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Isothermal Precipitation Behavior of Copper Sulfide in Ultra Low Carbon Steel

机译:超低碳钢中硫化铜的等温沉淀行为

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Copper and sulfur are typical residual elements or impurity elements in steel. Sufficient removal of them during steelmaking process is difficult for copper and costly for sulfur. Utilization of copper and sulfur in steel, especially in steel scrap, has been an important issue for a long period for metallurgists. Copper and sulfur may combine to form a copper sulfide, which may provide a prospect to avoid the detrimental effects of copper and sulfur in steel. Unfortunately the formation mechanism of a copper sulfide in steel has not been completely clarified so far. In the present paper, solution treatment of samples containing copper and sulfur are firstly performed at 1 623 K for 2.7 × 10~3 s followed by quenching into water. The samples are then isothermally heat-treated at 673 K, 873 K, 1 073 K, 1 273 K and 1 373 K for different time followed by quenching into water again. The size, morphology, constituent and crystallography of sulfide precipitates in these samples are investigated by SEM and TEM equipped with EDS. Fine copper sul-fides (less than 100 nm) are observed to co-exist with silicon oxide in samples even isothermally heat-treated at 1 373 K for 1.44 × 10~4s; Film-like copper sulfides are generally observed to co-exist with iron sulfide in all samples; Plate-like copper sulfides are observed especially in sample isothermally heat-treated at 1 073 K for 1.44 × 10~4 s. The formation mechanisms of these copper sulfides have been discussed in detail.
机译:铜和硫是钢中典型的残留元素或杂质元素。在炼钢过程中,很难将它们充分去除,而铜很难去除,而硫价格昂贵。长期以来,对于冶金学家来说,钢中,特别是废钢中铜和硫的利用一直是重要的问题。铜和硫可能结合形成硫化铜,这可能为避免钢中铜和硫的有害影响提供前景。不幸的是,到目前为止,钢中硫化铜的形成机理尚未完全阐明。在本文中,首先在1623 K下对含铜和硫的样品进行固溶处理2.7×10〜3 s,然后淬灭至水中。然后将样品在673 K,873 K,1073 K,1273 K和1373 K等温下进行不同时间的热处理,然后再次淬火入水。通过配备EDS的SEM和TEM研究了这些样品中硫化物沉淀的尺寸,形态,组成和晶体学。即使在1373 K下进行了1.44×10〜4s的等温热处理,样品中的细小的硫化铜(小于100 nm)也与氧化硅共存。在所有样品中,通常观察到膜状硫化铜与硫化铁共存。特别是在以1073 K进行1.44×10〜4 s等温热处理的样品中观察到板状硫化铜。这些硫化铜的形成机理已被详细讨论。

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