Structural and phase transformations in α + β brasses

Pleiades Publishing Ltd - Tập 2006 Số 3 - Trang 239-248 - 2006
Н. Б. Пугачева1, А. А. Панкратов2, N. Yu. Frolova3, I. V. Kotlyarov4
1Institute of Machine Science, Ural Division, Russian Academy of Sciences, Yekaterinburg, Russia
2Institute of High-Temperature Electrochemistry, Ural Division, Russian Academy of Sciences, Yekaterinburg, Russia
3Institute of Metal Physics, Ural Division, Russian Academy of Sciences, Yekaterinburg, Russia
4OAO Avtovaz Research Center, Tolyatti, Russia

Tóm tắt

Từ khóa


Tài liệu tham khảo

M. V. Mal’tsev, Metallography of Commercial Nonferrous Metals and Alloys (with an Atlas of Macro-and Microstructures) (Metallurgiya, Moscow, 1979) [in Russian].

A. A. Presnyakov, V. V. Chervyakov, U. K. Duisemaliev, and A. V. Novikov, Brasses: Solid-State Transformations and Technological Properties (Metallurgiya, Moscow, 1969) [in Russian].

N. Ya. Titarev, L. I. Mitina, and E. N. Mironenko, “Effect of Manganese and Silicon on the Properties and Structure of a Wear-Resistant Brass,” Izv. Vyssh. Uchebn. Zaved., Tsvetn. Metall., No. 2, 105–110 (1982).

V. V. Kozlov, A. A. Tishkov, and V. N. Fedotov, “Effect of Silicon and Mn5Si3-Type Intermetallic Compounds on the Structure and Mechanical Properties of Silicon-Manganese Brasses,” in Optimization of Properties and Optimal Application of Brasses and Aluminum Bronzes (Metallurgiya, Moscow, 1968), pp. 48–54.

M. D. Kopyl, A. V. Tropotov, and I. V. Kotlyarov, “Brass Alloys for Synchromesh Rings are Improved,” Avtomobil’naya Promysh., No. 10, 26–29 (1999).

K. S. Chernyavskii, Stereology in Physical Metallurgy (Metallurgiya, Moscow, 1977) [in Russian].

N. B. Pugacheva, A. V. Tropotov, S. V. Smirnov, and O. S. Kuz’min, “Effect of Iron Content on the Composition and Morphology of (Fe,Mn)5Si3 Silicide Particles in Alloyed LMtsAZhKS Brass,” Fiz. Met. Metalloved. 89(1), 62–69 (2000) [Phys. Met. Metallogr. 89 (1), 56–62 (2000)].

S. V. Smirnov, N. B. Pugacheva, A. N. Soloshenko, and A. V. Tropotov, “Plastic Deformation of a High-Alloy Brass,” Fiz. Met. Metalloved. 93(6), 91–100 (2002) [Phys. Met. Metallogr. 93 (6), 584–593 (2002)].

S. V. Smirnov, N. B. Pugacheva, M. V. Myasnikova, et al., “Micromechanics of Fracture and Deformation of Brass,” Fizich. Mezomekhanika, No. 7, part 1, 165–168 (2004).

I. I. Kurbatkin, I. F. Pruzhinin, V. I. Falkon, et al., “Effect of the Chemical Composition and Treatment Conditions on the Mechanical and Service Properties of Silicon-Manganese Brasses,” Tsvetn. Met. (Moscow), No. 9, 60–63 (1996).

V. I. Zel’dovich, I. V. Khomskaya, and N. Yu. Frolova, “Structural Mechanism of the α-Phase Formation and Martensitic Transformation in Cu-Zn-Al Alloys,” Fiz. Met. Metalloved. 89(3), 85–92 (2000) [Phys. Met. Metallogr. 89 (3), 292–299 (2000)].

B. N. Guzanova, S. V. Kositsyn, and N. B. Pugacheva, Hardening Protective Coatings in Machine Building (UrO RAN, Yekaternburg, 2004) [in Russian].

H. Warlimont and L. Delaey, Martensitic Transformations in Copper-, Silver-and Gold-Based Alloys (Pergamon, Oxford, 1974; Nauka, Moscow, 1980).