316 Stainless Steel Vacuum Plasma Surface Treatment Equipment with 10L Volume and Adjustable Power for Solar Cells

Price Negotiable
Price: 8000-15000USD per pcs
MOQ: 1
Delivery Time: 7-15 days
Brand: LianGui
Product Description
Solar Cell Vacuum Plasma Surface Treatment Equipment
Advanced plasma surface treatment equipment specifically designed for the new energy industry, enhancing solar cell performance through precision surface modification.
Product Overview
Plasma represents the fourth state of matter, following solid, liquid, and gas. Our non-thermal cold plasma technology effectively modifies textile surfaces while preserving bulk material characteristics. The plasma interaction produces four primary effects: cross-linking, etching, functionalization, and surface deposition.
Solar cell vacuum plasma surface treatment equipmentPlasma treatment chamber interiorIndustrial plasma cleaning machine
This compact vacuum plasma cleaning machine utilizes inductive coupling technology and excels in insulating microwave tubes and components. Ideal for handling sensitive products requiring high cleanliness levels, it processes various materials including plastics, biochemical materials, PDMS, glass, metal semiconductors, ceramics, composites, and polymers. Benefits include superior surface cleaning, sterilization, enhanced wettability, surface property modification, and improved binding force.
Key Features
  • Optimized for small-scale production and scientific research applications
  • Compact design with easy operation and maintenance
  • German core plasma technology for reliable performance
  • Corrosion-resistant imported 316 stainless steel construction
  • Precision flow control with imported needle valves
  • Dual-process reactant gas channels
  • Customization available for specific requirements
Technical Specifications
ParameterSpecification
Vacuum Degree30Pa-100Pa
Gas Flow0-100ml/s
Cleaning TimeAdjustable (1-9999s)
Cooling ModeAir Cooling
Gas ChannelsTwo-way working gas (Argon, hydrogen, oxygen, nitrogen, air, etc.)
Control SystemsPLC + Touch Screen
Vacuum Cavity Temperature<50 ℃
Vacuum PumpOil pump/dry pump (optional)
Power SupplyAC220V(±10V)
RemarksCustom equipment available for different material forms, sizes and production capacities
Equipment Components
  1. Reaction Chamber: Comprising vacuum chamber and electrodes, providing plasma reaction space for processing items
  2. Vacuum System: Includes vacuum gauge, vacuum pump, and piping to maintain optimal vacuum conditions
  3. Discharge System: Supplies energy to excite reaction gas ionization and generate required plasma
  4. Electronic Control System: Controls equipment processes according to optimal parameters and maintains stability
  5. Intake Flow Control System: Features flow meters and solenoid valves for precise gas flow regulation
Operation Procedure
  1. Open vacuum chamber door and place items for processing
  2. Close chamber door and activate main power switch
  3. Set parameters via touch screen interface
  4. Equipment automatically executes process sequence (vacuum → air intake → discharge → empty)
  5. Buzzer signals completion; remove processed items
Plasma equipment operation interface
Plasma Cleaning Principles
Plasma, recognized as the fourth state of matter, utilizes high-energy particles to create physical and chemical reactions on material surfaces. This enables surface activation, etching, decontamination, and modification of surface properties including friction coefficient, adhesion, and hydrophilicity.
Cleaning Effects: Plasma cleaning technology employs low-temperature plasma characteristics to chemically and physically clean material surfaces, enhancing smoothness, implanting new chemical functional groups, and enabling precise etching.
Plasma state diagramSurface cleaning and activation processChemical functional group formationPlasma etching demonstration
Plasma Cleaning Process
Plasma cleaning process flowchart
Advantages
  • Environmentally friendly alternative to traditional wet cleaning (VOC-free)
  • Low operational costs using gas as reaction medium
  • Broad application range across diverse materials
  • High cleaning efficiency with automation capabilities
  • Enhanced surface performance and adhesive properties
Performance Comparison
Contact angle measurement determines surface wettability: θ<90° indicates hydrophilic surface (better wettability with smaller angles), while θ>90° indicates hydrophobic surface.
Contact angle measurement comparison
Dyne value measurement assesses bonding capability in printing, coating, laminating, and welding applications. Higher dyne values indicate superior bonding performance.
Dyne value measurement results
Common Applications
Polymer material surface modificationElectronic component oxide removalGlass substrate organic contaminant removalMetal surface oil removalGraphene powder cleaning modificationPDMS surface activated bonding
  • Surface modification of polymer materials for improved bonding
  • Oxide residue removal from electronic components
  • Organic contaminant elimination from glass substrates
  • Oil removal from metal surfaces
  • Graphene and powder cleaning modification
  • PDMS surface activated bonding
Quality Assurance & Service
Comprehensive 1-year warranty with technical support throughout. Equipment delivery includes complete technical documentation covering operation, commissioning, and maintenance. Remote training provided for normal operation, repair, maintenance, and emergency procedures. Full after-sales technical service and warranty documentation provided upon delivery.

Get in Touch

Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Shanghai Liangui Technology Co., Ltd.
Location No. 1181, Zhaoxian Road, Jiading District, Shanghai city
Contact Person action

Request A Quote

Please check your email address.
Your message must be at least 20 characters.