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首页> 外文期刊>Zeitschrift fur Metallkunde >Design of carbide-free low-temperature ultra high strength bainitic steels
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Design of carbide-free low-temperature ultra high strength bainitic steels

机译:无碳化物低温超高强度贝氏体钢的设计

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摘要

There are severe limitations to attaining submicrostructured steels by means of continuous cooling, the achievement of fine grain sizes is limited by the need to dissipate enthalpy during rapid transformation, so that the actual grain size obtained is more than an order of magnitude greater than can be obtained theoretically. Bainitic microstructures obtained by isothermal heat treatment at low temperatures, can overcome the recalescence limitations and at the same time provide a very fine microstructure (nanostructure) that leads to extraordinary mechanical properties. Steel grades for this purpose have been designed by means of phase transformation theory alone and their mechanical properties tested. The results obtained reveal that the microstructure is indeed extremely fine and exhibits high levels of strength accompanied by reasonable ductility and toughness, mainly due to the fine scale of the bainitic ferrite plates achieved. The influence that retained austenite has on the mechanical properties through the TRIP effect is also discussed.
机译:通过连续冷却获得亚微结构钢存在严重的局限性,在快速转变过程中需要消散焓限制了细晶粒尺寸的实现,因此所获得的实际晶粒尺寸比可以达到的晶粒尺寸大一个数量级。从理论上获得。通过在低温下进行等温热处理获得的贝氏体微观结构可以克服再结晶的局限性,同时提供非常精细的微观结构(纳米结构),从而产生非凡的机械性能。仅通过相变理论设计了用于此目的的钢种,并对其机械性能进行了测试。获得的结果表明,显微组织的确非常细,并显示出高水平的强度,同时具有合理的延展性和韧性,这主要归因于所获得的贝氏体铁素体板的尺寸小。还讨论了通过TRIP效应残留奥氏体对机械性能的影响。

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