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contributor authorZdeněk P. Bažant
contributor authorEr-Ping Chen
date accessioned2017-05-08T23:52:14Z
date available2017-05-08T23:52:14Z
date copyrightOctober, 1997
date issued1997
identifier issn0003-6900
identifier otherAMREAD-25735#593_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/118029
description abstractThis article attempts to review the progress achieved in the understanding of scaling and size effect in the failure of structures. Particular emphasis is placed on quasibrittle materials for which the size effect is important and complicated. After reflections on the long history of size effect studies, attention is focused on three main types of size effects, namely the statistical size effect due to randomness of strength, the energy release size effect, and the possible size effect due to fractality of fracture or microcracks. Definitive conclusions on the applicability of these theories are drawn. Subsequently, the article discusses the application of the known size effect law for the measurement of material fracture properties, and the modeling of the size effect by the cohesive crack model, nonlocal finite element models and discrete element models. Extensions to compression failure and to the rate-dependent material behavior are also outlined. The damage constitutive law needed for describing a microcracked material in the fracture process zone is discussed. Various applications to quasibrittle materials, including concrete, sea ice, fiber composites, rocks and ceramics are presented. There are 377 references included in this article.
publisherThe American Society of Mechanical Engineers (ASME)
titleScaling of Structural Failure
typeJournal Paper
journal volume50
journal issue10
journal titleApplied Mechanics Reviews
identifier doi10.1115/1.3101672
journal fristpage593
journal lastpage627
identifier eissn0003-6900
keywordsStructural failures
keywordsSize effect
keywordsFailure
keywordsFracture (Process)
keywordsModeling
keywordsCompression
keywordsComposite materials
keywordsCeramics
keywordsConcretes
keywordsFibers
keywordsReflection
keywordsFinite element model
keywordsMicrocracks
keywordsRocks AND Sea ice
treeApplied Mechanics Reviews:;1997:;volume( 050 ):;issue: 010
contenttypeFulltext


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