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INVESTIGATIONS ON THE ROLE OF COPPER IN CAUSING AND NICKEL IN PREVENTING THE 'HOT SHORTNESS' IN STEELS

机译:对铜造成和镍在防止钢材“热短路”中的作用的调查

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An extensive investigation into the role of low copper contents on the hot ductility of C-Mn-AI steels has been carried out in order to better understanding the problem of "hot shortness". Previous work has suggested that this problem results from the build up of Cu that occurs at the surface of the steel as a consequence of the preferential oxidation of iron. This causes the formation of a Cu-rich film of low melting point. A nickel addition has been reported as a solution to the problem, since it increases the solubility of copper in the austenite. After hot tensile testing to failure, samples of Cu-containing steels have been examined using optical, scanning and transmission electron microscopes. Recently published results indicate that copper, in addition to precipitating out as CuS, also segregates to MnS inclusions forming a shell around them. This does not seem to impair the hot ductility under an inert atmosphere, but may have serious consequences under an oxidising environment and lead to "hot shortness". The influence of nickel in improving the hot ductility seems to be due to it forming a higher melting point alloy with the segregated copper. Data from this incomplete work also suggests that Ni reduces the precipitation of CuS particles. Current investigation carried out using confocal microscopy still to be completed will improve the understanding of the role of copper and nickel on the problem of "hot shortness".
机译:一个广泛的调查的低铜含量对C-锰-AI钢的热延展性的作用是为了一直进行到更好地理解“热脆”的问题。以前的研究已经表明,这个问题是因铜的积聚发生在钢,铁的优先氧化的结果的表面。这导致低熔点的富 - 铜膜的形成。镍除了已被报告为解决该问题,因为它会增加铜在奥氏体中的溶解度。热拉伸测试失败后,含Cu的钢的样品已经使用光学,扫描和透射电子显微镜检查。最近公布的结果表明,铜,除了沉淀出硫化铜作为,也偏析,形成他们周围的壳MnS夹杂。这似乎并不损害惰性气氛下热延展性,但可能有氧化性环境,导致“热脆”下的严重后果。镍在提高热延展性的影响似乎是由于它形成具有偏析铜具有更高的熔点的合金。从这个不完整的工作数据还表明,镍硫化铜减少颗粒的沉淀。目前的调查进行了使用共焦显微镜仍有待完成将提高铜和镍的“热脆”的问题中的作用的理解。

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