High temperature behaviour of novel concretes - Experimental material tests as a basis for structural fire design

被引:1
|
作者
Pistol, Klaus [1 ]
机构
[1] Bundesanstalt Mat Forsch & Prufung BAM, Fachbereich Brandingn 7 3, Unter Eichen 87, D-12205 Berlin, Germany
关键词
D O I
10.1002/best.201700066
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The design standard for concrete structures DIN EN 1992-1-2 (EC 2-1-2) allows the use of simplified and/or advanced calculation models for structural fire design. The basis for structural fire design are temperature-depended stress-strain-relations for ordinary and high-strength concrete, which consider the loss of strength and stiffness due to increasing temperature. The present article highlights that the current concrete technology development and thus diversification in the material composition of new types of concrete must be considered in structural fire design. The article compiles temperature-dependent compressive strength values of novel concretes. Thus, it illustrates the influence of the composition of concrete on its high temperature behavior.
引用
收藏
页码:194 / +
页数:7
相关论文
共 50 条
  • [31] Experimental and computational studies of CCTS material: Novel design of solar cell for high efficiency
    Guesmi, Omaima
    Ben Arbia, Marwa
    Saidi, Faouzi
    Ben Rabeh, Mohamed
    Maaref, Hassen
    SOLAR ENERGY, 2023, 262
  • [32] High Temperature Oxidation Behaviour of a High-Speed Steel Material
    Zhu, Qiang
    Zhu, Hongtao
    Tieu, Kiet
    Lu, Cheng
    STEEL RESEARCH INTERNATIONAL, 2010, 81 (09) : 134 - 137
  • [33] Temperature Assessment of a Vertical Steel Member Subjected to Localised Fire: Experimental Tests
    Hanus, Francois
    Vassart, Olivier
    Tondini, Nicola
    Nadjai, Ali
    Franssen, Jean-Marc
    STRUCTURES IN FIRE, 2016, : 343 - 351
  • [34] The influence of pore pressure on fracture behaviour of Normal-Strength and High-Performance Concretes at high temperature
    Lo Monte, Francesco
    Felicetti, Roberto
    Miah, Md Jihad
    CEMENT & CONCRETE COMPOSITES, 2019, 104
  • [35] Experimental Studies on the Fire Behaviour of High Performance Concrete Thin Plates
    Thomas Hulin
    Cristian Maluk
    Luke Bisby
    Kamil Hodicky
    Jacob W. Schmidt
    Henrik Stang
    Fire Technology, 2016, 52 : 683 - 705
  • [36] Structural design and experimental tests on a model of tensegrity greenhouse prototype
    Scarascia-Mugnozza, Giacomo
    Fuina, Silvana
    Castellano, Sergio
    JOURNAL OF AGRICULTURAL ENGINEERING, 2021, 52 (03)
  • [37] Modeling elevated-temperature mechanical behavior of high and ultra-high strength steels in structural fire design
    Neuenschwander, Martin
    Scandella, Claudio
    Knobloch, Markus
    Fontana, Mario
    MATERIALS & DESIGN, 2017, 136 : 81 - 102
  • [38] Experimental Studies on the Fire Behaviour of High Performance Concrete Thin Plates
    Hulin, Thomas
    Hodicky, Kamil
    Schmidt, Jacob W.
    Stang, Henrik
    Maluk, Cristian
    Bisby, Luke
    FIRE TECHNOLOGY, 2016, 52 (03) : 683 - 705
  • [39] Optimal design of biaxial tests for structural material characterization of flat tissues
    Lanir, Y
    Lichtenstein, O
    Imanuel, O
    JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 1996, 118 (01): : 41 - 47
  • [40] Optimal design of biaxial tests for structural material characterization of flat tissues
    Department of Biomedical Engineering, J. Silver Biomed. Engg. Sci. Inst., Technion-Israel Inst. of Technology, Haifa 32000, Israel
    J. BIOMECH. ENG., 1 (41-47):