CN210143934U - Dynamic traction shoe assembly of reinforcing and traction shoe - Google Patents

Dynamic traction shoe assembly of reinforcing and traction shoe Download PDF

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Publication number
CN210143934U
CN210143934U CN201921105712.4U CN201921105712U CN210143934U CN 210143934 U CN210143934 U CN 210143934U CN 201921105712 U CN201921105712 U CN 201921105712U CN 210143934 U CN210143934 U CN 210143934U
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sole
elastic hollow
traction
traction shoe
shoe
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CN201921105712.4U
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Chinese (zh)
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张阳
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Fujian Guanglin Shoes Co Ltd
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Fujian Guanglin Shoes Co Ltd
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Abstract

The utility model belongs to the technical field of the gym shoes, more specifically relates to a dynamic tractive shoes subassembly of reinforcing and tractive shoes. The traction shoe component comprises one or more than two elastic hollow cavities, the adhesion of the sole of the traction shoe to the bending range of the foot during walking is enhanced, the comfort of the sole is enhanced, the correct and healthy walking posture can be guided, the penetrating structure arranged on the elastic hollow cavities can well support the weight of the foot and the human body, the weight of the traction shoe can reach as high as 250kg, the cavities communicated with each other in the elastic hollow cavities can contain fillers with different forms and materials, the wearing dynamic effect of the traction shoe is enhanced, the material of the elastic hollow cavities is not specifically limited, therefore, the traction shoe component can be made into a transparent effect or various colors, and the fashion sense of the traction shoe is enhanced.

Description

Dynamic traction shoe assembly of reinforcing and traction shoe
Technical Field
The utility model belongs to the technical field of the gym shoes, more specifically relates to a dynamic tractive shoes subassembly of reinforcing and tractive shoes.
Background
The traction shoes, namely the weight-bearing sport shoes, are specially designed for enhancing the foot force and the muscle and bone force of the person wearing training by adding accessories to adjust the weight of soles, and have certain effects on the bouncing force, the bone stretching and the walking speed. At present, the common traction shoes are characterized in that sole space is excavated inside a sports sole, a balancing weight is made of regenerated metals with large specific gravity, such as iron, copper and lead, and the like, and the balancing weight is subjected to surface process treatments, such as polishing, grinding, plastic dipping, spraying, rubber coating and the like, and is matched with rubber light blocks with the same volume and shape, so that the purpose of randomly adjusting the weight of the sole is achieved through various combinations, and the traction shoes are mainly used for special training of athletes and soldiers in troops and weight-bearing body building of common people.
Current tractive shoes all are the function of simple regulation foot weight and increase, and the precision that weight was adjusted to its accessory is generally not high enough, and weight adjustment accessory itself is because the reason of material, and the bending range of sole is not laminated when walking, leads to the foot uncomfortable, influences the walking gesture, reduces consumption and experiences. Meanwhile, the existing weight adjusting accessories are made of regenerated metal and are generally arranged on the soles in a concealed mode, so that the visual appearance of the traction shoes is common. However, with the prevalence of the healthy life concept, many young consumers gradually increase the sports demand, and the traction shoes with fashionable appearance and powerful dynamic sense are urgently needed to fill the market gap.
SUMMERY OF THE UTILITY MODEL
In view of the above problems in the background art, it is desirable to provide a traction shoe assembly and a traction shoe with enhanced dynamic sense, wherein the traction shoe assembly at least can enhance the dynamic sense experience of the traction shoe, and the produced traction shoe needs to have both fashionable appearance and comfortable walking performance.
In order to achieve the above objects, the present invention provides a traction shoe assembly with enhanced dynamic effect, which comprises one or more elastic hollow cavities, wherein each elastic hollow cavity comprises a first surface and a second surface, and the shape, size and sole of one or more elastic hollow cavities are matched, the elastic hollow cavity is provided with a through structure, the through structure runs through the first surface and the second surface, and the elastic hollow cavities are enclosed into a plurality of intercommunicated chambers.
In a second aspect of the present invention, the inventor provides a traction shoe with enhanced dynamic effect, wherein the traction shoe comprises a sole, the first aspect of the present invention provides a traction shoe assembly and a shoe body, the shoe body is connected with the sole, the sole comprises an upper surface facing the foot and a lower surface facing the ground, and the traction shoe assembly is disposed on the upper surface of the sole.
Different from the prior art, the technical scheme at least has the following beneficial effects: (1) the elastic hollow cavities enhance the fit of the sole of the traction shoe to the bending range of the foot during walking, enhance the comfort of the sole of the foot and guide the correct and healthy walking posture; (2) the penetrating structure arranged on the elastic hollow cavity plays a good role in supporting the weight of feet and a human body, and the weight of the elastic hollow cavity can be as high as 250 kg; (3) the cavities communicated with each other in the elastic hollow cavity can contain fillers with different forms and materials, so that the wearing dynamic sense of the traction shoes is enhanced; (4) the material of the elastic hollow cavity is not particularly limited, so that the traction shoe component can be made into a transparent effect or various colors, and the fashion sense of the traction shoe is enhanced.
Drawings
FIG. 1 is a schematic view of a traction shoe assembly consisting of only one elastic hollow cavity according to an embodiment;
FIG. 2 is a schematic diagram of a traction shoe assembly composed of three elastic hollow cavities according to an embodiment;
fig. 3 is a schematic view of a traction shoe assembly composed of two elastic hollow cavities according to an embodiment.
Description of reference numerals:
1. an elastic hollow cavity; 101. A first surface; 102. A second surface;
2. a chamber; 3. A through structure; 4. A filler;
1a, a first elastic hollow cavity; 1b, a second elastic hollow cavity;
1c, a third elastic hollow cavity; 1d, A elastic hollow cavity;
1e, B elastic hollow cavities;
5. an opening and closing device.
Detailed Description
The tension shoe assembly of the first aspect and the tension shoe of the second aspect of the present invention are described in detail below.
First, the traction shoe assembly of the first aspect of the present invention includes one or more elastic hollow cavities, wherein the elastic hollow cavities include a first surface and a second surface, and the shape, size and sole of an elastic hollow cavity or a combination of two or more elastic hollow cavities are adapted to each other, and the elastic hollow cavities are provided with a through structure, which runs through the first surface and the second surface and encloses the elastic hollow cavities into a plurality of intercommunicated chambers.
The utility model provides a tractive shoes subassembly is for setting up the accessory or the accessory combination that can supply the regulation weight on the sole. When the traction shoe component is an elastic hollow cavity, the shape and the size of the elastic hollow cavity are matched with the sole, and when the traction shoe component is more than two elastic hollow cavities, the elastic hollow cavities are spliced and combined along the horizontal direction or spliced and formed along the vertical direction, and the shape and the size of the elastic hollow cavities are matched with the sole. For the support effect of reinforcing tractive force shoes subassembly set up the structure that runs through on the elasticity cavity, run through the structure and objectively made elasticity cavity form a plurality of partitions and a plurality of intercommunicating cavity, the benefit of doing so lies in: the local pressure area that makes the tractive shoes subassembly grow, and human weight obtains the dispersion to its pressure that causes, and is bigger than the pressure-bearing that does not set up the through structure, and the support effect is better. The arrangement of the penetrating structures can be regular or irregular. When the walking chair is used for walking, the elastic hollow cavities at the heel parts have larger pressure bearing, and preferably, the number of the penetrating structures arranged at the elastic hollow cavities at the parts can be larger. The material for processing and preparing the elastic hollow cavity can be selected from but not limited to PVC, EVA or rubber.
Furthermore, in order to enable the traction shoe assembly to generate fashionable and dynamic visual effects or cool, soft and fluctuant sole feelings, fillers made of different materials can be arranged in the cavity of the elastic hollow cavity, and the fillers comprise particles, blocks, sheets, powder and/or liquid. The filler can be selected from one or more of metal particles, small metal blocks, foamed plastic blocks, small wood balls, process liquid, colorful sheets, fluorescent powder and other substances. Preferably, a granular, blocky, flaky, powdery and/or liquid filler is arranged in the cavity of the elastic hollow cavity.
Further, the utility model discloses a large amount of contrast studies have been made to the existence state of filler in the cavity, for satisfying different customers' demand, the filler can be along with the foot removes freely in the cavity of intercommunication, also can fix and play special vision and body-building effect in the cavity. Preferably, the filler is fixed to the inner wall of the chamber or is removably connected to the chamber.
The utility model discloses a make tractive shoes subassembly can adjust weight more nimble, furtherly elasticity cavity still is provided with the device that opens and shuts, is used for control opening or the closed state of cavity is in order to put into or take out the filler.
Further, the penetrating structure is irregularly shaped. In particular, in various embodiments, the cross-sectional shape of the through-structure may be, but is not limited to, circular, rectangular, square, kidney-shaped, triangular, or pentagonal.
Next, the second aspect of the present invention is to provide a traction shoe with enhanced dynamic feeling. The utility model provides an increase active tractive shoes, wherein, including the sole the utility model discloses an aspect tractive shoes subassembly and shoes body, shoes body is connected with the sole, the sole includes the upper surface of orientation foot and the lower surface on ground, tractive shoes subassembly sets up in the upper surface of sole.
Furthermore, the connection form between the traction shoe assembly and the upper surface of the traction shoe sole according to the first aspect of the present invention is fixed or detachable. That is, preferably, one or a combination of two or more elastic hollow cavities is fixedly connected or detachably connected with the sole.
Furthermore, in order to enhance the visual effect of the traction shoes of the utility model, the sole is hollow. In a more preferred embodiment, it is provided as a transparent, colorful or fluorescent effect to enhance fashion and interest of outdoor fitness.
To explain technical contents, structural features, and objects and effects of the technical solutions in detail, the following detailed description is given with reference to the accompanying drawings in conjunction with the embodiments. It should be understood that these examples are only for the understanding of the present invention and are not intended to limit the scope of the present invention.
The traction shoe assembly shown in fig. 1 consists of an elastic hollow cavity 1, the shape and size of which are matched with the sole 6. The elastic hollow cavity 1 comprises a first surface 101 and a second surface 102, a plurality of irregular penetrating structures 3 are arranged through the first surface and the second surface to divide the elastic hollow cavity 1 into a plurality of intercommunicated chambers 2. Inside the chamber 2 there is provided a granular filling 4, which filling 4 is freely movable inside the communicating chambers.
As shown in fig. 2, the traction shoe assembly is composed of three elastic hollow cavities 1, the three elastic hollow cavities are respectively a first elastic hollow cavity corresponding to the sole portion, a second elastic hollow cavity corresponding to the waist portion, and a third elastic hollow cavity corresponding to the heel portion, the first elastic hollow cavity 1a, the second elastic hollow cavity 1b, and the third elastic hollow cavity 1c respectively include a first surface 101 and a second surface 102, and the first elastic hollow cavity 1a, the second elastic hollow cavity 1b, and the third elastic hollow cavity 1c are spliced and combined along the horizontal direction to form the traction shoe assembly adapted to the shape and size of the sole. The traction shoe assembly still has a first surface and a second surface which have the same direction with the three elastic hollow cavities 1. Wherein, the first elastic hollow cavity 1a, the second elastic hollow cavity 1b and the third elastic hollow cavity 1c are provided with penetrating structures 3 penetrating through the respective first surface 101 and second surface 102. The penetrating structures 3 are irregular in shape, and the number or arrangement rule thereof is not particularly limited. The penetration structure 3 respectively encloses the three elastic hollow cavities into intercommunicated chambers 2. The chamber 2 is provided with a granular filling 4 and a liquid filling having a cooling effect, which filling is freely movable in the communicating chamber.
The tension shoe assembly shown in fig. 3 is composed of A, B two elastic hollow cavities. The shape and the size of the elastic hollow cavity A and the elastic hollow cavity B are respectively matched with the sole. The elastic hollow cavity 1d and the elastic hollow cavity 1e respectively comprise a first surface 101 and a second surface 102, and when the sole is used, the second surface 102 of the elastic hollow cavity 1d and the first surface 101 of the elastic hollow cavity 1e are stacked together and then placed on the upper surface of the sole. Similar to other designs provided by the utility model, the two elastic hollow cavities can be provided with or without a through structure. In the design shown in fig. 3, the two elastic hollow cavities are provided with a penetrating structure 3 penetrating through the first surface and the second surface. In the cavity 2 enclosed by the penetrating structure, the elastic hollow cavity A is provided with hard, soft or semi-hard foam plastic filler fixedly connected with the inner wall of the cavity. In other different specific designs, the foam plastic filler is embedded with, but not limited to, metal, wood, ceramic and other material fillers in the shapes of particles, blocks, sheets and the like.
The elastic hollow cavity can be made of materials selected from EVA, PU, PE or rubber, and is processed into transparent or opaque materials, and the color of the elastic hollow cavity can be processed into various single colors, transition colors, contrast colors and the like according to specific needs.
The elastic hollow cavity provided by the utility model is also provided with an opening and closing device 5 which can be but not limited to a flip embedded type, a zipper type, a hasp type, an engagement type or a sealing strip type in different specific embodiments.
In other different designs, the utility model provides an elastic hollow cavity's upper surface can also be surface treatment, for example set up surperficial abrupt contact, dull polish and handle to provide the function of massage or increase frictional force.
When using, will the utility model provides a traction shoes subassembly places on the sole, and surface contact can set up the shoe-pad on the upper surface of traction shoes subassembly with sole upper surface contact, the upper surface of traction shoes subassembly, or does not set up the shoe-pad, lets traction shoes subassembly direct and sole contact. Along with walking, jogging or climbing, the utility model provides a traction shoe subassembly provides weight, elasticity and the crookedness that adapts to the demand for the foot. In addition, because the chamber of the traction shoe component is also internally provided with granular, blocky, flaky, powdery and/or liquid fillers, the dynamic effect is generated under the action of the impact force of the feet and the ground. In addition, the foot can be cooled through special treatment of the tension shoe components and the filler raw materials.
The utility model provides a form of connection between traction shoes subassembly and traction shoes sole orientation shoes body surface is fixed or can dismantle. That is, preferably, one or a combination of two or more elastic hollow cavities is fixedly connected or detachably connected with the sole. More preferably, one or more than two elastic hollow cavities are detachably connected with the sole.
In other different embodiments, in order to enhance the visual effect of the traction shoes of the present invention, the sole may be hollow. In a more preferred embodiment, it is provided as a transparent, colorful or fluorescent effect to enhance fashion and interest of outdoor fitness.
It should be noted that, although the above embodiments have been described herein, the scope of the present invention is not limited thereby. Therefore, based on the innovative concept of the present invention, the changes and modifications of the embodiments described herein, or the equivalent structure or equivalent process changes made by the contents of the specification and the drawings of the present invention, directly or indirectly apply the above technical solutions to other related technical fields, all included in the protection scope of the present invention.

Claims (8)

1. The utility model provides an increase active tractive shoes subassembly, includes one or more than two elasticity cavity, its characterized in that, elasticity cavity include first surface and second surface, shape, size and the sole looks adaptation of an elasticity cavity or the combination of two or more than elasticity cavity, be provided with the run-through structure on the elasticity cavity, the run-through structure runs through first surface and second surface, encloses the elasticity cavity and separates into a plurality of intercommunicating cavities.
2. The tension shoe assembly of claim 1, wherein the chamber of the hollow resilient cavity is filled with a granular, block, tablet, powder and/or liquid filler.
3. Traction shoe assembly according to claim 2, wherein the filler is fixed to the inner wall of the chamber or is movably connected to the chamber.
4. Traction shoe assembly according to claim 2, wherein the resilient hollow chamber is further provided with an opening and closing device for controlling the opening or closing state of the chamber for inserting or removing the filler.
5. The tension shoe assembly of claim 1 wherein the pass-through structure is irregularly shaped.
6. A traction shoe for enhancing dynamic feeling, which comprises a sole, the traction shoe assembly of any one of claims 1 to 5, and a shoe body, wherein the shoe body is connected with the sole, the sole comprises an upper surface facing a foot and a lower surface facing the ground, and the traction shoe assembly is arranged on the upper surface of the sole.
7. The traction shoe as claimed in claim 6, wherein one or more of the elastic hollow cavities are fixedly connected or detachably connected with the sole.
8. Traction shoe according to claim 6, characterized in that the sole is hollow.
CN201921105712.4U 2019-07-15 2019-07-15 Dynamic traction shoe assembly of reinforcing and traction shoe Active CN210143934U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921105712.4U CN210143934U (en) 2019-07-15 2019-07-15 Dynamic traction shoe assembly of reinforcing and traction shoe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921105712.4U CN210143934U (en) 2019-07-15 2019-07-15 Dynamic traction shoe assembly of reinforcing and traction shoe

Publications (1)

Publication Number Publication Date
CN210143934U true CN210143934U (en) 2020-03-17

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110215010A (en) * 2019-07-15 2019-09-10 福建广林鞋业有限公司 A kind of pull up shoe assembly and tension shoes that enhancing is dynamic

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110215010A (en) * 2019-07-15 2019-09-10 福建广林鞋业有限公司 A kind of pull up shoe assembly and tension shoes that enhancing is dynamic

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