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The effect of continuous galvanizing thermal cycle on the microstructure and mechanical properties of two multiphase TRIP-assisted steels

机译:连续镀锌热循环对两种多相之行辅助钢的微观结构和力学性能的影响

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Multiphase TRIP assisted-steels are particularly attractive for the automotive industry, as they exhibit an exceptional strength-ductility balance which is attained through the combination of a complex microstructure and of a TRIP effect, i.e. the mechanically induced transformation of metastable retained austenite. This multiphase microstructure - and particularly the retention of metastable austenite - is obtained through the combination of appropriate chemistry and processing conditions, i.e an intercritical annealing followed by an isothermal hold in the temperature range for bainite formation. It has been established that this second step is important in controlling austenite retention and hence the mechanical properties. In the present work, the effect of heat treatment cycles compatible with the continuous hot dip galvanizing process, namely a high bainitic dwell temperature, on the microstructure and mechanical properties of two multiphase TRIP-assisted steel grades - one Si-alloyed grade and one mixed Si-Al grade - has been studied. It was shown that bainite formation in the Si-alloyed grade was too slow to bring about the retention of a significant amount of austenite down to room temperature. The mixed Al-Si grade, on the other hand, exhibited faster bainite formation kinetics under heat treatment conditions compatible with the CGL process, such that it is possible to retain a significant amount of austenite. The partial substitution of silicon by aluminum appears thus a promising path for the production of galvanized TRIP-assisted steels.
机译:多相之旅辅助钢对汽车行业特别有吸引力,因为它们具有出色的强度 - 延展性平衡,其通过组合复杂的微观结构和跳闸效果而获得,即机械诱导的亚稳奥氏体转化。这种多相微结构 - 特别是通过适当的化学和加工条件的组合获得亚稳奥氏体的保留,即核临界退火,然后在贝氏体形成温度范围内进行等温固定。已经确定,该第二步骤在控制奥氏体保留和因此机械性能方面是重要的。另外,在本工作中,热处理循环与连续热浸镀锌过程中,即一个高的贝氏体停留温度相容,在微观结构和两个多相TRIP辅助钢种的机械特性的效果 - 一个Si合金化级和一个混合Si-Al等级 - 已经研究过。结果表明,Si合金等级中的贝氏体形成太慢,以使大量奥氏体的保留降至室温。另一方面,混合的Al-Si等级在与CGL工艺相容的热处理条件下表现出更快的贝氏体形成动力学,使得可以保留大量奥氏体。因此,通过铝的硅的部分取代是一种有望的镀锌辅助钢的生产路径。

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