After the impulse project, we successfully transferred the same design parameters for the S-shaped wave deformation to this innovative fin. This particular movement allows a significant accumulation of elastic potential energy in the blade, which is released in the return kick, transforming into thrust. The thermoplastic rubber used for the water channeling guides is extremely flexible and soft, so as not to compromise the intrinsic characteristics of the blade.
Characteristics:
- Extremely thin and light blade in a mix of elastomerized technopolymers developed by Cressi
- Stringer made of technopolymers with high flexural modulus elastomeric loads
- 29 degree blade/strike angle
- Removable modular fin
- Superior performance
- Superior comfort
- Self-adjusting foot pocket
After the impulse project, we successfully transferred the same design parameters for the S-shaped wave deformation to this innovative fin. This particular movement allows a significant accumulation of elastic potential energy in the blade, which is released in the return kick, transforming into thrust. The thermoplastic rubber used for the water channeling guides is extremely flexible and soft, so as not to compromise the intrinsic characteristics of the blade.
Characteristics:
- Extremely thin and light blade in a mix of elastomerized technopolymers developed by Cressi
- Stringer made of technopolymers with high flexural modulus elastomeric loads
- 29 degree blade/strike angle
- Removable modular fin
- Superior performance
- Superior comfort
- Self-adjusting foot pocket