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Microstructures and Properties of DP 600 Steel Conventionally Treated and Intercritically Annealed from As-Quenched Martensite

机译:淬火马氏体常规处理并经临界退火的DP 600钢的组织和性能

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In this work a DP 600 Dual Phase steel, conventionally treated in order to obtain 40 to 60% austenite at the intercritical temperatures, called reference sample, was compared to samples from the same steel, initially fully austenitized and quenched to 100% martensitic structure and subsequently intercritically tempered once (one step) or twice, (two steps) at intercritical temperatures so as to obtain the same volume fractions of austenite as the conventional DP steel. The single step heat treatment is QL, quench and lamellarization; the two step heat treatment is called QLT, quench and lamellarization and tempering. Heat treatments were conducted on a quenching dilatometer. Samples were characterized by optical, SEM-FEG, EBSD imagining and X Ray Diffraction. Mechanical properties were evaluated by microhardness and tensile tests on sub-size specimens. The results show that QL samples present a complex microstructure composed of ferrite (carbide free high temperature tempered martensite) and fresh martensite composed of crystallites of the order of 1 to 5 μm, with volume fractions of ferrite and martensite similar to the reference samples. X-ray diffraction showed the presence of retained austenite in all treatment conditions, larger for the reference samples when compared with the QL; EBSD images show the retained austenite finely dispersed between the martensite laths and within the limits of martensite blocks. The tensile strength of the QL has higher values than reference DP 600 steel for the similar martensite volume, with smaller uniform and total elongations.
机译:在这项工作中,将经过常规处理以在临界温度下获得40%至​​60%奥氏体的DP 600双相钢(称为参考样品)与来自同一钢的样品进行了比较,这些样品最初被完全奥氏体化并淬火至100%马氏体组织,随后,在临界温度下进行一次(一步)或两次(两次)两次临界回火,以获得与常规DP钢相同的奥氏体体积分数。一步热处理是QL,淬火和层化;这两个步骤的热处理称为QLT,即淬火和层化和回火。在淬火膨胀仪上进行热处理。通过光学,SEM-FEG,EBSD成像和X射线衍射对样品进行表征。通过对小尺寸试样的显微硬度和拉伸试验评估了机械性能。结果表明,QL样品具有由铁素体(无碳化物的高温回火马氏体)和由1至5μm数量级微晶组成的新鲜马氏体组成的复杂微观结构,铁素体和马氏体的体积分数与参考样品相似。 X射线衍射显示在所有处理条件下均存在残留奥氏体,与QL相比,参比样品更大。 EBSD图像显示残留的奥氏体在马氏体板条之间和马氏体块的范围内精细分散。对于类似的马氏体体积,QL的拉伸强度具有比参考DP 600钢更高的值,且均匀伸长率和总伸长率较小。

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