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新穎的貝氏體/鐵素體雙相低碳微合金鋼

A Bainite/Ferrite Dual-Phase Low-carbon Microalloying Steel with High Strength and Ductility

  • 摘要: 利用特殊微合金設計及終軋控冷工藝得到超細貝氏體/鐵素體雙相低碳微合金鋼.該鋼的組織由原奧氏體晶界上及晶粒內部的約5μm的準多邊形鐵索體及超細化的貝氏體板條束組成.鐵素體的體積分數約20%.該雙相低碳微合金鋼的強度比同成分的全貝氏體鋼略低,但其延伸率卻大幅度提高.采取適當的回火處理,該雙相鋼屈服強度可達到700MPa,而延伸率大于25%,是一種具有高強度、高塑性的新型低碳微合金雙相鋼.

     

    Abstract: A ferrite/bainite dual-phase low-carbon microalloying steel has been obtained by special microal-loying design and optimum thermo-mechanical control process(TMCP). The microstructure shows that there are some amounts of ferrite/quasi-polygonal ferrite on the prior-austenite boundary and/or within the grains, and the rest of matrix is ultra-fine lath-like bainitic ferrite. The ferrite grain size is also very fine (about several microns). The mechanical properties of this kind of dual-phase steel show that the yield strength do not decrease obviously comparing with the ultra-fine bainitic steel, but the elongation increases. For a 700 MPa grade dual-phase steel (tempering at 680C for 1h), the elongation is more than 25%. This kind of dual-phase low-carbon microalloying steel has the advantages of more than 700 MPa grade strength and good ductility.

     

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