THE SROUNDS OF DIVERGENCE OF THEORETICAL AND PRACTICAL STRENGTH OF HETEROGENEOUS MATERIALS

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Authors: Maksudov A.T. – Director of the  Centre of Science of Academica of  Science of the Republic of Tajikisatan, Toshkhodzhaev Khakim Azimovich – Doctor of Physical and Mathematical Sciences, Professor of the Department of Electronics of KSU named after Academician Bobodzhan Gafurov, Usupov Z.N. – Candidate of fhysical and Mathematical Sciences, Associate Professor, Head of the Department of Electronics of the Faculty of physics and Technology, Khujand State University  by name  academician Bobojon Gafurov, Maksudov J.А.  – Doctorant   of the  Centre of Science, Academia of  Science of the Republic of Tajikistan, Jalilov F. Candidate of Physics – Mathematics Science of  Khujand Polytechnic Institute of Tajik Technical University named after M.Osimi

 

JOURNAL NUMBER: 2(61). YEAR OF ISSUE2022. LANGUAGE OF THE ARTICLE: Russian

 

ANNOTATION

The article dwells on ruptures and ties along the line of force action which are necessary for a transition from a position of stable equilibrium into that are of unstable equilibrium; the latter being determined according to the magnitude of a given force applied to ties. In order to carry out this transition one should perform an additional work at the expense of thermo efforts oven = f, level. Just this work is a manicure of energetic barriers destroying ties. The schedule U(f) is built being dependent on . It is U from r which turned out to be non-linear; however, under big chains (n100) I close to the direct line satisfying equation (1): the authors elicited the nature of the emergence of low-frequented maximum in overloaded polymers, they presented the results of experimental studies and showed that in the spectra of micron surfaces, just as in those ones of loaded polymers, there was observes a deformation of shifted stripes of major maximum and an emergence of low-frequently maximum on a long-wave wing of the stripe of absorption.  

 

KEY WORDS

destruction, activation energy, polymers, deformation, strength, durability, tension