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    Article

    Fractures of Structural Steels (Part 4)

    Group II of fractures (in accordance with the earlier suggested classification [1]) is considered. This group is represented by fractures caused by discontinuities existing in the metal. The fractures are desc...

    A. A. Ezhov, L. P. Gerasimova, A. M. Katok in Metal Science and Heat Treatment (2005)

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    Fractures of Structural Steels (Part 3)

    The second part of group II of fractures (in accordance with the classification presented in the first paper [1]) is considered in detail. The deviations in the structure of these fractures from the fiber and ...

    A. A. Ezhov, L. P. Gerasimova, A. M. Katok in Metal Science and Heat Treatment (2004)

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    Article

    Fractures of Structural Steels (Part 2)

    Fractures of group II (according to the classification given in Part 1) are described in detail. The deviations of the structure of a fracture from the groups of fiber and crystalline fractures are explained b...

    A. A. Ezhov, L. P. Gerasimova, A. M. Katok in Metal Science and Heat Treatment (2004)

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    Fracture Surfaces of Structural Steels

    The kinds of fracture of standard process samples and impact specimens obtained due to single static or impact bending are classified in accordance with the conditions and causes of their formation. Group I of...

    A. A. Ezhov, L. P. Gerasimova, A. M. Katok in Metal Science and Heat Treatment (2004)

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    Article

    (n,α)Radiography method for studying causes of brittle fractures of boron-alloyed steels

    I. G. Berzina, A. A. Ezhov, L. P. Gerasimova, E. B. Gusev in Soviet Physics Journal (1978)

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    Article

    Phase and chemical composition of the aluminum coating on heat resistant alloys

    1. Diffusion coating of heat resistant alloys with aluminum leads to complex changes in the concentration of ele...

    A. S. Shigarev, S. V. Nosenko, A. M. Katok in Metal Science and Heat Treatment (1971)