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TRANSPORT PHENOMENA INSIDE THE PORES INVOLVED IN THE KINETICS AND MECHANISM OF GROWTH OF POROUS ANODIC AL2O3 FILMS ON ALUMINIUM

机译:铝上多孔阳极氧化铝膜生长的动力学和生长机理中涉及的传输现象

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The mass and charge transport phenomena inside the pores during the growth of porous anodic Al2O3 films, which are involved in the kinetics and mechanism of the oxide growth, were investigated and a relevant system of mathematical equations was formulated describing these phenomena in each general case. The solution of the above system of equations in the simplified case of a stirred bath and films with cylindrical pores, where it could be solved, showed that, during the oxide growth, the concentrations of H2SO4 and Al-2(SO4)(3) are highest and remain constant at pore bases and vary linearly between the pore base and film surface. Equations, correlating the electrolytes concentrations at pore bases during the oxide growth and the bath bulk concentrations with the charge transport numbers of the different ions, were also derived. These, referring to cylindrical pores, can be considered to be approximately applicable to the case of the real shape of elongated pores. Also, it was shown that the charge is transported inside the pores mainly by the migrating H+ and Al3+ ions white the contribution of the SO42- ions to the charge transport is insignificant. [References: 20]
机译:研究了多孔阳极Al2O3薄膜生长过程中孔内部的质量和电荷传输现象,这些现象与氧化物生长的动力学和机理有关,并建立了相关的数学方程式系统来描述每种情况。上述方程组在搅拌浴和带有圆柱孔的薄膜的简化情况下的解决方案可以解决,表明在氧化物生长期间,H2SO4和Al-2(SO4)(3)的浓度最高,并且在孔基处保持恒定,并且在孔基和膜表面之间线性变化。还得出了将氧化物生长过程中孔基处的电解质浓度和镀液体积浓度与不同离子的电荷传输数相关的方程。这些指的是圆柱形孔,可以认为大致适用于细长孔的真实形状。另外,还表明,电荷主要是通过迁移的H +和Al3 +离子在孔内传输而产生的,而SO42-离子对电荷传输的贡献微不足道。 [参考:20]

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