Rheological Properties of Serpentinite and Their Tectonic Significance
Author:
Affiliation:
1. Department of Geosciences, Graduate School of Science, Shizuoka University
2. Department of Earth and Planetary Systems Science, Graduate School of Science, Hiroshima University
Publisher
Tokyo Geographical Society
Subject
Materials Chemistry
Link
https://www.jstage.jst.go.jp/article/jgeography/124/3/124_124.371/_pdf
Reference140 articles.
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2. Amiguet, E., Reynard, B., Caracas, R., Van de Moortèle, B., Hilairet, N. and Wang, Y. (2012): Creep of phyllosilicates at the onset of plate tectonics. Earth and Planetary Science Letters, 345-348, 142-150.
3. Auzende, A.L., Pellenq, R.J.M., Devouard, B., Baronnet, A. and Grauby, O. (2006): Atomistic calculations of structural and elastic properties of serpentine minerals: The case of lizardite. Physics of Chemistry and Minerals, 33, 266-275.
4. Bach, W. and Früh-Green, G.L. (2010): Alteration of the oceanic lithosphere and implications for seafloor processes. Elements, 6, 173-178.
5. Bach, W., Garrido, C.J., Paulick, H., Harvey, J. and Rosner, M. (2004): Seawater-peridotite interactions: First insights from ODP Leg 209, MAR 15°N. Geochemistry Geophysics Geosystems, 5, Q09F26, doi:10.1029/2004GC000744.
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