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The technicality and precision of the work of a 3D printer is of the order of ± 0,1 mm. This allows the correct distribution of material loads (without generating waste), the efficiencye of fracture primers of the printed object and the structural study RDM (Resistance of Materials) made to measure, at the weak points detected on a board.

Studies in RDM and deformation of surfboard structures are essential to the challenges of validating the performance and mechanical resistance of our surfboards.

3D printing technology offers the possibility of specifically reinforcing areas that experience significant bending and torsion stress on a surfboard. Unlike a one-piece design like that of a polystyrene core, 3D printing makes it possible to create an internal structure in the form of a lattice made up of empty cavities. This configuration gives the board greater resistance by preserving it from dents associated with regular use.

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The technicality and precision of the work of a 3D printer is of the order of ± 0,1 mm. This allows the correct distribution of material loads (without generating waste), the efficiencye of fracture primers of the printed object and the structural study RDM (Resistance of Materials) made to measure, at the weak points detected on a board.

Studies in RDM and deformation of surfboard structures are essential to the challenges of validating the performance and mechanical resistance of our surfboards.

3D printing technology offers the possibility of specifically reinforcing areas that experience significant bending and torsion stress on a surfboard. Unlike a one-piece design like that of a polystyrene core, 3D printing makes it possible to create an internal structure in the form of a lattice made up of empty cavities. This configuration gives the board greater resistance by preserving it from dents associated with regular use.

The technicality and precision of the work of a 3D printer is of the order of ± 0,1 mm. This allows the correct distribution of material loads (without generating waste), the efficiencye of fracture primers of the printed object and the structural study RDM (Resistance of Materials) made to measure, at the weak points detected on a board.

Studies in RDM and deformation of surfboard structures are essential to the challenges of validating the performance and mechanical resistance of our surfboards.

3D printing technology offers the possibility of specifically reinforcing areas that experience significant bending and torsion stress on a surfboard. Unlike a one-piece design like that of a polystyrene core, 3D printing makes it possible to create an internal structure in the form of a lattice made up of empty cavities. This configuration gives the board greater resistance by preserving it from dents associated with regular use.

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