Bifurcation of Shock Absorber Arch Type Made of Elastomers

Research output

1 Citation (Scopus)

Abstract

The paper considers the stability problem of an arch shock absorber made of a rubber-like material. As a model, the nonlinear theory of thin shells from elastomers K.F. Chernykh is used. The case of symmetrical and asymmetrical deformation of an arch shock absorber under symmetrical compression is investigated. The possibility of asymmetric bifurcation is evaluated depending on the geometric parameters of the shock absorber.

Original languageEnglish
Article number100005
Number of pages4
JournalAIP Conference Proceedings
Volume1978
DOIs
Publication statusPublished - 2018
EventInternational Conference of Numerical Analysis and Applied Mathematics (ICNAAM) - Thessaloniki
Duration: 25 Sep 201730 Sep 2017

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shock absorbers
Elastomers
arches
Arch
Absorber
elastomers
Shock
Bifurcation
Thin Shells
Rubber
rubber
Compression
Model

Scopus subject areas

  • Mathematics(all)

Cite this

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abstract = "The paper considers the stability problem of an arch shock absorber made of a rubber-like material. As a model, the nonlinear theory of thin shells from elastomers K.F. Chernykh is used. The case of symmetrical and asymmetrical deformation of an arch shock absorber under symmetrical compression is investigated. The possibility of asymmetric bifurcation is evaluated depending on the geometric parameters of the shock absorber.",
author = "Kabrits, {Sergey A.} and Kolpak, {Eugeny P.} and Pronina, {Yulia G.} and Sedova, {Olga S.}",
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publisher = "American Institute of Physics",

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AU - Kabrits, Sergey A.

AU - Kolpak, Eugeny P.

AU - Pronina, Yulia G.

AU - Sedova, Olga S.

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AB - The paper considers the stability problem of an arch shock absorber made of a rubber-like material. As a model, the nonlinear theory of thin shells from elastomers K.F. Chernykh is used. The case of symmetrical and asymmetrical deformation of an arch shock absorber under symmetrical compression is investigated. The possibility of asymmetric bifurcation is evaluated depending on the geometric parameters of the shock absorber.

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U2 - 10.1063/1.5043749

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JO - AIP Conference Proceedings

JF - AIP Conference Proceedings

SN - 0094-243X

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