REINFORCEMENT | Mekhanika | kompozitsionnykh | materialov i konstruktsii
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REINFORCEMENT
Golubkov A.K.
,
Ivanova A.N.
,
Kulakov V.V.
,
Shmelev D.S.
Design features of carbon-carbon friction composites made by the aerodynamic method based on discrete fibers
>
Volume 27
>
№2
/ 2021 / Pages: 261-271
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doi.org/10.33113/mkmk.ras.2021.27.02.261_271.07
Gamlitsky Y.A.
,
Litvinova I.A.
,
Veselov I.V.
Interpretation of test results rubber with non-traditional fillers using the strength theory
>
Volume 25
>
№2
/ 2019 / Pages: 173-191
Yankovskii A.P.
Construction of refined model of elastic-plastic behavior of flexible reinforced plates under dynamic loading
>
Volume 23
>
№2
/ 2017 / Pages: 283-304
Kuperman F.E.
About mechanism of rubber reinforcement by fillers
>
Volume 21
>
№1
/ 2015 / Pages: 65-82
Gamlitsky Yu.A.
Nanomechanics of the phenomenon of reinforcement of filled elastomers
>
Volume 20
>
№2
/ 2014 / Pages: 230-247
Yankovskii A.P.
Analysis of creep of reinforced beams-wall from nonlinear-hereditary materials within of the second variant of Timoshenko theory
>
Volume 20
>
№3
/ 2014 / Pages: 469-489
Yankovskii A.P.
An analysis of the established creep of reinforced metalocomposite wall-beams in view of the weakened resistance to in-plane shear
>
Volume 18
>
№3
/ 2012 / Pages: 301-319
Karnet Yu.N.
,
Kozlov G.V.
,
Yanovsky Yu.G.
Fractal description of reinforcement mechanism of disperse-filled polymer composites
>
Volume 17
>
№2
/ 2011 / Pages: 203-208
Karnet Yu.N.
,
Kozlov G.V.
,
Yanovsky Yu.G.
Interphase layers formation mechanism into elastomer composites filled with disperse particles and its description in frame of fractal approach
>
Volume 17
>
№3
/ 2011 / Pages: 351-361
Yankovskii A.P.
The steady creep layered metal-composite shells with complex structures of reinforcement
>
Volume 16
>
№3
/ 2010 / Pages: 400-420