Rocks and advanced ceramics
Author:
Affiliation:
1. Earthquake Research Institute, University of Tokyo
Publisher
The Geological Society of Japan
Link
https://www.jstage.jst.go.jp/article/geosoc/123/6/123_2017.0009/_pdf
Reference37 articles.
1. Boullier, A. M. and Gueguen, Y., 1975, SP-mylonites: origin of some mylonites by superplastic flow. Contrib. Mineral. Petrol., 50, 93-104.
2. Chin, E. J., Soustelle, V., Hirth, G., Saal, A., Kruckenberg, S. C. and Eiler, J., 2016, Microstructural and geochemical constraints on the evolution of deep arc lithosphere. Geochem. Geophys. Geosystem., 17, 2497-2521.
3. Fliervoet, T. F., White, S. H. and Drury, M. R., 1997, Evidence for dominant grain-boundary sliding deformation in greenschist-and amphibolite-grade polymineralic ultramylonites from the Redbank Deformed Zone, Central Australia. Jour. Struct. Geol., 19, 1495-1520.
4. Hiraga, K., Nakano, K., Suzuki, T. S. and Sakka, Y., 2002a, Processing-dependent microstructural factors affecting cavitation damage and tensile ductility in a superplastic alumina dispersed with zirconia. Jour. Am. Ceram. Soc., 85, 2763-2770.
5. 平賀岳彦(Hiraga, T.), 1999, 鉱物粒界の直視(Observations of grain boundaries in rocks by high-resolution transmission electron microscopy). 地学雑(Jour. Tokyo Geogr. Soc.), 108, 110-121.
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