Effect of Shock and Vibration Loading on the Fracture Mechanisms of a VT23 Titanium Alloy

Author:

Maruschak P. O.,Chausov M. G.,Konovalenko I. V.,Yasnii O. P.,Panin S. V.,Vlasov I. V.

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials

Reference30 articles.

1. P. O. Maruschak, S. V. Panin, A. Z. Student, and B. B. Ovechkin, Scale Levels of Fracture of Heat-Resistant Steels [in Russian], Tomsk National Research Polytechic University, Tomsk (2013).

2. M. A. Balter, A. P. Lyubchenko, S. P. Aksenova, et al., Fractography as a Diagnostic Testing of Fractured Components [in Russian], Mashinostroenie, Moscow (1978).

3. G. V. Klevtsov, L. R. Botvina, N. A. Klevtsova, and L. V. Limar’, Fractographic Fracture Testing of Metallic Materials and Structures [in Russian], MISiS, Moscow (2007).

4. M. G. Chausov, A. P. Pylypenko, and P. O. Maruschak, Procedure of Improving the Plastic Properties of Sheet Two-Phase High-Strength Titanium Alloys by Shock and Vibration Loading: Scientific-Methodical Recommendations for Plants of Ukraine on Design and Manufacture of Agricultural Equipment [in Ukranian], FOP V. A. Palyanytsya, Ternopil (2017).

5. R. Ya. Kosarevych, O. Z. Student, L. M. Svirs’ka, et al., “Computer analysis of characteristic elements of fractographic images,” Mater. Sci., 48, 474–481 (2013).

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