Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation

This article presents failure investigation on a high-strength alloy SA213-T91 super-heater tube. This failure is the first occurrence involving the material in Kapar Power Station Malaysia. The investigation includes visual inspections, hardness measurements, and microscopic examinations. The faile...

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Main Authors: Ahmad J., Purbolaksono J., Beng L.C., Ahmad A.
Other Authors: 57210531371
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Published: SAGE Publications Ltd 2023
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spelling my.uniten.dspace-305412023-12-29T15:49:09Z Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation Ahmad J. Purbolaksono J. Beng L.C. Ahmad A. 57210531371 8621252500 26423491900 57214160450 failure analysis hardness measurements high-strength alloy steel micro-structure examinations overheating Alloy steel Failure (mechanical) Failure analysis Hardness High strength steel Microstructure Outages Pulverized fuel Tubes (components) Failure investigation Hardness measurement Metal temperature Micro and macro overheating Power station Short-term overheating Visual inspection High strength alloys This article presents failure investigation on a high-strength alloy SA213-T91 super-heater tube. This failure is the first occurrence involving the material in Kapar Power Station Malaysia. The investigation includes visual inspections, hardness measurements, and microscopic examinations. The failed super-heater tube shows a wide open rupture with thin and blunt edges. Hardness readings on all the as-received tubes are used for estimating the operating metal temperature of the super-heater tubes. Microstructures of the failed tube show numerous creep cavities consisting of individual pores and chain of pores which form micro- and macro-cracks. The findings confirmed that the super-heater tube is failed by short-term overheating. Higher temperatures of the flue gas due to the inconsistent feeding of pulverized fuels into the burner is identified to cause overheating of the failed tube. Final 2023-12-29T07:49:09Z 2023-12-29T07:49:09Z 2010 Article 10.1243/09544089JPME332 2-s2.0-78049477515 https://www.scopus.com/inward/record.uri?eid=2-s2.0-78049477515&doi=10.1243%2f09544089JPME332&partnerID=40&md5=e7ff51851bd11191a3943cf7924f89f8 https://irepository.uniten.edu.my/handle/123456789/30541 224 4 269 273 SAGE Publications Ltd Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic failure analysis
hardness measurements
high-strength alloy steel
micro-structure examinations
overheating
Alloy steel
Failure (mechanical)
Failure analysis
Hardness
High strength steel
Microstructure
Outages
Pulverized fuel
Tubes (components)
Failure investigation
Hardness measurement
Metal temperature
Micro and macro
overheating
Power station
Short-term overheating
Visual inspection
High strength alloys
spellingShingle failure analysis
hardness measurements
high-strength alloy steel
micro-structure examinations
overheating
Alloy steel
Failure (mechanical)
Failure analysis
Hardness
High strength steel
Microstructure
Outages
Pulverized fuel
Tubes (components)
Failure investigation
Hardness measurement
Metal temperature
Micro and macro
overheating
Power station
Short-term overheating
Visual inspection
High strength alloys
Ahmad J.
Purbolaksono J.
Beng L.C.
Ahmad A.
Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation
description This article presents failure investigation on a high-strength alloy SA213-T91 super-heater tube. This failure is the first occurrence involving the material in Kapar Power Station Malaysia. The investigation includes visual inspections, hardness measurements, and microscopic examinations. The failed super-heater tube shows a wide open rupture with thin and blunt edges. Hardness readings on all the as-received tubes are used for estimating the operating metal temperature of the super-heater tubes. Microstructures of the failed tube show numerous creep cavities consisting of individual pores and chain of pores which form micro- and macro-cracks. The findings confirmed that the super-heater tube is failed by short-term overheating. Higher temperatures of the flue gas due to the inconsistent feeding of pulverized fuels into the burner is identified to cause overheating of the failed tube.
author2 57210531371
author_facet 57210531371
Ahmad J.
Purbolaksono J.
Beng L.C.
Ahmad A.
format Article
author Ahmad J.
Purbolaksono J.
Beng L.C.
Ahmad A.
author_sort Ahmad J.
title Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation
title_short Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation
title_full Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation
title_fullStr Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation
title_full_unstemmed Failure evaluation on a high-strength alloy SA213-T91 super heater tube of a power generation
title_sort failure evaluation on a high-strength alloy sa213-t91 super heater tube of a power generation
publisher SAGE Publications Ltd
publishDate 2023
_version_ 1806425790969020416
score 13.214268