FIRE RESISTANT CONCRETE DESIGN

Volume: 9 Number: 3 April 1, 2014
  • Zuhal Şimşek
EN TR

FIRE RESISTANT CONCRETE DESIGN

Öz

To minimize loss of life and property, structure of building should be established to allow time for evacuation from place location of the fire and to provide the structure and prevent the collapse of buildings having high fire risk rate. Considered most of buildings made by concrete in our country, integrity of concrete must be provided during the time period escape from fire. Particularly, buildings and fire compartments having high fire risk, must be designed to provide high strength and to minimize the loss of goods. Forming fireproof compartments may be accomplished by , treatment of the weak points and determinating temperature changes on the concrete components. fire resistance of concrete increased by adding puzzolan addivities. In the study, behavior of concrete exanimate at different temperatures and optimal concrete composition evaluated.

Anahtar Kelimeler

References

  1. Grainger, B.N., (1980). Concrete at High Temperatures. Central Electricity Research Laboratories, UK.
  2. Çelebi, M.R. ve Akıncıtürk, N., (2003). Yangın. İstanbul Kültür Üniversitesi Yayınları, İstanbul.
  3. Ghosh, S. and Nasser K.W., (1996). Effects of High Temperature and Pressure on Strength and Elasticity of Lignite Fly Ash and Silica Fume. Concrete Materials Journal: 1(93)401-50. DOI: 10.14359/9795.
  4. Harper, C.A., (2004). Handbook of Building Materials for Fire Protection. McGraw- Hill.
  5. Hertz, K.D., (1992). İnvestigations on Silica Fume Concretes at Elavated Tempetures. ACI: 4(89), 345-347, DOI:10.14359/9750.
  6. Hertz, K.D., (1984). Heat İnduced Explosion of Dence Concretes. İnstute of Building Design. Technical University of Denmark. Report no: 166.
  7. Khoury, G.A., (1992). Design of Concrete for Beter Performance in Fire. C438/042.
  8. Kordina, K., Wydra, W., and Ehm, C., (1992). Analysis of the Developing Damage of Concrete due to Heating and Cooling, Materials and design Against Fire. Proceedings of İnstitution of Mechanical Engineers. Bridge Walk London.

Details

Primary Language

Turkish

Subjects

-

Journal Section

-

Authors

Zuhal Şimşek This is me

Publication Date

April 1, 2014

Submission Date

August 8, 2014

Acceptance Date

-

Published in Issue

Year 2014 Volume: 9 Number: 3

APA
Şimşek, Z. (2014). FIRE RESISTANT CONCRETE DESIGN. Technological Applied Sciences, 9(3), 31-42. https://doi.org/10.12739/NWSA.2014.9.3.2A0087
AMA
1.Şimşek Z. FIRE RESISTANT CONCRETE DESIGN. Technological Applied Sciences. 2014;9(3):31-42. doi:10.12739/NWSA.2014.9.3.2A0087
Chicago
Şimşek, Zuhal. 2014. “FIRE RESISTANT CONCRETE DESIGN”. Technological Applied Sciences 9 (3): 31-42. https://doi.org/10.12739/NWSA.2014.9.3.2A0087.
EndNote
Şimşek Z (April 1, 2014) FIRE RESISTANT CONCRETE DESIGN. Technological Applied Sciences 9 3 31–42.
IEEE
[1]Z. Şimşek, “FIRE RESISTANT CONCRETE DESIGN”, Technological Applied Sciences, vol. 9, no. 3, pp. 31–42, Apr. 2014, doi: 10.12739/NWSA.2014.9.3.2A0087.
ISNAD
Şimşek, Zuhal. “FIRE RESISTANT CONCRETE DESIGN”. Technological Applied Sciences 9/3 (April 1, 2014): 31-42. https://doi.org/10.12739/NWSA.2014.9.3.2A0087.
JAMA
1.Şimşek Z. FIRE RESISTANT CONCRETE DESIGN. Technological Applied Sciences. 2014;9:31–42.
MLA
Şimşek, Zuhal. “FIRE RESISTANT CONCRETE DESIGN”. Technological Applied Sciences, vol. 9, no. 3, Apr. 2014, pp. 31-42, doi:10.12739/NWSA.2014.9.3.2A0087.
Vancouver
1.Zuhal Şimşek. FIRE RESISTANT CONCRETE DESIGN. Technological Applied Sciences. 2014 Apr. 1;9(3):31-42. doi:10.12739/NWSA.2014.9.3.2A0087