首页> 外文期刊>Oxidation of Metals >Effects of 0.1 wt. percent Manganese, Aluminum, and Silicon on Oxidation and Copper-rich Liquid Phase Formation in an Iron-0.3 wt. percent Copper-0.15 Wt. percent Nickel Alloy
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Effects of 0.1 wt. percent Manganese, Aluminum, and Silicon on Oxidation and Copper-rich Liquid Phase Formation in an Iron-0.3 wt. percent Copper-0.15 Wt. percent Nickel Alloy

机译:0.1重量%的作用。铁(0.3%)中锰,铝和硅的氧化和富铜液相形成的百分比铜含量-0.15重量%百分比镍合金

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This study investigated the effect of easily oxidizable impurities on the oxidation behavior of iron containing small amounts of copper and nickel. The motivation for this work stems from a cracking phenomenon in low carbon steels known as hot shortness. This type of cracking is caused by formation of a copper-rich liquid layer and is reduced in the presence of easily oxidizable impurities. This work studied iron alloys with 0.3 wt. percent copper, 0.15 wt. percent nickel, and 0.1 wt. percent (manganese, aluminum, or silicon) oxidized in air at 1,150 deg C. Parabolic oxidation rates were not affected by manganese or aluminum but were decreased with silicon additions. Manganese and aluminum additions led to internal MnO and hercynite formation. These slightly increased the amount of material entrapped into the oxide. Silicon additions led to a nearly continuous fayalite layer near the oxide/metal interface that decreased the oxidation rate and therefore the amount of copper-rich liquid.
机译:这项研究调查了易氧化杂质对含少量铜和镍的铁的氧化行为的影响。进行这项工作的动机来自于低碳钢的开裂现象,即热脆性。这种开裂是由富铜液体层的形成引起的,并在易氧化杂质的存在下减少。这项工作研究了0.3 wt。%的铁合金。铜,0.15 wt。镍百分比和0.1 wt。在空气中在1,150摄氏度下被氧化的百分比(锰,铝或硅)。抛物线的氧化速率不受锰或铝的影响,但随添加硅而降低。锰和铝的添加导致内部MnO和锂锰矿的形成。这些稍微增加了截留在氧化物中的材料的量。硅的添加导致氧化物/金属界面附近几乎连续的铁橄榄石层降低了氧化速率,从而降低了富铜液体的数量。

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