共 20 条
[1]
Valiev R.Z., Aleksandrov I.V., Bulk Nanocrystalline Metallic Materials: Production, Structure, and Properties, (2007)
[2]
Glezer A.M., On the nature of ultrahigh plastic (megaplastic) deformation, Izv. Ross. Akad. Nauk, Ser. Fiz., 71, 12, pp. 1767-1776, (2007)
[3]
Glezer A.M., Metlov L.S., Megaplastic deformation of solids, FTVD, 18, 4, pp. 21-35, (2008)
[4]
Andrievskii R.A., Glezer A.M., Strength of nanostructures, Usp. Fiz. Nauk, 179, 4, pp. 337-358, (2009)
[5]
Degtyarev M.V., Chashchukhina T.I., Romanova Y.M., Voronova L.M., Correlation between the copper structure and temperature-strain-rate parameters of pressure-induced shear deformation, Dokl. Akad. Nauk, 397, 2, pp. 193-197, (2004)
[6]
Chashchukhina T.I., Degtyarev M.V., Romanova M.Y., Voronova L.M., Dynamic recrystallization in copper deformed by shear under pressure, Phys. Met. Metallogr., 98, 6, pp. 639-647, (2004)
[7]
Chashchukhina T.I., Voronova L.M., Degtyarev M.V., Pokryshkina D.K., Deformation and dynamic recrystallization in copper at different deformation rates in Bridgman anvils, Fiz. Met. Metalloved., 111, 3, pp. 315-324, (2011)
[8]
Bridgman P.W., Studies in Large Plastic Flow and Fracture: Effect of High Hydrostatic Pressure on the Mechanical Properties of Materials, Ed. by L. F. Vereshchagin, (2010)
[9]
Vereshchagin L.F., Zubova E.V., Shapochkin V.A., Apparatus and methods for measuring shear in solids at high pressures, Prib. Tekh. Eksp., No. 5, pp. 89-93, (1960)
[10]
Vereshchagin L.F., Zubova E.V., Aparnikov G.L., Study of the distribution of normal pressure in Bridgman anvils by measuring shear stress, Dokl. Akad. Nauk SSSR, 196, 5, pp. 1057-1060, (1971)