167

In the article, the equations of the equilibrium state were derived by the method
of forces addition, and the reaction forces of constraints of the wedge pair were determined. A
mathematical expression for determining the reaction force of an axisymmetric wedge pair was
obtained which generalizes the formula (found in literature) for determining the reaction force
of constraints of a given object under constant. Research methods are based on the classical
laws of theoretical mechanics to derive an equilibrium state equation and an analytical method
for determining the reaction force of constraints

  • Ссылка в интернете
  • DOI
  • Дата создание в систему UzSCI 08-09-2022
  • Количество прочтений 167
  • Дата публикации 30-08-2022
  • Язык статьиIngliz
  • Страницы203-207
English

In the article, the equations of the equilibrium state were derived by the method
of forces addition, and the reaction forces of constraints of the wedge pair were determined. A
mathematical expression for determining the reaction force of an axisymmetric wedge pair was
obtained which generalizes the formula (found in literature) for determining the reaction force
of constraints of a given object under constant. Research methods are based on the classical
laws of theoretical mechanics to derive an equilibrium state equation and an analytical method
for determining the reaction force of constraints

Имя автора Должность Наименование организации
1 Khudjaev M.. teacher TSTU
2 Rizaev A.. teacher Institute of mechanism and seismic stability of structures of the Academy of sciences
Название ссылки
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4 M. Khudjaev., A. Rizaev., G. Pirnazarov., Sh. Khojikulov. Modeling the dynamics of a wedge pair under the action of a constant force. “Transportation research presidia. ELSEVIER”, 2022. 458
5 J. Yao., L. Chen., Ch. Yin. “Modeling and stability analysis of wedge clutch system. mathematical problems in engineering. volume”, 2014
6 Kh.T. Turanov., O.V. Cherepov. Generalized model of a spring-friction set of a freight car bogie. “Transport: science, technology and management”, 2009. 32
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14 M.M. Mirsaidov., T.M. Sobirjonov. “Theoretical mechanics”, 2020. 288
15 K.A. Karimov., A.Kh. Axmedov., A.R. Karimova. “Theoretical mechanics”, 2021. 360
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