分析了铝的电化学抛光研究现状,通过实验获得了一种效果好的环保型抛光工艺。
The current research of aluminums electro-polishing was analysed, a long-life and good-effective non-pollution technology was obtained through experiments.
向纯铝中加入少量金属元素,能改变铝的电化学活性,增强其抗腐蚀性能,减小负差效应。
The addition of a small amount of metallic elements in pure aluminium would change its electrochemical activity, enhance its anticorrosive performance and decrease its negative differential effect.
介绍了一种计算机硬盘铝零件的电化学去毛刺工艺。
The process of the electrochemical deburring for aluminum spares carried on computer is described.
铈不仅改善了锂铝合金的电化学性能,而且改进了铝基体材料的物理性能。
The electrochemical properties and physical performance of lithium-aluminium anode were improved by adding the cerium element into aluminium before lithium was deposited.
电化学试验和湿热试验结果表明电解铝硅合金具有良好的耐蚀性。
The results of electrochemical experiments and moisture and hot experiments indicate that the electrolytic Al - Si alloy has excellent corrosion resistance.
介绍了铝及其合金表面采用电化学陶瓷成膜技术制备无机非金属膜的工艺。
The paper describes that inorganic non-metallic film on surface of aluminum and its alloys were formed by electrochemical deposition of ceramic film (EDCF) technique.
介绍了铝及铝合金的电化学仿木纹工艺流程、工艺配方。
The process flows and process formula of electrochemical graining on aluminum and aluminum alloy were introduced.
利用电化学交流阻抗方法研究了铝镁阳极型强屏蔽涂层的电化学阻抗谱特征。
The EIS characteristics of an anodic type anticorrosion coating prepared with Al-Mg alloy were studied.
采用失重法与电化学方法研究了纯铝及LY1 2铝合金表面钼酸盐和锰酸盐的化学复合转化膜。
The molybdate and manganate conversion coatings for aluminum and LY12 aluminum alloy were investigated using weight loss and electrochemical methods.
保护器(200)具有用于容纳铝复合膜(90)的那些褶皱(92)的凹槽(210和220),所述褶皱在电化学元件(100)的拐角处形成。
The protector (200) has recesses (210 and 220) for accommodating those wrinkles (92) of the aluminum-laminated film (90), which are formed at the corners of the electrochemical element (100).
保护器(200)具有用于容纳铝复合膜(90)的那些褶皱(92)的凹槽(210和220),所述褶皱在电化学元件(100)的拐角处形成。
The protector (200) has recesses (210 and 220) for accommodating those wrinkles (92) of the aluminum-laminated film (90), which are formed at the corners of the electrochemical element (100).
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