magnesium oxidation

英 [mæɡˈniːziəm ˌɒksɪˈdeɪʃn] 美 [mæɡˈniːziəm ˌɑːksɪˈdeɪʃn]

【化】镁合金氧化处理

化学



双语例句

  1. Influence of negative voltage on coating of magnesium alloy micro-arc oxidation
    负向电压对镁合金微弧氧化膜层的影响
  2. Preparation of Magnesium Hydroxide Catalyst by Ultrasonic Treatment for Baeyer-Villiger Oxidation of Cyclohexanone
    超声制备Mg(OH)2催化剂用于环己酮Baeyer-Villiger反应
  3. Study on the One-step-coloring of Magnesium Alloy by Micro-arc Oxidation and Its Electrolyte Lifetime
    镁合金微弧氧化一步着色及电解液寿命研究
  4. Study on Magnesium Alloy Micro-arc Oxidation Process of Zirconium Salt Solution System and the Corrosion Resistance
    镁合金微弧氧化锆盐溶液体系的工艺及耐蚀性研究
  5. The effect of energy parameters on the thickness and corrosion resistance of micro-arc oxidation coatings on magnesium alloys was studied in silicate aqueous solution with a home-made micro-arc oxidation current source.
    用自制的微弧氧化控制电源研究了在硅酸盐溶液体系中电流密度、频率、占空比等能量参数对镁合金微弧氧化陶瓷层的厚度及耐蚀性的影响,并优化了微弧氧化工艺。
  6. However, there are some technical issues restricting the mass production and application of magnesium alloys, among which is oxidation and igniting of Mg alloys at high temperature.
    但是在镁合金的规模生产和应用中存在着一些技术瓶颈,制约着镁合金事业的发展。
  7. Craftwork Study of Preventing Magnesium Oxidation in Melting of Al-Mg Alloy
    铝镁合金熔炼中镁的防氧化工艺研究
  8. The effect of magnesium on thermodynamics and kinetics of oxidation of melted Al-Mg-Si alloy, the microstructure and properties of Al2O3/ Al-Mg-Si composites were studied in this paper.
    研究了镁对Al-Mg-Si合金熔体氧化热力学与动力学的作用,以及对Al2O3/Al-Mg-Si复合材料组织与性能的作用。
  9. The result shows that: the corrosion resistance of magnesium alloy micro arc oxidation coating was improved two-three orders, and the ceramic layer was mainly composed of MgO, MgAl_2O_4, Al_ ( 12) Mg_ ( 17).
    试验结果表明,微弧氧化的镁合金耐蚀性提高了2~3个数量级,镁合金微弧氧化膜主要由MgO、MgAl2O4、Al12Mg17组成。
  10. The study situation of micro arc oxidation on aluminum and magnesium alloys was summarized and the growth mechanism of micro arc oxidation coatings was researched.
    概述了铝、镁合金微弧氧化处理的研究现状,探讨了微弧氧化陶瓷层的形成机理。
  11. In the melting of Al-Mg Alloy, because the chemical property of magnesium is active, the oxidation and overburning of the alloy is very serious. Not only the receiving rate of magnesium in alloy is affected, but also the numerous economic losses will taken place.
    在铝镁合金熔炼过程中,因为镁的化学性质活泼,导致合金的氧化、烧损现象十分严重,不仅降低了合金中镁的收得率,而且造成了巨大的经济损失。
  12. Based on the application background of aluminum and magnesium alloys, the corrosion resistance of magnesium alloys and wear resistance of aluminum alloys with micro arc oxidation by contrast test were studied.
    根据铝、镁合金的应用背景,采用对比试验法,研究了镁合金微弧氧化处理的耐蚀性和铝合金微弧氧化处理的耐磨性。
  13. In this paper, the mechanism of anodic oxidation for magnesium and its alloys was presented, the development of anodic oxidation process for magnesium and its alloys was reviewed in two aspects: electrolyte model and power supply model.
    介绍了镁阳极氧化的机理,并从电解液和电源模式两个方面综述了镁及其合金阳极氧化工艺的进展。
  14. SEM, salt spray tests and wearing tests were employed to characterize the growth mechanisms of micro-arc oxidation ceramic coatings, the corrosion resistance of magnesium alloys and wear-resistance of aluminum alloys with micro-arc oxidation.
    利用扫描电镜(SEM)、盐雾腐蚀试验及对比磨损试验等分析手段研究了铝、镁合金微弧氧化陶瓷层的形成机理、镁合金微弧氧化陶瓷层耐蚀性及铝合金微弧氧化陶瓷层耐磨性。
  15. A study on the preparation of magnesium gluconate by the catalytic oxidation of glucose
    催化氧化法以葡萄糖制取葡萄糖酸镁的研究
  16. Volatilization mechanism of magnesium in directed metal oxidation
    金属直接氧化过程中的镁挥发机制
  17. Preparing Ceramic Coating on the Surface of Magnesium Alloy by Hot Spray and Micro-arc Oxidation
    热喷涂与微弧氧化法制备镁合金表面陶瓷层
  18. Corrosion behaviors of magnesium alloy ceramic layer formed by micro arc oxidation and anodic oxidation through electrochemical methods as EIS and steady state I/ E curves.
    通过电化学分析测量镁合金微弧氧化陶瓷层和阳极氧化陶瓷层的交流阻抗图谱、稳态电流/电位曲线,并对得出的交流阻抗值和腐蚀电流进行比较。
  19. Research on Corrosion Resistance of Magnesium Alloy with Micro-arc Oxidation Film Stuffed up with Organic Coating
    镁合金微弧氧化膜有机封孔耐腐蚀性能的研究
  20. Effects of Anodic Film on Tensile Properties of Die Casting Magnesium Alloy in Micro-arc Oxidation
    微弧氧化膜层对压铸镁合金拉伸性能的影响
  21. The microstructure and corrosion resistance of ceramic coatings on magnesium alloys formed in solution with different conductivities by micro-arc oxidation were characterized by using SEM and salt spray tests.
    用扫描电镜和盐雾腐蚀试验等方法,分析了不同电导率溶液中所生成的陶瓷层微观结构及耐蚀性。
  22. Study on corrosion inhibition performance of non-woody magnesium lignosulfonate and its oxidation reaction
    非木本木质素磺酸镁的缓蚀性能及其氧化反应研究
  23. The defects in friction stir welding of magnesium alloys are main flying edge, burr, oxidation wear rings, involute and weak connections, while the involute are main in three forms, namely linear shaped, S-shaped, V-shaped.
    镁合金搅拌摩擦点焊缺陷主要有飞边、毛刺、圆环氧化磨损、渐开线和弱连接等,其中渐开线形式主要有三种,分别是一字形、S形、V形。
  24. For magnesium alloys, there are a lot of surface treatment methods suchas the anodic oxidation and chemical plating.
    镁合金表面处理的方法有很多,例如阳极氧化、化学镀等。
  25. With increase of TP concentration, reaction temperature or decrease of pH value, magnesium sulfite oxidation rate decreased significantly, while the addition of magnesium sulfite and air flow rate have no obvious effect on the oxidation reaction rate.
    随着茶多酚浓度的增加,反应温度的降低或pH值的升高,亚硫酸镁的氧化速率显著下降,而亚硫酸镁的加入量和空气流量对亚硫酸镁的氧化反应速率基本没有影响。
  26. The ceramic coating was prepared on the surface of the magnesium alloy ( AM60), by the micro-arc oxidation ( MAO) treatment using the self-manufactured equipment in the silicate electrolyte. The discipline of silicate electrolyte was studied in the paper.
    本文采用自制微弧氧化设备,在硅酸盐体系电解液中对AM60镁合金进行微弧氧化处理,研究了硅酸盐体系电解液的衰变规律。
  27. Magnesium alloy, as the most potential lightweight materials, can easily occur oxidation and combustion under high temperature. Currently, the SF6 with carrying mixture gas like nitrogen is mainly used as flame retardant protection for Mg alloy melt in Magnesium casting industry.
    作为最有潜力的轻量化结构材料之一的镁合金在高温下极易氧化燃烧,我国镁熔铸业目前主要采用SF6与氮气等载流气体混合后为镁熔体提供阻燃保护。
  28. Magnesium alloy die-casting is a high temperature, high pressure, and high-speed process, for which magnesium alloy die-casting mold with high resistance to shock, high temperature oxidation, and thermal fatigue is required.
    镁合金压铸是一个高温、高压、高速的过程,它要求镁合金压铸模具有抗冲击、抗高温氧化、抗热疲劳等性能。