首页> 外文会议>International conference on new developments on metallurgy and applicactions of high strength steels >EFFECT OF CONSTITUENT PHASES ON THE MECHANICAL PROPERTIES OF BAINITE-BASE MULTIPHASE STEELS
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EFFECT OF CONSTITUENT PHASES ON THE MECHANICAL PROPERTIES OF BAINITE-BASE MULTIPHASE STEELS

机译:构成阶段对贝氏体碱基多相钢力学性能的影响

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Effects of acicular ferrite and retained austenite on the mechanical properties of bainite-base multiphase steels were investigated. Various morphology and volume fraction of constituent phases have been obtained by control of hot rolling conditions and alloy compositions. It has been shown that the steels containing retained austenite have better combinations of strength and ductility than the ones with no retained austenite. However, there is no noticeable change in DBTT by the incorporation of retained austenite in the microstructure since retained austenite exists as fine particles. On the other hand, DBTT of the steels are largely affected by the presence of acicular ferrite in the microstructure. EBSD analyses of fractured Charpy specimens show that cracks are deflected within the morphological packet of acicular ferrite, indicating its role in reducing the effective grain size of the steels.
机译:针状铁氧体和保留奥氏体对贝氏体碱基多相钢力学性能的影响。通过控制热轧制条件和合金组合物获得了构成相的各种形态和体积分数。已经表明,含有保留奥氏体的钢具有比没有保留奥氏体的强度和延展性的更好的组合。然而,通过在微观结构中掺入保留的奥氏体在微观结构中没有明显变化,因为保留的奥氏体存在为细颗粒。另一方面,钢的DBTT在很大程度上受到微观结构中的针状铁氧体存在的影响。裂缝夏比标本的EBSD分析表明,裂缝在针状铁氧体的形态包内偏转,表明其在减少钢的有效粒度尺寸方面的作用。

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