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Morphology Control of Copper Sulfide in Strip Casting of Low Carbon Steel

机译:低碳钢带钢铸造中硫化铜的形貌控制

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摘要

Copper and sulfur are the typical residual elements and impurities in steel. Previously, we reported the precipitation of very fine particles of Cu_2S in copper and sulfur containing steel by strip casting process. In the present paper, the morphologies of copper sulfides in strip casting low carbon steels were distinguish-ably investigated by Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM). Four kinds of copper sulfide with different morphology were observed, namely duplex inclusion of oxide and sulfide (OS), plate-like copper sulfide (PS), shell-like copper sulfide surrounding the inclusions (SS), and nano-scale copper sulfide (NS), and their formation mechanisms were discussed. The OS is considered to firstly form as molten manganese silicate in molten steel, and grow up with the formation of sulfide inside of the silicate after the solidification of steel. The PS is considered to precipitate from the γ-Fe phase with plate-like shape due to semicoherency with the γ-Fe matrix. The SS is considered to precipitate in lower temperature ranges on the other pre-formed inclusions such as MnS, oxide and also Cu_(2-x)S. The NS is considered to form in the low temperature range of γ-Fe and especially in ?-Fe phase as very fine particles due to the high supersaturation, low diffusivity of component elements and the coherency with the α-Fe matrix. Based on this classification, formation stage of oxide, MnS and Cu_2S was clarified and described as like TTT diagram.
机译:铜和硫是钢中典型的残留元素和杂质。以前,我们报道了通过带钢铸造工艺在含铜和硫的钢中析出非常细小的Cu_2S颗粒。在本文中,通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)对带钢铸造低碳钢中硫化铜的形貌进行了区别研究。观察到了四种形态不同的硫化铜,即氧化物和硫化物的双重夹杂物(OS),板状硫化铜(PS),包裹体周围的壳状硫化铜(SS)和纳米级硫化铜( NS)及其形成机理进行了讨论。 OS被认为首先在钢水中以熔融硅酸锰的形式形成,并且随着钢的固化在硅酸盐内部形成硫化物而长大。由于与γ-Fe基体的半相干性,认为PS从板状的γ-Fe相中析出。认为SS在较低的温度范围内在其他预先形成的夹杂物(例如MnS,氧化物以及Cu_(2-x)S)上沉淀。由于高过饱和度,组成元素的低扩散性以及与α-Fe基体的相干性,NS被认为是在γ-Fe的低温范围内形成的,特别是在γ-Fe相中形成的非常细的颗粒。基于该分类,明确了氧化物,MnS和Cu_2S的形成阶段,并与TTT图一样描述。

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