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Effect of Diffusion Processes During Pack Rolling on Multilayer Material Stability

机译:多层材料稳定性包装轧制过程中扩散工艺的影响

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Results are provided for a study of diffusion redistribution of chromium and nickel in multilayer metallic materials prepared by hot pack rolling. The choice of steels for forming the original binary composite multilayer materials is based on the assumption of the mutual effect of the main alloying elements and carbon. Multilayer materials are studied based on steels 08kp + 08Kh18, 08kp + 08Kh18N10, U8 + 08Kh18, and U8 + 08Kh18N10, having 100 layers after the first and 1500 layers after the second production cycles. It is shown that the diffusion mobility of chromium between layers is the main reason for a slowdown in nickel diffusion. Results of mathematical modeling compare well with the experimental data obtained.
机译:提供了通过热包装轧制制备的多层金属材料中铬和镍的扩散再分布研究的研究。 用于形成原始二进制复合多层材料的钢的选择是基于主要合金元素和碳的相互影响的假设。 基于钢08kp + 08k18,08kp + 08k18n18,08kp + 08kh18,U8 + 08k18和U8 + 08k18n10研究多层材料,在第二个生产循环之后在第一和1500层之后具有100层。 结果表明,在层之间的铬的扩散迁移率是镍扩散慢的主要原因。 数学建模结果与所得实验数据相比。

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