CortenH.T., “Failure mechanics of composites” in “Failure”, vol 7, Part 1, publ. Mir, 1976, pp. 367–471.
2.
CherepanovG.P., “Failure mechanics of composite materials”, Nauka 1983.
3.
MalyshevB.M. and SalganikR.L., “The use of crack theory for determining the strength of brittle bonds”, Dokl. AN SSSR, 160, No.1, 1965, pp. 91–94.
4.
MalyshevB.M. and SalganikR.L., “Study of the failure of brittle bonds using methods of crack theory”, PMTF, No.5, 1964, pp.91–101.
5.
MostovoyS. and RiplingE.T., “Fracture toughness of an epoxy system”, J. Appl. Polym. Sci., 10, No.9, 1966, p. 1351.
6.
WilliamsM. and AndersonJ., “Adhesion failure mechanics” in “Failure mechanics. The failure of materials”, publ. Mir, 1979, p. 216.
7.
RD 50-260-81. Descriptions of methods. Calculations and tests for strength in engineering. Methods for mechanical testing of materials. Determination of the viscosity characteristics of failure (crack resistance) under static loading. Standards Publishing. Moscow, 1982.
8.
LipatovYu.S. and SergeevaL.M., “Adsorption of polymers”, publ. Naukova Dumka, Kiev 1972.
9.
PanasyukV.V., “Contemporary problems in failure mechanics”, FKhMM, No.2, 1982, p. 7.
10.
KoryaginS.I., “The study of crack resistance of bonded joints under repeated static loading”, Izv. VUZ Mashinostroenie, No.10, 1987.
11.
KoryaginS.I. and BuilovS.V., “Assessing the crack resistance characteristics of adhesive joints”, Vestnik Mashinostroeniya, No.5, 1989.
12.
BuilovS.V., “Study of the crack resistance of bonded joints”, Probl. Proch., No.3, 1987.
13.
BuilovS.V. and KoryaginS.I., “Method for determining the crack resistance of bonded joints”, Zavodsk. Lab., 54, No.4, 1988.
14.
BuilovS.V. and KoryaginS.I., “Method for determining the stability of crack growth in bonded joints”, Zav. Lab., 54, No.12, 1988.
15.
KoryaginS.I., “Load-bearing capacity of composite materials”, GIPP, Kaliningrad 1996.
16.
HanK. and KontskyT., “Effect of water on the interlaminar fracture behavior of glass fibre-reinforced polyester composite” J. Composite, 14, No.1, 1983, p. 67.
17.
MastP.W., “Developing failure criteria for adhesive joints under complex loading”, J. Eng. Mat. And Technol., 100, No.1, 1978, p. 25.
18.
RiplingE.T., “Fracture toughness of composite adherent adhesive joints under mixed modes I and II of loading”, J. Mater. Sci., 18, No.8, 1983, p. 2274.
19.
NokoK., “Failure of adhesive bonds under combined loading”, translated from Japanese, Nihon Setchaku Kyokaishi, 19, No.8, 1983, p. 324.
20.
TrostyanskayaE.B., “Study of the characteristics of failure of bonded joints based on rigid elasticised adhesives”, Mekh. Komp. Mat., No.3, 1985, p. 443.
21.
BasomW.D., “Mixed-mode fracture of structural adhesives” in Polym. Sci. Technol., 9B. Adhesion Sci. and Technol., 1975, p. 501.
22.
ShawS.T., “Adhesive joints failure. A. Fracture mechanics approach” in Adhesion 7 – 20th Ann. Conf. Adhes. London 1983, pp.173–196.
23.
TrantinaG.G., “Combined mode crack extension in adhesive joints”, J. Comp. Mat., 6, No.7, 1972, p. 371.
24.
WangS.S. and YanT.F., “Interfacial cracks in adhesively bonded scarf joints”, AIAA Journ., 19, No.10, 1981, p. 1350.
25.
RiplingE., “Fracture mechanics: a tool for evaluating structural adhesives”, J. Adhesion, 3, No.2, 1971, p. 107.
26.
SalganikR.L., “Some problems of brittle failure of non-homogeneous and bonded bodies”, Dissertation, 1964.
27.
AndersonG.P., “Evaluation of adhesive test methods” in “Adhesive joints. Formation, characteristics and testing” ed. K.L. Mittul, New York1984, p. 269.
28.
AndersonG.P., “The influence of loading direction upon the character of adhesive debonding”, J. Colloid and Interface Sci., 47, No.3, 1974, p. 600.
29.
AndersonG.P., “Mixed mode stress field effect in adhesive fracture”, Int. J. Fracture, 10, No.4, 1974, p. 565.
30.
KannineuM.F., “Dynamic analysis of crack propagation and arrest in the DCB Test specimen”, Int. Fracture, 10, No.3, 1974, p. 415
31.
KannineuM.F., “An augmented double cantilever beam model for studying crack propagation and arrest”, 1973.
32.
GlednilR.A., “Relationship between mechanical properties snd crack propagation”.
33.
LekhnitskiiS.G.“Theory of elasticity of an anisotropic body”, publ. Nauka1977.
34.
KuzovkovE.G., “Numerical modelling of the stressed state of deformable bodies by the elementary cells method”, Kiev, 1981.
35.
TublonskiD.A., “Fatigue crack growth in structural adhesives”, J. Adhesion, 11, 1980, p.125.
36.
Sov. Patent 1111063. “Method for testing crack resistance of a bonded joint”, S.V. Builov and S.I. Koryagin, Byull Izobret., No.46, 1989.
37.
ChudutovYu.V., “Invariant semi-bridge schemes for measuring bending moment”, Probl. Prochnosti, No.8, 1983, p. 114.
38.
BuilovS.V., “Polymeric adhesive materials for the production and repair of automobiles”, Vestnik Mashinostroeniya, No.1, 2001, p. 25.