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The kinetics and mechanism of mechanochemical dissolution of chromium in nickel

机译:铬在镍中机械化学溶解的动力学及其机理

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The regularities of the formation of a solid solution in a Ni-Cr(20 at %) system are studied using X-ray diffraction, optical microscopy, and particle-size distribution analysis within the framework of an energetical approach to the analysis of the kinetics of mechanochemical synthesis. It is established that the curves of the consumption of chromium atoms and the formation of the reaction product (a solid solution of chromium in nickel) coincide with each other. The rate-limiting step of the reaction is the formation of a contact surface between chromium and nickel, while the "stirring" of chromium atoms in nickel matrix has a very high rate. The rate of the formation of the contact surface in the mixture of brittle chromium and plastic nickel is determined by the rate of chromium particle disintegration. To a conversion of about 60%, the reaction kinetics is described by a quadratic dependence on the dose (D) of the mechanical treatment (N ~ D_2).
机译:使用X射线衍射,光学显微镜和粒度分布分析,在动力学分析的能量学方法框架内,研究了Ni-Cr(20 at%)系统中固溶体形成的规律。机械化学合成。已确定铬原子的消耗曲线与反应产物(铬在镍中的固溶体)的形成曲线相互重合。该反应的限速步骤是在铬和镍之间形成接触表面,而镍基质中铬原子的“搅拌”具有非常高的速率。脆性铬和塑料镍混合物中接触表面的形成速率取决于铬颗粒的崩解速率。到约60%的转化率,反应动力学由对机械处理剂量(D)(N〜D_2)的二次依赖来描述。

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