Material

Our nets are manufactured from virgin High Density Polyethylene (HDPE) monofilaments.
Polyethylene is a polymer with a number of properties such as high strength-to-density ratio, high specific strength, resistant to various solvents, and to high ambient temperatures (120°C / 248°F for short periods). Through a combination of specific additives, they are stabilised against UV degradation, so that the nets can withstand adverse climatic conditions (excessive solar radiation, environmental dryness, etc.), maintaining their characteristics for the specified lifetime
Material

Our nets are manufactured from virgin High Density Polyethylene (HDPE) monofilaments.
Polyethylene is a polymer with a number of properties such as high strength-to-density ratio, high specific strength, resistant to various solvents, and to high ambient temperatures (120°C / 248°F for short periods). Through a combination of specific additives, they are stabilised against UV degradation, so that the nets can withstand adverse climatic conditions (excessive solar radiation, environmental dryness, etc.), maintaining their characteristics for the specified lifetime

Extrusion

The use of modern extruders with computerized process control allows the temperature, speed and pressure of the extrusion to be monitored. Its multi-hole die produces round cross-section yarns, which are then cooled in water. This yarn then undergoes a heating, stretching and annealing process that reduces its final diameter (0.2-0.3 mm) and at the same time dramatically increases its tensile strength.
Extrusion

The use of modern extruders with computerized process control allows the temperature, speed and pressure of the extrusion to be monitored. Its multi-hole die produces round cross-section yarns, which are then cooled in water. This yarn then undergoes a heating, stretching and annealing process that reduces its final diameter (0.2-0.3 mm) and at the same time dramatically increases its tensile strength.

Winding

Yarns are wound onto coils by means of a special tension-controlled grid. Once the coil reaches the desired length, it moves on to the next step.
Winding

Yarns are wound onto coils by means of a special tension-controlled grid. Once the coil reaches the desired length, it moves on to the next step.

Warping

Part of the monofilament yarns are transferred to a warp bar. This process is carried out by computerized processes that control the exact number of yarns needed, according to the specific net dimension required.
Warping

Part of the monofilament yarns are transferred to a warp bar. This process is carried out by computerized processes that control the exact number of yarns needed, according to the specific net dimension required.

Weaving

We use looms of different widths and technologies to weave the weft monofilament yarns with warp and weave meshes in different widths and weaves (flat weave, gauze, or its combination with Raffia), to reinforce edges and ends, to give it greater strength and durability.
Weaving

We use looms of different widths and technologies to weave the weft monofilament yarns with warp and weave meshes in different widths and weaves (flat weave, gauze, or its combination with Raffia), to reinforce edges and ends, to give it greater strength and durability.

End of the process

After quality inspection, the nets are cut and sewn to the measurements requested by the customer.
End of the process

After quality inspection, the nets are cut and sewn to the measurements requested by the customer.
