镀层

dù céng
  • cladding material;film;plate;top;wash;cladding
镀层镀层
镀层 [dù céng]
  • (1) [plate]∶镀(如电镀)在金属底子上面的极薄的,通常为贵重金属的表层

  • (2) [top]∶装饰性或保护性的外部镀层

  • (3) [wash]∶为了好看或储藏而涂在某些物品上的一层稀薄的金属或为仿造某种贵重金属,在普通金属的表面镀上这种贵重金属的薄层

镀层[dù céng]
  1. 改变置砂方式,采用了悬浮置砂法,可提高齿面磨粒的均匀性,并在电镀后增加真空热扩散工艺,增强了镀层与基体的结合力。

    Using suspending method to putting abrasives may better the uniform of abrasives and adding thermal diffusion in vacuum at high temperature after electroplating , the binding force between cladding material and matrix is improved evidently .

  2. 检测片状电阻器镀层厚度的金相制样法

    Metallographic specimen preparing method for measuring the cladding material ′ s thickness

  3. 水龙头外表为铬镀层

    Water faucets shall be chrome-plated type with ball valve .

  4. U上Al,Ti/Al镀层研究

    Study on Al , Ti / Al Bilayers Coatings on Uranium Substrates

  5. 铀表面Cu、Ni-P/Cu镀层研究

    Study on Ni-P / Cu Coatings on U substrates

  6. Ni-P-纳米Al2O3复合镀层耐磨性能研究

    Study on the wear resistance performance of Ni-P-nano-Al_2O_3 composite coatings

  7. 电流密度和润湿剂对Ni镀层组织与形貌的影响

    Effects of Current Density and Wetting Agent on the Nickel Coating by Electroplating

  8. 并用SEM,XRD研究锌镀层的微观结构。

    The microstructure of zinc coatings was studied by SEM and XRD .

  9. 研究了温度、电流密度、pH等工艺条件对镍-金刚石复合镀层性能的影响。

    The Influences of process conditions , such as temperature , current density , pH value , etc.

  10. 用X射线荧光光谱法测定了Fe基上Zn镀层的质量厚度;

    The thickness of Zn coating on Fe substrate was measured by X-ray fluorescence spectrometry .

  11. 通过SEM对镀层的形貌和组成进行了观测。

    Morphology and composition of the electroless nickel plating coating was observed by SEM .

  12. 研究了化学镀Co-P合金镀层中磷含量与工艺条件的关系及产生非品结构的成分条件。

    The relation between phosphorus content and the electroless CoP alloy plating conditions to form amorphous structure has been investigated .

  13. 纳米Al2O3颗粒含量对复合镀层组织和滑动磨损行为的影响

    Effects of Al_2O_3 Nanoparticle Content on Structure and Sliding Wear Behavior of the Composite Plating

  14. 镀层厚度应与siC微粒粒度相当。

    The thickness of coating should be suitable with the size of SiC particles .

  15. Ni-P-W-α-Al2O3复合镀层工艺及性能研究

    Study on Performance and Process of Ni-P-W - α - Al_2O_3 Composite Coatings

  16. 纳米和微米La2O3颗粒增强镍基复合镀层的摩擦磨损性能

    Friction and Wear Properties of Nano-and Micron-sized La_2O_3 Particles Reinforced Ni Matrix Composite Coatings

  17. Ni基纳米Si3N4复合镀层的超声-电沉积工艺研究

    Study on technology of ultrasonic-electrodeposited Ni-nano Si_3N_4 composite coatings

  18. 合金沉积层的显微硬度随镀层中的W含量提高而增大。

    The microhardness of the alloy deposit increases with the raise of tungsten content in the deposit .

  19. 镍基Si3N4复合镀层的摩擦磨损特性

    Friction and Wear Properties of Nickel Based Si_3N_4 Composite Coatings

  20. Ni-(Mo)-P/Cu多层交替镀层的制备及其热稳定性

    Preparation and Thermal Stability of Ni ( - Mo ) - P / Cu Alternate Multilayers

  21. 通过电镀法制备了功能梯度Ni-P合金镀层。

    The function gradient Ni-P alloy deposit was prepared by plating .

  22. Ni-P基多元合金镀层的耐腐蚀磨损性能

    The Corrosion - wear Resistance of the Ni-P Polybasic Composite Coating

  23. 研究了Ni-W合金镀层的抗高温氧化及镀层加热处理后的硬度。

    This paper studied the high-temperature oxidation resistance and the hardness after heat treatment on amorphous Ni-W alloy deposition .

  24. Ni基与Ni-P基含MoS2复会电刷镀层的减摩特性

    Study on friction-reducing property of MoS_2-containing Ni base and Ni-P base composite brush plating layers

  25. 高耐蚀性的双层化学镀Ni-P合金镀层

    High Performance Corrosion Resistance Double Layer Chemical Ni-P Alloy Plating

  26. SEM实验表明,镀层表面形貌为团粒状,颗粒大小较不均匀。

    SEM experiment displays that the deposit has a ( surface ) morphology of granular structure with uneven grain sizes .

  27. 电刷镀含纳米SiC粉复合镀层的EPMA分析

    EPMA Analysis of Brush-plating Ni / nano-SiC Composite Coating

  28. 随着沉积电流密度的提高,镀层中W的含量增大,而沉积电流效率降低。

    When deposition current density was increased , W content in the coating was raised and deposition current efficiency decreased .

  29. 通过化学镀方法制备高硬度NiB及NiMoB合金镀层。

    High hardness Ni B and Ni Mo B coatings are prepared by EN with potassium borohydride reducing agent .

  30. 化学镀Ni-P合金镀层相结构与硬度的研究

    Studies on Relationship between Structure and Hardness of Ni-P Alloy Coating by Electroless Plating