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Kinetics and mechanism of low-temperature internal oxidation of Ag-2 and 4 at. Mg alloys

机译:Ag-2和4 at在低温下内部氧化的动力学和机理。镁合金

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Gravimetry and x-ray diffraction were used to study the kinetics and mechanism of internal oxidation in air at 300-600 deg. C of Ag-2 and 4 at. Mg alloys. All the features typical of the non-Wagnerian behavior in more dilute alloys (the slower initial and faster intermediate kinetics, oxygen release from the samples at the late stages, and stabilization of highly hyperstoichiometric oxides with O/Mg up to l.74 ± 0.02) are also observed in these more concentrated alloys. A linear correlation between the lattice parameter of oxidized alloys, magnesium content, and amount of excess oxygen is found and used for analyzing the published data on the lattice parameters in other oxidized Ag-Mg alloys. Such analysis suggests that, at early stages of low-temperature oxidation, O/Mg ratios could be higher than 4 ± 0.8, which is interpreted as evidence that O-Mg interaction at these stages is the trapping of mobile O atoms by immobile Mg atoms, so that oxidation of Ag-Mg alloys can be considered as formation and subsequent decomposition of Ag-Mg-O solid solutions, and it is the decomposition stage that significantly affects the oxidation kinetics. Possible impact of these findings on optimization of alloy-sheath composition and microstructure in Bi2223/AgMg superconducting tapes is discussed.
机译:用重量分析和X射线衍射研究了空气在300-600度时内部氧化的动力学和机理。 Ag-2的C和4 at。镁合金。稀合金中非瓦格纳行为的所有典型特征(较慢的初始动力学和较快的中间动力学,后期阶段样品中的氧气释放以及O / Mg高达l.74±0.02的高化学计量比氧化物的稳定化在这些浓度更高的合金中也观察到发现氧化合金的晶格参数,镁含量和过量氧气之间的线性相关性,并将其用于分析其他氧化的Ag-Mg合金中晶格参数的公开数据。这种分析表明,在低温氧化的早期,O / Mg比可能高于4±0.8,这被解释为证据,表明在这些阶段O-Mg相互作用是固定的M原子捕获了移动的O原子,因此可以将Ag-Mg合金的氧化视为Ag-Mg-O固溶体的形成和随后的分解,并且分解阶段显着影响了氧化动力学。讨论了这些发现对Bi2223 / AgMg超导带中合金鞘结构和微观结构优化的可能影响。

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