Motorized fender assemblies eliminate manual deployment time by using a hull-matching cover and elastic cords to automatically extend and retract cushions.
Hydraulic actuators drive composite fenders between retracted and deployed positions, eliminating manual labor during docking maneuvers.
Interconnected pneumatic cylinders distribute fluid pressure to balance adsorptive force, preventing wheel detachment on uneven ferromagnetic surfaces.
An articulated fender with sliding bodies and shock absorbers mitigates impact forces during vessel movement.
Four-cable suspension with asymmetric geometry stabilizes the robot, eliminating swinging risks from two-cable systems while maintaining reliable operation.
Segmented fiberglass covers protect boat exteriors from debris while allowing removal to eliminate drag during operation.
A removable protective sleeve cushions a rigid cleaning pole against vessel surfaces while providing buoyancy to prevent sinking.
A lever assembly converts vertical watercraft motion into rotational power onshore, boosting generation efficiency while lowering fabrication costs.