Aluminum Sandwich Panels for Solar Backsheets

Home » Sandwich Panels » PET Foam Core Panel Series

Specifications

  • Size: Customized.
  • Thickness: 3.0-10mm.
  • Area weight: kg/m².
  • Skin material: 5051/5051 aluminum alloy sheet.
  • Core material: PET (polyethylene terephthalate) foam. (Density: 100kg/m³)

Material Requirements for Solar Backsheets

As a critical structural layer of photovoltaic modules, solar backsheets are exposed to long-term outdoor environments and therefore require materials with reliable and stable performance.

  • High structural rigidity

Providing stable support for PV modules and preventing deformation during transportation, installation, and long-term operation.

  • Lightweight design

Reducing overall module weight to lower installation loads and improve installation efficiency, especially for rooftop and distributed PV systems.

  • Excellent weather resistance

Long-term resistance to UV radiation, temperature cycling, humidity, and heat, ensuring stable performance over a service life of more than 25 years.

  • Good dimensional stability

Maintaining shape and flatness under temperature variations without warping or cracking.

  • Environmental friendliness and recyclability

Aligning with the sustainability requirements of the renewable energy industry through recyclable and eco-friendly materials.

Solar Panel Structural Diagram

Solar Backsheet Structural Diagram

Advantages of PET Foam Core Aluminum Sandwich Panels for Solar Backsheets

  • The sandwich structure formed by aluminum skins and a PET foam core provides excellent bending stiffness and enhances the overall mechanical strength of PV modules.
  • Achieves significant weight reduction while maintaining high strength, enabling lightweight solar module designs.
  • Aluminum face sheets offer strong resistance to UV exposure and corrosion, while the PET foam core demonstrates excellent durability under humid and thermal cycling conditions.
  • Both aluminum and PET materials are recyclable, supporting sustainable manufacturing and green energy development.
  • Suitable for cutting, drilling, bonding, and other processing methods, allowing easy integration into existing photovoltaic module structures.