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Processing of a new high strength high toughness steel with duplex microstructure (Ferrite + Austenite)

机译:具有双相显微组织(铁素体+奥氏体)的新型高强度高韧性钢的加工

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摘要

In this investigation a new third generation advanced high strength steel (AHSS) has been developed. This steel was synthesized by austempering of a low carbon and low alloy steel with high silicon content. The influence of austempering temperature on the microstructure and the mechanical properties including the fracture toughness of this steel was also examined. Compact tension and cylindrical tensile specimens were prepared from a low carbon low alloy steel and were initially austenitized at 927 ℃ for 2 h and then austempered in the temperature range between 371 ℃ and 399 ℃ to produce different microstructures. The microstructures were characterized by X-ray diffraction, scanning electron microscopy and optical metallography. Test results show that the austempering heat treatment has resulted in a microstructure consisting of very fine scale bainitic ferrite and austenite. A combination of very high tensile strength of 1388 MPa and fracture toughness of 105 MPa m~1/2 was obtained after austempering at 371 ℃.
机译:在这项调查中,开发了一种新型的第三代高级高强度钢(AHSS)。通过对具有高硅含量的低碳低合金钢进行回火来合成这种钢。还研究了奥氏体化温度对这种钢的组织和力学性能(包括断裂韧性)的影响。用低碳低合金钢制备致密拉伸试样和圆柱拉伸试样,首先在927℃下奥氏体化2 h,然后在371℃和399℃之间的温度范围内进行奥氏体化以产生不同的显微组织。通过X射线衍射,扫描电子显微镜和光学金相学表征了微观结构。测试结果表明,奥氏体热处理产生了由非常细小的贝氏体铁素体和奥氏体组成的显微组织。在371℃回火后,获得了极高的拉伸强度(1388 MPa)和断裂韧性(105 MPa m〜1/2)。

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