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Ferrite Formation Behavior from Non-metallic Compounds in Steels

机译:钢中非金属化合物的铁素体形成行为

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The effect of chemical composition of B1 compounds on the formation of intragranular ferrite during isothermal austenite-to-ferrite transformation was investigated by embedding single crystalline grains of chemically pure B1 compounds in low-alloy steel. Two kinds of B1 compounds having similar misfit against ferrite, TiO and TiN, were adopted in this study. Isothermal transformation experiments were carried out both above and below the bainitic transformation temperature. The orientation relationships between compound and ferrite and between ferrite and prior austenite were characterized by scanning electron microscope equipped with electron backscatter diffraction analyzer. It was found that the Baker-Nutting (B-N) orientation relationship played a dominant role in ferrite formation from Bl compounds at higher transformation temperature, but some low-index orientation relationships other than the Baker-Nutting orientation relationship were also observed as the transformation temperature decreased, which led to an increase in ferrite formation having the Kurdjumov-Sachs (K-S) orientation relationship with prior austenite. Ferrites from TiO had larger misorientation angles from the exact B-N orientation relationship and thus tended to have the K.-S orientation relationship with prior austenite at lower transformation temperatures.
机译:通过将化学纯B1化合物的单晶晶粒嵌入低合金钢中,研究了B1化合物的化学成分对等温奥氏体-铁素体转变过程中晶内铁素体形成的影响。在这项研究中,采用了两种与铁素体具有相似的错配性的B1化合物TiO和TiN。在贝氏体转变温度之上和之下均进行了等温转变实验。通过配备电子背散射衍射分析仪的扫描电子显微镜,表征了化合物与铁素体之间以及铁素体与原奥氏体之间的取向关系。研究发现,在较高的转变温度下,Baker化合物的Baker-Nutting(BN)取向关系起着主导作用,但在转变温度下,除了Baker-Nutting取向关系外,还观察到了一些低折射率取向关系。减少,这导致与先前奥氏体具有库尔德朱莫夫-萨克斯(KS)取向关系的铁素体形成增加。从确切的B-N取向关系来看,来自TiO的铁素体具有较大的失取向角,因此,在较低的转变温度下,与先前的奥氏体往往具有K.-S取向关系。

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