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首页> 外文期刊>Journal of Electronic Materials >Electromechanical Breakdown of Barrier-Type Anodized Aluminum Oxide Thin Films Under High Electric Field Conditions
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Electromechanical Breakdown of Barrier-Type Anodized Aluminum Oxide Thin Films Under High Electric Field Conditions

机译:高电场条件下势垒型阳极氧化铝薄膜的机电击穿

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Barrier-type anodized aluminum oxide (AAO) thin films were formed on a polished aluminum substrate via electrochemical anodization in 0.1 mol/L aqueous solution of ammonium pentaborate. Electromechanical breakdown occurred under high electric field conditions as a result of the accumulation of mechanical stress in the film-substrate system by subjecting it to rapid thermal treatment. Before the breakdown event, the electricity of the films was transported in a highly nonlinear way. Immediately after the breakdown event, dramatic cracking of the films occurred, and the cracks expanded quickly to form a mesh-like dendrite network. The breakdown strength was significantly reduced because of the electromechanical coupling effect, and was only 34% of the self-healing breakdown strength of the AAO film.
机译:通过在0.1 mol / L五硼酸铵水溶液中进行电化学阳极氧化,在抛光的铝基板上形成势垒型阳极氧化铝(AAO)薄膜。在高电场条件下发生机电击穿是由于薄膜-基材系统中的机械应力经过快速热处理而积累的结果。在击穿事件之前,薄膜的电以高度非线性的方式传输。击穿事件发生后,薄膜立即发生剧烈开裂,并且裂纹迅速扩展,形成了网状的枝晶网络。由于机电耦合作用,击穿强度显着降低,仅为AAO膜自愈击穿强度的34%。

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