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Meeting MS&T21: Materials Science & Technology
Symposium Deformation-induced Phase Transformations
Presentation Title Analysis of Stress State of Plastic Medium Influence on Structural Transformations in Low-alloy Steels
Author(s) Anton Matiukhin, Sergey Sheyko, Vоlоdimir Tsyganov, Valeriy Naumyk, Anna Ben
On-Site Speaker (Planned) Sergey Sheyko
Abstract Scope A method for determination of the influence of the stress-strain state of metal on the structural transformations in the low-alloy steel 10HFBTCh is provided. The relation between the parameters of the stress state, thermo-mechanical processing and structural changes in the deformation zone is shown based on the solution of spatial problems of the plasticity theory, the experimental research of mechanical characteristics of the low-alloy steel, the structural state of the metal after deformation. Experimental and theoretical method can be used for the development of technological modes of rolling of the new steel grade with specified mechanical properties customized.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Accounting for Phase Transformation in Plastic Anisotropy Modeling of SS316L
Analysis of Stress State of Plastic Medium Influence on Structural Transformations in Low-alloy Steels
Ausforming of Ferrium M54 Ultra-high Strength Steel
Engineering Microstructures for Conventionally and Additively Manufactured Ni-based Superalloys
Influence of 3D Microstructure on Deformation-induced Martensitic Transformation Studied by In Situ High-energy Diffraction Microscopy and Crystal Plasticity Modeling
Intrinsic Coupling between Deformation Twinning and Phase Transformation in NiTi Shape Memory Alloys and Metastable Beta Ti-alloys
Localized Phase Transformation at Stacking Faults and the Corresponding Alloy Design Strategy
P1-18: Bimetallic Billets for Magnesium-thermal Production of High Quality Sponge Titanium
P1-19: High-cut Steel Property Researches For Taps’ Manufacture
Solid Phase Plasticity Mechanisms in Metals and Rocks during Shear Deformation
Wire Size Effect on the Nucleation of Fatigue Cracks Near Non-metallic Inclusions in Superelastic Nitinol

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