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首页> 外文期刊>Metals and Materials International >Influence of cooling rate and boron content on the microstructure and mechanical properties of hot-rolled high strength interstitial-free steels
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Influence of cooling rate and boron content on the microstructure and mechanical properties of hot-rolled high strength interstitial-free steels

机译:冷却速度和硼含量对热轧高强度无间隙钢的组织和力学性能的影响

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摘要

A pilot hot strip rolling and cooling test that simulates an actual hot strip rolling and continuous cooling process was performed. We then examined the effect of cooling rates ranging from 0.1 °Cs−1 to 100 °Cs−1 on the microstructure and mechanical properties of high strength interstitial-free (IF) steels containing 0.003 wt% of boron, 0.0005 wt% of boron and no boron. The mechanical properties and microstructures of the boron-added high strength IF steels were analyzed using uni-axial tensile test and electron back-scattered diffraction (EBSD) following the pilot hot strip rolling and cooling test. Results show that the microstructure of high strength IF steel with no boron is influenced significantly by cooling rates. There is a critical cooling rate for building up polygonal ferrite (PF) grains. PF grains do not occur when high strength IF steels with a boron content of 0.0005 wt% and 0.003 wt% undergo a cooling rate of 5.0 °Cs−1, however widmanstätten ferrite (WF), granular ferrite (GF) and quasi-polygonal ferrite (QF) grains are present. Under the same hot rolling and slow cooling conditions, high strength IF steel with no boron has recrystallized PF grains. On the contrary, high strength IF steel with boron cooled at above 3 °Cs−1 doesn’t have GF or QF grains, and subsequently generates the unrecrystallized ferritic grains and WF grains, which increase the yield and tensile strengths. It is deduced that we need to control both the cooling rate and coiling temperature when boron-added high strength IF steel sheet is manufactured in an actual hot strip rolling mill.
机译:进行了模拟热轧带钢和连续冷却过程的中试热轧带钢和冷却试验。然后,我们研究了冷却速率在0.1°Cs-1 至100°Cs-1 范围内对含0.003 wt%的高强度无间隙(IF)钢的组织和力学性能的影响。硼,0.0005重量%的硼,无硼。在先导热轧和冷却试验之后,使用单轴拉伸试验和电子背散射衍射(EBSD)分析了添加硼的高强度IF钢的力学性能和显微组织。结果表明,冷却速度对无硼高强度IF钢的组织有显着影响。建立多边形铁素体(PF)晶粒有一个关键的冷却速度。当硼含量为0.0005 wt%和0.003 wt%的高强度IF钢的冷却速率为5.0°Cs-1 时,不会出现PF晶粒,但是,魏德曼铁素体(WF),粒状铁素体(GF)和存在准多边形铁素体(QF)晶粒。在相同的热轧和慢速冷却条件下,不含硼的高强度IF钢会重结晶PF晶粒。相反,冷却至3°Cs-1 的硼的高强度IF钢没有GF或QF晶粒,随后会产生未结晶的铁素体晶粒和WF晶粒,从而提高了屈服强度和拉伸强度。可以推断,在实际的热轧带钢轧机中制造含硼高强度中频钢板时,需要同时控制冷却速度和卷取温度。

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