Impact-resistant short boot

By designing a high-strength waterproof membrane and waterproof mechanism in the short boots, the problem of water seepage in the short boots during heavy rainy weather is solved, and good waterproofing effect and practicality are achieved.

CN223025511UActive Publication Date: 2025-06-27PUTIAN YONGSHENG SHOES CO LTD
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Patent Information

Application Number
CN202422169962.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-06-27
Estimated Expiration
2034-09-04

AI Technical Summary

Technical Problem

Existing short boots are prone to seeping water in heavy rainy weather, causing discomfort on the feet.

Method used

An impact-resistant short boot is designed, using a waterproof mechanism with high-strength waterproof membrane, elastic band, plug and plug. Through the cooperation of the jack and sealing hole, the high-strength waterproof membrane can be pulled out and wrapped around the outside of the upper when needed to prevent moisture from penetrated.

Benefits of technology

It effectively prevents water seepage inside the short boots, has a simple structure, good waterproof effect and strong practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shoes, in particular to an impact-resistant short boot. Comprising a short boot body and a waterproof mechanism. The short boot main body comprises a vamp, a sole and a tongue; the waterproof mechanism comprises a high-strength waterproof film, an elastic band, an insertion column and a plug, an insertion hole is formed in the shoe sole, one end of the elastic band is connected to the deep position of the inner side of the insertion hole, the high-strength waterproof film is fixed to the elastic band, the outer end of the elastic band is connected with the insertion column, the insertion column is in clearance fit with the inner side of the insertion hole, and the plug is arranged at the outer end of the insertion column. A sealing hole in clearance fit with the plug is formed in the shoe sole and communicated with the outer end of the inserting hole. According to the technical scheme, the high-strength waterproof film is hidden in the shoe, and the high-strength waterproof film is pulled out to wrap the shoe in heavy rain weather, so that a better waterproof effect can be achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of shoes, in particular to an impact-resistant ankle boot. Background Art

[0002] A boot is a type of footwear that is worn on the feet and can at least cover the sole and ankle, and some can extend to the calf or even the knee. It includes a boot sole, a boot upper, and a boot shaft. According to the length of the boot shaft, it can be divided into knee-high boots, ankle boots, and over-the-knee boots, etc.

[0003] A patent with the publication number CN216453588U discloses an ankle boot, which includes a boot sole, a boot upper, and a boot shaft. The boot upper is fixedly connected to the boot sole. The boot shaft includes an inner cylinder fixedly connected to the boot upper and an outer cylinder sleeved outside the inner cylinder. The top end of the outer cylinder is detachably connected to the top end of the inner cylinder through a mounting member, and the bottom end of the outer cylinder is detachably connected to the boot upper through a positioning member.

[0004] The above-mentioned disclosed patent still has the following technical defects: when encountering heavy rain weather, resulting in water accumulation on the road surface, it is easy to cause water seepage in the shoes. Summary of the Utility Model

[0005] The purpose of the utility model is to propose an impact-resistant ankle boot for the problems existing in the background art.

[0006] The technical solution of the utility model, an impact-resistant ankle boot, includes:

[0007] An ankle boot main body, which includes a shoe upper, a shoe sole, and a tongue;

[0008] A waterproof mechanism, which includes a high-strength waterproof film, an elastic band, a plug post, and a plug. A jack is opened on the shoe sole. One end of the elastic band is connected to the deep part inside the jack. The high-strength waterproof film is fixed on the elastic band. The outer end of the elastic band is connected to the plug post. The plug post is in clearance fit with the inner side of the jack. The plug is arranged at the outer end of the plug post. A sealing hole in clearance fit with the plug is opened on the shoe sole. The sealing hole is communicated and arranged at the outer end of the jack.

[0009] Preferably, it further includes an outer shoe upper. A plurality of male buttons are arranged on the inner side surface of the outer shoe upper, and a plurality of female buttons are arranged on the outer side surface of the shoe upper.

[0010] Preferably, a plush body is installed on the inner side of the outer shoe upper.

[0011] Preferably, the shoe sole includes a cowhide sole and a silica gel layer arranged on the upper end of the cowhide sole.

[0012] Preferably, a cavity is provided inside the sole. Bearing plates are provided at both the upper and lower ends of the inner side of the cavity. An elastic telescopic component is connected between the two bearing plates. An air inlet pipe is provided at the upper end of the sole, and a second one-way valve is installed on the air inlet pipe. An exhaust pipe is provided at the rear side of the sole, and a first one-way valve is installed on the exhaust pipe. Both the exhaust pipe and the air inlet pipe are communicated with the inside of the cavity.

[0013] Preferably, the elastic telescopic component includes a sleeve, a movable rod, a limiting block, and a first spring. Among them, the movable rod and the sleeve are respectively connected to the two bearing plates. The bottom end of the movable rod is movably arranged inside the sleeve and is connected to the limiting block. The first spring is installed inside the sleeve.

[0014] Preferably, a fixing block is connected to the tongue. A rotating pressing block is rotatably connected to the fixing block. There is a detachable connection structure between the fixing block and the rotating pressing block. A groove is provided inside the rotating pressing block, and an anti-slip rubber pad is installed on the inner wall of the groove of the rotating pressing block.

[0015] Preferably, a plug rod is connected to the fixing block, and a first wedge block is provided on the plug rod. A sliding hole is provided on the rotating pressing block, a guiding rod is provided inside the sliding hole, a moving slider slides on the guiding rod, a second wedge block is provided on the moving slider, a second spring is sleeved and installed on the guiding rod, and a push rod is connected to the moving slider, and the push rod movably penetrates through the end of the rotating pressing block.

[0016] Compared with the prior art, the present utility model has the following beneficial technical effects: Pull out the high-strength waterproof film from the inside of the jack by pulling the plug outwards, and then wrap the high-strength waterproof film around the outside of the shoe upper. The high-strength waterproof film can protect the ankle boots and prevent water from seeping into the inside of the ankle boots. Its structure is concise, the waterproof effect is good, and the practicability is strong. Description of the Drawings

[0017] Figure 1 and Figure 2 are both schematic structural diagrams of the present utility model.

[0018] Figure 3 is a schematic structural diagram of the sole in the present utility model.

[0019] Figure 4 is a schematic structural diagram of the connection relationship between the fixing block and the rotating pressing block in the present utility model.

[0020] Figure 5 is Figure 2 a partial enlarged structural diagram at A of

[0021] Figure 6 is Figure 3 a partial enlarged structural diagram at B of

[0022] Reference numerals: 1, upper surface of the shoe; 2, sole; 201, silica gel layer; 2011, jack; 2012, sealing hole; 2013, cavity; 202, natural rubber sole; 3, outer upper surface of the shoe; 41, male buckle; 42, female buckle; 5, tongue of the shoe; 61, fixing block; 62, rotating pressing block; 621, sliding hole; 7, high-strength waterproof film; 8, elastic band; 9, inserting post; 10, plug; 11, bearing plate; 121, sleeve; 122, movable rod; 123, limiting block; 124, first spring; 13, exhaust pipe; 14, first one-way valve; 15, intake pipe; 16, second one-way valve; 17, inserting rod; 171, first wedge-shaped block; 18, moving slider; 181, second wedge-shaped block; 19, guiding rod; 20, second spring; 21, push rod; 22, anti-slip rubber pad. Detailed implementation manners

[0023] Embodiment 1

[0024] As Figure 1 , Figure 2 , Figure 3 and Figure 5 shown, a shock-resistant ankle boot proposed in this embodiment includes an ankle boot main body and a waterproof mechanism.

[0025] The ankle boot main body includes an upper surface 1 of the shoe, a sole 2 and a tongue 5 of the shoe. The sole 2 includes a natural rubber sole 202 and a silica gel layer 201 provided at the upper end of the natural rubber sole 202. The setting of the silica gel layer 201 can play a certain shock-absorbing role, thereby improving the comfort during wearing.

[0026] The waterproof mechanism includes a high-strength waterproof film 7, an elastic band 8, an inserting post 9 and a plug 10. A jack 2011 is opened on the sole 2. One end of the elastic band 8 is connected to the deep inside of the jack 2011. The high-strength waterproof film 7 is fixed on the elastic band 8. The outer end of the elastic band 8 is connected to the inserting post 9. The inserting post 9 is in clearance fit with the inner side of the jack 2011. The plug 10 is provided at the outer end of the inserting post 9. A sealing hole 2012 in clearance fit with the plug 10 is opened on the sole 2. The sealing hole 2012 is communicated and provided at the outer end of the jack 2011.

[0027] In this embodiment, when heavy rain causes waterlogging on the road surface, the plug 10 is pulled out from the inner side of the sealing hole 2012, and the plug 10 is pulled outwards to draw out the high-strength waterproof film 7 from the inner side of the socket 2011. Subsequently, the high-strength waterproof film 7 is wrapped around the outer side of the shoe upper 1, and the elastic band 8 is tied to the shoelace to prevent it from rebounding. The high-strength waterproof film 7 can protect the ankle boots and prevent water seepage. When the high-strength waterproof film 7 is damaged, it can be torn off, and a new high-strength waterproof film 7 is adhered to the elastic band 8. Subsequently, the fixing of the elastic band 8 is released, and under the elastic force of the elastic band 8, the high-strength waterproof film 7 is driven to move to the inner side of the socket 2011. Finally, the sealing hole 2012 is blocked by the plug 10.

[0028] Embodiment Two

[0029] As Figure 1 and Figure 2 shown, an impact-resistant ankle boot proposed in this embodiment, compared with Embodiment One, further includes an outer shoe upper 3 in this embodiment. A plurality of male buttons 41 are arranged on the inner side surface of the outer shoe upper 3, and a plurality of female buttons 42 are arranged on the outer side surface of the shoe upper 1; a plush body is installed on the inner side of the outer shoe upper 3. In cold winter, the outer shoe upper 3 is sleeved and wrapped around the inner side of the shoe upper 1, so that the male buttons 41 on the outer shoe upper 3 are connected and fixed to the female buttons 42 on the shoe upper 1. The plush body arranged on the inner side of the outer shoe upper 3 can improve the heat preservation effect of the ankle boots.

[0030] Embodiment Three

[0031] As Figure 6As shown in the figure, an impact-resistant short boot proposed in this embodiment. Compared with the first embodiment, in this embodiment, a cavity 2013 is provided inside the sole 2. Load-bearing plates 11 are arranged at both the upper and lower ends of the inner side of the cavity 2013. An elastic telescopic assembly is connected between the two load-bearing plates 11. The elastic telescopic assembly includes a sleeve 121, a movable rod 122, a limit block 123, and a first spring 124. Among them, the movable rod 122 and the sleeve 121 are respectively connected to the two load-bearing plates 11. The bottom end of the movable rod 122 is movably arranged inside the sleeve 121 and is connected to the limit block 123. The first spring 124 is installed inside the sleeve 121. An air inlet pipe 15 is arranged at the upper end of the sole 2, and a second one-way valve 16 is installed on the air inlet pipe 15. An exhaust pipe 13 is arranged at the rear side of the sole 2, and a first one-way valve 14 is installed on the exhaust pipe 13. Both the exhaust pipe 13 and the air inlet pipe 15 are communicated with the inside of the cavity 2013. When stepping on the sole 2 downward, the elastic telescopic assembly is compressed. At this time, the cavity space of the cavity 2013 is compressed, and the gas inside the cavity 2013 is discharged through the exhaust pipe 13. The set first one-way valve 14 only allows the gas inside the cavity 2013 to be discharged. When the sole leaves the ground, under the elastic force of the first spring 124, the elastic telescopic assembly rebounds to the maximum length. When the cavity expands, the outside gas enters the inside of the short boot through the air inlet pipe 15, and then enters the inside of the cavity 2013 through the air inlet pipe 15, thus accelerating the air exchange work inside the short boot.

[0032] Embodiment Four

[0033] As Figure 1 and Figure 4 As shown in the figure, an impact-resistant short boot proposed in this embodiment. Compared with the first embodiment, in this embodiment, a fixing block 61 is connected to the tongue 5 of the shoe. A rotating pressing block 62 is rotatably connected to the fixing block 61. There is a detachable connection structure between the fixing block 61 and the rotating pressing block 62. A plug rod 17 is connected to the fixing block 61. A first wedge-shaped block 171 is arranged on the plug rod 17. A sliding hole 621 is opened on the rotating pressing block 62. A guide rod 19 is arranged inside the sliding hole 621. A moving slider 18 slides on the guide rod 19. A second wedge-shaped block 181 is arranged on the moving slider 18. A second spring 20 is sleeved and installed on the guide rod 19. A push rod 21 is connected to the moving slider 18. The push rod 21 movably penetrates through the end of the rotating pressing block 62. A groove is arranged inside the rotating pressing block 62. An anti-slip rubber pad 22 is installed on the inner wall of the groove of the rotating pressing block 62. After the shoelaces are tied, place the knotted part of the shoelaces in the groove of the rotating pressing block 62, and then rotate the rotating pressing block 62. When rotating the rotating pressing block 62, the second wedge-shaped block 181 contacts the first wedge-shaped block 171, forcing the second wedge-shaped block 181 to move. When the rotating pressing block 62 rotates to the limited position, the first wedge-shaped block 171 and the second wedge-shaped block 181 are clamped together, thus completing the fixed connection work between the fixing block 61 and the rotating pressing block 62, and thus preventing the shoelaces from loosening.

[0034] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited thereto, and various changes can be made without departing from the spirit of the present utility model within the scope of knowledge possessed by those skilled in the relevant art.

Claims

1. An impact-resistant short boot, characterized in that: include: A short boot body, comprising an upper (1), a sole (2) and a tongue (5); The waterproof mechanism comprises a high-strength waterproof membrane (7), an elastic band (8), a plug (9) and a plug (10); a plug hole (2011) is provided on the sole (2); one end of the elastic band (8) is connected to the deep inside of the plug hole (2011); the high-strength waterproof membrane (7) is fixed to the elastic band (8); the outer end of the elastic band (8) is connected to the plug (9); the plug (9) is in clearance with the inside of the plug hole (2011); the plug (10) is arranged at the outer end of the plug (9); a sealing hole (2012) is provided on the sole (2) and is in clearance with the plug (10); the sealing hole (2012) is connected to the outer end of the plug hole (2011).

2. The impact-resistant short boot according to claim 1, characterized in that: It also includes an outer vamp (3), wherein a plurality of sub-buttons (41) are arranged on the inner side of the outer vamp (3), and a plurality of female buckles (42) are arranged on the outer side of the vamp (1).

3. The impact-resistant short boot according to claim 2, characterized in that: A fleece body is installed on the inner side of the outer shell upper (3).

4. The impact-resistant short boot according to claim 1, characterized in that: The shoe sole (2) comprises a cow tendon sole (202) and a silica gel layer (201) arranged on the upper end of the cow tendon sole (202).

5. The impact-resistant short boot according to claim 4, characterized in that: A cavity (2013) is provided in the sole (2); a bearing plate (11) is provided at the upper and lower ends of the inner side of the cavity (2013); an elastic telescopic component is connected between the two bearing plates (11); an air intake pipe (15) is provided at the upper end of the sole (2); a second one-way valve (16) is installed on the air intake pipe (15); an exhaust pipe (13) is provided at the rear side of the sole (2); a first one-way valve (14) is installed on the exhaust pipe (13); and the exhaust pipe (13) and the air intake pipe (15) are both in communication with the interior of the cavity (2013).

6. The impact-resistant short boot according to claim 5, characterized in that: The elastic telescopic component comprises a sleeve (121), a movable rod (122), a limit block (123) and a first spring (124), wherein the movable rod (122) and the sleeve (121) are respectively connected to two bearing plates (11), the bottom end of the movable rod (122) is movably arranged on the inner side of the sleeve (121) and connected to the limit block (123), and the first spring (124) is installed on the inner side of the sleeve (121).

7. The impact-resistant short boot according to claim 1, characterized in that: The shoe tongue (5) is connected with a fixed block (61), and a rotating pressing block (62) is rotatably connected with the fixed block (61). A detachable connection structure is provided between the fixed block (61) and the rotating pressing block (62). A groove is provided on the inner side of the rotating pressing block (62), and an anti-slip rubber pad (22) is installed on the inner wall of the groove of the rotating pressing block (62).

8. The impact-resistant short boot according to claim 7, characterized in that: The fixed block (61) is connected to an insertion rod (17), and a first wedge block (171) is arranged on the insertion rod (17). A sliding hole (621) is opened on the rotating pressure block (62), and a guide rod (19) is arranged on the inner side of the sliding hole (621). A movable slider (18) slides on the guide rod (19), and a second wedge block (181) is arranged on the movable slider (18). A second spring (20) is sleeved and installed on the guide rod (19), and a push rod (21) is connected to the movable slider (18), and the push rod (21) movably passes through the end of the rotating pressure block (62).