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    • 6. 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.
    • 8. 发明申请
    • SOLE STRUCTURE WITH PROPRIOCEPTIVE ELEMENTS AND METHOD OF MANUFACTURING A SOLE STRUCTURE
    • WO2018195387A1
    • 2018-10-25
    • PCT/US2018/028506
    • 2018-04-20
    • NIKE INNOVATE C.V.NIKE, INC.
    • CHEN, Yuchung K.MCLACHLAN, OliverRUSHBROOK, Thomas J.SMITH, Timothy J.
    • A43B13/14A43B13/18A43B7/24A43B13/12
    • A sole structure (10A, 10B, 10, 210A, 210, 21, 410, 510, 610) for an article of footwear (12, 212, 612) comprises a midsole body (14, 232, 32C, 32, 432, 43, 532) having a proximal surface (22A, 22, 27, 453, 639, 645, 80) and a distal surface (20, 23, 29, 483A, 483, 637, 643, 83). Proprioceptive elements (236, 36, 436, 536) may extend in the hole (234B, 34, 434) in the midsole body (14, 232, 32C, 32, 432, 43, 532), and translate toward the proximal surface (22A, 22, 27, 453, 639, 645, 80) in the holes (234A, 234B, 234, 34, 434, 621A, 633A, 634, 95A) upon a force directed along a central axis of the hole (234B, 34, 434) at a distal end (37, 38) of the proprioceptive elements (236, 36, 436, 536). In various embodiments, the holes (234A, 234B, 234, 34, 434, 621A, 633A, 634, 95A) may angle relative to vertical from the proximal surface (22A, 22, 27, 453, 639, 645, 80) to the distal surface (20, 23, 29, 483A, 483, 637, 643, 83), the holes (234A, 234B, 234, 34, 434, 621A, 633A, 634, 95A) may be defined by perforations (244) and the proprioceptive elements (236, 36, 436, 536) may be integral portions (236) of the midsole body (14, 232, 32C, 32, 432, 43, 532), or the midsole body (14, 232, 32C, 32, 432, 43, 532) may have a plurality of annular holes (234A, 234B, 234, 34, 434, 621A, 633A, 634, 95A) at the proximal surface (22A, 22, 27, 453, 639, 645, 80), and a plurality of annular recesses (434, 437, 457) in the distal surface (20, 23, 29, 483A, 483, 637, 643, 83), and a plurality of proprioceptive elements (236, 36, 436, 536), each centered in a different annular hole (234B, 34, 434) of the plurality of annular holes (234A, 234B, 234, 34, 434, 621A, 633A, 634, 95A). Methods of manufacturing articles of footwear (12, 212, 612) are described.
    • 9. 发明申请
    • WOVEN FOOTWEAR UPPER
    • 编织鞋面
    • WO2018089900A1
    • 2018-05-17
    • PCT/US2017/061322
    • 2017-11-13
    • NIKE INNOVATE C.V.NIKE, INC.
    • BELL, Thomas G.BRUCE, Robert M.CHEN, Yuchung KevinCHOI, Yoon JeongFARMER, Adam R.FOLEY, MeganMCLACHLAN, OliverYOO, James Y.
    • A43B1/00A43B23/02D03D1/00D03D15/04D03D15/08D03D15/00D03D13/00
    • D03D17/00A43B1/0009A43B1/04A43B23/0205A43B23/0225A43B23/0245A43B23/0265A43B23/027A43B23/042D03D1/00D03D9/00D03D13/004D03D15/0027D03D15/04D03D15/08D10B2331/04D10B2331/10D10B2501/043
    • Aspects of the present invention relate to a dynamic woven material (1200, 1300, 1400) that is capable of undergoing a dimensional change in response to an external stimulus. The dynamic woven material (1200, 1300, 1400) comprises a plurality of discrete woven cells (110, 1210, 1680, 1690, 920, 930), where each woven cell (111, 112, 113, 1810, 230, 240, 600) comprises a reactive region (1230, 130, 1330, 1430, 1812, 620) and a non-reactive region. The reactive region (1230, 130, 1330, 1430, 1812, 620) changes from a first physical state to a second physical state when the woven material (1200, 1300, 1400) is exposed to the external stimulus. The woven material (1200, 1300, 1400) may be formed with zonal stretch properties by varying the areas occupied by the reactive region (1230, 130, 1330, 1430, 1812, 620) and the non-reactive region in each woven cell (111, 112, 113, 1810, 230, 240, 600). For example, the bigger the area (10, 150, 152, 18) occupied by the reactive region (1230, 130, 1330, 1430, 1812, 620) in the woven cells (110, 1210, 1680, 1690, 920, 930) in a particular zone of the dynamic woven material (1200, 1300, 1400), the higher the level of stretch in the particular zone may be. Exemplary products manufactured from the dynamic woven material (1200, 1300, 1400) include, for example, articles of footwear (1700, 900).
    • 本发明的各方面涉及能够响应外部刺激而发生尺寸变化的动态织造材料(1200,1300,1400)。 动态织造材料(1200,1300,1400)包括多个离散织造单元(110,1210,1680,1690,920,930),其中每个织造单元(111,112,113,1810,230,240,600 )包括反应区域(1230,130,1330,1430,1812,620)和非反应区域。 当编织材料(1200,1300,1400)暴露于外部刺激时,反应区域(1230,130,1330,1430,1812,620)从第一物理状态变为第二物理状态。 编织材料(1200,1300,1400)可以通过改变每个织造单元中的反应区域(1230,130,1330,1430,1812,620)和非反应区域占据的面积而形成具有纬向拉伸性能 111,112,113,1810,230,240,600)。 例如,织造单元(110,1210,1680,1690,920,930)中的反应区域(1230,130,1330,1430,1812,620)占据的区域(10,150,152,18)越大, )在动态织造材料(1200,1300,1400)的特定区域中时,特定区域中的拉伸水平可能更高。 由动态织造材料(1200,1300,1400)制造的示例性产品包括例如鞋类物品(1700,900)。