1. Kruchkov D.I. Smirnov S.V. Pugacheva (Vandysheva) N.B. Vichuzhanin D.I. Bykova (Gurchenko) T.M. Influence of All-Round Forging under Short-Term Creep Conditions on the Structure and Mechanical Properties of the Al7075/10SiCp Composite with an Aluminum Matrix // Physics of Metals and Metallography. 2021. Vol. 122. No. 10. P. 981-990. DOI: 10.1134/S0031918X21100069.
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  2. Pugacheva (Vandysheva) N.B. Kruchkov D.I. Nesterenko A.V. Smirnov S.V. Shveikin V.P. Studying the Short-Term High-Temperature Creep in the Al–6Zn–2.5Mg–2Cu/10SiCp Aluminum Matrix Composite // Physics of Metals and Metallography. 2021. Vol. 122. No. 8. P. 782-788. DOI: 10.1134/S0031918X21080111.
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  3. Kruchkov D.I. Zalazinskiy A.G. Model Representation of An Axisymmetric Steel-Aluminum Sample for Simulation of a Separation Test [Electronic resource] // Diagnostics, Resource and Mechanics of materials and structures. 2021. Iss. 1. P. 26-37. DOI: 10.17804/2410-9908.2021.1.026-037.
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  4. Kruchkov D.I. Zalazinskiy A.G. Kamantsev I.S. Berezin I.M. Simulation of Testing an Incised Multilayer Metal Composite Sample // AIP Conference Proceedings. 2020. Vol. 2315. 020025. https://doi.org/10.1063/5.0036702.
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  5. Zalazinskiy A.G. Kruchkov D.I. Shveikin V.P. Simulation of stress-strain state at the boundaries of a bimetallic composite to determine tear-off resistance // IOP Conference Series: Materials Science and Engineering. 2020. Vol. 709. 033016. doi:10.1088/1757-899X/709/3/ 033016.
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  6. Kruchkov D.I. Nesterenko A.V. A review of experimental studies of creep behavior and superplasticity in a discontinuous SiC aluminum-matrix composites // OBRABOTKA METALLOV-METAL WORKING AND MATERIAL SCIENCE. 2020. Vol. 22. No. 1. P. 130–157. DOI: 10.17212/1994-6309-2020-22.2-130-157. (In Russian).
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  7. Kruchkov D.I. Berezin I.M. Petunin A.A. Computer Simulation of the Stamping of a Long Sheet Blank of a Spherical Tank Element // Vestnik mashinostroeniya. 2019. № 2. P. 28-31.
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  8. Titov V.G. Zalazinskiy A.G. Kruchkov D.I. Nesterenko A.V. Multi-Criteria Optimization by the “Ideal Point” Method of Raw Material Composition for Composite Blank Manufacturing // Izv. Vuzov Poroshk. Metallurgiya i funkts. pokrytiya. 2019. No. 2. P. 49-56. DOI dx.doi.org/10.17073/1997-308X-2019-2-49-56.
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  9. Smirnov S.V. Kruchkov D.I. Nesterenko A.V. Berezin I.M. Vichuzhanin D.I. Experimental study of short-term transient creep of the Al/SiC metal-matrix composite under uniaxial compression // PNRPU Mechanics Bulletin. 2018. No. 4. DOI: 10.15593/perm.mech/2018.4.09.
    Scopus 

  10. Zalazinskiy A.G. Kruchkov D.I. Titov V.G. Application of the Pareto Criterion to Selecting the Optimal Composition of the Charge Material for the Manufacture of a Composite Blank [Electronic resource] // Diagnostics, Resource and Mechanics of materials and structures. 2018. Iss.3. P. 33-42. DOI: 10.17804/2410-9908.2018.3.033-042.
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  11. Kruchkov D.I. Zalazinskiy A.G. Romanova O.V. Nesterenko A.V. Smirnova (Yekzemplyarova) E.O. Determination of parameters for the plasticity model of VT-22 alloy powder particles // Izvestiya vysshikh uchebnykh zavedenii. Poroshkovaya metallurgiya i funktsional'nye pokrytiya. 2018. No. 2. P. 4-12. DOI: 10.17073/1997-308X-2018-2-4-12.
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  12. Kruchkov D.I. Berezin I.M. Nesterenko A.V. Zalazinskiy A.G. Vichuzhanin D.I. Studying the Compactibility of the VT22 High-Strength Alloy Powder Obtained by the PREP Method // AIP Conf. Proc. 2017. Vol. 1915. – 040029.
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  13. Zalazinskiy A.G. Kruchkov D.I. Nesterenko A.V. Titov V.G. Choosing the Optimal Pareto Composition of the Charge Material for the Manufacture of Composite // AIP Conf. Proc. 2017. Vol. 1915. – 040068.
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  14. Kruchkov D.I. Zalazinskiy A.G. A Hybrid Modeling System Designed to Support Decision Making in the Optimization of Extrusion of Inhomogeneous Materials // AIP Conf. Proc. – 2017. Vol. 1915. – 040028.
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  15. Berezin I.M. A.A. Petunin Kruchkov D.I. G.L. Kovacs Finite-Element Simulation of the Cold Stamping Process of Spherical Vessels // Pollack Periоdica. An International Journal for Engineering and Information Sciences.. 2017. Vol. 12. – No. 1. P. 81-92.

  16. Zalazinskiy A.G. Kruchkov D.I. Nesterenko A.V. Titov V.G. Optimizing the Composition of a Composite to Be Pressed from a Noncompact Titanium-Based Raw Material [Electronic resource] // Diagnostics, Resource and Mechanics of materials and structures. 2016. Iss. 5. P. 39-48.

  17. Kruchkov D.I. Zalazinskiy A.G. Berezin I.M. Romanova O.V. Modelling of compaction of titanium composite powders // Diagnostics, Resource and Mechanics of Materials and Structures. 2015. Is. 1. P. 48-60.