Biaxial Glass Fabrics
Our biaxial glass fabric consists of two glass fibres sewn together in parallel at an angle of -45°/+45°, which gives it very high strength. Biaxial glass fabrics are mainly used in the manufacture of components that are subject to high tensile forces in the fibre direction, such as wind turbines.
- SAERTEX X-E-778 g/m² Cut-to-size sheet approx. 83 cm x 40 cm€1.00 *1 each | €1.00 / each* Incl. VAT excl. Shipping
- Item bundle
- -9%Triaxial glass fiber fabric, 2528 g/m², 5 cut pieces
RRP €3.93from €3.57 *5 each | €0.71 / each* Incl. VAT excl. Shipping
Our range of GRP fabric fibers is extremely diverse and offers a wide selection of options. We offer aramid fabric, tear-off fabric, carbon fabric, fiberglass mat, and roving fabric. For some applications, it is advisable to use complex fabric, which is a combination of fiberglass mat and roving fabric. When it comes to motorsports, we pay particular attention to lightweight construction and offer a wide selection of carbon fabrics, carbon fabrics, and carbon fabric tape. You can purchase GRP mats and resin from us, and we have also put together various epoxy resin sets and polyester resin sets for you.
Adaptability and redrapability:
Our biaxial glass fabric can be easily integrated into components and has excellent drapability. Another advantage is the redrapability of the fabric, which is ensured by the ability of the fibers to shift.
Biaxial glass fabric is widely used in the manufacture of GRP components that are exposed to high tensile forces in the fiber direction, such as wind turbines. This material consists of two parallel glass fibers that are stitched together at an angle of -45°/+45°. This arrangement achieves a particularly high level of strength.
One of the particular advantages of glass fiber is that it can be used to achieve a smooth and attractive surface during lamination. It can be processed with both polyester and epoxy resin.
Our biaxial glass fabric consists of two parallel glass fibers that are stitched together at an angle of -45°/+45°. This structure gives the material excellent load-bearing capacity. It is often used to manufacture components that are exposed to high tensile forces in the fiber direction, such as wind turbines.
The term “hybrid” refers to materials that consist of several types of structural fibers. It is possible to mix different types of fibers together, with most fiber blends containing a metallic component. This allows materials made from different combinations, such as glass and metal or plastic and metal, to be bonded together.
Our complex fabric construction consists of a layer of roving fabric weighing 600 g/m² and a layer of glass fiber mat weighing 300 g/m², which are sewn together. The upper side has the roving look and the underside has the look of glass fiber. This construction enables the rapid production of thick laminates with excellent mechanical properties.
Tear-off fabric is a fine-mesh net fabric that serves as an ideal base for laminating, sealing, or bonding work. It was specially developed for epoxy and polyester resins, which normally do not adhere well to the fabric. After curing, the tear-off fabric and the rest of the laminate can be easily separated from each other. The surface remains free of dust and dirt, eliminating the need for tedious sanding and removal of sanding dust.
Our roving fabrics are made of E-glass and are manufactured in plain weave. They are often used to reinforce glass mat laminates and are particularly well suited for the production of thick, stiff laminates. In addition, they are also versatile in container and pipeline construction as well as in mold making. In combination with polyester or epoxy resin, roving fabrics are an excellent choice for creating durable laminate applications.
Our high-quality glass filament fabric finish is produced using a weaving technique with continuous E-glass yarns. The fabric is then treated at high temperature for several hours before being treated with a dual-functional finish. This finish ensures that the fibers bond optimally with the resin. The result is a fabric with excellent impregnation properties.





