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High-temperature oxidation behavior of hot-dipped aluminide mild steel with various silicon contents

机译:不同硅含量的热浸铝化物低碳钢的高温氧化行为

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摘要

Mild steel was coated by hot-dipping into molten baths containing pure aluminum, Al-2.5Si, Al-5Si and A1-10Si (wt.%) at 700℃ for 180s. Isothermal and cyclic oxidations were carried out at 750℃ in static air to study the oxidation behavior of the hot-dipped aluminide steel with various silicon contents. The results of isothermal oxidation show the weight gains of the aluminide steel followed a parabolic law. The isothermal oxidation rates of the aluminide steel specimens were directly proportional to the silicon content in the aluminide layers. The reason for the aluminide steel with high silicon possessing a high isothermal oxidation rate is that the silicon addition in the molten bath caused a reduction in the aluminide layer thickness and the formation of phase transformation induced voids in the aluminide layer. The results, after cyclic oxidation, show the weight gains of the aluminide steel specimens were larger than those after isothermal oxidation. Because the aluminide layer with low silicon was mainly composed of a thick brittle Fe_2Al_5 phase, thermal stress was easily generated in the aluminide layer and caused the formation of vertical cracks when the aluminide steel underwent cyclic oxidation. Once cracks appeared, the weight gains of the aluminide steel specimens were accelerated. Thus, mild steel after hot-dipping in pure aluminum, which had the thickest Fe_2Al_5 layer, possessed the worst resistance to cyclic oxidation.
机译:通过在700℃下将纯钢热浸在含有纯铝,Al-2.5Si,Al-5Si和Al-1Si(wt。%)的熔池中180秒钟,以涂覆低碳钢。在750℃的静态空气中进行了等温和循环氧化,研究了不同硅含量的热浸铝化物钢的氧化行为。等温氧化的结果表明,铝化物钢的重量增加遵循抛物线定律。铝化物钢样品的等温氧化速率与铝化物层中的硅含量成正比。硅含量高的铝化物钢具有较高的等温氧化速率的原因是,在熔池中添加硅会导致铝化物层厚度的减小以及在铝化物层中形成相变引起的空隙。循环氧化后的结果表明,铝化物钢试样的重量增加大于等温氧化后的重量增加。由于硅含量低的铝化物层主要由较厚的脆性Fe_2Al_5相组成,因此当铝化物钢进行循环氧化时,在铝化物层中容易产生热应力并导致垂直裂纹的形成。一旦出现裂纹,铝化物钢试样的重量增加就会加快。因此,具有最厚的Fe_2Al_5层的纯铝热浸后的低碳钢对循环氧化的抵抗力最差。

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