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The Mechanical Properties and Microstructures of Vanadium Bearing High Strength Dual Phase Steels Processed with Continuous Galvanizing Line Simulations

机译:连续镀锌线模拟加工含钒高强度双相钢的力学性能和组织

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摘要

For galvanized or galvannealed steels to be commercially successful, they must exhibit several attributes: (i) easy and inexpensive processing in the hot mill, cold mill and on the coating line, (ii) high strength with good formability and spot weldability, and (iii) good corrosion resistance. At the beginning of this thesis, compositions with a common base but containing various additions of V or Nb with or without high N were designed and subjected to Gleeble simulations of different galvanizing(GI), galvannealing(GA) and supercooling processing. The results revealed the phase balance was strongly influenced by the different microalloying additions, while the strengths of each phase were somewhat less affected. Our research revealed that the amount of austenite formed during intercritical annealing can be strongly influenced by the annealing temperature and the pre-annealing conditions of the hot band (coiling temperature) and cold band (% cold reduction). In the late part of this thesis, the base composition was a low carbon steel which would exhibit good spot weldability. To this steel were added two levels of Cr and Mo for strengthening the ferrite and increasing the hardenability of intercritically formed austenite. Also, these steels were produced with and without the addition of vanadium in an effort to further increase the strength. Since earlier studies revealed a relationship between the nature of the starting cold rolled microstructure and the response to CGL processing, the variables of hot band coiling temperature and level of cold reduction prior to annealing were also studied. Finally, in an effort to increase strength and ductility of both the final sheet (general formability) and the sheared edges of cold punched holes (local formability), a new thermal path was developed that replaced the conventional GI ferrite-martensite microstructure with a new ferrite-martensite-tempered martensite and retained austenite microstructure. The new microstructure exhibited a somewhat lower strength but much high general and local formabilities. In this thesis, both the physical and mechanical metallurgy of these steels and processes will be discussed. This research has shown that simple compositions and processes can result in DP steels with so-called Generation III properties.
机译:为了使镀锌或镀锌钢板在商业上取得成功,它们必须表现出以下几个属性:(i)在热轧机,冷轧机和涂装线上容易且廉价地进行加工;(ii)具有良好的可成形性和点焊性的高强度;以及( iii)良好的耐腐蚀性。在本文开始时,设计了具有共同碱但包含各种添加的V或Nb或不包含高N的组合物,并对其进行了不同镀锌(GI),镀锌(GA)和过冷处理的Gleeble模拟。结果表明,相平衡受不同微合金添加量的强烈影响,而每个相的强度受到的影响较小。我们的研究表明,在临界退火过程中形成的奥氏体数量会受到退火温度以及热带(卷带温度)和冷带(冷还原率%)的预退火条件的强烈影响。在本文的后半部分,基础成分是低碳钢,具有良好的点焊性。向该钢中添加了两种含量的Cr和Mo,以增强铁素体并提高临界形成的奥氏体的淬透性。同样,这些钢是在有或没有钒的情况下生产的,以进一步提高强度。由于较早的研究揭示了起始冷轧组织的性质与对CGL加工的响应之间的关系,因此还研究了热轧带卷温度和退火前冷轧量的变量。最后,为增加最终板材的强度和延展性(一般成形性)和冷冲孔的剪切边缘的强度(局部成形性),开发了一种新的热路径,用新的热路径代替了传统的GI铁氧体-马氏体组织。铁素体-马氏体回火马氏体和残余奥氏体的显微组织。新的显微组织显示出较低的强度,但是具有较高的一般和局部可成形性。在本文中,将讨论这些钢的物理和机械冶金及工艺。这项研究表明,简单的成分和工艺可以生产出具有所谓第三代性能的DP钢。

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  • 作者

    Gong Yu;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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