Female shoe with multiple cushioning mechanisms

By introducing multiple cushioning mechanisms into women's shoes, including foot massage mechanisms, shock absorption mechanisms, and anti-slip components, the problem of the lack of shock absorption mechanisms in existing women's shoes is solved, achieving a more comprehensive cushioning effect and improving comfort and safety.

CN223715112UActive Publication Date: 2025-12-26ZHEJIANG DABOWEN XIEYE CO LTD
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Patent Information

Application Number
CN202520420107.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-12-26
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

Existing women's shoes lack shock absorption mechanisms, causing the impact force on the feet to be directly transmitted to the knees, hips, and spine when walking or running, increasing the burden on these areas and leading to pain and fatigue after prolonged exercise.

Method used

Design a women's shoe with multiple cushioning mechanisms, including a shoe body, a shoe sole, a foot massage mechanism, a shock absorption mechanism, and anti-slip components. Specifically, the shoe sole incorporates a foot massage component, a shock absorption mechanism, and an anti-slip component. By setting shock-absorbing springs and air cushions, massage pads, and anti-slip patterns on the shoe sole, the impact force on the foot is dispersed, providing a comprehensive cushioning effect.

Benefits of technology

It effectively reduces impact on the feet, knees, hips, and spine, improves comfort, reduces fatigue after prolonged walking or standing, lowers the risk of sports injuries, extends the lifespan of shoes, and increases safety.

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    Figure CN223715112U_ABST
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Abstract

The utility model discloses a women's shoe with multiple cushioning mechanisms, which belongs to the technical field of shoes, comprises a shoe main body, a shoe bottom plate, a foot massage mechanism, a damping mechanism and an anti-skid component, and is characterized in that the shoe bottom plate is fixedly connected to the shoe main body, the foot massage mechanism is arranged on the top surface of the shoe bottom plate, and the damping mechanism is arranged on the top surface of the shoe bottom plate. The shock absorption mechanism is arranged on the shoe bottom plate, the anti-skid assembly is arranged on the bottom face of the shoe bottom plate, when a user walks or runs, the feet can bear huge impact force from the ground, the impact force can be dispersed, direct impact on the feet, knees, hips and spines can be reduced, a more comprehensive buffering effect can be provided, and the anti-skid shoe has the advantages of being good in anti-skid effect and good in anti-skid effect. The shoes are more comfortable to wear, fatigue caused by long-time walking or standing is reduced, the risk of sport injury can be reduced, sole materials can be protected, the service life of the shoes is prolonged, and safety is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of shoes, more particularly to a female shoe with multiple cushioning mechanisms. BACKGROUND

[0002] Shoes are a type of footwear designed to protect the feet from the ground, provide support, comfort, and equipment for activities in different environments and conditions. It is usually composed of a sole, an upper (or shoe face), and various materials connecting the two, with a wide variety of types and designs suitable for different activities and occasions, such as running shoes, hiking shoes, leather shoes, sports shoes, sandals, etc. Shoes with shock-absorbing mechanisms are designed to reduce the impact force on the feet during walking, running, or sports, which reduces the damage to the feet and other parts of the body (especially the knees, spine, and lower back) by absorbing and dispersing impact forces, thereby improving athletic performance and comfort.

[0003] A patent with the patent number CN221059747U discloses a shoe with a shoe strap that does not need to be tied, which includes a shoe body, a shoe strap hole on the upper part of the shoe body, a shoe strap passing through the shoe strap hole, a tensioning device on the upper part of the tongue of the shoe body, and the left and right ends of the shoe strap connected to the tensioning device. The tensioning device includes a fixed seat, a roller rotatingly connected to the fixed seat, a spiral spring below the roller, the two ends of the shoe strap passing through the fixed seat and winding around the roller, a gear on the side of the roller away from the fixed seat, a movable frame moving along the length of the fixed seat, an elastic element between the movable frame and the fixed seat, and a locking tooth on the movable frame matching the gear. The movable frame moves towards the gear to make the locking tooth engage with the gear, thereby locking the roller. With the above technical solution, the shoe with a shoe strap that does not need to be tied can adjust the length of the shoe strap according to actual needs, making it convenient to wear.

[0004] However, the above technology has the following defects: when the user wears the shoe, the shoe does not have a shock-absorbing mechanism, and the impact force on the feet during walking or running will be directly transmitted to the knees, hip joints, and spine, increasing the burden on these parts and causing pain and fatigue after long-term exercise.

[0005] Therefore, it is necessary to provide a female shoe with multiple cushioning mechanisms to solve the above problems. UTILITY MODEL CONTENT

[0006] The utility model provides a female shoe with multiple cushioning mechanisms, which can improve the low shock-absorbing capacity of shoes in related technology.

[0007] The embodiment of the present application provides a female shoe with multiple shock-absorbing mechanisms, which comprises a shoe body, a shoe bottom plate, a foot massage mechanism, a shock-absorbing mechanism and an anti-skid assembly, characterized in that the shoe bottom plate is fixedly connected to the shoe body, the foot massage mechanism is arranged on the top surface of the shoe bottom plate, the shock-absorbing mechanism is arranged on the shoe bottom plate, the anti-skid assembly is arranged on the bottom surface of the shoe bottom plate, the foot massage mechanism is used for massaging the feet of a user, the shock-absorbing mechanism is used for shock absorption when the user walks, and the anti-skid assembly is used for improving the anti-skid performance of the shoe.

[0008] The technical scheme described above in the embodiment of the present application has at least the following technical effects: when a user wears the multiple shock-absorbing female shoes, the user's soles and heels compress the shock-absorbing mechanism with the walking and movement of the user, the shock-absorbing mechanism gives the user a counterforce, the user's soles and heels respectively contact the foot massage mechanism with the walking and movement of the user, and the anti-skid assembly contacts the ground.

[0009] The embodiment of the present application provides a female shoe with multiple shock-absorbing mechanisms, which can disperse the impact force from the ground when the user walks or runs, reduce the direct impact on the feet, knees, hips and spine, provide more comprehensive buffering effect, make the shoe more comfortable to wear, reduce fatigue after long-time walking or standing, reduce the impact on joints, reduce the risk of sports injuries, protect the sole material, reduce early wear caused by impact force, prolong the service life of the shoe, and increase safety.

[0010] In some embodiments, the foot massage mechanism comprises a first foot massage assembly and a second foot massage assembly, the first foot massage assembly comprises a first foot massage pad and a plurality of first massage blocks, the first foot massage pad is fixedly connected to the part of the shoe bottom plate close to the soles, and the plurality of first massage blocks are evenly arranged on the first foot massage pad, and the second foot massage assembly is arranged on the shoe bottom plate.

[0011] In some embodiments, the second foot massage assembly comprises a second foot massage pad and a plurality of second massage blocks, the plurality of second massage blocks are fixedly connected to the part of the shoe bottom plate close to the heels, and the plurality of second massage blocks are evenly arranged on the second foot massage pad.

[0012] In some embodiments, the shock-absorbing mechanism comprises a root shock-absorbing component and a palm shock-absorbing component, the root shock-absorbing component comprises a first shock-absorbing spring and a first shock-absorbing air cushion, the shoe bottom plate is provided with a shock-absorbing hole and a placing groove, the first shock-absorbing spring is arranged on the shoe bottom plate and located in the placing groove, and the first shock-absorbing air cushion is arranged on the shoe bottom plate.

[0013] In some embodiments, the palm shock-absorbing component comprises a second shock-absorbing spring and a second shock-absorbing air cushion, and the first shock-absorbing spring and the second shock-absorbing air cushion are arranged on the shoe bottom plate.

[0014] In some embodiments, the anti-skid component comprises transverse anti-skid lines and longitudinal anti-skid lines, the bottom surface of the shoe bottom plate is fixedly connected with the transverse anti-skid lines, and the bottom surface of the shoe bottom plate is fixedly connected with the longitudinal anti-skid lines.

[0015] In some embodiments, the first shock-absorbing spring and the second shock-absorbing spring are arranged in multiple groups on the shoe bottom plate. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a whole structure schematic view of the women's shoes with multiple shock-absorbing mechanisms.

[0017] Figure 2 It is an exploded structure schematic view of the women's shoes with multiple shock-absorbing mechanisms.

[0018] Figure 3 It is a bottom view of the women's shoes with multiple shock-absorbing mechanisms.

[0019] Figure 4 It is a sectional view of the women's shoes with multiple shock-absorbing mechanisms.

[0020] REFERENCE NUMERALS IN DRAWINGS

[0021] 1, shoe main body; 2, shoe bottom plate; 3, foot massage mechanism; 31, first foot massage component; 311, first foot massage gasket; 312, first massage block; 32, second foot massage component; 321, second foot massage gasket; 322, second massage block; 4, shock-absorbing mechanism; 41, root shock-absorbing component; 411, first shock-absorbing spring; 412, first shock-absorbing air cushion; 42, palm shock-absorbing component; 421, second shock-absorbing spring; 422, second shock-absorbing air cushion; 5, shock-absorbing hole; 6, placing groove; 7, anti-skid component; 71, transverse anti-skid line; 72, longitudinal anti-skid line. DETAILED DESCRIPTION

[0022] When a user wears the shoe, the shoe does not have a damping mechanism, and when the user walks or runs, the impact force on the foot is directly transmitted to the knee, hip joint and spine, etc., which increases the burden on these parts, causing pain and fatigue after a long time of movement.

[0023] Therefore, the problem of low damping capacity of the shoe in the related art can be improved.

[0024] Referring to Figure 1 and Figure 4 , a woman's shoe with multiple damping mechanisms, comprising a shoe body 1, a shoe bottom plate 2, a foot massage mechanism 3, a damping mechanism 4 and an anti-skid assembly 7, characterized in that: the shoe bottom plate 2 is fixedly connected to the shoe body 1, the foot massage mechanism 3 is arranged on the top surface of the shoe bottom plate 2, the damping mechanism 4 is arranged on the shoe bottom plate 2, and the anti-skid assembly 7 is arranged on the bottom surface of the shoe bottom plate 2, and the foot massage mechanism 3 is used for massaging the user's foot, the damping mechanism 4 is used for damping when the user walks, and the anti-skid assembly 7 is used to improve the anti-skid performance of the shoe.

[0025] Referring to Figure 2 , the foot massage mechanism 3 comprises a first foot massage assembly 31 and a second foot massage assembly 32, the first foot massage assembly 31 comprises a first foot massage gasket 311 and a first massage block 312, the first foot massage gasket 311 is fixedly connected to the part of the shoe bottom plate 2 close to the sole, and a plurality of first massage blocks 312 are uniformly arranged on the first foot massage gasket 311, the second foot massage assembly 32 is arranged on the shoe bottom plate 2, the second foot massage assembly 32 comprises a second foot massage gasket 321 and a second massage block 322, the second massage block 322 is fixedly connected to the part of the shoe bottom plate 2 close to the heel, and a plurality of second massage blocks 322 are uniformly arranged on the second foot massage gasket 321.

[0026] In this way, when the user wears the shoes, the user's heel and foot sole are in contact with the first foot massage pad 311 and the second foot massage pad 321 respectively as the user walks and moves. Since the first foot massage pad 311 and the first massage block 312 are made of silicone material, the silicone material has strong adsorption, can be fixed on the surface of the shoe insole pad 2, and has high heat resistance, so that the user can not feel hot feet when walking or running. The first massage block 312 and the second massage block 322 are made of rubber material, which has high elasticity and can change its shape through different user movements, increase the effect of foot massage, and promote blood circulation by applying slight pressure and friction to the feet, thereby relieving foot fatigue after a long walk or standing, helping to relieve pain, and increasing the comfort of the shoes, especially when wearing for a long time, providing additional support and relaxation.

[0027] Please refer to Figure 4 The damping mechanism 4 includes a root damping assembly 41 and a palm damping assembly 42. The root damping assembly 41 includes a first damping spring 411 and a first damping air cushion 412. The shoe bottom plate 2 is provided with a damping hole 5 and a placement groove 6. The first damping spring 411 is arranged on the shoe bottom plate 2 and located in the placement groove 6. The first damping air cushion 412 is arranged on the shoe bottom plate 2. The palm damping assembly 42 is arranged on the part of the shoe bottom plate 2 close to the foot sole. The palm damping assembly 42 includes a second damping spring 421 and a second damping air cushion 422. The first damping spring 411 and the second damping air cushion 422 are arranged on the shoe bottom plate 2. The first damping spring 411 and the second damping spring 421 are provided with multiple groups on the shoe bottom plate 2.

[0028] So set up, the user in the use of multiple buffer mechanism shoes, the wearer in the shoes, the user in the movement or walk, the heel part to the shoe bottom plate 2 has a downward force, and because the shoe bottom plate 2 is provided with shock absorbing hole 5, with the user's heel extrusion, resulting in shoe bottom plate 2 compression, driven compression first shock absorbing spring 411 and first shock absorbing air cushion 412, first shock absorbing spring 411 and first shock absorbing air cushion 412 rebound, and a user upward force, shock absorbing operation, when the user's palm part gives the shoe bottom plate 2 a downward force, driven compression second shock absorbing spring 421 and second shock absorbing air cushion 422, second shock absorbing spring 421 and second shock absorbing air cushion 422 rebound, and a user palm part upward force, shock absorbing operation, the user walks or runs, the foot will bear the huge impact force from the ground, can disperse these impact force, reduce the direct impact on the foot, knee, hip and spine, can provide more comprehensive buffering effect, so that the shoes are more comfortable to wear, reduce the fatigue after a long time walking or standing, reduce the impact on the joints, can reduce the risk of sports injury, can protect the sole material, reduce the early wear caused by impact force, prolong the service life of the shoes, increase the safety.

[0029] Please refer to Figure 3 , the anti-skid assembly 7 includes transverse anti-skid line 71 and longitudinal anti-skid line 72, the bottom surface of the shoe bottom plate 2 is fixedly connected with the transverse anti-skid line 71, and the bottom surface of the shoe bottom plate 2 is fixedly connected with the longitudinal anti-skid line 72.

[0030] So set up, the user in the movement or walk, the transverse anti-skid line 71 and the longitudinal anti-skid line 72 on the bottom of the shoe bottom plate 2 cooperate with each other, improve the anti-skid performance of the shoes, by setting the transverse anti-skid line 71 on the shoe bottom plate 2, the roughness of the shoe and the ground contact surface can be increased, so as to improve the friction, prevent slipping, by setting the longitudinal anti-skid line 72 on the shoe bottom plate 2, the friction between the sole and the ground is also increased, especially when walking, stable grip can be provided, effectively prevent slipping, can form a drainage channel, help the sole to quickly remove water in rainy days or wet ground, reduce the risk of slipping caused by water film, improve the safety.

[0031] Working principle: when the user uses the shoes with multiple buffering mechanism, the wearer has a downward force on the shoe bottom plate 2 when wearing shoes, the user has a downward force on the shoe bottom plate 2 when walking or running, the shoe bottom plate 2 is compressed due to the compression of the user's heel, driving the compression of the first shock absorbing spring 411 and the first shock absorbing air cushion 412, the first shock absorbing spring 411 and the first shock absorbing air cushion 412 rebound, and the user has an upward force, which performs the shock absorbing operation, when the user's palm part gives the shoe bottom plate 2 a downward force, driving the compression of the second shock absorbing spring 421 and the second shock absorbing air cushion 422, the second shock absorbing spring 421 and the second shock absorbing air cushion 422 rebound, with the user's walking and movement, the user's heel part and palm part contact the first foot massage pad 311 and the second foot massage pad 321 respectively.

[0032] The above is only the preferred specific implementation of the present application; however, the protection scope of the present application is not limited to this. Any skilled person in the art, according to the technical scheme and the improvement concept of the present application, should be covered within the protection scope of the present application.

Claims

1. A woman's shoe with multiple shock absorbing mechanisms, comprising a shoe body (1), a shoe sole (2), a foot massaging mechanism (3), a shock absorbing mechanism (4) and an anti-skid assembly (7), characterized in that: The shoe bottom plate (2) is fixedly connected to the shoe body (1), the foot massage mechanism (3) is arranged on the top surface of the shoe bottom plate (2), the damping mechanism (4) is arranged on the shoe bottom plate (2), the anti-skid assembly (7) is arranged on the bottom surface of the shoe bottom plate (2), and the foot massage mechanism (3) is used for massaging the feet of the user, the damping mechanism (4) is used for damping when the user walks, and the anti-skid assembly (7) is used for improving the anti-skid performance of the shoe.

2. The woman's shoe having multiple shock absorbing mechanisms of claim 1, wherein: The foot massage mechanism (3) comprises a first foot massage assembly (31) and a second foot massage assembly (32), the first foot massage assembly (31) comprises a first foot massage pad (311) and a first massage block (312), the first foot massage pad (311) is fixedly connected to the part close to the sole of the shoe bottom plate (2), and a plurality of first massage blocks (312) are uniformly arranged on the first foot massage pad (311); and the second foot massage assembly (32) is arranged on the shoe bottom plate (2).

3. The woman's shoe having multiple shock absorbing mechanisms of claim 2, wherein: The second foot massage assembly (32) comprises a second foot massage pad (321) and a second massage block (322), the second massage block (322) is fixedly connected to the part close to the heel of the shoe bottom plate (2), and a plurality of second massage blocks (322) are uniformly arranged on the second foot massage pad (321).

4. The woman's shoe having multiple shock absorbing mechanisms of claim 3, wherein: The damping mechanism (4) comprises a root damping assembly (41) and a palm damping assembly (42), the root damping assembly (41) comprises a first damping spring (411) and a first damping air cushion (412), the shoe bottom plate (2) is provided with a damping hole (5), the shoe bottom plate (2) is also provided with a placing groove (6), the first damping spring (411) is arranged on the shoe bottom plate (2), and the first damping spring (411) is located in the placing groove (6), and the first damping air cushion (412) is arranged on the shoe bottom plate (2).

5. The woman's shoe having multiple shock absorbing mechanisms of claim 4, wherein: The palm damping assembly (42) comprises a second damping spring (421) and a second damping air cushion (422), and the first damping spring (411) and the second damping air cushion (422) are arranged on the shoe bottom plate (2).

6. The woman's shoe having multiple shock absorbing mechanisms of claim 5, wherein: The anti-skid assembly (7) comprises transverse anti-skid lines (71) and longitudinal anti-skid lines (72), the bottom surface of the shoe bottom plate (2) is fixedly connected with the transverse anti-skid lines (71), and the bottom surface of the shoe bottom plate (2) is fixedly connected with the longitudinal anti-skid lines (72).

7. The woman's shoe having multiple shock absorbing mechanisms of claim 6, wherein: The first damping spring (411) and the second damping spring (421) are provided with a plurality of groups on the shoe bottom plate (2).

Citation Information

Patent Citations

  • Shoe free of tying shoelace

    CN221059747U