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    • 4. 发明申请
    • FOOT SUPPORT COMPONENTS FOR ARTICLES OF FOOTWEAR INCLUDING MULTIPLE FLEXIBLE PROJECTIONS AT THE GROUND-FACING SURFACE
    • WO2021092133A1
    • 2021-05-14
    • PCT/US2020/059051
    • 2020-11-05
    • NIKE INNOVATE C.V.NIKE, INC.
    • MCLACHLAN, OliverYETMAN, Krissy
    • A43B13/26A43B5/02
    • Sole structures (104, 404, 904, 954) have a ground-facing surface (210G) and an upper-facing surface (210U). These sole structures (104, 404, 904, 954) comprise a sole member (106, 406, 906, 956) made from one or more parts and including a base surface (106S), a medial side (106M), and a lateral side (106L). The sole member (106, 406, 906, 956) includes a first sole part and a projection field (200) engaged with or integrally formed with the first sole part. The projection field (200) comprises a plurality of projections (202) that extend beyond the base surface (106S) and have exposed free ends (202E). The plurality of projections (202) may include at least 20 projections (202) having a projection packing density of at least 4 projections (202) per square inch (0.62 projections (202) per square centimeter) in the projection field (202). A first subset of the plurality of projections (202) may have a length of at least 5 mm. At least a majority of the plurality of projections (202) in the projection field (200) readily bend under force applied by weight of a user of the sole structure (104, 404, 904, 954). The projection field (200) may be located at least partially in a central space (104S) defined between medial primary traction elements (110M) and lateral side primary traction elements (110L). Bending of the projections (202) under the weight of the user and help provide better "feel" for a ball, e.g., by transmitting force from the ball to the wearer's foot and providing audible feedback when contacting the ball.
    • 6. 发明申请
    • 충격흡수 및 미끄럼방지 신발
    • WO2020153511A1
    • 2020-07-30
    • PCT/KR2019/000934
    • 2019-01-23
    • 신원화성(주)
    • 김성심최춘근최도경
    • A43B13/18A43B13/26
    • 본 발명은, 바닥창(1)과; 상부가 개구되는 홈부(12)와, 상기 홈부(12)의 바닥면 중앙 부위에서 연장되어 상기 바닥창(1)의 하면을 관통하는 관통부(16)로 이루어지며, 상기 바닥창(1)에 형성되는 복수 개의 안치홈(10)과; 상기 홈부(12)에 안치되는 지지부(22)와, 상부가 개구되어 상기 지지부(22)의 중앙 부위에 일정 깊이로 형성되는 제1가이드부(24)와, 상기 제1가이드부(24)의 바닥면 중앙 부위에서 연장되며 상기 지지부(22)의 중앙 부위 하면을 관통하는 제2가이드부(26)로 이루어져, 상기 복수 개의 안치홈(10) 각각에 안치되는 지지체(20)와; 상기 제1가이드부(24)의 하측 부위에 걸리도록 구성되는 걸림부(32)와, 상기 걸림부(32)의 하면에서 연장 형성되는 출몰부(36)로 이루어지져, 상기 복수개의 지지체(20) 각각에 배치되는 출몰체(30)와; 상기 각 제1가이드부(24)의 상측 부위를 밀폐하며 결합되는 가압체(40)와; 상단 부위는 상기 가압체(40)의 하면과 밀착되고 하단 부위는 상기 출몰체(30)의 걸림부(32) 상면과 밀착되도록 배치되는 탄성체(50)와; 상기 바닥창(1)의 상면 부위에 결합되는 중창(2)을 포함하는 충격흡수 및 미끄럼방지 신발을 제공한다.
    • 9. 发明申请
    • NON-SLIP ARRANGEMENT FOR FOOTWEAR
    • WO2018172612A1
    • 2018-09-27
    • PCT/FI2018/050206
    • 2018-03-20
    • TAMKOSMO
    • KOSKINEN, Ismo
    • A43C15/14A43C15/06A43C15/08A43B13/26
    • A non-slip arrangement for footwear, comprising a) a lower (1) and upper (2) layer, and at least one non-slip element, such as a stud (5), fastened in relation to the upper layer (2). The non-slip element is arranged in a non-slip device opening (7) formed in the lower layer (1) and extending through said lower layer (1). The arrangement further comprises a shift element (3), which is adapted between the upper and lower layers (1, 2) to be moved between said layers and, in relation to them, from a first position to a second position and vice versa. The shift element (3) comprises shapes which in its first position settle in said three- dimensional shapes of the upper and/or lower layer (1, 2). The shapes of the shift element (3) are arranged to move the upper layer (2) farther from the lower layer (1) in said second position, thus widening the distance between the layers (1, 2). In the first position, the tip (8) of said at least one non-slip element extends through the non-slip device opening (7) to the side of the bottom surface (9) of the lower layer, and in the second position, said tip (8) of the non-slip element remains in the non-slip device opening (7). Both the upper and lower layer (1, 2) comprise three-dimensional shapes on the surface adapted in the direction of the other layer, so that the protrusion-like shapes of the upper layer (2) are shaped to fit in the recess-like shapes of the lower layer (1).