Application of Numerical Methods for Research of Construction Design of Fastener Fractures
The work uses modern numerical methods of mechanics of a deformable solid to analyze the stress-strain state of orthopedic structures in order to improve them and improve the quality of treatment of patients. Among the many numerical methods, the attention of the authors was drawn to the finite elem...
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doaj-483e882a333047a2943950ae23060fbd2021-06-08T14:00:54ZengUniversity NorthTehnički Glasnik1846-61681848-55882021-01-01152178183Application of Numerical Methods for Research of Construction Design of Fastener FracturesLeonid V. Kolomiets*0Aleksej Aniskin1Viktor F. Orobey2Alexander Daschenko3Aleksandr M. Lymarenko4Kostiantyn F. Boriak5Odesa State Academy of Technical Regulation and Quality, Kovalska st. 15, 65020 Odesa, UkraineUniversity North, Department of Civil Engineering, Jurja Križanića 31b, 42000 Varaždin, CroatiaOdesa National Polytechnic University, Shevchenko Avenue 1, 65044 Odesa, UkraineOdesa National Polytechnic University, Shevchenko Avenue 1, 65044 Odesa, UkraineOdesa National Polytechnic University, Shevchenko Avenue 1, 65044 Odesa, UkraineOdesa State Academy of Technical Regulation and Quality, Kovalska st. 15, 65020 Odesa, UkraineThe work uses modern numerical methods of mechanics of a deformable solid to analyze the stress-strain state of orthopedic structures in order to improve them and improve the quality of treatment of patients. Among the many numerical methods, the attention of the authors was drawn to the finite element method and to the numerical and analytical method of boundary elements in the author's edition. Settlement models of both metal apparatuses and parts of a person’s arm with a fracture are constructed. The stress – strain state in various zones of the biomechanical system was calculated. It is shown that the numerical-analytical method of boundary elements allows obtaining more accurate results with fewer equations in the resolution system. It is noted that in the case of the considered biomechanical systems, its elements undergo tension – compression, shear, torsion, and bending. To consider them, solutions are presented for Cauchy problems, which are included in the general system of resolving equations of the MGE. It is shown that, unlike the FEM, the MGE simplifies the algorithm for calculating biomechanical systems. Comparison with the FEM results shows their good agreement, which proves the reliability of the calculation results of both methods.https://hrcak.srce.hr/file/375785boundary element methodfinite element methodorthopedic constructionsstress-strain state |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Leonid V. Kolomiets* Aleksej Aniskin Viktor F. Orobey Alexander Daschenko Aleksandr M. Lymarenko Kostiantyn F. Boriak |
spellingShingle |
Leonid V. Kolomiets* Aleksej Aniskin Viktor F. Orobey Alexander Daschenko Aleksandr M. Lymarenko Kostiantyn F. Boriak Application of Numerical Methods for Research of Construction Design of Fastener Fractures Tehnički Glasnik boundary element method finite element method orthopedic constructions stress-strain state |
author_facet |
Leonid V. Kolomiets* Aleksej Aniskin Viktor F. Orobey Alexander Daschenko Aleksandr M. Lymarenko Kostiantyn F. Boriak |
author_sort |
Leonid V. Kolomiets* |
title |
Application of Numerical Methods for Research of Construction Design of Fastener Fractures |
title_short |
Application of Numerical Methods for Research of Construction Design of Fastener Fractures |
title_full |
Application of Numerical Methods for Research of Construction Design of Fastener Fractures |
title_fullStr |
Application of Numerical Methods for Research of Construction Design of Fastener Fractures |
title_full_unstemmed |
Application of Numerical Methods for Research of Construction Design of Fastener Fractures |
title_sort |
application of numerical methods for research of construction design of fastener fractures |
publisher |
University North |
series |
Tehnički Glasnik |
issn |
1846-6168 1848-5588 |
publishDate |
2021-01-01 |
description |
The work uses modern numerical methods of mechanics of a deformable solid to analyze the stress-strain state of orthopedic structures in order to improve them and improve the quality of treatment of patients. Among the many numerical methods, the attention of the authors was drawn to the finite element method and to the numerical and analytical method of boundary elements in the author's edition. Settlement models of both metal apparatuses and parts of a person’s arm with a fracture are constructed. The stress – strain state in various zones of the biomechanical system was calculated. It is shown that the numerical-analytical method of boundary elements allows obtaining more accurate results with fewer equations in the resolution system. It is noted that in the case of the considered biomechanical systems, its elements undergo tension – compression, shear, torsion, and bending. To consider them, solutions are presented for Cauchy problems, which are included in the general system of resolving equations of the MGE. It is shown that, unlike the FEM, the MGE simplifies the algorithm for calculating biomechanical systems. Comparison with the FEM results shows their good agreement, which proves the reliability of the calculation results of both methods. |
topic |
boundary element method finite element method orthopedic constructions stress-strain state |
url |
https://hrcak.srce.hr/file/375785 |
work_keys_str_mv |
AT leonidvkolomiets applicationofnumericalmethodsforresearchofconstructiondesignoffastenerfractures AT aleksejaniskin applicationofnumericalmethodsforresearchofconstructiondesignoffastenerfractures AT viktorforobey applicationofnumericalmethodsforresearchofconstructiondesignoffastenerfractures AT alexanderdaschenko applicationofnumericalmethodsforresearchofconstructiondesignoffastenerfractures AT aleksandrmlymarenko applicationofnumericalmethodsforresearchofconstructiondesignoffastenerfractures AT kostiantynfboriak applicationofnumericalmethodsforresearchofconstructiondesignoffastenerfractures |
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1721389595460894720 |