NONLENEAR DEFORMATION OF GRANULAR COMPOSITES
DOI:
https://doi.org/10.32703/2617-9040-2020-36-13Keywords:
laminated material, nonlinear deformation of layers, stress-strain state, efficient deformative properties, influence of nonlinearityAbstract
The model of nonlinear deformation of a layered material with physically nonlinear layers is proposed. The laminate is considered a two-component material with random layers. The basis is the stochastic differential equations of the physically nonlinear theory of elasticity L.P. Khoroshun. The solution to the problem of the stress-strain state and effective properties of the composite material is constructed by the averaging method. An algorithm for determining the effective deformable properties of a layered material with physically nonlinear layers has been developed. The solution of nonlinear equations taking into account their physical nonlinearity is constructed by an iterative method. The law of the relationship between macrostresses and macrostrains in a layered material and the dependence of average strains and stresses in its layers on macrostrains has been established. Curves of material deformation are plotted for different values of the volumetric content of its filler. The dependence of the effective deformative properties of the laminated material on the volumetric content of the filler has been studied. The effect of nonlinearity of layers on the deformation of a layered composite material is investigated. It was found that the nonlinearity of the layers significantly affects the effective deformative properties and the stress-strain state of laminated materials.
References
Kauderer G. Nelinejnaya mekhanika. URL: https://www.razym.org/naukaobraz/disciplini/fizika/277596-kauderer-gnelineynaya-mehanika.html . (data zvernennya 6.11.2020).
Miheev S.V., Stroganov G.B., Romashin A.G. Keramicheskie i kompozicionnye materialy v aviacionnoj tekhnike. M.: Al'teks, 2002. 276 s.
Horoshun L.P. Metody teorii sluchajnyh funkcij v zadachah o makroskopicheskih svojstvah mikroneodnorodnyh sred. Prikladnaya mekhanika. 1978. T. 14, № 2. S. 3–17.
Horoshun L.P. Metod uslovnyh momentov v zadachah mekhaniki kompozitnyh materialov. Prikladnaya mekhanika. T. 23, № 10. 100–108.
Horoshun L.P., Maslov B.P., SHikula E.N., Nazarenko L.V. Mekhanika kompozitov: V 12-h t. / pod obshch. red. A.N.Guzya / T.3 Statisticheskaya mekhanika i effektivnye svojstva materialov. K.: Nauk. dumka, 1993. 390 s.
Guz' A.N., Horoshun L.P., Mihajlova M.I., Babich D.V., SHikula E.N. Mekhanika kompozitov: V 12 t. / pod obshch. red. A.N.Guzya / T. 12: Prikladnye issledovaniya. K: «A.S.K.», 2003. 398 s.
Horoshun L.P., SHikula E.N., Deformirovanie fizicheski nelinejnyh stohasticheskih kompozitnyh materialov. Deformirovanie i kratkovremennaya povrezhdaemost' fizicheski nelinejnyh stohasticheskihkompozitnyh materialov / Uspekhi mekhaniki: V 6-ti tomah / pod redakciej A.N.Guzya. / Tom 6 (kniga 2). K.: Litera LTD, 2011. 832 s. C. 161─191, 436─463.
SHermergor T.D. Teoriya uprugosti mikroneodnorodnyh sred. URL: https://www.google.com/search?client=firefox-b-d&q=shermergor+t.d.+teoriya+uprugosti+mikroneodnorodnyh. (data zvernennya 6.11.2020).
Khoroshun L.P., Shikula E.N. Short-term microdamageability of laminated materials under thermal actions. International Applied Mechanics. 2002. V. 38. N 4. P. 432-439.
Khoroshun L.P., Shikula E.N. Influence of physically nonlinear deformation on short-term microdamage of a laminar material. International Applied Mechanics. 2004. V. 40. N 8. P. 656-663.
Khoroshun L.P., Shikula E.N. Deformation of a laminated composite with a physically nonlinear reinforcement and microdamageable matrix. International Applied Mechanics. 2005. V. 41. N 11. P. 1131-1138.
Khoroshun L.P., Shikula E.N. Short-term microdamage of laminated material with nonlinear matrix and microdamaged reinforcement. International Applied Mechanics. 2005. V. 41. N 12. P. 1246-1253.
Khoroshun L.P., Shikula E.N. Short-term microdamage of a physically nonlinear laminate under simultaneous normal and tangential loads. International Applied Mechanics. 2007. V. 43. N 4. P. 409-417.
Khoroshun L.P., Shikula E.N. Deformation of physically nonlinear stochastic composites. International Applied Mechanics. 2008. V. 44. N 12. P. 1325-1351.
Khoroshun L.P., Shikula E.N. Deformation and short-term damage of physically nonlinear stochastic composites. International Applied Mechanics. 2009. V. 45. N 6. P. 1204-1232.
L.P., Shikula E.N. Deformation and damage of composite materials of stochastic structures: physically nonlinear problems. International Applied Mechanics. 2012. V. 48. N 4. P. 359-413.
Khoroshun L.P., Shikula E.N. Coupled processes of deformation and long-term damage of physically nonlinear laminated materials. International Applied Mechanics. 2013. V. 49. N 6. P. 650-657.
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