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Evolution of the Microstructure of Intermetallic Compounds Formed on Mild Steel During Hot Dipping in Molten Aluminum Alloy Baths

机译:熔融铝合金浴热浸渍期间在温和钢中形成金属间化合物的展现

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Hot-dip aluminum coating technique has been applied to improve the high-temperature oxidation resistance of steels. This method is adopted widely due to the low cost and good performance. The purpose of this paper is to study the formation of intermetallic layers during the hot dipping of mild steel into a molten aluminum bath. Mild steel specimens were immersed into molten aluminum alloy baths at 750 degrees C for 1 h, 2 h and 3 h. Intermetallic compounds were analyzed by optical microscope, scanning electron microscope coupled with energy-dispersive spectroscopy and X-ray diffraction analysis. This study was completed by microhardness testing. The results showed that the hot-dip aluminized layer was divided into an outer pure aluminum or aluminum-silicon topcoat and an intermetallic layer. In the bath of pure aluminum, the intermetallic layer was the thickest and consisted of an outer FeAl(3)layer and an inner Fe(2)Al(5)layer adjacent to the steel substrate with tongue-/finger-like morphology, while in the Al-Si alloy bath, the thickness of the intermetallic layer decreased substantially and the interface intermetallic/steel substrate becomes flat. The ternary phases Al8Fe2Si and Fe(3)Al(2)Si(3)are identified in addition to FeAl(3)and Fe2Al5. The microhardness testing recorded high values of the intermetallic layers, up to 800Hv(01), which confirms the high brittleness of the intermetallic compounds.
机译:热浸铝涂层技术已应用于提高钢的高温抗氧化性。由于成本低,性能良好,这种方法被广泛采用。本文的目的是研究在温和钢的热浸入熔融铝浴中形成金属间层。将温和的钢样品浸入熔融铝合金浴中,以750℃,2小时和3小时。通过光学显微镜分析金属间化合物,扫描电子显微镜与能量分散光谱和X射线衍射分析相连。本研究通过微硬度测试完成。结果表明,热浸镀铝层分成外纯铝或铝 - 硅片涂层和金属间层。在纯铝的浴中,金属间层是最厚的并且由外部FEAL(3)层和与钢基板相邻的外部Fe(2)Al(5)层,其中舌/指状形态相邻在Al-Si合金浴中,金属间层的厚度基本下降,并且界面金属间/钢基板变平。除了FEAL(3)和Fe2Al5之外,还鉴定了三元相Al8Fe2Si和Fe(3)Si(3)。微硬度测试记录了金属间层的高值,高达800hv(01),其证实了金属间化合物的高脆性。

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