Tying-free children shoes with all-directional binding function

By incorporating drawstrings and adjustment components on the upper surface of the laceless children's shoes, combined with support plates and hanging posts, the problem of insufficient fit between the upper and the body is solved, improving wearing comfort and stability, and reducing the risk of slipping off.

CN224179247UActive Publication Date: 2026-05-01FUJIAN JOYYOU SPORTS GOODS
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN JOYYOU SPORTS GOODS
Filing Date
2025-05-26
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing laceless children's shoes, without shoelaces, have a poor fit between the upper and the foot, resulting in reduced wearing comfort and a tendency to slip off during exercise.

Method used

A drawstring is installed on the surface of the shoe upper, and its tightness can be adjusted by an adjuster. The drawstring wraps around the ankle and extends to the heel. Combined with support plates, hanging posts and elastic cords, the shoe upper improves the fit and stability of the body.

Benefits of technology

It improves the fit between the shoe upper and the foot, reduces the possibility of the shoe slipping off during exercise, and enhances the stability and lifespan of the structure.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224179247U_ABST
    Figure CN224179247U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of children's shoes, and provides a tying-free children's shoe with an all-directional binding function, the tying-free children's shoe comprises a sole and an upper, and the upper is provided with a welt for a human foot to stretch in; a binding rope penetrates through the surface, located on the instep portion of the human body, of the upper in a crossed mode, the binding rope bypasses the surface, located on the ankle portion of the human body, of the upper and extends to the heel portion, located on the human body, of the upper, and the upper is provided with an adjusting piece used for adjusting the tightness of the binding rope. According to the tying-free children shoes with the all-directional binding function, the fitting degree between the uppers and the feet of the human body can be improved.
Need to check novelty before this filing date? Find Prior Art

Description

A type of slip-on children's shoe with all-around support function Technical Field

[0001] This application relates to the technical field of children's shoes, and in particular to a tieless children's shoe with an all-around binding function. Background Technology

[0002] Children's shoes refer to shoes designed specifically for children. When designing and producing these shoes, the growth and development characteristics of children's feet in this age group are fully considered. They mainly emphasize lightweight, breathability, comfort, and suitability for healthy foot growth.

[0003] In the market, no-lace children's shoes are becoming increasingly popular with consumers because they eliminate the need for traditional shoelaces. The design philosophy behind these shoes is to provide children with a more convenient wearing experience. The uppers of these shoes are typically made of elastic materials, thus eliminating the need for additional lacing.

[0004] However, these types of laceless children's shoes mainly focus on ease of putting on and taking off. In practice, without the restraint of shoelaces, the fit between the shoe upper and the foot is poor, resulting in reduced wearing comfort. In some cases, the shoes may even slip off during exercise, so further improvements are needed. Summary of the Invention

[0005] To improve the fit between the shoe upper and the human foot, this application provides a lace-free children's shoe with an all-around compression function.

[0006] The present application provides a tie-free children's shoe with all-around support function, employing the following technical solution:

[0007] A laceless children's shoe with all-around tightening function includes a sole and an upper. The upper has an opening for the foot to enter. A tightening cord is crisscrossed on the surface of the upper at the instep, wraps around the surface of the upper at the ankle, and extends to the heel. The upper has an adjustable element for adjusting the tightness of the tightening cord.

[0008] By employing the aforementioned technical solution, a drawstring is incorporated into the surface of the shoe upper, and its tightness is adjusted using an adjustable component. This drawstring tightens around the shoe upper, improving the fit between the shoe upper and the foot, thereby enhancing the wearer's comfort. Furthermore, the drawstring wraps around the shoe upper at the ankle and extends to the heel, further conforming the shoe upper to the ankle and reducing the likelihood of the shoe slipping off during exercise.

[0009] Optionally, the adjusting component includes an adjusting seat, an adjusting block, and a return spring. The adjusting seat has an adjusting cavity on its surface, and the adjusting block is slidably installed in the adjusting cavity. The side wall of the adjusting seat has a first through hole communicating with the adjusting cavity, and the side wall of the adjusting block has a second through hole. Both the first and second through holes are used for the passing of the coiling rope. The return spring is disposed between the adjusting seat and the adjusting block. Under normal conditions, the return spring forces the adjusting block to be partially exposed in the adjusting cavity, and the first and second through holes are misaligned.

[0010] By adopting the above technical solution, under normal conditions, the return spring forces the first through hole and the second through hole to form a misalignment to fix the rope; when it is necessary to adjust the tightness, press the adjusting block to force the first through hole and the second through hole to slide to the opposite side, so that the tightness can be adjusted, improving the overall ease of operation of the structure.

[0011] Optionally, the shoe upper is provided with support plates on both sides of the human ankle, and one end of each support plate extends to the surface of the shoe upper located on the human arch.

[0012] By adopting the above technical solution and setting the support plate, the structural support effect of the shoe upper on both sides of the ankle is improved, thereby reducing the possibility of the wearer spraining their ankle while walking or exercising.

[0013] Optionally, the shoe upper is provided with a first connecting rope on both sides of the ankle, and the shoe upper is provided with a second connecting rope on both sides of the arch. A first passage is formed between the first connecting rope and the surface of the shoe upper, and between the second connecting rope and the surface of the shoe upper, for the fastening rope to pass through.

[0014] By adopting the above technical solution, the setting of the first connecting rope and the second connecting rope provides a first passage for the drawstring, so that the drawstring is crossed and passed through the surface of the shoe upper.

[0015] Optionally, both ends of the first connecting rope and both ends of the second connecting rope are connected to the surface of the shoe upper, and the support plate covers both ends of the first connecting rope and both ends of the second connecting rope.

[0016] By adopting the above technical solution, the support plate covers both ends of the first and second connecting ropes, improving the connection stability between the first connecting rope and the shoe upper, and between the second connecting rope and the shoe upper, thereby increasing the service life of the overall structure.

[0017] Optionally, the sole is provided with a limiting seat on the side surface of the human heel, and the surface of the limiting seat is provided with a hanging post for attaching a rope.

[0018] By adopting the above technical solution, after the drawstring is gathered on the surface of the shoe upper, the drawstring is hung on the hanging post, thereby fixing the drawstring and reducing the possibility of the drawstring swinging freely at the heel of the wearer during walking.

[0019] Optionally, the support plate has a constriction channel between itself and the surface of the shoe upper, and an elastic rope is provided in the constriction channel. One end of the elastic rope extends out of the constriction channel and is connected to the limiting seat.

[0020] By adopting the above technical solution, the elastic cord is threaded through the constriction channel, which can improve the constriction effect of the shoe upper at the ankle, making the shoe upper fit the ankle better, improving wearing comfort, and reducing the possibility of the wearer spraining their ankle.

[0021] Optionally, a sliding block is slidably mounted on the surface of the limiting seat, and the hanging post is disposed on the sliding block; when the gathering rope is hung on the hanging post, the sliding block pulls the elastic rope and forces the elastic rope to tighten the surface of the shoe upper.

[0022] By adopting the above technical solution, the drawstring gathers the upper of the shoe and is then attached to the hanging post. The drawstring pulls the sliding block through the hanging post, thereby tightening the elastic rope. This allows the elastic rope to gather the upper of the shoe at the ankle, improving the fit between the upper of the shoe and the ankle.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. By incorporating drawstrings, drawstrings are installed on the surface of the shoe upper, and their tightness can be adjusted via adjustable components. These drawstrings tighten around the shoe upper, improving the fit between the shoe upper and the foot, thereby enhancing wearer comfort. Furthermore, the drawstrings wrap around the shoe upper at the ankle and extend to the heel, further conforming to the ankle and reducing the likelihood of the shoe slipping off during exercise.

[0025] 2. By setting up support plates, the structural support effect of the shoe upper on both sides of the ankle is improved, thereby reducing the possibility of ankle sprains during walking or exercise; in addition, the support plates cover the ends of the first and second connecting ropes, improving the connection stability between the first connecting rope and the shoe upper, and between the second connecting rope and the shoe upper, thereby improving the service life of the overall structure.

[0026] 3. By setting up the hanging post, after the drawstring is gathered on the surface of the shoe upper, the drawstring is hung on the hanging post, thereby fixing the drawstring and reducing the possibility of the drawstring swinging freely at the heel of the wearer during walking. Attached Figure Description

[0027] Figure 1 is a schematic diagram of the overall structure of Embodiment 1;

[0028] Figure 2 is a partial cross-sectional view of the adjusting component in Embodiment 1;

[0029] Figure 3 is a partial cross-sectional view of Embodiment 2 showing the hanging column;

[0030] Figure 4 is a partial cross-sectional view of the elastic rope in Example 3.

[0031] Explanation of reference numerals in the attached drawings: 1. Sole; 2. Upper; 21. Shoe opening; 22. First connecting rope; 23. Second connecting rope; 24. First threading channel; 25. Elastic band; 26. First lifting strap; 27. Second lifting strap; 28. Third connecting rope; 29. ​​Positioning piece; 291. Second threading channel; 3. Gathering rope; 31. Hanging section; 4. Adjusting component; 41. Adjusting seat; 411. Adjusting cavity; 412. First threading hole; 42. Adjusting block; 421. Second threading hole; 43. Return spring; 5. Support piece; 51. Gathering channel; 52. Elastic rope; 6. Limiting seat; 61. Hanging post; 62. Sliding block. Detailed Implementation

[0032] The present application will be further described in detail below with reference to Figures 1-4.

[0033] Example 1:

[0034] This application discloses a tieless children's shoe with an all-around binding function.

[0035] Referring to Figure 1, a laceless children's shoe with an all-around compression function includes a sole 1 and an upper 2. The upper 2 is fixedly installed on the sole 1. The upper 2 has an opening 21 for the human foot to enter. An elastic band 25 is sewn and fixed to the surface of the upper 2, and the elastic band 25 is looped around the opening 21. A first lifting strap 26 is sewn and fixed to the surface of the upper 2 at the heel of the human foot, and a second lifting strap 27 is sewn and fixed to the surface of the upper 2 at the instep of the human foot.

[0036] The shoe upper 2 has support plates 5 installed on both sides of the human ankle. The support plates 5 can be fixed to the surface of the shoe upper 2 by adhesive. One end of each support plate 5 extends to the surface of the shoe upper 2 located at the arch of the human foot.

[0037] Referring to Figures 1 and 2, a drawstring 3 is crisscrossed on the surface of the shoe upper 2 at the instep of the human foot. The drawstring 3 wraps around the surface of the shoe upper 2 at the ankle and extends to the heel of the shoe upper 2. The shoe upper 2 is provided with an adjusting member 4 for adjusting the tightness of the drawstring 3.

[0038] The adjusting component 4 includes an adjusting seat 41, an adjusting block 42, and a return spring 43. The adjusting seat 41 is located at the heel of the shoe upper 2. An adjusting cavity 411 is formed on the surface of the adjusting seat 41, and the adjusting block 42 is slidably installed in the adjusting cavity 411. A first through hole 412 communicating with the adjusting cavity 411 is formed on the side wall of the adjusting seat 41, and a second through hole 421 is formed on the side wall of the adjusting block 42. Both the first through hole 412 and the second through hole 421 are used for the drawstring 3 to pass through. One end of the return spring 43 is fixedly connected to the inner wall of the adjusting cavity 411, and the other end is fixedly connected to the adjusting block 42. Under normal conditions, the return spring 43 forces the adjusting block 42 to be partially exposed in the adjusting cavity 411, and a misalignment is formed between the first through hole 412 and the second through hole 421.

[0039] The shoe upper 2 has first connecting ropes 22 on both sides of the ankle, second connecting ropes 23 on both sides of the arch, and third connecting ropes 28 on both sides of the forefoot. The ends of the first connecting ropes 22, the second connecting ropes 23, and the third connecting ropes 28 are sewn to the surface of the shoe upper 2. First passageways 24 are formed between the first connecting ropes 22 and the surface of the shoe upper 2, between the second connecting ropes 23 and the surface of the shoe upper 2, and between the third connecting ropes 28 and the surface of the shoe upper 2 for the threaded fastening ropes 3 to pass through.

[0040] It should be noted that in this embodiment, the support plate 5 covers both ends of the first connecting rope 22 and both ends of the second connecting rope 23, and the support plate 5 is also fixedly connected to the first connecting rope 22 and the second connecting rope 23 by sewing.

[0041] Multiple positioning pieces 29 are installed on the surface of the shoe upper 2 located on the instep of the human foot. The positioning pieces 29 are installed on the surface of the shoe upper 2 by sewing. The positioning pieces 29 have a second passage 291 for the drawstring 3 to pass through.

[0042] The implementation principle of Embodiment 1 of this application is as follows: A drawstring 3 is provided on the surface of the shoe upper 2, and its tightness is adjusted by the adjusting member 4, so that the drawstring 3 binds the surface of the shoe upper 2, thereby improving the fit between the shoe upper 2 and the human foot, and thus improving the wearer's wearing comfort. In addition, the drawstring 3 passes around the surface of the shoe upper 2 at the ankle and extends to the heel of the shoe upper 2, so that the shoe upper 2 fits the ankle better and reduces the possibility of the shoe slipping off during the wearer's exercise.

[0043] The support plate 5 serves two purposes. First, it enhances the structural support of the shoe upper 2 on both sides of the ankle, thereby reducing the likelihood of ankle sprains during walking or exercise. Second, the support plate 5 covers both ends of the first connecting rope 22 and the second connecting rope 23, improving the connection stability between the first connecting rope 22 and the shoe upper 2, and between the second connecting rope 23 and the shoe upper 2, thus extending the overall structural lifespan.

[0044] Example 2:

[0045] This application discloses a tieless children's shoe with an all-around binding function.

[0046] The difference between the slip-on children's shoes with omnidirectional gathering function disclosed in this application and Embodiment 1 is as follows:

[0047] Referring to Figure 3, in this embodiment, the sole 1 has an insert groove on the side surface of the heel, into which a limiting seat 6 is embedded. The limiting seat 6 can be glued into the insert groove. The drawstring 3 has a hook section 31 at the heel position, which is elastically set. A hook post 61 is fixedly installed on the surface of the limiting seat 6. The hook section 31 is used to hook the hook post 61 of the limiting seat 6. When the hook section 31 of the drawstring 3 is hooked to the hook post 61, the hook section 31 deforms and elongates. An anti-slip block (not shown in the figure) is fixedly installed on the end face of the hook post 61. The outer diameter of the anti-slip block is larger than the outer diameter of the hook post 61.

[0048] The implementation principle of Embodiment 2 of this application is as follows: After the binding rope 3 binds the surface of the shoe upper 2, the binding rope 3 is attached to the binding rope 61, thereby fixing the binding rope 3 and reducing the possibility of the binding rope 3 swinging freely at the heel of the human body during the wearer's walking process.

[0049] Example 3:

[0050] This application discloses a tieless children's shoe with an all-around binding function.

[0051] The difference between the slip-on children's shoe with all-around gathering function disclosed in this application and Embodiment 2 is that:

[0052] Referring to Figure 4, in this embodiment, a sliding block 62 is slidably installed on the surface of the limiting seat 6, and a hanging post 61 is fixedly installed on the sliding block 62. The hanging post 61 is slidably installed on the limiting seat 6 through the sliding block 62. There is a gathering channel 51 between the support piece 5 and the surface of the shoe upper 2. The gathering channel 51 is a channel reserved when the support piece 5 is sewn to the surface of the shoe upper 2. Both ends of the gathering channel 51 extend along the length direction of the shoe upper 2.

[0053] An elastic cord 52 is installed inside the gathering channel 51. One end of the elastic cord 52 is sewn and fixed to the surface of the shoe upper 2 located inside the gathering channel 51, and the other end of the elastic cord 52 extends out of the gathering channel 51 and is fixedly connected to the sliding block 62 of the limiting seat 6. When the gathering cord 3 is hooked onto the hanging post 61, the gathering cord 3 drives the sliding block 62 to move upward, and pulls the elastic cord 52 through the sliding block 62, so as to force the elastic cord 52 to tighten the surface of the shoe upper 2.

[0054] The implementation principle of Embodiment 3 of this application is as follows: After the drawstring 3 draws the shoe upper 2, it is attached to the hanging post 61. The drawstring 3 pulls the sliding block 62 through the hanging post 61, thereby tightening the elastic rope 52. The elastic rope 52 can draw the shoe upper 2 to the surface of the human ankle, improve the fit between the shoe upper 2 and the human ankle, and thus improve the wearing comfort.

[0055] The above are preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made to the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A type of tieless children's shoe with all-around support function, characterized in that: The shoe includes a sole (1) and an upper (2). The upper (2) has an opening (21) for the human foot to enter. A drawstring (3) is crisscrossed on the surface of the upper (2) on the instep of the human foot. The drawstring (3) passes around the surface of the upper (2) on the ankle and extends to the heel of the upper (2). The upper (2) is provided with an adjusting member (4) for adjusting the tightness of the drawstring (3).

2. The tieless children's shoe with all-around gathering function according to claim 1, characterized in that: The adjusting component (4) includes an adjusting seat (41), an adjusting block (42), and a return spring (43). The adjusting seat (41) has an adjusting cavity (411) on its surface, and the adjusting block (42) is slidably installed in the adjusting cavity (411). The side wall of the adjusting seat (41) has a first through hole (412) communicating with the adjusting cavity (411), and the side wall of the adjusting block (42) has a second through hole (421). Both the first through hole (412) and the second through hole (421) are used for the coiling rope (3) to pass through. The return spring (43) is disposed between the adjusting seat (41) and the adjusting block (42). Under normal conditions, the return spring (43) forces the adjusting block (42) to be partially exposed in the adjusting cavity (411), and the first through hole (412) and the second through hole (421) are misaligned.

3. The child shoes without tying according to claim 1, wherein: The shoe upper (2) is provided with support plates (5) on both sides of the ankle of the human body, and one end of each support plate (5) extends to the surface of the shoe upper (2) located on the arch of the human foot.

4. The child shoes without tying according to claim 3, wherein: The upper (2) is provided with a first connecting rope (22) on both sides of the ankle of the human body, and the upper (2) is provided with a second connecting rope (23) on both sides of the arch of the human body. A first passage channel (24) for the binding rope (3) to pass through is formed between the first connecting rope (22) and the surface of the upper (2) and between the second connecting rope (23) and the surface of the upper (2).

5. The child shoes without tying according to claim 4, wherein: Both ends of the first connecting rope (22) and both ends of the second connecting rope (23) are connected to the surface of the shoe upper (2), and the support plate (5) covers both ends of the first connecting rope (22) and both ends of the second connecting rope (23).

6. A tie-free children's shoe with all-around gathering function according to claim 3, characterized in that: The sole (1) is provided with a limiting seat (6) on the side surface of the human heel, and the surface of the limiting seat (6) is provided with a hanging post (61) for attaching the rope (3).

7. A tie-free children's shoe with all-around gathering function according to claim 6, characterized in that: There is a gathering channel (51) between the support plate (5) and the surface of the shoe upper (2). An elastic rope (52) is provided in the gathering channel (51). One end of the elastic rope (52) extends out of the gathering channel (51) and is connected to the limiting seat (6).

8. A tie-free children's shoe with all-around gathering function according to claim 7, characterized in that: The surface of the limiting seat (6) is slidably mounted with a sliding block (62), and the hanging post (61) is disposed on the sliding block (62); when the gathering rope (3) is attached to the hanging post (61), the sliding block (62) pulls the elastic rope (52) and forces the elastic rope (52) to tighten the surface of the shoe upper (2).