Study on strengthening mechanism of 9cr-1.5mo-1co and 9cr-3w-3co heat resistant steels

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Abstract

The strengthening mechanism of 9Cr–1.5Mo–1Co and 9Cr–3W–3Co heat resistant steel was studied by tensile test and microstructure analysis. At the same temperature, the yield strength of 9Cr–3W–3Co heat-resistant steel is higher than that of 9Cr–1.5Mo–1Co heat-resistant steel. Microstructure analysis proved that the strength of 9Cr–1.5Mo–1Co and 9Cr–3W–3Co heat-resistant steel is affected by grain boundary, dislocation, precipitation, and solid solution atoms. The excellent high temperature mechanical properties of 9Cr–3W–3Co heat-resistant steel are mainly due to the solution strengthening caused by Co and W atoms and the high-density dislocations distributed in the matrix; however, 9Cr–1.5Mo–1Co heat-resistant steel is mainly due to the martensitic lath and precipitation strengthening.

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Zhao, L., Chen, X., Wu, T., & Zhai, Q. (2020). Study on strengthening mechanism of 9cr-1.5mo-1co and 9cr-3w-3co heat resistant steels. Materials, 13(19), 1–18. https://doi.org/10.3390/ma13194340

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