passive film

英 [ˈpæsɪv fɪlm] 美 [ˈpæsɪv fɪlm]

网络  钝化膜

化学



双语例句

  1. The presence of exogenous surface contamination, including dirt, grease, free iron from contact with steel tooling, and so forth, may interfere with the formation of the passive film.
    外生的表面污染,包括:尘土、油脂、来自钢铁加工的游离铁等等,可以影响到钝化膜的生成。
  2. Influence of deep-sea environment on Corrosion Behavior of pure nickel: influence of hydrostatic pressures on performance of passive film on pure nickel
    深海环境下静水压力对纯镍腐蚀行为的影响
  3. Influence of an organic amine addictive on corrosion performance of molybdate passive film formed on hot-dipping galvanized steel
    有机胺类添加剂对热浸镀锌板钼酸盐钝化膜耐蚀性能的影响
  4. Discussion& Stainless steels are autopassivating in the sense that the protective passive film is formed spontaneously on exposure to air or moisture.
    论述&在某种意义上说,在暴露到空气和湿气的情况下,保护性的钝化膜自动生成是不锈钢在自动钝化。
  5. The effects of the parameters of alternating electric field on the growth of passive film and the dissolution of alloying element in stainless steel were studied by analysis of the composition of passive film and the bath solution.
    通过对钝化膜层和溶液中金属离子的含量分析,研究了不同交变电场参数对电极中各金属元素的溶解和沉积。
  6. The passive film may be augmented by chemical treatments that provide an oxidizing environment for the stainless steel surface.
    通过为不锈钢表面提供一个氧化环境的化学处理,钝化膜可以得到增强。
  7. The pitting critical potential of the fresh surface is lower than that of the surface covered by passive film. At free-corrosion potential and anodic potential, the susceptibility to SCC was very low.
    去膜表面发生点蚀的临界电位低于膜覆盖表面发生点蚀的临界电位。在自腐蚀电位和阳极电位条件下,SCC敏感性很低。
  8. Chemical treatments, such as sodium dichromate solutions, may facilitate the more rapid formation of the passive film on a stainless steel surface already free of scale or foreign matter.
    化学处理,例如重铬酸钠溶液,可以促进无氧化膜和杂质不锈钢表面的钝化膜更快速度的生成。
  9. A XPS Study of rebar passive film and effect of chloride ions on it
    用XPS研究钢筋钝化膜和C1~-对钝化膜的影响
  10. The Effects of Composition and Structure of Zn-Ni Passive Film on Corrosion Resistance
    锌-镍合金钝化膜的组成和结构对耐蚀性的影响
  11. The corrosion rate of titanium alloy with passive film was smaller than that of titanium alloy with fresh surface.
    钛合金钝化膜具有抗腐蚀性,表面有钝化膜的钛合金的腐蚀速度约为无钝化膜钛合金的1%。
  12. Passive film of alloys was investigated with AES analysis.
    用俄歇能谱AES分析了合金钝化膜的组成。
  13. Based on the physical model that an oxide or a passive film is self-repaired and metal dissolves self-catalytically, a mathematical model for metal's dissolution current is set up.
    在氧化膜(或钝化膜)自修复和金属自催化溶解的物理模型基础上建立了金属溶解电流的数学模型。
  14. In situ ECSTM investigation on formation and breakdown of passive film for polycrystalline stainless steel
    不锈钢钝化膜形成和破坏过程的原位ECSTM研究
  15. In this paper, the greenish-black passive film technology and property of the low chromium galvanizing is introduced. The passivating process of different chromium in galvanizing is compared systematically.
    介绍了镀锌低铬军绿钝化膜的工艺与性能,系统地比较了不同含铬的镀锌层钝化膜形成过程。
  16. Through anode polarization curve and electrochemical impedance chart, comparison between influences of Cl and S ions on corrosion-resistance performance of passive film on 316L stainless steel in simulated cooling water was conducted.
    根据阳极极化曲线和电化学阻抗谱,比较了模拟冷却水中氯离子和硫离子对316L不锈钢钝化膜耐蚀性能的影响。
  17. Original polymerization potential of aniline had related with the passive film of stainless steel.
    不锈钢表面钝化膜影响苯胺聚合的起始电位。
  18. The X-ray photoelectron spectroscopy ( XPS) analysis indicates that the passive film consists primarily of Fe_2O_3 and FeO.
    X射线光电子光谱(XPS)分析结果表明,钝化膜主要由Fe的氧化物Fe2O3和FeO组成。
  19. Composition and structure of the passive film of 304 stainless steel in an occluded solution
    304不锈钢在闭塞区溶液中钝化膜组成和结构性能
  20. Passive film was formed onto the surface of stainless steel in nitric acid solution.
    不锈钢在硝酸溶液中能形成钝化膜,一定温度的硝酸溶液中的铀酰离子与不锈钢界面行为结果,可以揭示不锈钢表面钝化膜的形态。
  21. This technique may be developed into an improved in-situ method to characterize the structures and passive film at various metal/ solution interfaces.
    为研究各种不同金属/溶液界面结构和钝化膜提供了一种改进的现场研究方法。
  22. Electrochemical and Photoelectrochemical Measures of the Thickness of Iron Passive Film
    铁钝化膜厚度的电化学和光电化学测量
  23. A study of passive film on rebar surface by atomic force microscope
    原子力显微镜对钢筋表面钝化膜的研究
  24. With double potential-step method, the thickness of passive film on Zn electrodes in alkaline electrolyte is determined.
    作者用二级电势跳跃法测量了锌电极上钝化膜的厚度。
  25. X-ray photoelectron spectroscopy ( XPS) and electrochemical impedance spectroscopy ( EIS) were used to study the composition and structure of the passive film of 304 stainless steel in an occluded solution.
    采用X射线光电子能谱(XPS)和交流阻抗法(EIS)研究了304不锈钢在闭塞区溶液中钝化膜的组成和性能。
  26. The effect of anodic aging on the property and constitute of passive film mainly depend on the aging time, anodic potential and oxidizing of electrolyte.
    阳极钝化时效对钝化膜的性能与组成的影响主要取决于时效时间,阳极电位与电解液的氧化性等因素。
  27. Machining time and inter-electrode gap have a slight effect on passive film structure.
    而加工时间和极间间隙对钝化膜结构影响不明显。
  28. The higher ampere density and longer machining time produce more thick passive film.
    电流密度越高,加工时间越长,钝化膜越厚。
  29. No crystalline substance was found on the surface of aluminum alloy. The Cerium-based passive film was non-crystalline material.
    成膜处理后,没有晶态物质在铝合金表面生成,形成的铈的钝化膜为非晶态物质。
  30. However, in neutral solutions, the surface of aluminum tends to form passive film and become inactive.
    然而,在中性电解液中,铝的表面形成钝化膜导致钝化。