Phenomenological and microstructural analysis of intermediate temperatures creep in a Ni–Fe-based alloy for advanced ultra-supercritical fossil power plants》.pdfVIP
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Phenomenological and microstructural analysis of intermediate temperatures creep in a Ni–Fe-based alloy for advanced ultra-supercritical fossil power plants》.pdf
Acta Materialia 102 (2016) 70e78 Contents lists available at ScienceDirect Acta Materialia journal homepage: /l ocate/actamat Phenomenological and microstructural analysis of intermediate temperatures creep in a NieFe-based alloy for advanced ultra-supercritical fossil power plants F. Sun a, Y.F. Gu a, *, J.B. Yan a, Z.H. Zhong b, M. Yuyama a a High Temperature Materials Unit, National Institute for Materials Science, Sengen 1-2-1, Tsukuba 305-0047, Japan b School of Materials Science and Engineering, Hefei University of Technology, No.193, Tunxi Road, Hefei 230009, China a r t i c l e i n f o a b s t r a c t Article history: A newly developed NieFe-based alloy with high-creep strength and low cost has been developed and Received 10 August 2015 evaluated as the promising candidate boiler materials for 700 C advanced ultra-supercritical coal-fired Received in revised form power plants applications. Three electron microscopy characterization methodsescanning electron mi- 3 September 2015 croscopy and transmission electron microscopy and high-resolution transmission electron microscopy Accepted 4 September 2015 Available online xxx ewere combined to obtain new insights into the microstructural and fracture surface characteristics after creep rupture tests at intermediate temperatures. The alloying elements distribution characteristics have been investigated at nanoscale through EDS
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