DLC Coating Vacuum Plating
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The DLC coating vacuum deposition production process generally includes three major steps: pre-DLC coating treatment, DLC coating, and post-DLC coating treatment.
Pre-DLC coating treatment is a prerequisite for obtaining a good coating layer. It generally includes steps such as mechanical processing, pickling, and degreasing. DLC coating mechanical processing refers to the mechanical method of removing burrs, oxide layers, and other mechanical impurities from the surface of the plating piece, making the surface smooth and clean. This ensures good adhesion between the DLC coating and the substrate, preventing the occurrence of burrs. The purpose of DLC coating pickling is to remove the oxide layer or other corrosion products from the surface of the plating piece, while the purpose of DLC coating degreasing is to eliminate油脂 from the substrate surface.
After pre-treatment, the DLC-coated piece can proceed to the DLC coating process. During DLC coating, attention must also be paid to the formulation of the DLC coating solution, the selection of current density, and the adjustment of temperature, among other factors. It should be noted that single-salt electrolytes are suitable for coatings with simple shapes and low appearance requirements, whereas complex salt electrolytes have high dispersion capabilities. During DLC coating, the current density and efficiency are low, making it mainly suitable for coatings with more complex surface shapes.
Vacuum Deposition Equipment DLC thin films have a wide range of deposition materials: They can deposit low-potential metals such as aluminum, titanium, and zirconium, which cannot be deposited by wet film methods. By introducing reactive gases and alloy targets, vacuum deposition machines for DLC thin films can deposit coatings ranging from alloys to ceramics and even diamond, and the coating system can be designed according to needs. Compared to traditional water electroplating, it offers the following advantages:
Vacuum Deposition Equipment DLC thin films save metal materials: Due to the excellent adhesion, density, hardness, and corrosion resistance of vacuum coatings, the thickness of the deposited coating can be much thinner than that of conventional wet diamond-like carbon (DLC) film coatings, achieving the goal of material conservation. Vacuum deposition machines for DLC thin films cause no environmental pollution: Since all coating materials are deposited on the workpiece surface through plasma in a vacuum environment, there is no solution pollution, making it environmentally friendly.
Traditional water electroplating has been restricted by the state and local governments at all levels due to its environmental pollution and the need to use highly toxic raw materials. Currently, some enterprises have established water electroplating industrial parks with centralized sewage treatment, which has somewhat alleviated the issue of random sewage discharge. However, sewage treatment costs are high, energy consumption is significant, and it leads to the waste of water resources. Additionally, countries like the EU have strict restrictions on the content of hexavalent chromium and nickel in imported products. The advantages of vacuum deposition machines for DLC thin films over traditional water electroplating, and the gradual replacement of traditional water electroplating with vacuum deposition technology, enable our traditional water electroplating industry to undergo technological upgrades and transformations. This not only aligns with national environmental protection policies but also meets the requirements for product exports while increasing the added value of exported products.
| Industry Category | Machinery |
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| Product Category | |
| Brand: | |
| Spec: | DLC涂层真空镀膜 |
| Stock: | |
| Origin: | China / Shanghai / Jiadingqu |