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020 _a9783319762043
024 7 _a10.1007/978-3-319-76204-3
_2doi
040 _aES-MaUEC
_bspa
_cES-MaUEC
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050 4 _aQC176.8.M5
_b2018 EB
100 1 _aKachanov, Mark
_eautor
_4aut
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_0http://id.loc.gov/authorities/names/no2003042465
_1http://viaf.org/viaf/29219322/
_9673337
245 1 0 _aMicromechanics of Materials, with Applications
_cby Mark Kachanov, Igor Sevostianov
264 1 _aCham
_bSpringer International Publishing
_c2018
300 _a1 recurso en línea (XV, 712 páginas)
_b220 ilustraciones, 189 ilustraciones a color
336 _2rdacontent
_aTexto
_btxt
337 _2rdamedia
_aelectrónico
_bc
338 _2rdacarrier
_arecurso electrónico
_bcr
347 _atext file
_bPDF
490 0 _aSolid Mechanics and Its Applications
_x0925-0042
_v249
490 0 _aEngineering (Springer-11647)
505 0 _apreliminary table of contents: Introduction -- Background Results On Elasticity And Conductivity -- Quantitative Characterization Of Microstructures In The Context Of Effective Properties -- Inclusion And Inhomogeneity In An Infinite Space (Eshelby Problems) -- Property Contribution Tensors -- Effective Properties Of Heterogeneous Materials -- Connections Between Elastic And Conductive Properties Of Heterogeneous Materials -- Multiple Cracks: Local Fields And Crack Interactions -- Applications To Specific Materials. .
520 3 _aThis book on micromechanics explores both traditional aspects and the advances made in the last 10-15 years. The viewpoint it assumes is that the rapidly developing field of micromechanics, apart from being of fundamental scientific importance, is motivated by materials science applications. The introductory chapter provides the necessary background together with some less traditional material, examining e.g. approximate elastic symmetries, Rice's technique of internal variables and multipole expansions. The remainder of the book is divided into the following parts: (A) classic results, which consist of Rift Valley Energy (RVE), Hill's results, Eshelby's results for ellipsoidal inhomogeneities, and approximate schemes for the effective properties; (B) results aimed at overcoming these limitations, such as volumes smaller than RVE, quantitative characterization of "irregular" microstructures, non-ellipsoidal inhomogeneities, and cross-property connections; (C) local fields and effects of interactions on them; and lastly (D) - the largest section - which explores applications to eight classes of materials that illustrate how to apply the micromechanics methodology to specific materials.
988 _aEBSPRINGER_2018
650 7 _2embne
_9670142
_aMicromecánica
700 1 _aSevostianov, Igor
_eautor
_4aut
_4http://id.loc.gov/vocabulary/relators/aut
_0http://id.loc.gov/authorities/names/nb2013006186
_1http://viaf.org/viaf/298783257/
_9673338
776 0 8 _iEdición impresa:
_z9783319762036
776 0 8 _iEdición impresa:
_z9783319762050
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-319-76204-3
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
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998 _b04/2020
_dz
_ek
_zSI