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dc.contributor.authorZhang, Sheng-
dc.contributor.authorWang, Longfei-
dc.contributor.authorGao, Mingzhong-
dc.date.accessioned2020-05-29T07:01:03Z-
dc.date.available2020-05-29T07:01:03Z-
dc.date.issued2019-
dc.identifier.issn1687-8086-
dc.identifier.issn1687-8094 (eISSN)-
dc.identifier.otherBBKH1198-
dc.identifier.urihttp://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18476-
dc.description"Hindawi; Advances in Civil Engineering; Volume 2019, Article ID 7921694, 11 pages; https://doi.org/10.1155/2019/7921694"vi
dc.description.abstractTo study the size effect of the fracture toughness of notched semicircular bend (NSCB) specimens, the dimensionless energy release rate equation of the NSCB specimen was deduced on the basis of the Bažant energy release rate. The influence of the crack length and the specimen size on the fracture toughness was analyzed. The Bažant scale equation was obtained using the International Union of Laboratories and Experts in Construction Materials, Systems, and Structures (RILEM) method. Finally, the Bažant equation was used to analyze the fracture toughness of an NSCB specimen with a radius of 75 mm, and the degree of variation was predicted. The results show that a longer fracture is correlated with a lower fracture toughness value for the same sample size and that a larger specimen radius is correlated with a higher fracture toughness value for the same crack length. The obtained Bažant equation correctly reflects the scale law of the fracture toughness of the NSCB specimen and provides highly accurate predictions of the fracture toughness of large specimens, with an error of not more than 3%. The results obtained in this study provide a new reference method and theoretical basis for the future testing work.vi
dc.language.isoenvi
dc.publisherHindawi Limitedvi
dc.subjectLaboratoriesvi
dc.subjectPropagationvi
dc.subjectHeat treatingvi
dc.subjectImpact testsvi
dc.subjectConstruction materialsvi
dc.subjectEnergy release ratevi
dc.subjectStudiesvi
dc.subjectMarblevi
dc.subjectLimestonevi
dc.subjectCivil engineeringvi
dc.subjectFracture toughnessvi
dc.subjectCrack initiationvi
dc.subjectResearchersvi
dc.subjectParticle sizevi
dc.subjectMethodsvi
dc.subjectStonevi
dc.subjectSize effectsvi
dc.subjectPredictionsvi
dc.subjectFracture mechanicsvi
dc.subjectCrack propagationvi
dc.titleExperimental Investigation of the Size Effect of the Mode I Static Fracture Toughness of Limestonevi
dc.typeOthervi
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