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首页> 外文期刊>Journal of Iron and Steel Research International >Effect of Heat Treatment on Delayed Fracture Resistance of High Strength Steel 30CrMnSi2NiNb
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Effect of Heat Treatment on Delayed Fracture Resistance of High Strength Steel 30CrMnSi2NiNb

机译:热处理对高强度钢30CrMnSi2NiNb延迟断裂性能的影响

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摘要

The steel specimens of nominal composition 0.3C-1.0Cr-1.0Mn-2.0Si-1.0Ni-0.04 Nb were quenched and tempered or isothermally quenched from various temperatures. It is found that the steel quenched and tempered with a tensile strength of 1 500-1 600 MPa has a K_(ISCC)(critical stress intensity factor) value below 15.0 MPa·m~(1/2). The steel isothermally quenched with a tensile strength of 1 350-1 750 MPa has a K_(ISCC) value about 20.0 MPa·m~(1/2). In addition, with increase of isothermal quenching temperature, the tensile strength decreases greatly and K_(ISCC) value does not pronouncedly change. The microstructure of isothermally quenched specimens is composed of bainite and retained austenite. The delayed fracture resistance is dependent on the stability of austenite, which is in turn related to the retained austenite volume fraction and carbon content in austenite.
机译:将标称成分为0.3C-1.0Cr-1.0Mn-2.0Si-1.0Ni-0.04 Nb的钢试样从各种温度进行淬火和回火或等温淬火。结果表明,以1500-1600 MPa的拉伸强度进行淬火和回火的钢的K_(ISCC)(临界应力强度因子)值低于15.0 MPa·m〜(1/2)。等温淬火的钢的抗拉强度为1 350-1 750 MPa,其K_(ISCC)值约为20.0 MPa·m〜(1/2)。另外,随着等温淬火温度的升高,抗拉强度大大降低,K_(ISCC)值没有明显变化。等温淬火试样的显微组织由贝氏体和残余奥氏体组成。延迟的抗断裂性取决于奥氏体的稳定性,而奥氏体的稳定性又与残余奥氏体的体积分数和奥氏体中的碳含量有关。

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