首页> 外文会议>2009年薄板坯连铸连轧国际研讨会(TSCR 2009)(2009 International Symposium on Thin Slab Casting and Rolling) >Research on Microstructure Characteristics and Strengthening Mechanism of Low-Carbon Bainitic High Strength Steel Produced by CSP
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Research on Microstructure Characteristics and Strengthening Mechanism of Low-Carbon Bainitic High Strength Steel Produced by CSP

机译:CSP生产的低碳贝氏体高强度钢的组织特征及强化机理研究

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摘要

This paper investigated the microstructure, precipitation behavior and strengthening mechanisms of low-carbon hainitic plates produced by CSP using the analysis methods of mechanical properties examination, SEM, TEM,EBSD and physicochemical phase analysis.Some micro-alloying elements were added auxiliary based on Si-Mn-Mo alloy system in the test steels and the rolling and laminar cooling processes were strictly controlled throughout the course of the industry experiment. The yield strength of test steels can reach 600 MPa and 700 MPa grades respectively through appropriate adjustments of chemical compositions and process parameters. The microstructures of the test steels with the yield strength of 600MPa and 700MPa mainly consist of granular bainite, as well as a small amount of quasi-polygonal ferrite and lath bainite respectively. The test steels both have the microstructure characteristics of fine grains, refined and dispersive precipitates and high dislocation density.Besides,they also have the characteristics of high yield strength, high elongation and excellent properties of low-temperature impact toughness and cold bending properties. It is found that the fine grain strengthening, precipitation strengthening and bainitic transformation strengthening are the main strengthening mechanisms through qualitative analysis and they are also the main reasons for the strength difference of the two test steels.
机译:本文采用力学性能分析,SEM,TEM,EBSD和理化相分析等方法研究了CSP生产的低碳海氏体板的组织,析出行为和强化机理。在Si的基础上,添加了一些微合金元素作为辅助材料。在整个工业实验过程中,严格控制了测试钢中的-Mn-Mo合金系统以及轧制和层流冷却过程。通过适当调整化学成分和工艺参数,试验钢的屈服强度可以分别达到600 MPa和700 MPa级。屈服强度为600MPa和700MPa的试验钢的显微组织主要由粒状贝氏体,少量的准多边形铁素体和板条贝氏体组成。试验钢均具有细晶粒,细化和分散的析出物以及高位错密度的微观组织特征。此外,它们还具有高屈服强度,高伸长率和低温冲击韧性和冷弯性能的优良性能。通过定性分析发现,细晶粒强化,析出强化和贝氏体相变强化是主要的强化机理,也是两种试验钢强度差异的主要原因。

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