首页   按字顺浏览 期刊浏览 卷期浏览 Strength Evaluation of Reaction‐Bonded Silicon Carbide Radiant Tubes after Long‐Term Ex...
Strength Evaluation of Reaction‐Bonded Silicon Carbide Radiant Tubes after Long‐Term Exposure to Combustion and Endothermic Gas Ambients

 

作者: Taghi Darroudi,   John R. Hellmann,   Richard E. Tressler,   Lynn Gorski,  

 

期刊: Journal of the American Ceramic Society  (WILEY Available online 1992)
卷期: Volume 75, issue 12  

页码: 3445-3451

 

ISSN:0002-7820

 

年代: 1992

 

DOI:10.1111/j.1151-2916.1992.tb04447.x

 

出版商: Blackwell Publishing Ltd

 

数据来源: WILEY

 

摘要:

The strengths of reaction‐bonded silicon carbide radiant tubes were examined after a 14‐month campaign at 800°–950°C in an industrial heat‐treating furnace. The inner tube of the single‐ended radiant tube (SER) burner system was exposed to a combustion gas environment, and the outer tube was exposed to both a combustion gas (inner surface) and an endothermic gas (outer surface) environment. Diametral compression testing of C‐rings and O‐rings was employed to assess the effect of exposure on the strengths where failure initiated from the outer and inner surfaces of the tubes, respectively. Comparisons of strengths obtained on exposed versus as‐received tubes revealed that exposure to the combustion ambient yields an apparent moderate strengthening, with a concurrent increase in strength variability. No significant difference in strength distribution was observed for tubes exposed to combustion versus endothermic gas ambients. Failure most often originated at silicon‐rich regions remaining from silicon infiltration of macroporosity in the slip cast tubes during reaction sintering. Specimens sectioned from the outer tube exhibited unexpectedly high strengths (based on predictions from Weibull statistics) compared to those sectioned from the smaller inner tube after the same exposure. These results indicate that the larger tubes have flaws with characteristics different from those present in smaller tubes, and underscore the need to use data from the same material, with the same flaw populations, in making predictions of the effect of component size on strength distributions and rel

 

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