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Chemical printing of raw aluminum anode foil to induce uniform patterning etching

机译:化学印刷生铝阳极箔以诱导均匀的图案蚀刻

摘要

A method of producing a highly etched electrode for a capacitor from a foil is disclosed. The method comprises first applying a composition to the foil to form a plurality of deposits on the foil surface. The method then includes heating the deposits to form micron-sized features and etching the foil. Preferably, the micron-sized features facilitate etching of the foil surface at the location of the micron-sized features. After etching, the foil is optionally further processed in a combination of optional steps such as widening, forming and finishing steps. The controlled application and heating of deposits on the foil surface allows for positional control of tunnel initiation during etching. Thus, the present invention relates to a method of controlling the etching of a foil, such that tunnel initiation density and the location of tunnel initiation is controlled. By controlling the position of tunnel initiation, foils are etched more uniformly and have optimum tunnel distributions, thus allows for the production of highly etched foils that maintain high strength and have high capacitance. The present invention further includes an electrolytic capacitor comprising etched aluminum anode foils, which have been prepared using the methods of the present invention.
机译:公开了一种由箔生产用于电容器的高度蚀刻的电极的方法。该方法包括首先将组合物施加到箔上以在箔表面上形成多个沉积物。然后,该方法包括加热沉积物以形成微米尺寸的特征并蚀刻箔。优选地,微米尺寸的特征有助于在微米尺寸的特征的位置处蚀刻箔表面。蚀刻之后,任选地在任选步骤的组合中进一步加工箔片,所述任选步骤例如是扩宽,形成和精加工步骤。箔表面上沉积物的受控施加和加热可在蚀刻过程中控制隧道引发的位置。因此,本发明涉及一种控制箔的蚀刻的方法,从而控制隧道起始密度和隧道起始位置。通过控制隧道引爆的位置,可以更均匀地蚀刻箔并具有最佳的隧道分布,因此可以生产出保持高强度并具有高电容的高蚀刻箔。本发明进一步包括一种电解电容器,该电解电容器包括使用本发明的方法制备的蚀刻铝阳极箔。

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