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STRENGTHENING OF FERRITIC STEEL BY INTERFACE PRECIPITATED CARBIDES IN ROWS

机译:通过界面加强铁素体钢在行中沉淀碳化物

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Precipitation-strengthening is widely applied to high strength steel sheet for automotive use since several strength grades are easily achieved by controlling amount of microalloyed component. Recently, finer carbide dispersion has been required to obtain higher strength by smaller addition of carbide formers like titanium and niobium. Here, interface precipitation, one of the carbide formation phenomena during γ→α transformation, can be the efficient method to promote very fine carbides by lowering precipitation temperature. This study deals with relationship between transformation temperatures and hardness of ferritic steel strengthened by carbides generated by the interface precipitation. Two kinds of 0.04%C steels containing Ti and Nb of the same amount as carbon content in atomic were hot-rolled, followed by the soaking at various temperatures for 600s. The rapid-cooled samples before the soaking for 600s exhibited higher hardness than slow-cooled samples. Large carbides generated by interface precipitation were observed in slow-cooled Ti-bearing steel with a transmission electron microscope. In slow-cooled Nb-bearing steel, large NbC precipitated in austenite before γ→α transformation. The results are suggesting that lowering transformation temperature and suppressing carbides precipitation in austenite are important to obtain high strength by interface precipitation.
机译:沉淀加强广泛应用于汽车使用的高强度钢板,因为通过控制微合金化组分的量容易实现几种强度等级。最近,通过较小的碳化物成形剂如钛和铌等碳化物成形剂,已经需要更精细的碳化物分散来获得更高的强度。这里,接口沉淀,γ→α转化期间的碳化物形成现象之一,可以通过降低沉淀温度来促进非常细碳化物的有效方法。该研究涉及通过界面沉淀产生的碳化物加强铁素体钢的变换温度和硬度之间的关系。含有Ti和Nb的两种0.04%C钢作为原子中的碳含量被热轧,然后在各种温度下浸泡600秒。在浸泡之前的快速冷却样品600s表现出比缓慢冷却的样品更高的硬度。通过透射电子显微镜在慢冷的Ti轴承钢中观察通过界面沉淀产生的大碳化物。在慢冷的NB轴承钢中,在γ→α转化之前在奥氏体中沉淀出大型NBC。结果表明,降低转化温度和抑制奥氏体沉淀的碳化物沉淀对于通过界面沉淀获得高强度是重要的。

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