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  4. Origins of tensile stress-induced circumferential cracking of waterwall tubes in boilers
 
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Origins of tensile stress-induced circumferential cracking of waterwall tubes in boilers

Journal
Materials at High Temperatures
Journal Volume
25
Journal Issue
4
Pages
287-294
Date Issued
2008
Author(s)
Hsueh C.H.
Wright I.G.
CHUN-HWAY HSUEH  
DOI
10.3184/096034008X394428
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/424841
URL
https://www2.scopus.com/inward/record.uri?eid=2-s2.0-58149313881&doi=10.3184%2f096034008X394428&partnerID=40&md5=bdcb0460784b5a6356f33847d19a7279
Abstract
The leakage and rupture of boiler tubes in power plants is a serious problem that can lead to unscheduled and costly outages. The predominant failure location of current concern is circumferential cracking on the fireside of waterwall tubes in the furnace waterwall section of a boiler. Although there is basic agreement that cracking results from a combination of thermal fatigue and corrosion, a complete explanation of the basic phenomena needed to establish the root causes of this problem is lacking. The purpose of the present study was to analyse the sources of the tensile stress responsible for initiating circumferential cracking and to identify the key parameters controlling this tensile stress. The results of analytical modelling suggested that a combination of increasing tube wall temperature with increasing thickness of internal oxide layers, and temperature spiking due to deslagging events eventually may result in tensile stresses sufficient to crack the fireside oxide and initiate the development of circumferential cracks. This scenario also led to suggestions for reducing tensile stresses in waterwall tubes which, in turn, would be expected to delay/avoid circumferential cracking and improve the reliability of waterwall tubes. ? 2008 Science Reviews 2000 Ltd.
Subjects
Boiler
Cracking
Creep
Stresses
Waterwall tubes
Type
journal article

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