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Effects of the hydrogen content on the development of anodic aluminum oxide film on pure aluminum

机译:氢含量对纯铝阳极氧化铝膜显影的影响

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In this study, high purity aluminum (Al) samples containing different levels of hydrogen were used as a base metal for anodization. To ensure constant current densities during the experiments, the voltage-time (V-t) curves were recorded. The differential AV/At curves were plotted and the energy consumed during different steps of anodization was calculated. Experimental observations show that differences in the hydrogen content affected the amount of energy consumed. The process was divided into three steps. When the voltage response at the end of step 2 exceeded 25 V, the energy consumed in steps 2 + 3 reached or exceeded 7.4 J/cm~2, and the pore channels branched or merged, creating a spike in the AV/At curves in step 3. A combination of the effects of the high voltage response at the end of step 2 and the high hydrogen content in the Al samples led to the formation of an anodic aluminum oxide (AAO) film in the sulfuric acid solution, which produced crystallized boehmite. This study proposes a unique tool for understanding certain special anodic behaviors of pure Al, wherein the branching or merging of pore channels and the partial crystallization of the AAO film can be ascertained by looking at the irregularities in the AV/At curves obtained in step 3.
机译:在这项研究中,含有不同含量氢的高纯度铝(Al)样品被用作阳极氧化的贱金属。为了确保实验期间的恒定电流密度,记录了电压-时间(V-t)曲线。绘制了不同的AV / At曲线,并计算了阳极氧化不同步骤所消耗的能量。实验观察表明,氢含量的差异会影响所消耗的能量。该过程分为三个步骤。当步骤2结束时的电压响应超过25 V时,步骤2 + 3中消耗的能量达到或超过7.4 J / cm〜2,并且孔道分支或合并,从而在AV / At曲线中产生尖峰。步骤3。步骤2结束时的高电压响应和Al样品中高氢含量的综合作用导致在硫酸溶液中形成阳极氧化铝(AAO)膜,该膜产生结晶勃姆石。这项研究提出了一种独特的工具,用于了解纯铝的某些特殊阳极行为,其中,通过查看步骤3中获得的AV / At曲线中的不规则性,可以确定孔道的分支或合并以及AAO膜的部分结晶。 。

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