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原子尺度上的锆氧化

Zirconium oxidation on the atomic scale.

作者信息

Hudson Daniel, Cerezo Alfred, Smith George D W

机构信息

Department of Materials, University of Oxford, Oxford OX1 3PH, UK.

出版信息

Ultramicroscopy. 2009 Apr;109(5):667-71. doi: 10.1016/j.ultramic.2008.10.020. Epub 2008 Nov 12.

Abstract

Zirconium alloys are used in the nuclear industry as fuel rod cladding. They are chosen for this role because of their good mechanical properties and low thermal neutron absorption. Oxidation of these alloys by coolant is one of the chief limiting factors of the fuel burn-up efficiency. The aim of the present study is to understand these oxidation mechanisms. As a first step, a fundamental study of the oxidation of commercially pure zirconium has been conducted using the 3D atom probe (3DAP). The current generation of 3DAPs allows both voltage and laser pulsing, providing data sets of many millions of ions. According to the literature the only stable oxide of zirconium is ZrO(2). However, the 3DAP shows that an initial layer a few nanometres thick forms with a composition of ZrO(1-)(x) when subjected to light oxidation. This result confirms and extends the work of Wadman et al. [Colloque de Physique 50 (1989) C8 303; Journal de Physique, 11 (1988) C6 49] and Wadman and Andrén [in: C.M. Euchen, A.M. Garde (Eds.), Zirconium in the Nuclear Industry: Ninth Symposium, ASTM STP 1132, ASTM, USA, 1991, p. 461], who used 1DAP techniques, obtaining reduced data sets. Segregation of hydrogen to the metal-oxide interface and a distinct ZrH phase were observed in this study. A novel kinetics study of the room temperature oxidation of zirconium showed the ZrO layer to be non-protective over the time period investigated (up to 1h).

摘要

锆合金在核工业中用作燃料棒包壳。因其良好的机械性能和低热中子吸收特性而被选用于此。这些合金被冷却剂氧化是燃料燃耗效率的主要限制因素之一。本研究的目的是了解这些氧化机制。作为第一步,使用三维原子探针(3DAP)对工业纯锆的氧化进行了基础研究。当前一代的3DAP既可以进行电压脉冲也可以进行激光脉冲,可提供数百万个离子的数据集。根据文献,锆唯一稳定的氧化物是ZrO₂。然而,3DAP显示,在轻度氧化时会形成一层几纳米厚的初始层,其组成为ZrO₁₋ₓ。这一结果证实并扩展了Wadman等人[《物理学报》50 (1989) C8 303;《物理杂志》,11 (1988) C6 49]以及Wadman和Andrén[载于:C.M. Euchen, A.M. Garde(编),《核工业中的锆:第九次研讨会》,ASTM STP 1132,ASTM,美国,1991,第461页]的研究工作,他们使用一维原子探针(1DAP)技术,获得的数据集较少。本研究中观察到氢在金属 - 氧化物界面处的偏析以及一个明显的ZrH相。一项关于锆在室温下氧化的新颖动力学研究表明,在所研究的时间段(长达1小时)内,ZrO层没有保护作用。

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