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Design Of Composition In (al/si)-alloyed Trip Steels

机译:(al / si)合金跳闸钢成分设计

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There is an increasing interest in the progressive substitution of Si by Al in TRIP steels in order to obtain alloys with excellent mechanical properties and improved coatability. In this paper, thermodynamic calculations have been carried out with the help of JMatPro~(TM) software in order to assess and compare the effects that Si and Al additions exert on the phase transformation, carbon enrichment and alloying element content of phases during continuous galvanizing of multiphase steels. These simulations have provided important implications regarding the optimal combination of Si and Al. It has been found that Al causes a more pronounced increase of A_3 temperature and a wider extension of the intercritical range than Si. For a constant volume fraction of phases, the carbon content in austenite is similar for Al and Si-alloyed steels. However, ferrite in Al-alloyed is richer in carbon and consequently an increase in its strength could be expected. The hardenability of intercritically annealed austenite has been estimated for alloys with different combinations of Mn, Al and Si. Finally, simulated CCT diagrams predict for Al-alloyed steels a higher amount of new ferrite formed during cooling from intercritical annealing and the need of shorter isothermal holding times at 460℃. However, Si-TRIP steels would need faster cooling rates to prevent pearlite formation and longer isothermal holding times to complete the bainitic transformation and to obtain a microstructure with high retained austenite.
机译:为了获得具有优异的机械性能和改善的可涂覆性的合金,人们越来越关注TRIP钢中Si逐渐被Al取代。在本文中,借助于JMatPro〜(TM)软件进行了热力学计算,以评估和比较添加Si和Al对连续镀锌过程中相变,碳富集和合金元素含量的影响。多相钢。这些模拟为Si和Al的最佳组合提供了重要的启示。已经发现,与Si相比,Al引起A_3温度的更明显升高和临界范围的扩展。对于恒定体积的相,奥氏体中的碳含量与Al和Si合金钢相似。但是,铝合金中的铁素体碳含量更高,因此强度有望提高。对于锰,铝和硅的不同组合的合金,已经估计了临界退火奥氏体的淬透性。最后,模拟的CCT图预测了铝合金在临界退火冷却期间形成的大量新铁素体,以及需要更短的等温保温时间(460℃)。但是,Si-TRIP钢需要更快的冷却速度来防止珠光体的形成和更长的等温保持时间,以完成贝氏体转变并获得具有高残留奥氏体的组织。

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