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Study of the Tempcore Process for the Production of High Resistance Reinforcing Rods

机译:高抗性加强杆生产的温度工艺研究

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The process known as Tempcore is used to produce high resistance rods by the formation of a surface layer of quenched and tempered martensite that surrounds a core made of ferrite and pearlite. Such a mixed structure is result of processing hot rolled rods through waters headers that reduce the temperature at the surface below that for the transformation into martensite. This structure is tempered by the heat flowing from the core of the rod, which transforms into ferrite and pearlite while the rod is in the cooling beds. Such processing produces a significant increase in yield and ultimate tensile strength, while maintaining adequate ductility. The economic advantages of this process are huge in comparison with those that require alloying elements or further metal working to improve mechanical properties. A series of experimental trials were carried out in a pilot plant in which parameters such as reheating temperature, water flow and processing time were varied to study their effect on the mechanical properties of carbon steel rods and on the structures formed in the bars. The study is being complemented by the thermal modelling by the finite element method.
机译:称为Tempcore的过程用于通过形成淬火和钢制马氏体的表面层生产高电阻杆,其围绕由铁氧体和珠光体制成的芯。这种混合结构是通过沃特世针加工热轧杆的结果,使其降低到低于马氏体的表面的温度。该结构通过从杆的芯而流动的热量来回火,该热量在杆在冷却床中变成铁氧体和珠光体。这种加工产生产率和最终拉伸强度的显着增加,同时保持足够的延展性。与需要合金元素或进一步金属的工作以改善机械性能的人相比,该过程的经济优势是巨大的。在试验厂进行了一系列实验试验,其中改变了诸如再加热温度,水流和加工时间的参数,以研究它们对碳钢杆的机械性能和在条中形成的结构的影响。通过有限元法通过热建模互补。

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