Current Trends in Concrete Fracture Research 1991
DOI: 10.1007/978-94-011-3638-9_5
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Code-type formulation of fracture mechanics concepts for concrete

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Cited by 32 publications
(24 citation statements)
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“…The variability in the data can be seen in Figure 7; the results include error bars, showing 90% double-side confidence intervals for the mean value of G F : CEB-FIP (Hilsdorf and Brameshuber, 1991) recommends a simple empirical formula relating G F to the mean compressive strength of OPC concrete:…”
Section: Fracture Energymentioning
confidence: 99%
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“…The variability in the data can be seen in Figure 7; the results include error bars, showing 90% double-side confidence intervals for the mean value of G F : CEB-FIP (Hilsdorf and Brameshuber, 1991) recommends a simple empirical formula relating G F to the mean compressive strength of OPC concrete:…”
Section: Fracture Energymentioning
confidence: 99%
“…With regard to safety assessment and design of concrete structures, it has been recognised that the fracture properties of concrete need to be considered in structural design (Hilsdorf and Brameshuber, 1991). For example, limits on minimum flexural and shear reinforcement are governed by the concrete brittleness (Roller and Russel, 1990).…”
Section: Introductionmentioning
confidence: 99%
“…The fracture energy is in turn significantly influenced by the compressive strength of concrete and by the maximum size of the aggregates [40,41]. Based on the results provided by Hilsdorf and Brameshuber [41], the following relationship can be used for calculating the value of the fracture energy of concrete:…”
Section: Contribution Of the Top Part Of The Critical Shear Crackmentioning
confidence: 99%
“…Based on the results provided by Hilsdorf and Brameshuber [41], the following relationship can be used for calculating the value of the fracture energy of concrete:…”
Section: Contribution Of the Top Part Of The Critical Shear Crackmentioning
confidence: 99%
“…Így a feszültség-megnyúlás átalakítható feszültség-repedéstágasság diagrammá, amely alatti terület a törési energia. A beton törési energiájára az irodalomban számos ajánlást találunk, legtöbb esetben szilárdsági osztály és maximális adalékanyag szemnagyság függvényeként [8,10]. Kevés olyan példát találunk, ahol…”
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