摘要
为模拟CSP(紧凑式带材生产 )工艺 ,由实验室 10kg真空感应炉冶炼后轧成 6mm钢板 ,试验研究了Nb、Ti对成分 (% )为 0 0 6 0~ 0 0 76C ,0 2 5~ 0 31Cu ,0 4 5~ 0 5 6Cr,0 2 9~ 0 30Ni的 4 0 0MPa和 4 6 0MPa级高强度耐候钢组织和性能的影响。结果表明 ,含 0 0 3%Ti钢σs 和σb 分别为 4 5 0MPa和 5 4 5MPa ,含 0 0 3%Nb、0 0 2 %Ti钢σs 和σb 分别为 5 5 0MPa和 6 15MPa ,不含Nb、Ti钢σs 和σb 仅为 375MPa和 4 80MPa。 4 0 0MPa级耐候钢的组织为铁素体 +少量珠光体 ,含Ti钢的主要析出物为CuS2 (2 0~ 2 5nm)和TiN(80nm) ,含Nb、Ti4 6 0MPa级钢的组织主要为粒状贝氏体 ,析出物CuS2 和 (NbTi)CN(30~ 6 0nm) ,从而提高了钢的强度。
To simulate compact strip production (CSP) technology, the effect of Nb-Ti on structure and mechanical properties of 400 MPa and 460 MPa high strength weathering steel - 0.060~0.076C, 0.25~0.31Cu, 0.45~0.56Cr, 0.29~0.30Ni has been studied by 10 kg vacuum induction furnace melting and rolled into 6 mm plate. The results showed that yield strength σ s and tensile strength σ b of steel contained 0.03% Ti were respectively 450 MPa and 545 MPa, σ s snd σ b of steel contained 0.03%Nb-0.02%Ti were 550 MPa and 615 MPa, and σ s and σ b of steel no-contained Nb and Ti were only 375 MPa and 480 MPa. The structure of 400 MPa weathering steels were ferrite + minor pearlite, and the main precipitates of steel contained Ti were CuS 2 (20~25 nm) and TiN (80 nm); the structure of 460 MPa steel contained Nb-Ti was mainly granular bainite with precipitates CuS 2 and (NbTi)CN (30~60 nm) therefore the strength of steel increased.
出处
《特殊钢》
北大核心
2005年第1期30-33,共4页
Special Steel
基金
国家自然科学基金资助项目 ( 5 0 3340 1 0 )