Refined estimations of strength of structures from carbon-carbonic materials subjected to intense power and thermal loading

  • Bogdan Drobenko Pidstryhach Institute for Applied Problems of Mechanics and Mathematics of National Academy of Sciences of Ukraine, 3b, Naukova Str., L'viv
  • Alexander Buryk 2Pidstryhach Institute for Applied Problems of Mechanics and Mathematics of National Academy of Sciences of Ukraine, 3b, Naukova Str., L'viv
  • Volodymyr Kharchenko Yuzhnoye Design Office, 3, Kryvorizhska Str., Dnipropetrovs'k
Keywords: computer simulation, finite element method, composites

Abstract

The results of computer simulation of the deformation processes of non-homogeneous structural
element, which is manufactured using of carbon-carbonic composite materials, under intensive
non-stationary thermal and power loading are presented. The spatial structure and dependence of
characteristics of materials on temperature are taken into account. The computational experiment
was conducted using the finite element software developed on the basis of non-isothermal thermoelastic-
plasticity. A convergence of numerical solutions has been tested. It is shown that the
carbon-carbonic composite material in the structural element ensures its operational reliability
when the element is subjected to the specified internal pressure and intense heating to the
temperatures at which traditional materials cannot longer functioning in proper way.

Published
2019-02-11
How to Cite
Drobenko, B., Buryk, A., & Kharchenko, V. (2019). Refined estimations of strength of structures from carbon-carbonic materials subjected to intense power and thermal loading. PHYSICO-MATHEMATICAL MODELLING AND INFORMATIONAL TECHNOLOGIES, (22), 53-59. Retrieved from http://fmmit.lviv.ua/index.php/fmmit/article/view/74