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公开(公告)号:US20220087359A1
公开(公告)日:2022-03-24
申请号:US17440140
申请日:2019-03-18
申请人: ASICS CORPORATION
发明人: Masanori SAKAMOTO , Kenta MORIYASU , Ayu BESSHO , Takayuki UEDA , Kenta NAKAYA , Masaki NAKAHARA
摘要: Provided is a shoe sole, wherein ventilation grooves recessed in the thickness direction of the shoe sole are formed in the upper surface part, the shoe sole has a forefoot portion that has an air intake port formed in at least one of a medial side wall and a lateral side wall in the side wall part to be in communication with the ventilation grooves and draw air from outside into the ventilation grooves, the shoe sole has a midfoot portion that has an air outlet port formed in at least one of the medial side wall and the lateral side wall to be in communication with the air intake port through the ventilation grooves and discharge air in the ventilation groove to the outside, and at least a part of the ventilation grooves constitutes an air intake groove extending obliquely rearward from the air intake port.
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公开(公告)号:US20230036575A1
公开(公告)日:2023-02-02
申请号:US17788235
申请日:2019-12-26
申请人: ASICS CORPORATION
发明人: Keita OZAWA , Shigeyuki MITSUI , Sho TAKAMASU , Kenta NAKAYA
IPC分类号: A43B23/26
摘要: A shoe tongue structure includes a first shoe tongue and a second shoe tongue arranged such as to cover an opening of an upper extending frontward from a foot insertion part. The first shoe tongue includes a first front end fixed to an edge of the opening and extends rearward from the first front end toward the lateral side of the foot insertion part. The second shoe tongue includes a second front end fixed to an edge of the opening and extends rearward from the second front end toward the medial side of the foot insertion part. The first front end is positioned on the medial side with respect to the second front end.
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公开(公告)号:US20230000206A1
公开(公告)日:2023-01-05
申请号:US17780474
申请日:2020-06-24
申请人: ASICS CORPORATION
发明人: Genki HATANO , Norihiko TANIGUCHI , Ayu BESSHO , Jun TAKEI , Kenta NAKAYA
摘要: A shock absorber has a first and second end surfaces opposite to each other in an axial direction, and a plurality of connection surfaces. The first end surface is an N-sided polygon (N is an integer of 3 or more and the second end surface is an M-sided polygon (M is an integer of 4 or more and more than N). (M−N) vertices are provided at intermediate positions in the axial direction on a circumferential surface defined by the plurality of connection surfaces. From the vertices, one first ridgeline reaches one vertex of the first end surface and two second ridgelines reach a corresponding one of two vertices of the second end surface. The remaining vertices are connected to each other by (2×N−M) third ridgelines. The first ridgeline, the second ridgelines, and the third ridgelines define the plurality of connection surfaces.
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