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Cu-Containing Fe-Ni Corrosion-Resistant Alloys Designed by a Cluster-Based Stable Solid Solution Model

机译:基于团簇的稳定固溶体模型设计的含铜Fe-Ni耐腐蚀合金

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Copper is a good corrosion resisting element, but due to its immiscibility with Fe, it is only used as a minor-alloying element in stainless steels. In this work, we introduced a double-cluster structure model [CuNi12][NiFe12] m for stable solid solutions in Cu-containing Fe-Ni corrosion-resistant invar alloys. Our model takes into account all of the enthalpies between the element pairs by assuming Fe-Ni and Ni-Cu nearest neighbors and by avoiding Fe-Cu ones, so that the ideally stabilized structures are described by mixing two cuboctahedral clusters in the fcc lattice, NiFe12 and CuNi12. Two alloy series were designed by varying the relative proportions of the two clusters and the Cu contents. It was proved that the alloys with Cu contents below those prescribed by this model could easily be solutionized and water-quenched to a monolithic fcc solid solution, and resultant alloys possessed good corrosion-resisting properties in 3.5 wt pct NaCl solution.
机译:铜是一种很好的抗腐蚀元素,但是由于它与铁不溶混,因此仅在不锈钢中用作次要合金元素。在这项工作中,我们引入了一种双团簇结构模型[CuNi 12 ] [NiFe 12 ] m 来稳定含铜的固溶体Fe-Ni耐蚀殷钢合金。我们的模型通过假设Fe-Ni和Ni-Cu最邻近并避免使用Fe-Cu来考虑元素对之间的所有焓,从而通过在fcc晶格中混合两个立方八面体簇来描述理想的稳定结构, NiFe 12 和CuNi 12 。通过改变两个簇的相对比例和铜含量设计了两个合金系列。事实证明,Cu含量低于该模型规定的合金可以很容易地固溶和水淬成整体式fcc固溶体,并且所得合金在3.5 wt%NaCl溶液中具有良好的耐腐蚀性能。

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