INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS

cUnderstanding of mechanical and thermal properties of refractory bricks used in industry is an important aspect to determine appropriate operating conditions. In this study, commercial refractory materials used in the sector of iron steel 45 % and 80 % alumina (Al2O3) of content refractory bricks...

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Main Authors: N. Sinan KÖKSAL, B. Sadık ÜNLÜ, Cevdet MERİÇ
Format: Article
Language:English
Published: Pamukkale University 2003-02-01
Series:Pamukkale University Journal of Engineering Sciences
Subjects:
Online Access:http://dergipark.ulakbim.gov.tr/pajes/article/view/5000089741
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spelling doaj-728b3acab5fb466f9355939f113b77532020-11-24T23:47:53ZengPamukkale UniversityPamukkale University Journal of Engineering Sciences1300-70092147-58812003-02-01921471515000083809INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKSN. Sinan KÖKSALB. Sadık ÜNLÜCevdet MERİÇcUnderstanding of mechanical and thermal properties of refractory bricks used in industry is an important aspect to determine appropriate operating conditions. In this study, commercial refractory materials used in the sector of iron steel 45 % and 80 % alumina (Al2O3) of content refractory bricks were investigated. To determinate thermal shock behavior and mechanical properties of samples, thermal shock tests were applied by quenching in the water at the temperature differences of 500, 700, 900 and 1000 0 C. Three point bending test was examined for changes occured in the microstructure of materials. The critical temperature difference, modulus of rupture (MOR), changes of elastic modulus (E), thermal shock parameters such as resistance to crack initiation (R) and resistance to crack propagation (R''') were calculated. Not with thermal treatment samples was examined same properties in the room temperature and to compare results of tests. The critical temperature difference of materials was found to be about 600 0 C. Crack start from samples of edges, space of spilling grains and microcracks occured around grains and they cause a damage by connecting to each other.http://dergipark.ulakbim.gov.tr/pajes/article/view/5000089741Alümina, Isıl şok, Kırılma modülü, R ve R'''
collection DOAJ
language English
format Article
sources DOAJ
author N. Sinan KÖKSAL
B. Sadık ÜNLÜ
Cevdet MERİÇ
spellingShingle N. Sinan KÖKSAL
B. Sadık ÜNLÜ
Cevdet MERİÇ
INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS
Pamukkale University Journal of Engineering Sciences
Alümina, Isıl şok, Kırılma modülü, R ve R'''
author_facet N. Sinan KÖKSAL
B. Sadık ÜNLÜ
Cevdet MERİÇ
author_sort N. Sinan KÖKSAL
title INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS
title_short INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS
title_full INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS
title_fullStr INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS
title_full_unstemmed INVESTIGATION OF THERMAL SHOCK BEHAVIOUR IN ALUMINA BASED REFRACTORY BRICKS
title_sort investigation of thermal shock behaviour in alumina based refractory bricks
publisher Pamukkale University
series Pamukkale University Journal of Engineering Sciences
issn 1300-7009
2147-5881
publishDate 2003-02-01
description cUnderstanding of mechanical and thermal properties of refractory bricks used in industry is an important aspect to determine appropriate operating conditions. In this study, commercial refractory materials used in the sector of iron steel 45 % and 80 % alumina (Al2O3) of content refractory bricks were investigated. To determinate thermal shock behavior and mechanical properties of samples, thermal shock tests were applied by quenching in the water at the temperature differences of 500, 700, 900 and 1000 0 C. Three point bending test was examined for changes occured in the microstructure of materials. The critical temperature difference, modulus of rupture (MOR), changes of elastic modulus (E), thermal shock parameters such as resistance to crack initiation (R) and resistance to crack propagation (R''') were calculated. Not with thermal treatment samples was examined same properties in the room temperature and to compare results of tests. The critical temperature difference of materials was found to be about 600 0 C. Crack start from samples of edges, space of spilling grains and microcracks occured around grains and they cause a damage by connecting to each other.
topic Alümina, Isıl şok, Kırılma modülü, R ve R'''
url http://dergipark.ulakbim.gov.tr/pajes/article/view/5000089741
work_keys_str_mv AT nsinankoksal investigationofthermalshockbehaviourinaluminabasedrefractorybricks
AT bsadıkunlu investigationofthermalshockbehaviourinaluminabasedrefractorybricks
AT cevdetmeric investigationofthermalshockbehaviourinaluminabasedrefractorybricks
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