANG X., LI Z., CHEN Z., Research on the homogeneity of asphalt pavement quality using X-ray computed tomography (CT) and fractal theory, Construction and Building Materials, 2014, Vol. 68, 587-598.
- [7] STEPPE K., CNUDDE V., GIRARD C., LEMEUR R., CNUDDE J.P., JACOBS P., Use of X-ray computed microtomography for noninvasive determination of wood anatomical characteristics, Journal of Structural Biology, 2004, Vol. 148, 11-21.
- [8] CONSTANTINIDES G., RAVI CHANDRAN K.S., ULM F.-J., VAN VLIET K.J., Grid indentation analysis of composite microstructure and mechanics: Principles and validation, Materials Science and Engineering, 2006, Vol. 430, 189-202.
- [9] SORELLI L., CONSTANTINIDES G., ULM F.-J., TOUTLEMONDE F., The nano-mechanical signature of Ultra High Performance Concrete by statistical nanoindentation techniques, Cement and Concrete Research, 2008, Vol. 38, 1447-1456.
- [10] ZHU W., HUGHES J.J., BICANIC N., PEARCE C.J., Nanoindentation mapping of mechanical properties of cement paste and natural rocks, Materials Characterization, 2007, Vol. 58, 1189-1198.
- [11] ZADPOOR A.A., Nanomechanical characterization of heterogeneous and hierarchical biomaterials and tissues using nanoindentation: The role of finite mixture models, Materials Science and Engineering C, 2015, Vol. 48, 150-157.
- [12] DÍEZ-PASCUAL A.M., GÓMEZ-FATOU M.A., ANIA F., FLORES A., Nanoindentation in polymer nanocomposites, Progress in Materials Science, 2015, Vol. 67, 1-94.
- [13] STOCK S.R., MicroComputed tomography: methodology and applications, Boca Raton: CRC Press, 2009.
- [14] EPSTEIN C.L., Introduction to mathematics of medical imaging, SIAM, Philadelphia, 2003.
- [15] DOERNER M.F., NIX W.D., A method for interpreting the data from depth-sensing indentation instruments, Journal of Material Research, 1986, Vol. 1(4), 601-609.
- [16] OLIVER W.C., PHARR G.M., An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments, Journal of Material Research, 1992, Vol. 7(6), 1564-1583.
- [17] FISCHER-CRIPPS A., Nanoindentation, Springer, New York, 2011.
DOI: https://doi.org/10.1515/sgem-2015-0009 | Journal eISSN: 2083-831X (formerly 0137-124X) | Journal ISSN: 0137-6365
Language: English
Page range: 75 - 84
Published on: Mar 27, 2015
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2015 Magdalena Rajczakowska, Damian Stefaniuk, Dariusz Łydżba, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.