Home > Surface Coating Treatment Solutions
  • Physical Vapor Deposition (PVD) Technology

    PVD (Physical Vapor Deposition) is a dry surface treatment technology performed in a vacuum environment. Its basic principle is to vaporize a solid source material (target) through methods such as sputtering, cathodic arcing, or thermal evaporation; the resulting gaseous particles are then transported in a vacuum chamber and deposited onto the surface of the workpiece (substrate), ultimately condensing to form a high-performance thin film. Our company focuses on customized magnetron sputtering processes within the PVD technology system, designing solutions based on the actual application needs of our clients. We precisely control vacuum, deposition temperature, and bias parameters, optimize particle bombardment energy and deposition rate, and develop highly adaptable magnetron sputtering process solutions to ensure that both the performance of the finished film and mass production efficiency meet the standards.

  • Electroplating Process

    A wet chemical process. The workpiece (cathode) and metal anode are immersed in an electrolyte containing metal ions. When a direct current is applied, the metal ions in the solution are reduced on the workpiece surface, forming a metal plating layer.The company focuses on customized applications of electroplating technology, providing solutions based on the actual needs of its clients. We comprehensively consider the characteristics of the substrate to design suitable processing techniques, optimize electroplating parameters according to the client's core performance requirements for the plating layer, and combine cost-effectiveness principles to tailor highly adaptable electroplating technology solutions for clients in the electronics, automotive, hardware, and precision parts industries, ensuring a balance between finished product performance and economy.

  • Coating Technology

    Coating technology is a process of uniformly and continuously covering the surface of a substrate (such as metal foil, film, fabric, or paper) with liquid, paste, or molten materials of specific functions. Currently, the company focuses on the specialized coating processing of conductive adhesives, insulating materials, and thermally conductive materials, always prioritizing customer needs. Based on the physicochemical properties of the substrate, the specific performance standards of downstream products (such as conductivity, insulation class, and thermal conductivity), and a comprehensive consideration of cost-effectiveness, we provide customers with integrated coating technology solutions that combine material adaptation, process customization, and performance compliance, ensuring that the coated finished products meet the stringent requirements of actual application scenarios.

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  • Surface treatment
    technology
  • Physical Vapor Deposition (PVD) Technology

    PVD

  • Electroplating Process

    Electroplating

  • Coating Technology

    Coating

Surface Treatment Services
Surface Treatment Equipment
High vacuum evaporation coating equipment

High vacuum evaporation coating equipment

High vacuum evaporation coating equipment

Our products mainly consist of metallized decorative and functional films applied to the surfaces of plastics, glass, resins, ceramics, candles, and other materials. They are widely used in various industrial fields, including mobile phone casings, automotive lights, lighting fixtures, toys, handicrafts, gifts, decorations, and electronics.
Electron beam precision optical coating equipment

Electron beam precision optical coating equipment

Electron beam precision optical coating equipment

Electron beam precision optical coating machines are devices that use electron gun evaporation technology to deposit multilayer optical films. These products are widely used in optical lenses, cameras, mobile phone window glass, mobile phone back covers, eyeglass lenses, rhinestones, and other fields.
Magnetron sputtering coating equipment

Magnetron sputtering coating equipment

Magnetron sputtering coating equipment

Magnetron sputtering coating machines are widely used for decorative coatings (gold, black, coffee, blue, etc.) and functional coatings (AF anti-fingerprint film, ITO conductive film) on surfaces such as mobile phone frames, mobile phone covers, ceramics, glass, plastics, watches, bathroom fixtures, and hardware.
Cathode arc ion plating equipment

Cathode arc ion plating equipment

Cathode arc ion plating equipment

The cathode arc ion plating machine is a technologically advanced and environmentally friendly piece of equipment used for surface coating of various metals or smooth, heat-resistant materials. The product is widely used in industrial fields such as decoration, elevators, lighting, automotive engine parts, machine tools, and stamping dies.
Cathode arc ion plating composite coating equipment

Cathode arc ion plating composite coating equipment

Cathode arc ion plating composite coating equipment

The cathode arc ion plating composite coating machine is mainly used for plating multilayer composite films. It can plating various pure metal films such as Cu, Al, Au, Ag, Ni, Si, and Cr, as well as colored decorative films such as TiN, TiC, TiCN, TiAIN, TiCrCN, ZrN, and CrN, and their compound composite hard films.
Roll-up magnetron sputtering coating equipment

Roll-up magnetron sputtering coating equipment

Roll-up magnetron sputtering coating equipment

Roll-up magnetron sputtering equipment is mainly used for sputtering strip materials such as cloth, paper, and metal foil, as well as flexible strip materials. Products are widely used in conductive cloth, electromagnetic shielding films, lithium battery composite copper/aluminum foil, transparent conductive films, new energy, electronics industry, and new electronic materials.
Diamond-like carbon (DLC) equipment

Diamond-like carbon (DLC) equipment

Diamond-like carbon (DLC) equipment

DLC films combine high hardness, low coefficient of friction, wear resistance, scratch resistance, corrosion resistance, and high chemical stability, making them suitable for use in extreme environments. They are widely used in automotive engine fuel injection systems, powertrain systems, injection molding molds, stamping dies, and other industries.
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