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Nucleation and Growth of Intermetallic Compounds Formed in Boron Steel Hot-Dipped in Al–Ni alloy

机译:Al-Ni合金热浸硼钢中金属间化合物的形核与生长

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The formation mechanism of intermetallic compounds formed in boron steel hot-dipped in Al–7Ni (wt %) at 690 °С for 10–120 s was studied by identifying the intermetallic phases and investigating the growth process. Initially, a Fe3O4 oxide layer formed on the steel. The oxide layer separated into multiple layers sporadically; following this, the Al–Ni molten alloy permeated into the region of the oxide layer breakdown and formed the Al9FeNi (T, monoclinic, space group: P21/c) phase on the steel surfaces. The Al9FeNi (T) phase formed from the reaction between the Al–Ni molten alloy and Fe eluted from the steel; this phase not only acts as an Al interdiffusion channel, but also as a barrier for Fe; and facilitates only grain growth without a significant change in thickness. Inside the steel, the Fe2Al5 (η, orthorhombic, space group: Cmcm) phase grows along the c-axis in the [001] direction; and has a long columnar structure. The Fe3AlC (κ, Cubic, space group: Pm3m) phase is formed owing to a reduction in the Al concentration and the simultaneous diffusion and discharge of C toward the steel interface, as C cannot dissolve in the Fe2Al5 (η) phase.
机译:通过确定金属间相并研究其生长过程,研究了在690°C下热浸在Al-7Ni(wt%)的硼钢中10–120 s中形成的金属间化合物的形成机理。最初,在钢上形成了Fe3O4氧化物层。氧化物层零星地分成多层;随后,Al-Ni熔融合金渗透到氧化层击穿区域,并在钢表面形成Al9FeNi(T,单斜晶,空间群:P21 / c)相。 Al-Ni熔融合金与从钢中溶出的Fe之间的反应形成了Al9FeNi(T)相。该相不仅充当Al的互扩散通道,而且还充当Fe的阻挡层。并且仅促进晶粒生长而厚度没有明显变化。在钢内部,Fe2Al5(正交晶系,空间群:Cmcm)相沿[001]方向的c轴生长;并且具有长的柱状结构。 Fe3AlC(κ,立方,空间群:Pm3m)相的形成是由于Al浓度降低以及C向钢界面同时扩散和排放的缘故,因为C无法溶解在Fe2Al5(η)相中。

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