Abstract
Alumina-forming austenitic stainless steels (AFAs) are potential materials for boiler/steam turbine applications in next generation fossil fuel power plants. They display a combination of good high temperature creep strength, excellent oxidation resistance and low cost. A recently-developed AFA alloy based on Fe-14Cr-32Ni-3Nb-3AI-2Ti (wt.%) shows better creep performance than a commercially-available Fe-based superalloy. In this paper we used scanning electron microscopy and transmission electron microscopy to study the fracture surfaces and cracking behavior in relation to the precipitates present in creep failure samples of this alloy tested at either 750°C/100 MPa or 700°C/170 MPa. It was found that most cracks are formed along the grain boundaries with precipitate-free zones beside the grain boundaries potentially providing the path for propagation of cracks.
Cite
CITATION STYLE
Hu, B., Baker, I., Kernion, S. J., Yamamoto, Y., & Brady, M. P. (2016). Creep failure of a gamma prime-strengthened alumina-forming austenitic stainless steel. In Advances in Materials Technology for Fossil Power Plants - Proceedings from the 8th International Conference (pp. 295–303). ASM International. https://doi.org/10.31399/asm.cp.am-epri-2016p0295
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.