Study of Microstructure Evolution of Austenitic Steel after Long-term Service
Author:
Affiliation:
1. Taizhou Power Generation Co., Ltd, China
2. Suzhou Nuclear Power Research Institute, China
3. Suzhou Hutian Electric Development Co., LTD, China
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/3495018.3501142
Reference11 articles.
1. A. Iseda H. Okada H. Semba Energy Materials. Long term creep properties and microstructure of SUPER304H TP347HFG and HR3C. 2007(2): 199-206. A. Iseda H. Okada H. Semba Energy Materials. Long term creep properties and microstructure of SUPER304H TP347HFG and HR3C. 2007(2): 199-206.
2. J. Liu D. Jiao C. Luo. Materials Science and Engineering A. Microstructural evolution in austenitic heat-resistant cast steel 35Cr25Ni12NNbRE duration long-term service. 2010(527 ): 2772-2779. J. Liu D. Jiao C. Luo. Materials Science and Engineering A. Microstructural evolution in austenitic heat-resistant cast steel 35Cr25Ni12NNbRE duration long-term service. 2010(527 ): 2772-2779.
3. B. Peng H. Zhang J. Hong Materials Science and Engineering A. Effect of aging on the impact toughness of 25Cr-20Nr-Nb-N steel. 2010(527): 1957-1961. B. Peng H. Zhang J. Hong Materials Science and Engineering A. Effect of aging on the impact toughness of 25Cr-20Nr-Nb-N steel. 2010(527): 1957-1961.
4. J. Erneman M. Schwind H.-O. Andrén Acta Materialia. The evolution of primary and secondary niobium carbonitrides in AISI 347 stainless steel during manufacturing and long-term ageing. 2006(54) :67-76. J. Erneman M. Schwind H.-O. Andrén Acta Materialia. The evolution of primary and secondary niobium carbonitrides in AISI 347 stainless steel during manufacturing and long-term ageing. 2006(54) :67-76.
5. T. Sourmail. Material Science and Technology. Precipitation in creep resistant austenitic stainless steels. 2001(17): 1-14. T. Sourmail. Material Science and Technology. Precipitation in creep resistant austenitic stainless steels. 2001(17): 1-14.
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