Geogrids and geotextiles for geotechnics
GEOGRIDS AND GEOTEXTILES FOR GEOTECHNICS
Geomatrix high-tenacity polyester geosynthetics are high-performance materials specially designed to providetechnical advantages and economical, in the reinforcement of soils in the formation of earth structures. This solution has been positioned thanks to its ease of application for projects with difficult access, compressible foundation soils, low bearing capacity and susceptible to erosion, among others.
The inclusion of layers of geogrids and reinforcing geotextiles between layers of compacted soil increases the shear resistance of the assembly, achieving geotechnically stable structures that are resistant to hydrodynamic conditions.
WALLS IN REINFORCED SOIL
The walls in reinforced soil reinforced with geogrids FORGRID UX or geotextiles FORTEX BX They are an efficient alternative to optimize the use of full materials and available areas in infrastructure projects.
TIP: Reinforced soil walls can consider different types of loads and geometric conditions in their design, in addition to guaranteeing their stability in internal, external and global scenarios.
GEOGRIDS AND GEOTEXTILES FOR REINFORCEMENT
As a reinforcing element of a wall in reinforced soil, both geotextiles and geogrids can be incorporated, both generate the contribution required by the structure for its stability and containment conditions.
FORGRID UX GEOGRID
Geosynthetic formed by a regular network of elements integrally connected with openings that allow interlocking with the surrounding soil, rock, earth and other materials to provide reinforcement
GEOTEXTILE FORTEX BX
Fortex is a geotextile woven with fibers of the exclusive G5 Multifilament of high tenacity polyester (PET), characterized by high mechanical and hydraulic performance. It is ideal for reinforcing subgrade soils and granular layers in pavements, embankments and retaining structures in reinforced soil.
Its structure is defined by the weft insertion technique, which gives it the fastest response in tension to soil deformations and stability in hydraulic performance at any level of tension or confinement.