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EFFECT OF ANODIC AND CATHODIC CURRENT DENSITIES ON THE CAVITATION DAMAGE CHARACTERISTICS OF ALUMINUM ALLOY IN SEAWATER

机译:阳极和阴极电流密度对海水铝合金空化损伤特性的影响

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摘要

In this study, the influences of electrolytic gas generation on the surface of aluminum as a cushioning media against cavitation bubbles were experimentally investigated. The electrolytic gas evolution was controlled by applying electric current to the metal with different polarity and current densities. The surface of the metal specimen was either polarized anodically or cathodically while simultaneously being subject to vibratory cavitation. It was revealed that the surface damage behavior was mainly dependent on the current densities applied to the metal. It was apparent that a moderate current density range of between -1 x 10(-3) and -7.5 x 10(-3) A/cm(2) applied cathodically can produce electrolytic gas evolution to cushion the cavitation bubbles sufficiently. However, application of a too a high current density (greater than -1 x 10(-3) A/cm(2)) may lead to cathodic corrosion of Al alloys.
机译:在该研究中,实验研究了铝表面作为缓冲气泡的缓冲介质表面的电解气体产生的影响。 通过将电流施加到具有不同极性和电流密度的金属的电流来控制电解气体进化。 金属样品的表面阳极化或阴极偏振,同时经受振动空化。 据透露,表面损伤行为主要取决于施加到金属的电流密度。 显而易见的是,在阴极上施加-1×10(-3)和-7.5×10(-3)A / cm(2)的中等电流密度范围,可以产生电解气体进化以充分地缓冲空化气泡。 然而,施加过于高电流密度(大于-1×10(-3)A / cm(2))可能导致Al合金的阴极腐蚀。

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