局部阳极氧化过程中铝膜的传质研究

V.K. Moskvichev, V.N. Parqun, I.A. Vrublevsky
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引用次数: 0

摘要

铝薄膜在电化学氧化过程中产生机械应力。在这种情况下,铝膜中存在结构应力,这是由于铝结构转变为阳极氧化物而引起的比容变化造成的。薄膜中的机械应力可以通过光学干涉测量法、x射线衍射法(Malhorta et al., 1997)或激光扫描法(Gardner and Flinn, 1988)来测量。然而,这些方法只能用于测量弹性变形领域的机械应力。铝的相对柔软会导致塑性变形,铝膜的塑性变形会导致传质。在传质过程中起主要作用的是滑移和蠕变位错机制以及部分应力松弛(Koleshko et al., 1987;Marieb et al., 1994)。铝薄膜中的塑性变形可以用x射线方法测量,但是这种x射线方法不能完全表示薄膜中塑性变形引起的传质过程。本文的主要目的是考察铝膜在局部阳极氧化过程中的传质。塑性变形是由于掩膜下铝的横向阳极氧化的边缘效应引起的(suranov和Mozalev, 1997)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The mass transfer in Al film during local anodic oxidation investigation
Mechanical stresses in aluminium thin films arise during electrochemical oxidation. In this case, there are structural stresses in aluminium films caused by the change of specific volume as a result of aluminium structural transformations into anodic oxide. The mechanical stresses in the thin films can be measured by optical interferometry, X-ray diffraction (Malhorta et al., 1997) or laser scanning (Gardner and Flinn, 1988). However, these methods can be used for measuring mechanical stresses only in the field of elastic deformation. The relative softness of aluminium can result in plastic deformation, and Al film plastic deformation results in mass transfer. The main role in the mass transfer is played by slip and creeping dislocation mechanisms with partial stress relaxation (Koleshko et al., 1987; Marieb et al., 1994). The plastic deformation in Al films can be measured by an X-ray method, but usage of this X-ray method does not yield complete representation of the mass transfer as a result of plastic deformation in the film. The main goal of this paper was examination of mass transfer in aluminium films during local area anodization. The plastic deformation arises due to an edge effect of lateral anodization of aluminium under a mask (Surganov and Mozalev, 1997).
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