A sole board uses edge-to-center channel variation to provide forefoot flexibility while preserving support and stability.
A fluid-filled bladder uses segmented chambers and varied thickness to distribute forces across heel, mid-foot, and forefoot.
A pocketed bladder and flex-groove outsole balance cushioning, responsiveness, and flexibility for movement-specific foot support.
Fluid chambers and a strobel aperture provide targeted cushioning and movement support.
This insole varies stimulus intensity by foot region to preserve comfort while strengthening neuromuscular responses during gait.
The case uses polymer openings and stud-clear zones to balance plantar flexion, stiffness, weight, and bonding in cleated footwear.
Segmented cleat legs combine rigid and flexible engagement to counter rotation and anchor feet during a golf swing.
Through-going sole holes reduce weight and add flexibility while mating mold protrusions prevent seepage during secondary sole injection.
This case uses a dense field of bendable sole projections to transmit tactile and audio feedback during soccer ball contact.
Fibrous layers bond breathable footwear materials to foamed soles without adhesives.
Optical sensing measures substrate contours so layer thickness adapts during 3D printing, helping avoid uneven deposition and delamination.
Segmented fluid chambers and a cradle plate help distribute shock while preserving responsive support in the sole.
A woven soft layer, fiber-reinforced epoxy layer, and elastomeric bond provide flexible bending with stability and puncture resistance.
This footwear sole uses segmented holes and movable proprioceptive elements to distinguish contact and improve grip during ball handling.
A medial-foot groove and differentiated rigidity help disperse load while combining standing stability with impact absorption during cuts.
A 50 µm-plus non-foamed film reinforces foam shoe soles while preserving lightweight, shock-absorbing performance.