School of Materials, The University of Manchester , Manchester M13 9PL, United Kingdom.
Nikolaev Institute of Inorganic Chemistry , Novosibirsk, Russia 630090.
Langmuir. 2017 Oct 17;33(41):11059-11069. doi: 10.1021/acs.langmuir.7b02284. Epub 2017 Oct 5.
A comprehensive analysis of experimental data relating to so-called "soft sparking" mode of plasma electrolytic oxidation (PEO) has been undertaken. The transition to the soft sparking mode is accompanied by a number of characteristic effects, such as a decrease in anodic voltage, acoustic and light emission, increase in hysteresis in transient current-voltage curves, improved uniformity of the discharge distribution on the surface, disappearance of atomic lines, and development of continuous radiation in the optical emission spectra. An explanation of the main features of PEO process operated under soft sparking conditions is proposed assuming the existence of a specific narrow region in the coating thickness, where the main anodic voltage drops. Because of high electric field in this "active zone", both anodic oxidation of the metal substrate and high-energy processes may take place. According to this assertion, the soft sparking mode of PEO is caused by cathodic polarization (a) eliminating the potential barrier at the oxide-electrolyte interface due to local acidification and (b) increasing electric field at the metal-oxide interface during subsequent anodic half-cycle due to narrowing of low-conductive part within the active zone. Based on this consideration, it is possible to account for the main characteristic phenomena accompanying the PEO process on aluminum under alternating polarization.
对所谓的“软火花”模式的等离子体电解氧化(PEO)的实验数据进行了全面分析。向软火花模式的转变伴随着许多特征效应,例如阳极电压降低、声发射和光发射、瞬态电流-电压曲线中的滞后增加、表面放电分布的均匀性提高、原子线消失以及光学发射光谱中连续辐射的发展。假设在涂层厚度的特定窄区域中存在特定的窄区域,其中主要的阳极电压下降,提出了在软火花条件下运行的 PEO 工艺的主要特征的解释。由于该“活性区”中的高电场,可能发生金属基底的阳极氧化和高能过程。根据这一说法,PEO 的软火花模式是由阴极极化引起的:(a)由于局部酸化而消除氧化物-电解质界面的势垒,以及(b)在随后的阳极半周期中由于活性区内部低导电部分变窄而增加金属-氧化物界面处的电场。基于这种考虑,有可能解释在交变极化下铝上 PEO 过程伴随的主要特征现象。