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Моделирование напряженно-деформированного состояния…

Инженерный журнал: наука и инновации

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[9]

Ouinas D., Bouiadjra B. Bachir, Achour T., Benderdouche N. Influence of dis-

bond on notch crack behaviour in single bonded lap joints.

Materials & Design

,

2010, vol. 31, no. 9, pp. 4356–4362.

[10]

Kaledin V.O., Anikina Yu.V.

Vestnik Tomskogo gosudarstvennogo universiteta —

Tomsk State University Journal

, 2006, no. 19, pp. 225–232.

[11]

Agapov V.P.

Metod konechnykh elementov v statike, dinamike i ustoychivosti

prostranstvennykh tonkostennykh podkreplennykh konstruktsiy

[The finite ele-

ment method in statics, dynamics and spatial stability of thin-walled reinforced

constructions]. Moscow, ASV Publ., 2000, 152 p.

[12]

Golovanov A.I., Tyuleneva O.N., Shigabutdinov A.F.

Metod konechnyih ele-

mentov v statike i dinamike tonkostennyih konstruktsiy

[The finite element

method in statics and dynamics of thin-walled structures]. Moscow, Fizmatlit

Publ., 2006, 392 p.

[13]

Zenkevich A.

Metod konechnykh elementov v tekhnike

[Finite element method in

technology]. Moscow, Mir Publ., 1975, 541 p.

[14]

Rickards R.B.

Metod konechnykh elementov v teorii obolochek i plastin

[Finite

element method in the theory of shells and plates]. Riga, 1988, 284 p.

[15]

Segerlind L.J. Applied Finite Element Analysis. Wiley, New York, 1976. [In

Russ.: Segerlind L.

Primenenie metoda konechnykh elementov

. Moscow, Mir

Publ., 1979, 392 p.].

[16]

Kaledin V.O., AnikinaYu.V., Burnysheva T.V., Reshetnikova E.V.

Vestnik

Tomskogo gosudarstvennogo universiteta — Tomsk State University Journal

,

2006, no. 19, pp. 233.

[17]

Timoshenko S.P., Woinowskiy-Krieger S., Snitko I.K., eds.

Plastinki i oboloch-

ki

[Theory of plates and shells]. Moscow, Nauka Publ., 1966, 636 p.

[18]

Dimitrienko Yu.I.

Mehanika sploshnoy sredy. V 4 tomakh. Tom 4. Osnovy me-

hanik i tverdyh sred

[Continuum Mechanics. In 4 vol. Vol. 4. Fundamentals of

mechanics of solid media]. Moscow, BMSTU Publ., 2013, 624 p.

[19]

Kuzmin M.A., Lebedev D.L., Popov B.G.

Raschety na prochnost elementov

mnogosloinykh kompozitnykh konstruktsiy

[Strength calculations of elements of

multilayer composite structures]. Мoscow, BMSTU Publ., 2012, 341 p.

[20]

Alfutov N.A., Zinoviev P.A., Popov B.G.

Raschet mnogosloinykh konstruktsiy i ob-

olochek iz kompozitsionnykh materialov

[Calculation of multilayer structures and

shells made of composite materials]. Moscow, Mashinostroenie Publ., 1984, 264 p.

[21]

Popov B.G.

Raschet mnogosloinykh konstruktsiy variatsionno-matrichnymi

metodami

[Calculation of multilayer structures by variation-matrix methods].

Moscow, BMSTU Publ., 1993, 294 p.

[22]

Birger I.A., Panovko Ya.G.

Prochnost, ustoichivost, kolebaniya

[Strength, Sta-

bility, Vibrations]. Handbook in 3 vol. Vol. 2. Moscow, Mashinostroenie Publ.,

1968, 464 p.

[23]

Dimitrienko Yu.I., Shpakova Yu.V., Bogdanov I.O., Sborshikov S.V.

Inzhenernyi

zhurnal: nauka i innovatsii — Engineering Journal: Science and Innovation,

2015,

iss. 12 (48). Available at:

http://engjournal.ru/catalog/msm/pmcm/1454.html

[24]

Dimitrienko Yu.I., Dimitrienko I.D., Sborschikov S.V. Multiscale Hierarchical

Modeling of Fiber Reinforced Composites by Asymptotic Homogenization

Method

. Applied Mathematical Sciences

, 2015, vol. 9, no. 145, 7211–7220.

Available at:

http://dx.doi.org/10.12988/ams.2015.510641 http://www.m-hikari.com/ams/ams-2015/ams-145-148-2015/p/dimitrienkoAMS

145-148-2015.pdf

[25]

Dimitrienko Yu.I., Koryakov M.N., Zakharov A.A., Stroganov A.S.

Matematicheskoe modelirovanie i chislennye metody — Маthematical

Modeling and Computational Methods

, 2014, no. 3 (3), pp. 3–24.