Staff profile

Maia O. Babeshko

Бабешко Майя Омелянівна

Position: Leading Researcher

Department: Department of Thermoplasticity

Academic degree: Doctor of Physical and Mathematical Sciences

Research profile

Research areas

  • Spatial problems of thermoplasticity.
  • Thermoviscoelastoplastic processes of complex deformation of structural elements.
  • Thermoelastoplastic state of flexible laminated shells under axisymmetric loading.
  • Elastoplastic axisymmetric stress-strain state of thin shells made of materials with different tensile and compressive strength.
Academic activity

Professional activity

Scientific activity is related to thermoplasticity, thermoviscoelastoplasticity, and numerical analysis of the stress-strain state of laminated shells and bodies of revolution.

Selected publications

Publications

Selected publications

  1. Шевченко Ю.Н., Бабешко М.Е., Пискун В.В., Савченко В.Г. Пространственные задачи термопластичности. Київ: Наукова думка, 1980. 262 с.
  2. Шевченко Ю.Н., Бабешко М.Е., Пискун В.В., Прохоренко И.В., Савченко В.Г. Решение осесимметричной задачи термопластичности для тонкостенных и толстостенных тел вращения на ЕС ЭВМ. Київ: Наукова думка, 1980. 196 с.
  3. Шевченко Ю.Н., Бабешко М.Е., Прохоренко И.В. Методика решения осесимметричной задачи термовязкопластичности для тел вращения. Київ: Наукова думка, 1989. 244 с.
  4. Шевченко Ю.Н., Бабешко М.Е., Терехов Р.Г. Термовязкоупругопластические процессы сложного деформирования элементов конструкций. Київ: Наукова думка, 1992. 328 с.
  5. Babeshko M.E. Thermoelastoplastic State of Flexible Laminated Shells Under Axisymmetric Loading Along Various Plane Paths // International Applied Mechanics. 2003. Vol. 39, No. 2. P. 177–187.
  6. Shevchenko Yu.N., Babeshko M.E. Numerical Analysis of the Thermoelastoplastic Stress-Strain State of Laminated Orthotropic Shells Under Axisymmetric Loading // Journal of Thermal Stresses. 2006. Vol. 29, No. 1. P. 1–25.
  7. Babeshko M.O., Savchenko V.G. Elastoplastic Axisymmetric Stress–Strain State of Thin Shells from Materials with Different Strength to Tension and Compression // International Applied Mechanics. 2018. Vol. 54, No. 3. P. 333–346.