2016
DOI: 10.1016/j.engstruct.2016.08.021
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Concrete strains under transient thermal conditions: A state-of-the-art review

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Cited by 47 publications
(37 citation statements)
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“…An analysis of these results shows that the experimentally measured LITS state under multiaxial conditions exceeds that predicted by merely superimposing uniaxial LITS states [19]. This has been explained by postulating the confinement-dependency of the two main driving mechanism of LITS, namely micro cracking and micro diffusion [17].…”
Section: Confinement-dependent 3d Implementation Methodsmentioning
confidence: 86%
“…An analysis of these results shows that the experimentally measured LITS state under multiaxial conditions exceeds that predicted by merely superimposing uniaxial LITS states [19]. This has been explained by postulating the confinement-dependency of the two main driving mechanism of LITS, namely micro cracking and micro diffusion [17].…”
Section: Confinement-dependent 3d Implementation Methodsmentioning
confidence: 86%
“…Further, beam B3 which is subjected to a higher load (stress) level during fire exposure undergoes the most rapid increase in mid‐span deflections because of early yielding of steel reinforcement resulting in greater mechanical and creep strains . In addition, temperature‐induced transient creep in concrete strains that depend on stress level also contribute towards rapid increase in mid‐span deflections …”
Section: Test Resultsmentioning
confidence: 99%
“…Transient and creep strain are combined together and termed as load induced thermal strain (LITS). The main factors that influence transient creep are temperature level, load level and their duration . Under certain combinations of temperature and stress levels, the rate of deformation caused by LITS can be substantial.…”
Section: Properties Of Concrete At Elevated Temperaturesmentioning
confidence: 99%
“…For reliable evaluation of high temperature mechanical properties of concrete, standardized test methods and procedures are required.Another property that influences fire resistance of structures is transient creep. Creep is the additional strain, which results from sustained mechanical loading on concrete, and gets amplified at ele-Test standards for evaluation of thermal properties of concrete load level and their duration [9][10][11]. Under certain combinations of temperature and stress levels, the rate of deformation caused by LITS can be substantial.…”
mentioning
confidence: 99%