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Effects of solid-solution temperature on microstructure and mechanical properties of a novel 2000 MPa grade ultra-high-strength steel |
Chun‑xu Wang1, Yuan‑hang Gao1, Yong Li1, Shun Han1, Shao‑zun Liu1, Peng‑jie Zhang1 |
1 Central Iron and Steel Research Institute, Beijing 100081, China |
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Abstract A novel 2000 MPa grade ultra-high-strength steel AIR0509 with high fracture toughness and low cost has recently been developed. The effects of solid-solution temperature on the microstructure and mechanical properties of this steel were investigated. The increase in solid-solution temperature first increased and then decreased the values of ultimate strength (UTS) and Charpy U-notch (CUN) energy. The increase in the UTS and CUN values was caused by the dissolution of the primary carbides M6C and MC, while the decrease in both strength and toughness was due to the increase in the prior austenite grain size. Samples that were solid-solution treated at 1000 °C exhibited an optimal combination of strength and toughness with a UTS of 2020 MPa, yield strength of 1780 MPa, and CUN energy of 68 J, as well as a correlative fracture toughness KIC value of about 105 MPa m1/2.
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Received: 23 May 2019
Published: 25 June 2020
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Cite this article: |
Chun‑xu Wang,Yuan‑hang Gao,Yong Li, et al. Effects of solid-solution temperature on microstructure and mechanical properties of a novel 2000 MPa grade ultra-high-strength steel[J]. Journal of Iron and Steel Research International, 2020, 27(6): 710-718.
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