Basketball shoe sole with stress stabilizing function
By embedding a double-layer support plate into the basketball shoe and designing anti-rollover corners and anti-slip patterns on the sole, the problem of excessive deformation of the sole during basketball is solved, improving the stability and safety of the basketball shoe.
Patent Information
- Application Number
- CN202520291784.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-24
AI Technical Summary
Existing basketball shoe soles are unable to effectively adapt to the complex changes in the human foot during basketball, leading to excessive deformation, which reduces the athlete's stability and increases the risk of injury.
The shoe features a double-layered, specially shaped support plate design, combined with anti-rollover corners and anti-slip patterns on the outsole, optimizing the stress distribution on the basketball shoe sole and controlling deformation within a reasonable range.
By optimizing the structural design of the basketball shoe sole, the stability of the basketball shoe is improved, excessive deformation is reduced, and the probability of athlete injury is lowered.
Smart Images

Figure CN223730819U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sports shoes technical field especially relates to a basketball shoes sole with stress stability function. BACKGROUND
[0002] The existing basketball shoes sole improves the rigidity of the sole by placing the support plate in the inside, however, the human foot changes complexly and variously in the basketball game, needs to adapt the foot change through the basketball shoes sole, controls the deformation in the reasonable range, improves the stability of the foot, thereby reduces the injury probability of the athlete. Therefore, the utility model provides a basketball shoes sole with stress stability function, through embedding the double -layer special form support plate in the insole, combines the design of the anti -rollover angle and two anti -skid lines of the outsole, to optimize the stress of the basketball shoes sole, reduces the excessive deformation condition, thereby promotes the stability of the basketball shoes sole. SUMMARY
[0003] The utility model discloses a basketball shoes sole with stress stability function, the utility model discloses through embedding the double -layer special form support plate in the insole, combines the design of the anti -rollover angle and two anti -skid lines of the outsole, to optimize the stress of the basketball shoes sole, reduces the excessive deformation condition, thereby promotes the stability of the basketball shoes sole.
[0004] A basketball shoes sole with stress stability function, including upper layer support plate, insole, lower layer support plate and outsole, upper layer support plate, insole, lower layer support plate and outsole are sequentially stacked fixedly connected into an organic whole from top to bottom, the whole upper layer support plate is '' H '' shape, the upper surface of upper layer support plate is equipped with three longitudinal reinforcing bars, and three longitudinal reinforcing bars are embedded in the first groove in the upper surface of insole.
[0005] The insole is whole and has a front sole with widened thickness and a rear sole with a side wall around, four cross-section half-circle horizontal grooves are opened in the upper surface of the front sole, a first groove corresponding to the shape of the upper layer support plate is opened in the middle of the upper surface of the insole, a second groove corresponding to the shape of the lower layer support plate is arranged on the lower surface of the insole, a first protrusion corresponding to the shape of the positioning hole of the outer side vertical wall of the lower layer support plate is arranged on the middle of the outer side of the side wall of the insole, and a second protrusion corresponding to the shape of the two positioning holes of the outsole is arranged on the inner side of the rear end of the insole.
[0006] The lower layer support plate is integrally formed and embedded in the second groove on the lower surface of the insole, the horizontal plane projection of the lower layer support plate is in the shape of '' X'', the front end is bifurcated and crosses the strip structure, the bifurcated front end of the lower layer support plate is longer than the opposite side, a transverse part crosses the bifurcated front end and is connected with the outer side vertical wall, the outer side vertical wall of the lower layer support plate is in the shape of '' N'', the outer side vertical wall is connected with the extension part on the outer side of the middle of the lower layer support plate, and the position of the outer side vertical wall is determined by the upper edge of the anti-rollover angle of the outsole, the second groove and the first protrusion of the insole.
[0007] The lower surface of the outsole is mainly provided with anti-skid lines, and the front and rear metatarsal medial and lateral partial regions are provided with anti-skid lines; the outsole front metatarsal outer periphery is provided with an upturned side wall and an anti-rollover corner; the outsole middle inner side is provided with an upturn, and the position of the upturn corresponds to the second protrusion of the insole; the outer side vertical wall of the lower support plate is aligned with the upper edge of the anti-rollover corner; the outsole inner side wall opening is aligned with the second protrusion of the insole inner side.
[0008] The anti-skid lines of the outsole are mainly moire lines, and the front metatarsal and heel medial and lateral partial regions are provided with water waves.
[0009] The working principle of the utility model is as follows:
[0010] In use, the combination of the upper support plate, the insole, the lower support plate and the outsole controls the deformation of the basketball shoe sole caused by the human foot stretching, landing and twisting within a reasonable range, so that the stress stability function of the basketball shoe sole is realized. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 It is a three-dimensional schematic view of the utility model;
[0012] Figure 2 It is an exploded view of the utility model;
[0013] Figure 3 It is a three-dimensional schematic view of the insole of the utility model;
[0014] Figure 4 It is another perspective three-dimensional schematic view of the insole of the utility model;
[0015] Figure 5 It is a three-dimensional schematic view of the lower support plate of the utility model;
[0016] Figure 6 It is a three-dimensional schematic view of the outsole of the utility model;
[0017] Figure 7 It is another perspective three-dimensional schematic view of the outsole of the utility model. DETAILED DESCRIPTION
[0018] Please refer to the basketball shoe sole with stress stability function shown in FIG. 1 and Figure 2 The upper support plate 1, the insole 2, the lower support plate 3 and the outsole 4 are sequentially stacked and fixedly connected to become an integral whole from top to bottom; the upper support plate 1 is in the shape of "H" as a whole, and the upper surface of the upper support plate 1 is provided with three longitudinal reinforcing ribs embedded in the first groove 22 on the upper surface of the insole 2.
[0019] Please refer to the basketball shoe sole with stress stability function shown in FIG. 3 and Figure 4As shown, the midsole 2 is widened in the forefoot and has a side wall around the rear foot, and the thickness of the forefoot is thinner; four semicircular transverse grooves 21 are formed on the upper surface of the midsole 2 in the forefoot; a first recess 22 corresponding to the shape of the upper support plate 1 is formed on the upper surface of the midsole 2 in the middle part; a second recess 23 corresponding to the shape of the lower support plate 3 is formed on the lower surface of the midsole 2; a first protrusion 24 corresponding to the positioning hole of the outer side vertical wall 32 of the lower support plate 3 is formed on the outer side of the midsole 2; and a second protrusion 25 corresponding to the two positioning holes of the outer sole 4 is formed on the inner side of the rear end of the midsole 2.
[0020] As shown in Figure 5 As shown, the lower support plate 3 is integrally formed, and the horizontal plane projection of the lower support plate 3 embedded in the second recess 23 of the lower surface of the midsole 2 is in the shape of “X”, and the front end bifurcation intersects with the strip structure 31; the front end bifurcation of the lower support plate 3 is longer than the opposite side, and a transverse part intersects with the front end bifurcation and is connected with the outer side vertical wall 32; the outer side vertical wall 32 of the lower support plate 3 is in the shape of “N”, and the outer side vertical wall 32 is connected with the outer side extension part of the middle part of the lower support plate; the position of the outer side vertical wall 32 is determined by the upper edge of the anti-rollover corner 43 of the outer sole 4, the second recess 23 of the midsole 2 and the first protrusion 24.
[0021] As shown in Figure 6 and Figure 7 As shown, the lower surface of the outer sole 4 is mainly provided with first anti-skid lines 41, and the inner and outer side of the forefoot and the hind foot is provided with second anti-skid lines 42; the outer periphery of the forefoot of the outer sole 4 is provided with an upturned side wall and an anti-rollover corner 43; the inner side of the middle part of the outer sole 4 is provided with an upturn 44, and the position of the upturn 44 corresponds to the second protrusion 25 of the midsole 2; the outer side vertical wall 32 of the lower support plate 3 is aligned with the upper edge of the anti-rollover corner 43; the hole of the inner side wall of the outer sole 4 is aligned with the second protrusion 25 of the inner side of the midsole 2.
[0022] The first anti-skid lines 41 of the outer sole 4 are mainly in the shape of moire, and the inner and outer side of the forefoot and the hind foot is provided with water waves.
[0023] The working principle of the utility model:
[0024] In use, the combination of the upper support plate 1, the midsole 2, the lower support plate 3 and the outer sole 4 controls the deformation of the basketball shoe sole caused by the stretching, landing and twisting of the human foot within a reasonable range, so as to realize the stress stability function of the basketball shoe sole.
Claims
1. A basketball shoe sole with force stabilization function, characterized in that: It comprises an upper support plate (1), a midsole (2), a lower support plate (3) and an outsole (4), which are sequentially stacked and fixedly connected to form an integrated whole; the upper support plate (1) is in the shape of "H" as a whole, and the upper surface of the upper support plate (1) is provided with three longitudinal reinforcing ribs embedded in the first grooves (22) on the upper surface of the midsole (2); The midsole (2) is in the shape of "H" as a whole, and the upper surface of the midsole (2) is provided with four transverse grooves (21) in the shape of semicircle in the forefoot, and the upper surface of the midsole (2) is provided with a first groove (22) in the shape corresponding to the upper support plate (1) in the middle part; the lower surface of the midsole (2) is provided with a second groove (23) in the shape corresponding to the lower support plate (3); the middle part of the outer side wall of the midsole (2) is provided with a first protrusion (24) in the shape corresponding to the positioning hole of the outer vertical wall (32) of the lower support plate (3), and the inner side rear end of the midsole (2) is provided with a second protrusion (25) in the shape corresponding to the two positioning holes of the outsole (4); The lower support plate (3) is integrally formed as a whole, and is embedded in the second groove (23) on the lower surface of the midsole (2); the horizontal plane projection of the lower support plate (3) is in the shape of "X", and the front end bifurcation intersects with the strip structure (31); the front end bifurcation of the plane of the lower support plate (3) is longer than the opposite side, and the front end bifurcation has a transverse part intersecting with the front end bifurcation and connected with the outer vertical wall (32); the outer vertical wall (32) of the lower support plate (3) is in the shape of "N", and the outer vertical wall (32) is connected with the extension part of the middle part of the plane of the lower support plate; the position of the outer vertical wall (32) is determined by the upper edge of the anti-rollover corner (43) of the outsole (4), the second groove (23) of the midsole (2) and the first protrusion (24); The outsole (4) is mainly provided with first anti-skid lines (41) on the lower surface, and second anti-skid lines (42) are arranged on the inner and outer side of the forefoot and the hind foot; the outsole (4) is provided with an upturned side wall and an anti-rollover corner (43) around the forefoot; the outsole (4) is provided with an upturn (44) on the inner side of the middle part; the position of the upturn (44) corresponds to the second protrusion (25) of the midsole (2); the outer vertical wall (32) of the lower support plate (3) is aligned with the upper edge of the anti-rollover corner (43); the hole in the inner side wall of the outsole (4) is aligned with the second protrusion (25) on the inner side of the midsole (2).
2. The basketball shoe sole with force stabilization function according to claim 1, characterized in that: The first anti-skid lines (41) of the outsole (4) are mainly in the shape of moire, and water waves are arranged on the inner and outer side of the forefoot and the hind foot.