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Development of a high strength high toughness ausferritic steel

机译:高强度高韧性奥氏体钢的开发

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A new ausferritic steel with high strength and exceptionally high fracture toughness has been developed. This steel has been synthesized integrating concepts from Austempered Ductile Cast Iron (ADI) technology. The influence of the austempering temperature on the microstructure and mechanical properties of this steel at room temperature and ambient atmosphere has been examined. The effect of microstructure on the plane strain fracture toughness and on the magnetic, electrical, and thermal properties was also investigated. Compact tension and cylindrical tensile specimens prepared from the low alloy medium carbon steel with high silicon content were initially austenitized at 927℃ for 2 h and then subsequently austempered at several temperatures between 260℃ (500 F) and 400℃ (750 F) to produce different microstructures. The microstructures were characterized by X-ray diffraction, scanning electron microscopy and optical metallography. A combination of exceptionally high yield strength (1336 MPa) and a high fracture of toughness of 116 MPam~(1/2) (a value comparable to maraging steel) was obtained in this steel after austempering at 316℃ (600 F) for 2 h. Potential applications of this steel include the inexpensive fabrication of armored plates and components requiring high reliability and durability.
机译:已经开发了一种具有高强度和异常高的断裂韧性的新型奥氏体钢。该钢是结合奥氏体球墨铸铁(ADI)技术的概念而合成的。研究了奥氏体化温度对这种钢在室温和周围环境下的组织和力学性能的影响。还研究了微观结构对平面应变断裂韧性以及磁,电和热性能的影响。用高硅含量的低合金中碳钢制备的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260℃(500 F)至400℃(750 F)的多个温度下回火以生产不同的微观结构。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。在316℃(600 F)的温度下回火2时,获得了极高的屈服强度(1336 MPa)和高的116 MPam〜(1/2)韧性断裂(相当于马氏体时效钢)的组合。 H。这种钢的潜在应用包括需要高可靠性和耐用性的铠装板和组件的廉价制造。

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