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Automatic Solar Module Laminating Machine with AC380V 3-Phase 5-Wire and 2400 mm X 5500 mm Effective Pressure Area

Automatic Solar Module Laminating Machine with AC380V 3-Phase 5-Wire and 2400 mm X 5500 mm Effective Pressure Area

MOQ: 1 SET
Price: 43000 USD
Standard Packaging: Wooden box
Delivery Period: 30 days after payment
Payment Method: 30% down payment,70% balance payment
Supply Capacity: 300MW per year
Detail Information
Place of Origin
China
Brand Name
X-SOLAR
Certification
CE/CQC/3C
Model Number
XSCM-520-T
Model NO.:
Lamination Machine
Classification:
Pre-Coating Laminating Machine
Application:
Aluminium Plate, Film Material, Soft Board, Solar Module
Driven Type:
Electric
Automatic Grade:
Automatic
Membrane Material:
Heat Transfer Film
Plastic Film Mulching Modes:
Hot Laminating
Performance:
Anti Wrinkle
Effective Pressure Area:
2400 Mm X 5500 Mm X 2
Total Weight:
Approximately 49t
Power Supply:
AC380V, 3-Phase 5-Wire
Power:
Installed Total Power 195kw,Normal Operating Power
Compressed Air:
Pressure 0.7~0.8MPa, Compressed Air Flow Rate: 100
Cooling Water:
Pressure 0.2~0.3MPa, Flow Rate 2060L/Min (Includin
Temperature:
Temperature Uniformity1.5
Transport Package:
Wooden Box
Specification:
27970 Mm X 3300 Mm X 2540 Mm
Trademark:
X-solar
Origin:
China Jiangyin
HS Code:
8439200000
Production Capacity:
500 Pieces Per Year
Highlight:

Automatic Solar Module Laminating Machine

,

AC380V 3-Phase 5-Wire Solar Module Laminating Machine

,

2400 mm X 5500 mm Effective Pressure Area Thermal Film Laminating Machine

Product Description
Industrial MDF Thermal Film Laminating Machine Automatic Flat Tile Laminating Machine
Solar Module Lamination Machine

Industrial MDF Thermal Film Sheet Hot Press Dry Solar Module Production Line Flat Tile Laminating Machine for Lamination

Industrial Fully Automatic MDF Thermal Film Laminating Machine operational view Industrial Fully Automatic MDF Thermal Film Laminating Machine side view Industrial Fully Automatic MDF Thermal Film Laminating Machine detailed components

This machine operates based on the principle of hot-pressing technology. Multiple layers of materials including photovoltaic cells, glass, backsheets, and encapsulation films are placed in the working chamber. Through precise temperature and pressure application by upper and lower heating plates maintained for specific periods, the encapsulation film melts and flows to fill gaps between material layers. After cooling and solidification, all layers bond tightly together, forming complete and well-sealed photovoltaic modules.

Technical Specifications
Industrial Fully Automatic MDF Thermal Film Laminating Machine technical diagram Industrial Fully Automatic MDF Thermal Film Laminating Machine parameter chart
Product Parameter Data
Effective Pressure Area 2400 mm x 5500 mm x 2
Overall Dimensions 27970 mm x 3300 mm x 2540 mm
Total Weight Approximately 49T
No. of Main Busbars Main Busbar Compatibility: 10-20BB
Power Supply AC380V, 3-phase 5-wire
Temperature Temperature Uniformity ±1.5°C, Control Accuracy ±1°C, Control Range 30°C - 180°C
Power Average Power: 37W Peak Power 45 kW
Ultimate Vacuum 30Pa; Capable of rapidly reaching below 120Pa from atmospheric state within 120 seconds
Inflation Pressure Adjustable -100KPa to 0KPa
Inflation from -100KPa to 0KPa within 10 seconds
Cooling Section Cooling
Detailed Features
Industrial Fully Automatic MDF Thermal Film Laminating Machine vacuum system Industrial Fully Automatic MDF Thermal Film Laminating Machine control system Industrial Fully Automatic MDF Thermal Film Laminating Machine pressure system Industrial Fully Automatic MDF Thermal Film Laminating Machine system overview
  • Available in single layer, double layer, dual chamber, and triple chamber configurations to meet various customer needs
  • Customized in-feed and out-feed tables configured according to different lamination requirements and space needs
  • Advanced vacuum system with rapid evacuation capabilities
  • Precision temperature control system with ±1°C accuracy
  • Efficient section cooling for optimal production cycles
Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 1 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 2 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 3 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 4 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 5
Manufacturer Profile
Beijing X-Solar Energy Company headquarters X-Solar Energy manufacturing facility X-Solar Energy production line X-Solar Energy research and development X-Solar Energy global operations

Beijing X-Solar Energy Co., Ltd. was founded in 2020 and is headquartered in Beijing. We are a science and technology innovative energy enterprise specializing in future cell R&D, flexible photovoltaic modules, building photovoltaic module production, high-end equipment manufacturing, production line delivery, and AI-CITY智慧 energy management services.

In July 2023, our first demonstration factory, Jiangsu X-Solar Green-building Technology Co., Ltd., was established in Jiangyin CNBM Jetion Industrial Park. Our wholly-owned equipment company delivered the world's first "three-in-one" automatic production line for the Jiangyin base, compatible with production of X-Solar Light shadow series (flexible PV modules), X-Solar Light rhyme series (building PV tile modules), and X-Solar Light Curtain series (building PV wall modules).

In 2024, we expanded with regional centers in Shanghai and Guangzhou, established the Hong Kong X-Solar Future Energy Research Institute, and overseas sales companies in Australia, Italy, Germany, Saudi Arabia, and Argentina. Our global布局 provides sustainable energy products and services worldwide, contributing to carbon neutrality and carbon peak goals.

Exhibition Display
X-Solar Energy exhibition display 1 X-Solar Energy exhibition display 2
Frequently Asked Questions
FAQ about Industrial MDF Thermal Film Laminating Machine
Operation and Usage
Q: What preparations do I need to make when using a laminating machine for the first time?
A: Carefully read the user manual to understand operation methods and parameter settings. Check equipment for damage and ensure all components are securely connected. Conduct power-on and ventilation trial runs. Use standard testing materials for trial production to familiarize yourself with the operation process and observe component quality.
Q: How to set hot pressing parameters such as temperature, pressure, and time?
A: Set parameters through the device's control system interface. Enter required temperature values, pressure settings based on module size and process requirements, and hot pressing time. The system will control the entire hot pressing process according to your settings.
Q: What are the precautions for placing and removing photovoltaic module materials?
A: Ensure all material layers are laid flat in correct order without debris. Operate quickly to minimize exposure time. When removing components, wait for sufficient cooling to safe temperatures and handle carefully to prevent damage.
Testing and Quality Control
Q: How to determine whether photovoltaic module quality is qualified?
A: Inspect visually for bubbles, delamination, or adhesive film overflow. Use professional testing equipment to check electrical parameters including open circuit voltage, short circuit current, and fill factor. Use EL testers to detect internal hidden cracks and defects.
Q: If bubbles appear in produced photovoltaic modules, what could be the problem?
A: Possible vacuum system malfunction including insufficient suction, air leakage, or poor valve sealing. Could also be inaccurate temperature control causing poor adhesive film melting, or material quality issues such as moisture in adhesive film.
Maintenance and Upkeep
Q: What are the daily maintenance tasks for the laminating machine?
A: Clean equipment exterior regularly. Clean residual adhesive film and debris from working chamber. Check operation status of heating plates, vacuum pumps, and sensors for abnormal sounds or overheating. Monitor operating parameters for deviations.
Q: How often should comprehensive maintenance be performed?
A: Perform comprehensive maintenance every month or quarter depending on equipment manual and usage frequency. Includes deep cleaning, precision calibration of key components, replacement of worn parts, and relubrication.
Q: How to maintain the heating plate?
A: Regularly clean residual adhesive film and impurities using suitable tools to avoid scratching surfaces. Check heating performance for local lack of heat or uneven temperature. Apply protective measures during long-term storage.
Troubleshooting
Q: What could cause the heating plate not to heat up after startup?
A: Power connection issues such as broken cords or loose plugs. Damaged heating elements like burned resistance wires. Control system errors or malfunctioning electrical components preventing power supply to heating plate.
Q: How to troubleshoot slow vacuum pumping speed?
A: Check vacuum pump operation and motor function. Inspect vacuum pipelines for blockages or leaks. Verify vacuum valve is fully open and functioning properly. Check vacuum pump capacity for wear or poor sealing.
Q: What should be done if pressure system displays unstable pressure?
A: Check pressure sensor accuracy and functionality. Inspect pressure regulating valves for blockages or damage. Check entire pressure system for leaks and perform sealing treatment if needed.
Production Efficiency
Q: How to improve production efficiency?
A: Optimize operation processes to reduce material handling and equipment waiting times. Precisely tune equipment parameters to shorten hot pressing time while maintaining quality. Regular maintenance ensures optimal operating condition and reduces downtime.
Q: Is there significant efficiency difference among different machine models?
A: Yes, depending on design capacity, heating and pressure system performance, and automation level. Large, highly automated machines with fast heating and pressing speeds process more components faster than smaller, manually operated models.
Safety
Q: What safety precautions should be taken?
A: Ensure operators receive professional training and know emergency procedures. Never insert hands or body parts into working chamber during operation. Regularly check equipment grounding. Implement protective measures and warning signs for high-temperature and high-pressure components.
Q: What safety protection devices are included?
A: High temperature alarm devices that stop heating when exceeding safe limits. Pressure overload protection that cuts pressure source when exceeding safe range. Emergency stop buttons for quick shutdown during emergencies.
Scope of Application
Q: Can laminating machines be used for all types of photovoltaic modules?
A: Most common photovoltaic modules including crystalline silicon and thin film types can be produced. For special structures and materials, parameter adjustments or specialized fixtures may be required, but basic principles remain similar.
Q: What adjustments are needed for different module specifications?
A: Adjust pressure settings according to component size to avoid damage or weak bonding. Modify heating plate temperature distribution for uniform heating of large components. Adjust hot pressing time based on component thickness to ensure proper adhesive film melting and solidification.
Equipment Selection
Q: What factors should be considered when choosing a laminating machine?
A: Consider production scale and capacity requirements. Evaluate precision control capabilities for temperature, pressure, and time parameters. Assess equipment stability and reliability. Consider maintenance costs, operation convenience, and after-sales service quality.
Q: What are the advantages of imported vs. domestic laminating machines?
A: Imported machines may offer advanced technology with excellent precision control and stability, suitable for high-quality production scenarios, but typically have higher prices and longer maintenance part supply cycles. Domestic machines provide high cost-effectiveness for conventional production needs with faster after-sales response and lower maintenance costs, though may have gaps in high-end technology.
Products
PRODUCTS DETAILS
Automatic Solar Module Laminating Machine with AC380V 3-Phase 5-Wire and 2400 mm X 5500 mm Effective Pressure Area
MOQ: 1 SET
Price: 43000 USD
Standard Packaging: Wooden box
Delivery Period: 30 days after payment
Payment Method: 30% down payment,70% balance payment
Supply Capacity: 300MW per year
Detail Information
Place of Origin
China
Brand Name
X-SOLAR
Certification
CE/CQC/3C
Model Number
XSCM-520-T
Model NO.:
Lamination Machine
Classification:
Pre-Coating Laminating Machine
Application:
Aluminium Plate, Film Material, Soft Board, Solar Module
Driven Type:
Electric
Automatic Grade:
Automatic
Membrane Material:
Heat Transfer Film
Plastic Film Mulching Modes:
Hot Laminating
Performance:
Anti Wrinkle
Effective Pressure Area:
2400 Mm X 5500 Mm X 2
Total Weight:
Approximately 49t
Power Supply:
AC380V, 3-Phase 5-Wire
Power:
Installed Total Power 195kw,Normal Operating Power
Compressed Air:
Pressure 0.7~0.8MPa, Compressed Air Flow Rate: 100
Cooling Water:
Pressure 0.2~0.3MPa, Flow Rate 2060L/Min (Includin
Temperature:
Temperature Uniformity1.5
Transport Package:
Wooden Box
Specification:
27970 Mm X 3300 Mm X 2540 Mm
Trademark:
X-solar
Origin:
China Jiangyin
HS Code:
8439200000
Production Capacity:
500 Pieces Per Year
Minimum Order Quantity:
1 SET
Price:
43000 USD
Packaging Details:
Wooden box
Delivery Time:
30 days after payment
Payment Terms:
30% down payment,70% balance payment
Supply Ability:
300MW per year
Highlight

Automatic Solar Module Laminating Machine

,

AC380V 3-Phase 5-Wire Solar Module Laminating Machine

,

2400 mm X 5500 mm Effective Pressure Area Thermal Film Laminating Machine

Product Description
Industrial MDF Thermal Film Laminating Machine Automatic Flat Tile Laminating Machine
Solar Module Lamination Machine

Industrial MDF Thermal Film Sheet Hot Press Dry Solar Module Production Line Flat Tile Laminating Machine for Lamination

Industrial Fully Automatic MDF Thermal Film Laminating Machine operational view Industrial Fully Automatic MDF Thermal Film Laminating Machine side view Industrial Fully Automatic MDF Thermal Film Laminating Machine detailed components

This machine operates based on the principle of hot-pressing technology. Multiple layers of materials including photovoltaic cells, glass, backsheets, and encapsulation films are placed in the working chamber. Through precise temperature and pressure application by upper and lower heating plates maintained for specific periods, the encapsulation film melts and flows to fill gaps between material layers. After cooling and solidification, all layers bond tightly together, forming complete and well-sealed photovoltaic modules.

Technical Specifications
Industrial Fully Automatic MDF Thermal Film Laminating Machine technical diagram Industrial Fully Automatic MDF Thermal Film Laminating Machine parameter chart
Product Parameter Data
Effective Pressure Area 2400 mm x 5500 mm x 2
Overall Dimensions 27970 mm x 3300 mm x 2540 mm
Total Weight Approximately 49T
No. of Main Busbars Main Busbar Compatibility: 10-20BB
Power Supply AC380V, 3-phase 5-wire
Temperature Temperature Uniformity ±1.5°C, Control Accuracy ±1°C, Control Range 30°C - 180°C
Power Average Power: 37W Peak Power 45 kW
Ultimate Vacuum 30Pa; Capable of rapidly reaching below 120Pa from atmospheric state within 120 seconds
Inflation Pressure Adjustable -100KPa to 0KPa
Inflation from -100KPa to 0KPa within 10 seconds
Cooling Section Cooling
Detailed Features
Industrial Fully Automatic MDF Thermal Film Laminating Machine vacuum system Industrial Fully Automatic MDF Thermal Film Laminating Machine control system Industrial Fully Automatic MDF Thermal Film Laminating Machine pressure system Industrial Fully Automatic MDF Thermal Film Laminating Machine system overview
  • Available in single layer, double layer, dual chamber, and triple chamber configurations to meet various customer needs
  • Customized in-feed and out-feed tables configured according to different lamination requirements and space needs
  • Advanced vacuum system with rapid evacuation capabilities
  • Precision temperature control system with ±1°C accuracy
  • Efficient section cooling for optimal production cycles
Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 1 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 2 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 3 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 4 Industrial Fully Automatic MDF Thermal Film Laminating Machine component detail 5
Manufacturer Profile
Beijing X-Solar Energy Company headquarters X-Solar Energy manufacturing facility X-Solar Energy production line X-Solar Energy research and development X-Solar Energy global operations

Beijing X-Solar Energy Co., Ltd. was founded in 2020 and is headquartered in Beijing. We are a science and technology innovative energy enterprise specializing in future cell R&D, flexible photovoltaic modules, building photovoltaic module production, high-end equipment manufacturing, production line delivery, and AI-CITY智慧 energy management services.

In July 2023, our first demonstration factory, Jiangsu X-Solar Green-building Technology Co., Ltd., was established in Jiangyin CNBM Jetion Industrial Park. Our wholly-owned equipment company delivered the world's first "three-in-one" automatic production line for the Jiangyin base, compatible with production of X-Solar Light shadow series (flexible PV modules), X-Solar Light rhyme series (building PV tile modules), and X-Solar Light Curtain series (building PV wall modules).

In 2024, we expanded with regional centers in Shanghai and Guangzhou, established the Hong Kong X-Solar Future Energy Research Institute, and overseas sales companies in Australia, Italy, Germany, Saudi Arabia, and Argentina. Our global布局 provides sustainable energy products and services worldwide, contributing to carbon neutrality and carbon peak goals.

Exhibition Display
X-Solar Energy exhibition display 1 X-Solar Energy exhibition display 2
Frequently Asked Questions
FAQ about Industrial MDF Thermal Film Laminating Machine
Operation and Usage
Q: What preparations do I need to make when using a laminating machine for the first time?
A: Carefully read the user manual to understand operation methods and parameter settings. Check equipment for damage and ensure all components are securely connected. Conduct power-on and ventilation trial runs. Use standard testing materials for trial production to familiarize yourself with the operation process and observe component quality.
Q: How to set hot pressing parameters such as temperature, pressure, and time?
A: Set parameters through the device's control system interface. Enter required temperature values, pressure settings based on module size and process requirements, and hot pressing time. The system will control the entire hot pressing process according to your settings.
Q: What are the precautions for placing and removing photovoltaic module materials?
A: Ensure all material layers are laid flat in correct order without debris. Operate quickly to minimize exposure time. When removing components, wait for sufficient cooling to safe temperatures and handle carefully to prevent damage.
Testing and Quality Control
Q: How to determine whether photovoltaic module quality is qualified?
A: Inspect visually for bubbles, delamination, or adhesive film overflow. Use professional testing equipment to check electrical parameters including open circuit voltage, short circuit current, and fill factor. Use EL testers to detect internal hidden cracks and defects.
Q: If bubbles appear in produced photovoltaic modules, what could be the problem?
A: Possible vacuum system malfunction including insufficient suction, air leakage, or poor valve sealing. Could also be inaccurate temperature control causing poor adhesive film melting, or material quality issues such as moisture in adhesive film.
Maintenance and Upkeep
Q: What are the daily maintenance tasks for the laminating machine?
A: Clean equipment exterior regularly. Clean residual adhesive film and debris from working chamber. Check operation status of heating plates, vacuum pumps, and sensors for abnormal sounds or overheating. Monitor operating parameters for deviations.
Q: How often should comprehensive maintenance be performed?
A: Perform comprehensive maintenance every month or quarter depending on equipment manual and usage frequency. Includes deep cleaning, precision calibration of key components, replacement of worn parts, and relubrication.
Q: How to maintain the heating plate?
A: Regularly clean residual adhesive film and impurities using suitable tools to avoid scratching surfaces. Check heating performance for local lack of heat or uneven temperature. Apply protective measures during long-term storage.
Troubleshooting
Q: What could cause the heating plate not to heat up after startup?
A: Power connection issues such as broken cords or loose plugs. Damaged heating elements like burned resistance wires. Control system errors or malfunctioning electrical components preventing power supply to heating plate.
Q: How to troubleshoot slow vacuum pumping speed?
A: Check vacuum pump operation and motor function. Inspect vacuum pipelines for blockages or leaks. Verify vacuum valve is fully open and functioning properly. Check vacuum pump capacity for wear or poor sealing.
Q: What should be done if pressure system displays unstable pressure?
A: Check pressure sensor accuracy and functionality. Inspect pressure regulating valves for blockages or damage. Check entire pressure system for leaks and perform sealing treatment if needed.
Production Efficiency
Q: How to improve production efficiency?
A: Optimize operation processes to reduce material handling and equipment waiting times. Precisely tune equipment parameters to shorten hot pressing time while maintaining quality. Regular maintenance ensures optimal operating condition and reduces downtime.
Q: Is there significant efficiency difference among different machine models?
A: Yes, depending on design capacity, heating and pressure system performance, and automation level. Large, highly automated machines with fast heating and pressing speeds process more components faster than smaller, manually operated models.
Safety
Q: What safety precautions should be taken?
A: Ensure operators receive professional training and know emergency procedures. Never insert hands or body parts into working chamber during operation. Regularly check equipment grounding. Implement protective measures and warning signs for high-temperature and high-pressure components.
Q: What safety protection devices are included?
A: High temperature alarm devices that stop heating when exceeding safe limits. Pressure overload protection that cuts pressure source when exceeding safe range. Emergency stop buttons for quick shutdown during emergencies.
Scope of Application
Q: Can laminating machines be used for all types of photovoltaic modules?
A: Most common photovoltaic modules including crystalline silicon and thin film types can be produced. For special structures and materials, parameter adjustments or specialized fixtures may be required, but basic principles remain similar.
Q: What adjustments are needed for different module specifications?
A: Adjust pressure settings according to component size to avoid damage or weak bonding. Modify heating plate temperature distribution for uniform heating of large components. Adjust hot pressing time based on component thickness to ensure proper adhesive film melting and solidification.
Equipment Selection
Q: What factors should be considered when choosing a laminating machine?
A: Consider production scale and capacity requirements. Evaluate precision control capabilities for temperature, pressure, and time parameters. Assess equipment stability and reliability. Consider maintenance costs, operation convenience, and after-sales service quality.
Q: What are the advantages of imported vs. domestic laminating machines?
A: Imported machines may offer advanced technology with excellent precision control and stability, suitable for high-quality production scenarios, but typically have higher prices and longer maintenance part supply cycles. Domestic machines provide high cost-effectiveness for conventional production needs with faster after-sales response and lower maintenance costs, though may have gaps in high-end technology.