A43B3/248

FLEXIBLE SHOE
20230189916 · 2023-06-22 ·

A flexible shoe includes an under sole, a foot bed, a first over-foot portion, and a second over-foot portion. The under sole is formed of ballistic nylon. The foot bed is arranged on an upper surface of the under sole. The first over-foot portion is attached to the under sole and is configured to flexibly overly an instep of a foot of a user forward of an ankle of the user. The second over-foot portion is configured to flexibly wrap around a heel of the user rearward of the ankle of the user and includes a tab extending toward and coupled a heel portion of the under sole. The under sole, the first over-foot portion, and the second over-foot portion define a cavity configured to enclose the foot of the user. The foot bed is positioned entirely within the cavity.

HINGED FOOTWEAR SOLE STRUCTURE FOR FOOT ENTRY AND METHOD OF MANUFACTURING
20220369757 · 2022-11-24 · ·

A sole structure for an article of footwear comprises a unitary midsole having a first portion and a second portion rearward of the first portion. A bottom surface of the unitary midsole defines a groove extending from a medial side to a lateral side of the unitary midsole, and a top surface of the unitary midsole defines a slit disposed over the groove and extending from the medial side to the lateral side. The unitary midsole forms a living hinge at the groove and the slit, with the living hinge connecting the first portion to the second portion so that the first portion and the second portion are selectively pivotable relative to one another at the living hinge between a first orientation and a second orientation. The groove is wider in the first orientation than in the second orientation, and the slit is wider in the second orientation.

RAPID-ENTRY FOOTWEAR WITH REBOUNDING FIT SYSTEM

A rapid-entry and rebounding fit shoe having one or both of a rapid-entry heel element and a rapid-entry tongue element and both snap back for fit. The rapid-entry shoe directs a user's foot into or otherwise accommodates a user's foot with respect to, a shoe opening, and thereafter secures a rear portion of rapid-entry shoe about a user's heel as well as forefoot.

SHOE HAVING A TRANSVERSAL AIR PASSAGEWAY AND MANUFACTURING METHOD THEREOF

Shoe having a transversal air passageway comprising a shoe sole (4) and an upper (1) and a lower (3) pliable parts for enclosing a foot of the user of the shoe, wherein the shoe further comprises a peripheral band (2) formed in the shape of a closed line and formed in a resilient material, wherein the upper and lower parts are attached by their outer edges to opposing faces of said peripheral band along its length, and wherein the lower part is attached to the shoe sole in both the front and back parts of the shoe, but not in a part between the front and back parts of the shoe, such that a transversal air passageway (5) is formed from the medial part to the lateral part of the shoe, between the front and the back parts of the shoe, and between the shoe sole and the lower part.

REAR ACCESS ARTICLE OF FOOTWEAR WITH MOVABLE HEEL PORTION

An article of footwear comprises a sole structure, and an upper including a front section and a rear section. The front section is fixed to a forefoot region of the sole structure and partially defines a foot-receiving cavity. The rear section is operatively secured to the sole structure at least partially rearward of the front section, and includes medial and lateral wings. A medial set of magnets includes at least one front medial magnet secured to a medial side of the front section and at least one rear medial magnet secured to the medial wing. A lateral set of magnets includes at least one front lateral magnet secured to a lateral side of the front section and at least one rear lateral magnet secured to the lateral wing. The rear section is movable relative to the front section between an access position and a use position.

PORTABLE INFLATABLE FOLDABLE SHOES
20170224054 · 2017-08-10 ·

A portable inflatable foldable shoe, including an inflatable shoe-shaped soft bag and solid bearing blocks, where the inflatable shoe-shaped soft bag is of a hollow cavity structure and includes a sole and a vamp; more than two solid bearing blocks are arranged, the sole is divided into a middle supporting cavity and a supporting folding cavity by the solid bearing blocks, the region connected with the two regions of a front sole region and a heel region is the middle supporting cavity, the region connected with the adjacent bearing blocks is the supporting folding cavity, each solid bearing block has upper, lower, left and right surfaces, and is tightly adhered to the corresponding inner wall of the shoe-shaped cavity of the sole, and each solid bearing block is provided with more than one air passage that run through the entire block.

FLEXIBLE MANNEQUIN SHOES AND METHOD FOR MANUFACTURING SAME
20220039509 · 2022-02-10 ·

Proposed are flexible mannequin shoes and a method for manufacturing same. The flexible mannequin shoes of the present invention are characterized by comprising: a front guide member having a structure for surrounding a toe portion of a mannequin foot; a rear guide member having a structure for surrounding a heel portion of the mannequin foot; and a cover member having a structure for covering portions including the front guide member and the rear guide member which are inserted over the mannequin foot. According to the present invention, the practical effect of making the flexible mannequin shoes look like real shoes when viewed from the outside can be provided, and the shoes can be worn on various shoes and new mannequin feet by changing the cover member and the guide member.

CO-MOLDED 3D ELEMENTS

Describes are support elements for a sole of a shoe, in particular a sports shoe, a sole and a shoe with such a support element, as well as a method for the manufacture of a support element. As examples, the support element includes a first partial member formed of a first material, and a second partial member formed of a second material. The first partial member is mechanically joined to the second partial member in a connection region, wherein the connection region is configured to allow the first partial member to rotate or slide relative to the second partial member. The first partial member, the second partial member, and the connection region can be co-molded and joined together in a single fabricating step.