Sanwich Fracture Glass Biaxial Fabric , PP Core Layer And Chopped Roving For Fillling

Place of Origin CHINA
Certification ISO
Model Number ELTPM600/180/150
Minimum Order Quantity 500kgs
Price USD
Packaging Details Wrapped up with plastic film first and then packed in woven bag. FInally palletized.
Delivery Time 7 DAYS
Supply Ability 50MT A MONTH

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Product Details
Material Fiberglass & PP Color White
Specification 930g/m2 Width 200~2600mm
Performance Good Filling Resin Type Unsaturated Resin, Vinlyester Resin, Epoxy Resin, Etc.
Application RTM, Vacuum Molding, Injection Molding PP Thickness 3~5mm
Mat Thickness 4~5mm
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Sanwich Fracture Glass Biaxial Fabric

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Sanwich Fracture Fiberglass Core Mat

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PP Core Glass Biaxial Fabric

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Product Description

IFiberglass core mat is a fiberglass felt made by stacking multiple layers of fiber materials and disposably stitching them together in a polyester coil structure. The middle layer is made of PP non-woven core material, and the upper and lower surfaces generally have chopped strands or biaxial fabric layer.

 

Product Features

 

  • Sanwich fracture can enhance the strength and thickness of products.
  • Good permeability and solidifying fast;
  • Good mechanical properties;
  • Good covering and filling performance;
  • Suitable for products of various thickness;      

 

Specification 

Product NO.

Overall Weight

(g/m2)

0/90°Biaxial layer (g/m2)

Chopped roving layer

(g/m2)

PP core layer (g/m2)

Chopped roving layer

(g/m2)

width (mm)
ELTMP600/180/150 930 600 / 180 150 200~2600
ELTMP600/180/300 1080 600 / 180 300 200~2600
ELTMP600/180/600 1380 600 / 180 600 200~2600
ELTMP300/180/300 780 / 300 180 300 200~2600
ELTMP450/180/450 1080 / 450 180 450 200~2600
ELTMP600/180/600 1380 / 600 180 600 200~2600

 

Sanwich Fracture Glass Biaxial Fabric , PP Core Layer And Chopped Roving For Fillling 0                                                                                                                                            

Product Application

  • It is compatible with reinforced unsaturated polyester resin, vinylester resin, epoxy resin, phenolic resin and polyurethane resin etc.
  • Forming processes includiing RTM, vacuum molding, compression molding, injection molding and SRIM;
  • The typical end-use applications are FRP boat, wind turbine cabin, automotive and train components and flat  profiles.