Double-valve negative-pressure drainage and exhaust battle boots

By incorporating one-way valves and support balls into the inner and outer layers of the combat boot sole, the problem of water not being able to drain during wading in traditional combat boots has been solved, improving drainage performance and friction, and enhancing soldiers' field combat capabilities.

CN223817040UActive Publication Date: 2026-01-23ZHEJIANG AOKANG SHOES
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Patent Information

Application Number
CN202520889892.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-08
Publication Date
2026-01-23
Estimated Expiration
2035-05-08

AI Technical Summary

Technical Problem

Traditional combat boots cannot effectively expel water from the inside of the shoe during outdoor wading, affecting the combat performance of soldiers.

Method used

A dual-valve negative pressure drainage and exhaust combat boot was designed. It features one-way valves on the inner and outer layers of the sole and a support sphere made of supercritical foam material placed in an elliptical inner cavity. External force is used to compress and create pressure to discharge water and air through the one-way valves.

Benefits of technology

It effectively removes water and air from the shoe's interior during outdoor wading, improving the shoe's drainage performance. The anti-slip texture also increases friction, enhancing soldiers' field combat capabilities.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of battle boots, and discloses a double-valve negative pressure drainage and exhaust battle boot which comprises a vamp. The sole is arranged below the vamp; the sole is formed by integrally bonding a drainage and exhaust hot sole, a drainage and exhaust middle sole, a drainage and exhaust sole inner layer and a drainage and exhaust sole outer layer from top to bottom in sequence through glue. The solid supporting ball body made of the supercritical foaming material is placed in the elliptic inner cavity, the supporting ball body plays a role in supporting the elliptic inner cavity, and the elliptic inner cavity is tightly attached to the ABS plastic sheet; the water and air in the inner cavity of the shoe can be discharged out of the shoe through the cooperation of the sole inner layer one-way valve and the sole outer layer one-way valve by means of pressure formed by extrusion of external force, and the problem that water cannot be effectively discharged out of the inner cavity of the shoe in the outdoor wading process of a traditional shoe is solved. The antiskid lines can increase the roughness of the surface of the outer layer of the drainage and exhaust sole so as to increase the friction force of the whole combat boot.
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Description

TECHNICAL FIELD

[0001] The utility model relates to combat boots technical field, concretely is a kind of double valve negative pressure drainage exhaust combat boots. BACKGROUND

[0002] Combat boots are a kind of military boots, which are single-soldier equipment, commonly used in jungle and mountain combat, etc.

[0003] In addition to basic wear resistance and abrasion resistance, modern combat boots must have good grip, increase ankle stability and protect the foot.

[0004] However, there are still the following shortcomings: traditional shoes cannot effectively drain water out of the shoe cavity during outdoor water involvement.

[0005] Therefore, a double valve negative pressure drainage exhaust combat boot is proposed. UTILITY MODEL CONTENTS

[0006] The utility model aims at providing a kind of double valve negative pressure drainage exhaust combat boots to solve the problems presented in the above background.

[0007] To achieve the above object, the utility model provides the following technical scheme: a kind of double valve negative pressure drainage exhaust combat boots, including vamp;

[0008] And the shoe sole below vamp;

[0009] The shoe sole is made by gluing from top to bottom in turn drainage exhaust bottom, drainage exhaust middle sole, drainage exhaust shoe sole inner layer and drainage exhaust shoe sole outer layer;

[0010] Six drainage exhaust holes one are provided on the front palm surface of the drainage exhaust middle sole, and rectangular groove one and rectangular groove two are respectively provided on the front palm upper and lower end surface positions of the drainage exhaust shoe sole inner layer corresponding to the positions of the drainage exhaust hole one, drainage exhaust groove one is provided on the top surface of the drainage exhaust shoe sole inner layer, one end of the drainage exhaust groove one is provided in the rectangular groove one, drainage exhaust hole two is provided on the bottom surface of the rectangular groove one, and the bottom end of the drainage exhaust hole two is provided through the rectangular groove two;

[0011] The bottom surface of the drainage exhaust shoe sole inner layer is sequentially provided with elliptical cavity and drainage exhaust groove two from left to right, the elliptical cavity and the drainage exhaust groove two are provided in the interior, one end of the drainage exhaust groove one is provided through the drainage exhaust shoe sole inner layer and the drainage exhaust groove two, and the other end of the drainage exhaust groove two is provided in the rectangular groove two.

[0012] Preferably, the drainage and exhaust scalding bottom is provided with upper and lower layers adhered to each other, the upper layer of the drainage and exhaust scalding bottom is a water-permeable and air-permeable mesh cloth, and the lower layer of the drainage and exhaust scalding bottom is made of PU cotton foaming.

[0013] Preferably, the drainage and exhaust midsole is made of a Kevlar puncture-resistant midsole, and the drainage and exhaust insole layer is made of high-density EVA foaming.

[0014] Preferably, the top surface of the drainage and exhaust insole layer is provided with a power support carbon plate, the bottom surface of the power support carbon plate is fixedly embedded with the top surface of the drainage and exhaust insole layer, and the power support carbon plate is made of a carbon fiber plate formed by arranging carbon fibers in the same direction and hardening the carbon fibers by resin soaking.

[0015] Preferably, the inside of the connection between the second drainage and exhaust groove and the elliptical inner cavity is provided with an insole layer one-way valve, the surface of the insole layer one-way valve is fixedly connected with the inner wall of the second drainage and exhaust groove, the inside of the elliptical inner cavity is sequentially provided with a support ball and an ABS plastic sheet from top to bottom, the support ball is made of supercritical foaming material, and the outer side surface of the ABS plastic sheet is sealingly and fixedly connected with the inner wall of the elliptical inner cavity.

[0016] Preferably, a one-way valve clamping groove is horizontally arranged at the front position of the heel of the drainage and exhaust insole layer, the inside of the one-way valve clamping groove is penetratingly arranged with the inside of the elliptical inner cavity, the inside of the one-way valve clamping groove is fixedly provided with an outsole layer one-way valve, and the front end of the outsole layer one-way valve penetrates through the side surface of the drainage and exhaust outsole layer and extends to the outside of the drainage and exhaust outsole layer.

[0017] Preferably, Kevlar puncture-resistant gaskets are adhered in the rectangular groove one and the rectangular groove two.

[0018] Preferably, the drainage and exhaust outsole layer is made of rubber material pressing, and the bottom surface of the drainage and exhaust outsole layer is provided with anti-skid lines.

[0019] Compared with the prior art, the double-valve negative pressure drainage and exhaust combat boot has the advantages that,

[0020] 1) By placing a support ball made of supercritical foaming material in the elliptical inner cavity, the support ball supports the elliptical inner cavity, the elliptical inner cavity is tightly combined with the ABS plastic sheet, water and air in the insole cavity can be discharged outside the shoe through the cooperation of the insole layer one-way valve and the outsole layer one-way valve by external force extrusion to form pressure, and the problem that water cannot be effectively discharged outside the insole cavity of the traditional shoes during outdoor wading is solved.

[0021] 2), through the anti-skid lines arranged on the outer bottom surface of the drainage and exhaust sole, the anti-skid lines can increase the roughness of the outer surface of the drainage and exhaust sole, thereby increasing the friction of the whole combat boot and improving the field combat capability of the soldier. BRIEF DESCRIPTION OF DRAWINGS

[0022] Fig. 1 It is a whole structure perspective view of the utility model;

[0023] Fig. 2 It is a shoe sole structure perspective split view of the utility model;

[0024] Fig. 3 It is a whole structure perspective explosion view of the utility model.

[0025] In the drawing: 1, vamp; 2, drainage and exhaust sole; 3, drainage and exhaust midsole; 4, drainage and exhaust sole inner layer; 5, Kevlar puncture-proof gasket; 6, drainage and exhaust sole outer layer; 7, drainage and exhaust groove one; 8, drainage and exhaust hole two; 9, drainage and exhaust groove two; 10, power support carbon plate; 11, oval inner cavity; 12, sole inner layer one-way valve; 13, ABS plastic sheet; 14, one-way valve clamping groove; 15, sole outer layer one-way valve; 16, support ball. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model. Embodiment one:

[0027] Please refer to Figs. 1-3 The utility model provides a technical scheme: a double-valve negative pressure drainage and exhaust combat boot, which comprises a vamp 1;

[0028] and a shoe sole below the vamp 1;

[0029] The shoe sole is made by integrally bonding from top to bottom in sequence of the drainage and exhaust sole 2, the drainage and exhaust midsole 3, the drainage and exhaust sole inner layer 4 and the drainage and exhaust sole outer layer 6 through glue;

[0030] Six drainage and exhaust holes one are arranged through the front palm surface of the drainage and exhaust midsole 3, rectangular grooves one and two are respectively arranged horizontally on the front palm surface of the drainage and exhaust sole inner layer 4 corresponding to the positions of the drainage and exhaust holes one, the drainage and exhaust groove one 7 is arranged on the top surface of the drainage and exhaust sole inner layer 4, one end of the drainage and exhaust groove one 7 is arranged through the rectangular groove one, the drainage and exhaust hole two 8 is arranged on the bottom surface of the rectangular groove one, and the bottom end of the drainage and exhaust hole two 8 is arranged through the rectangular groove two.

[0031] The bottom surface of the drainage and exhaust insole inner layer 4 is sequentially provided with an elliptical cavity 11 and a drainage and exhaust groove 9 from left to right. The elliptical cavity 11 and the drainage and exhaust groove 9 are internally connected. One end of the drainage and exhaust groove 1 is internally connected with the drainage and exhaust groove 9, and the other end of the drainage and exhaust groove 9 is internally connected with the rectangular groove 2.

[0032] A one-way valve 12 is arranged in the connection between the drainage and exhaust groove 9 and the elliptical cavity 11. The surface of the one-way valve 12 is fixedly connected with the inner wall of the drainage and exhaust groove 9. A support ball 16 and an ABS plastic sheet 13 are sequentially arranged in the elliptical cavity 11 from top to bottom. The support ball 16 is made of supercritical foaming material. The outer side of the ABS plastic sheet 13 is sealingly and fixedly connected with the inner wall of the elliptical cavity 11.

[0033] A one-way valve clamping groove 14 is horizontally arranged at the front position of the heel of the drainage and exhaust insole inner layer 4. The one-way valve clamping groove 14 is internally connected with the elliptical cavity 11. A one-way valve 15 is fixedly arranged in the one-way valve clamping groove 14. The front end of the one-way valve 15 extends to the outer side of the drainage and exhaust insole outer layer 6 through the side of the drainage and exhaust insole outer layer 6.

[0034] Further, a support ball 16 made of supercritical foaming material is arranged in the elliptical cavity 11. The support ball 16 supports the elliptical cavity 11. The elliptical cavity 11 is tightly combined with the ABS plastic sheet 13. The water and air in the insole cavity can be discharged outside the shoe through the one-way valve 12 and the one-way valve 15 under the extrusion of external force. The problem that the water in the insole cavity cannot be effectively discharged outside the shoe in the process of wading outdoors is solved. Embodiment two

[0035] Please refer to Figs. 1-3 On the basis of the first embodiment, it is further obtained that the drainage and exhaust insole 2 is provided with two layers which are adhered to each other. The upper layer of the drainage and exhaust insole 2 is a water-permeable and air-permeable mesh cloth. The lower layer of the drainage and exhaust insole 2 is made of PU cotton foaming. The lower layer of the drainage and exhaust insole 2 is uniformly and internally provided with drainage and air-permeable channels.

[0036] The drainage and exhaust midsole 3 is made of Kevlar puncture-resistant midsole. The drainage and exhaust insole inner layer 4 is made of high-density EVA foaming. The top surface of the drainage and exhaust insole inner layer 4 is provided with a power support carbon plate 10. The bottom surface of the power support carbon plate 10 is fixedly and inlaidly arranged with the top surface of the drainage and exhaust insole inner layer 4. The power support carbon plate 10 is made of carbon fiber plate material which is formed by using resin to infiltrate and harden the carbon fibers arranged in the same direction.

[0037] The rectangular groove one and the rectangular groove two are bonded with Kevlar puncture-proof gaskets 5, the outer layer 6 of the drainage and exhaust sole is pressed from rubber material, and the outer layer 6 of the drainage and exhaust sole is provided with anti-skid lines on the bottom surface.

[0038] Further, the embodiment is provided with the anti-skid lines on the bottom surface of the outer layer 6 of the drainage and exhaust sole, the anti-skid lines can increase the roughness of the surface of the outer layer 6 of the drainage and exhaust sole, thereby increasing the friction of the overall combat boots and improving the field combat capability of the soldiers.

[0039] In use, a solid support ball 16 made of supercritical foaming material is placed in the elliptical cavity 11, the support ball 16 supports the elliptical cavity 11, and the elliptical cavity 11 is tightly combined with the ABS plastic sheet 13, so that water and air in the shoe cavity can be discharged outside the shoe through the cooperation of the inner layer one-way valve 12 and the outer layer one-way valve 15 under the pressure formed by external force, the problem that water cannot be effectively discharged outside the shoe cavity in the process of wading in the field with traditional shoes is solved, the anti-skid lines are arranged on the bottom surface of the outer layer 6 of the drainage and exhaust sole, the anti-skid lines can increase the roughness of the surface of the outer layer 6 of the drainage and exhaust sole, thereby increasing the friction of the overall combat boots and improving the field combat capability of the soldiers.

[0040] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.

Claims

1. A dual-valve negative pressure drainage and exhaust combat boot, comprising an upper (1); And the sole below the upper (1); Its features are: The sole is made of a drainage and ventilation hot sole (2), a drainage and ventilation midsole (3), a drainage and ventilation inner layer of the sole (4), and a drainage and ventilation outer layer of the sole (6) bonded together with glue from top to bottom; The drainage and ventilation midsole (3) has six drainage and ventilation holes 1 through the upper and lower surfaces of the forefoot. The drainage and ventilation insole inner layer (4) has rectangular groove 1 and rectangular groove 2 horizontally opened at the upper and lower ends of the forefoot, corresponding to the positions of the drainage and ventilation holes 1. The drainage and ventilation insole inner layer (4) has a drainage and ventilation groove 1 (7) on the top surface. One end of the drainage and ventilation groove 1 (7) is connected to the interior of the rectangular groove 1. The bottom surface of the rectangular groove 1 has a drainage and ventilation hole 2 (8). The bottom end of the drainage and ventilation hole 2 (8) is connected to the rectangular groove 2. The bottom surface of the drainage and ventilation insole inner layer (4) is provided with an elliptical inner cavity (11) and a drainage and ventilation groove two (9) from left to right. The elliptical inner cavity (11) and the drainage and ventilation groove two (9) are connected internally. One end of the drainage and ventilation groove one (7) passes through the drainage and ventilation insole inner layer (4) and the drainage and ventilation groove two (9) are connected internally. The other end of the drainage and ventilation groove two (9) is connected internally to the rectangular groove two.

2. The dual-valve negative pressure drainage and exhaust combat boot according to claim 1, characterized in that: The drainage and ventilation ironing base (2) is composed of two layers bonded together. The upper layer of the drainage and ventilation ironing base (2) is a water-permeable and breathable mesh fabric, and the lower layer of the drainage and ventilation ironing base (2) is made of PU cotton foam. The lower layer of the drainage and ventilation ironing base (2) has drainage and ventilation channels evenly distributed vertically.

3. The dual-valve negative pressure drainage and exhaust combat boot according to claim 2, characterized in that: The drainage and ventilation midsole (3) is made of Kevlar puncture-resistant midsole, and the drainage and ventilation insole inner layer (4) is made of high-density EVA foam.

4. The dual-valve negative pressure drainage and exhaust combat boot according to claim 3, characterized in that: The top surface of the drainage and ventilation shoe sole inner layer (4) is provided with a support carbon plate (10). The bottom surface of the support carbon plate (10) is fixedly embedded in the top surface of the drainage and ventilation shoe sole inner layer (4). The support carbon plate (10) is made of carbon fiber sheet formed by impregnating and hardening carbon fibers arranged in the same direction with resin.

5. The dual-valve negative pressure drainage and exhaust combat boot according to claim 4, characterized in that: The drainage and venting channel 2 (9) is connected to the elliptical inner cavity (11) with a one-way valve (12) inside the sole. The surface of the one-way valve (12) inside the sole is fixedly connected to the inner wall of the drainage and venting channel 2 (9). The elliptical inner cavity (11) is provided with a support ball (16) and an ABS plastic sheet (13) from top to bottom. The support ball (16) is made of supercritical foaming material. The outer side of the ABS plastic sheet (13) is sealed and fixedly connected to the inner wall of the elliptical inner cavity (11).

6. The dual-valve negative pressure drainage and exhaust combat boot according to claim 5, characterized in that: The inner layer (4) of the drainage and ventilation sole has a horizontal one-way valve slot (14) at the front of the heel. The inside of the one-way valve slot (14) is connected to the inside of the elliptical inner cavity (11). The one-way valve (15) of the outer layer of the sole is fixedly installed inside the one-way valve slot (14). The front end of the one-way valve (15) of the outer layer of the sole extends through the side of the outer layer (6) of the drainage and ventilation sole to the outside of the outer layer (6).

7. A dual-valve negative pressure drainage and exhaust combat boot according to claim 6, characterized in that: Kevlar anti-puncture pads (5) are bonded to both rectangular groove one and rectangular groove two.

8. The dual-valve negative pressure drainage and exhaust combat boot according to claim 7, characterized in that: The drainage and ventilation outsole outer layer (6) is made of rubber material and the bottom surface of the drainage and ventilation outsole outer layer (6) is provided with anti-slip texture.

Citation Information

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