Ribbon adjusting type shoe and adjusting buckle
The shoe buckle mechanism with slots and limit bars provides secure lace fixation and easy single-handed tension adjustment, addressing stability and convenience issues in lace adjustment.
Patent Information
- Application Number
- CN202422563949.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-23
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-10-23
AI Technical Summary
The existing buckles are difficult to stabilize and secure the rope and are inconvenient to operate, which affects the user experience.
A webbing adjustment shoe is designed, using adjustment buckles, including groove body and limit beam structures, allowing the movable webbing to be stably fixed in the groove body and adjust the tightness through one-handed operation.
The movable webbing is stable and fixed on the adjustment buckle, which improves the operation convenience and can adjust the tightness with one hand.
Smart Images

Figure CN223094881U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a buckle, in particular to a webbing-adjustable shoe and an adjusting buckle. Background Art
[0002] A wearing object is often equipped with a buckle to adjust the tightness of a cord (such as a webbing). Therefore, how to stably position the cord in the buckle and improve the operation convenience between the buckle and the cord has become one of the important development directions in this field. Thus, the applicant believes that the above defects can be improved, and thus specially delved into research and combined with the application of scientific principles, and finally proposed a utility model with reasonable design and effective improvement of the above defects. Summary of the Utility Model
[0003] An object of an embodiment of the utility model is to provide a webbing-adjustable shoe and an adjusting buckle, which can effectively improve the defects that may occur in the existing buckle.
[0004] An embodiment of the utility model discloses a webbing-adjustable shoe, which includes: a shoe body, which includes a instep section and two heel sections respectively located on opposite sides of the instep section; an adjusting buckle, which has a top surface and a bottom surface located on opposite sides along a thickness direction, the adjusting buckle is installed on the instep section of the shoe body, and the bottom surface of the adjusting buckle faces the instep section; wherein, the adjusting buckle includes: two slots, each of which is through along the thickness direction, and each slot has a first end wall and a second end wall; wherein, the bottom edge of the second end wall of each slot is located on the bottom surface; two limiting beams, which are respectively formed inside the two slots and adjacent to the top surface, and a front cord-passing hole is formed between each limiting beam and the first end wall of the corresponding slot, and a rear cord-passing hole is formed between the limiting beam and the second end wall; a movable webbing, which includes: two restraint sections, which are respectively installed on the two heel sections; two adjusting sections, which are respectively connected to the two restraint sections and located above the instep section and the two adjusting sections respectively pass through the two slots; two control sections, which are respectively connected to the two adjusting sections; wherein, in each slot and the corresponding adjusting section, the adjusting section passes through the front cord-passing hole from the bottom surface and winds around the limiting beam, and passes through the rear cord-passing hole and abuts against the bottom edge of the second end wall; wherein, each control section can be pulled in a direction away from the adjusting buckle, so that its length is increased and the length of the corresponding restraint section is shortened.
[0005] Optionally, the two second end walls of the adjusting buckle can be turned in a direction away from the instep section, so that the lengths of the two control sections are shortened and the lengths of the two restraint sections are increased.
[0006] Optionally, in each slot, the limiting beam has a front guiding surface, and the distance between the front guiding surface and the first end wall increases in a direction away from the top surface.
[0007] Optionally, within each slot, at least a portion of the bottom edge of the second end wall lies on the extension path of the front guiding surface.
[0008] Optionally, within each slot, the second end wall has a rear guiding surface facing the limiting beam, and the distance between it and the limiting beam tapers in a direction away from the top surface.
[0009] Optionally, within each slot, the top edge of the rear guiding surface is connected to the top surface, the second end wall has a bearing surface connected to the bottom edge of the rear guiding surface, and the corresponding adjustment section abuts against the bearing surface and the bottom edge of the second end wall.
[0010] Optionally, within each slot, the bearing surface and the bottom edge of the second end wall in a layout direction along the vertical thickness direction are not shielded by the limiting beam.
[0011] Optionally, the adjustment buckle includes a mounting portion adjacent to the first end walls of the two slots; the shoe body includes a positioning webbing, and both ends of the positioning webbing are respectively mounted on the instep section and the mounting portion of the adjustment buckle.
[0012] Optionally, each slot defines a middle dividing plane, and the middle dividing planes of the two slots intersect on a side away from the two second end walls and adjacent to the mounting portions of the two first end walls, so that the two middle dividing planes form an included angle between 15 degrees and 60 degrees.
[0013] An embodiment of the present utility model also discloses an adjustment buckle, which has a top surface and a bottom surface located on opposite sides along a thickness direction. The adjustment buckle includes: two slots, each of which is through along the thickness direction, and each slot has a first end wall and a second end wall; wherein, the bottom edge of the second end wall of each slot is located on the bottom surface; two limiting beams are respectively formed within the two slots and adjacent to the top surface, and a front threading hole is formed between each limiting beam and the first end wall of the corresponding slot, and a rear threading hole is formed between the limiting beam and the second end wall.
[0014] In summary, for the webbing adjustment type shoes and the adjustment buckle disclosed in the embodiments of the present utility model, a structural configuration between the two slots and the two limiting beams is provided for the movable webbing, so that the movable webbing can be stably positioned on the adjustment buckle, and at the same time, it is also beneficial for the user to control its tightness in a single - hand manner, thereby significantly improving the operation convenience between the adjustment buckle and the movable webbing.
[0015] To further understand the features and technical content of the present utility model, please refer to the following detailed description and drawings of the present utility model. However, these descriptions and drawings are only used to illustrate the present utility model and do not impose any limitation on the protection scope of the present utility model. Description of the Drawings
[0016] Figure 1 Schematic diagram of the webbing-adjustable shoe according to an embodiment of the present invention.
[0017] Figure 2 Another schematic diagram of the webbing-adjustable shoe according to an embodiment of the present invention.
[0018] Figure 3 Stereoscopic schematic diagram of the adjusting buckle according to an embodiment of the present invention.
[0019] Figure 4 It is Figure 3 Stereoscopic schematic diagram from another perspective.
[0020] Figure 5 It is Figure 3 Top view schematic diagram of
[0021] Figure 6 It is Figure 3 Cross-sectional schematic diagram along the section line VI-VI.
[0022] Figure 7 It is Figure 2 Cross-sectional schematic diagram of Detailed implementation manners
[0023] The following are specific embodiments to illustrate the implementation manners of the present invention regarding "webbing-adjustable shoes and adjusting buckles". Those skilled in the art can understand the advantages and effects of the present invention from the content disclosed in this specification. The present invention can be implemented or applied through other different specific embodiments, and various details in this specification can also be modified and changed based on different viewpoints and applications without departing from the concept of the present invention. Additionally, the drawings of the present invention are only simple schematic illustrations and are not drawn according to actual sizes, which is stated in advance. The following implementation manners will further detail the related technical content of the present invention, but the disclosed content is not intended to limit the protection scope of the present invention.
[0024] It should be understood that although terms such as "first", "second", "third", etc. may be used in this article to describe various components or features, these components or features should not be limited by these terms. These terms are mainly used to distinguish one component from another, or one feature from another. Additionally, the term "or" used in this article should, depending on the actual situation, possibly include any one or a combination of multiple related listed items.
[0025] Please refer to Figures 1 to 7 as shown, which is an embodiment of the present invention. As Figure 1 and Figure 2As shown, this embodiment discloses a webbing-adjustable shoe 100, which includes a shoe body 2, an adjustment buckle 1 installed on the shoe body 2, and a movable webbing 3 connecting the shoe body 2 and the adjustment buckle 1. It should be noted first that in this embodiment, the webbing-adjustable shoe 100 can, through the structural configuration of the adjustment buckle 1, enable the movable webbing 3 to be stably positioned in the adjustment buckle 1 and at the same time facilitate the user to manipulate its tightness with one hand, thereby significantly improving the operational convenience between the adjustment buckle 1 and the movable webbing 3.
[0026] In addition, although the adjustment buckle 1 in this embodiment is described in combination with the shoe body 2 and the movable webbing 3, the present invention is not limited thereto. For example, in other embodiments not shown in the present invention, the adjustment buckle 1 can be used alone (such as being sold) or used in combination with other components according to actual needs; for example: the adjustment buckle 1 can be used in combination with clothing (such as clothes or pants), a bag body (such as a backpack, a leather bag, or a handbag), or bicycle accessories (such as a water bottle, a tool bucket, or a storage bag).
[0027] In this embodiment, the shoe body 2 includes a dorsal foot section 21, two heel sections 22 located on opposite sides of the dorsal foot section 21, and a positioning webbing 23 installed on the dorsal foot section 21. Among them, the adjustment buckle 1 can be installed on the dorsal foot section 21 of the shoe body 2 through the positioning webbing 23, but the present invention is not limited to this. For example, in other embodiments not shown in the present invention, the adjustment buckle 1 can also be installed on the dorsal foot section 21 of the shoe body 2 by other components according to actual needs.
[0028] Furthermore, in this embodiment, the movable webbing 3 is flat and has relatively little elasticity, so that the positioning method between the movable webbing 3 and the adjustment buckle 1 is different from that of an elastic cord, but the present invention is not limited to this. Among them, the movable webbing 3 includes two restraint sections 31, two adjustment sections 32 respectively connected to the two restraint sections 31, and two manipulation sections 33 respectively connected to the two adjustment sections 32.
[0029] Further, the two restraint sections 31 are respectively installed on the two heel sections 22, the two adjustment sections 32 are located on the dorsal foot section 21 and pass through the adjustment buckle 1, and the two manipulation sections 33 are the parts of the movable webbing 3 that respectively extend out of the adjustment buckle 1 from the two adjustment sections 32. In addition, the ends of the two manipulation sections 33 can be fixed together according to actual needs to facilitate the user's operation, but the present invention is not limited to this.
[0030] As Figures 3 to 6As shown, the adjusting buckle 1 has a one-piece structure formed integrally, and the adjusting buckle 1 has a top surface 1a and a bottom surface 1b located on opposite sides along a thickness direction T. The bottom surface 1b of the adjusting buckle 1 faces the instep section 21. In this embodiment, the thickness direction T is described with respect to the uppermost region perpendicular to the top surface 1a, but the present invention is not limited thereto.
[0031] In this embodiment, the adjusting buckle 1 includes two of the slots 11, two limiting beams 12 respectively formed within the two slots 11, and a mounting portion 13 connected to the two slots 11. Among them, each of the slots 11 is through along the thickness direction T, and each of the slots 11 has a first end wall 111, a second end wall 112 spaced from the first end wall 111, and two slot side walls 113 connecting the first end wall 111 and the second end wall 112. Among them, the bottom edge 1121 of the second end wall 112 of each of the slots 11 is located on the bottom surface 1b.
[0032] Furthermore, in this embodiment, the two slots 11 and their internal structures are arranged in a mirror-symmetrical configuration, and the two adjusting sections 32 of the movable webbing 3 are respectively inserted into the two slots 11. In this embodiment, each of the slots 11 defines a middle dividing plane P (parallel to the thickness direction T), and the middle dividing planes P of the two slots 11 intersect on the side of the mounting portion 13 away from the two second end walls 112 and adjacent to the two first end walls 111, so that an included angle σ11 between the two middle dividing planes P is between 15 degrees and 60 degrees (such as 20 degrees to 45 degrees), but the present invention is not limited thereto.
[0033] Moreover, the mounting portion 13 is adjacent to the first end walls 111 of the two slots 11 (for example, the mounting portion 13 is generally U-shaped and its two ends are respectively connected to the outer sides of the two slots 11), and the two ends of the positioning webbing 23 are respectively mounted on the instep section 21 and the mounting portion 13 of the adjusting buckle 1.
[0034] Both ends of each of the limiting beams 12 are respectively (vertically) connected to the two slot side walls 113 of the corresponding slot 11, and the two limiting beams 12 are adjacent to the top surface 1a of the adjusting buckle 1 and also adjacent to the first end wall 111. Among them, a front threading hole H1 is formed between each of the limiting beams 12 and the first end wall 111 of the corresponding slot 11, and a rear threading hole H2 is formed between the limiting beam 12 and the second end wall 112.
[0035] In this embodiment, each of the first end walls 111 is generally parallel to the thickness direction T and generally perpendicular to a layout direction D; that is to say, the layout direction D is along a direction perpendicular to the thickness direction T. More specifically, in each of the slots 11, the limiting beam 12 has a front guiding surface 121 facing the first end wall 111, and the distance between the front guiding surface 121 and the first end wall 111 increases gradually in a direction away from the top surface 1a of the adjusting buckle 1.
[0036] Furthermore, in each of the slots 11, in this embodiment, the front guiding surface 121 is an inclined plane, and at least a part of the bottom edge 1121 of the second end wall 112 lies on the extension path of the front guiding surface 121, but the present invention is not limited thereto.
[0037] Moreover, in each of the slots 11, the second end wall 112 is spaced from the limiting beam 12, and the second end wall 112 has a rear guiding surface 1122 facing the limiting beam 12 and a bearing surface 1123 connected between the rear guiding surface 1122 and the bottom edge 1121. The top edge of the rear guiding surface 1122 is connected to the top surface 1a, and the bearing surface 1123 is connected to the bottom edge of the rear guiding surface 1122. The distance between the rear guiding surface 1122 and the limiting beam 12 decreases gradually in a direction away from the top surface 1a. In addition, in each of the slots 11, the bearing surface 1123 and the bottom edge 1121 of the second end wall 112 are not shielded by the limiting beam 12 along the layout direction D.
[0038] In summary, in each of the slots 11 and the corresponding adjusting sections 32, the adjusting section 32 passes through the front rope-passing hole H1 from the bottom surface 1b, winds around the limiting beam 12, and passes through the rear rope-passing hole H2 to abut against the bottom edge 1121 of the second end wall 112 (for example: each adjusting section 32 abuts against the bearing surface 1123 and the bottom edge 1121 of the corresponding second end wall 112).
[0039] Furthermore, as Figure 1 、 Figure 2 、 Figure 4 and Figure 7 shown, each of the control sections 33 can be pulled in a direction away from the adjusting buckle 1 so that its length is increased and the length of the corresponding restraint section 31 is shortened. Moreover, the two second end walls 112 of the adjusting buckle 1 can be flipped in a direction away from the instep section 21 so that the lengths of the two control sections 33 are shortened and the lengths of the two restraint sections 31 are increased.
[0040] [Technical effects of the embodiments of the present utility model]
[0041] In summary, for the webbing adjustment type shoes and the adjustment buckle disclosed in the embodiments of the present utility model, a structural configuration between the two groove bodies and the two limiting beams is provided for the movable webbing, so that under the premise that the movable webbing can be stably positioned on the adjustment buckle, it is also beneficial for the user to control its tightness in a single-handed manner, thereby significantly improving the operation convenience between the adjustment buckle and the movable webbing.
[0042] The content disclosed above is only an optional and feasible embodiment of the present utility model, and does not limit the patent scope of the present utility model. Therefore, all equivalent technical changes made by using the content of the specification and drawings of the present utility model are included in the patent scope of the present utility model.
Claims
1. A webbing-adjustable shoe, characterized in that, The webbing-adjustable shoe includes: A shoe body, which includes a dorsal section and two heel sections respectively located on opposite sides of the dorsal section; An adjustment buckle, which has a top surface and a bottom surface located on opposite sides along a thickness direction. The adjustment buckle is installed on the dorsal section of the shoe body, and the bottom surface of the adjustment buckle faces the dorsal section; wherein, the adjustment buckle includes: Two slots, each of which is penetrating along the thickness direction, and each slot has a first end wall and a second end wall; wherein, the bottom edge of the second end wall of each slot is located on the bottom surface; and Two limiting beams, which are respectively formed inside the two slots and adjacent to the top surface, and a front threading hole is formed between each limiting beam and the first end wall of the corresponding slot, and a rear threading hole is formed between the limiting beam and the second end wall; and A movable webbing, which includes: Two restraint sections, which are respectively installed on the two heel sections; Two adjustment sections, which are respectively connected to the two restraint sections and located above the dorsal section, and the two adjustment sections are respectively threaded through the two slots; and Two control sections, which are respectively connected to the two adjustment sections; Wherein, in each slot and the corresponding adjustment section, the adjustment section passes through the front threading hole from the bottom surface, winds around the limiting beam, and passes through the rear threading hole to abut against the bottom edge of the second end wall; wherein, each control section can be pulled in a direction away from the adjustment buckle to increase its length and shorten the length of the corresponding restraint section.
2. The webbing-adjustable shoe according to claim 1, wherein The two second end walls of the adjustment buckle can be flipped in a direction away from the dorsal section to shorten the lengths of the two control sections and increase the lengths of the two restraint sections.
3. The webbing-adjustable shoe according to claim 1, wherein In each slot, the limiting beam has a front guiding surface, and the distance between the front guiding surface and the first end wall gradually increases in a direction away from the top surface.
4. The webbing-adjustable shoe according to claim 3, characterized in that, In each slot, at least a part of the bottom edge of the second end wall falls on the extension path of the front guiding surface.
5. The webbing-adjustable shoe according to claim 1, wherein In each slot, the second end wall has a rear guiding surface facing the limiting beam, and the distance between the rear guiding surface and the limiting beam gradually decreases in a direction away from the top surface.
6. The webbing-adjustable shoe according to claim 5, wherein In each slot, the top edge of the rear guiding surface is connected to the top surface, the second end wall has a bearing surface connected to the bottom edge of the rear guiding surface, and the corresponding adjustment section abuts against the bearing surface and the bottom edge of the second end wall.
7. The webbing-adjustable shoe according to claim 6, wherein In each slot, the bearing surface and the bottom edge of the second end wall are not shielded by the limiting beam along a layout direction perpendicular to the thickness direction.
8. The webbing-adjustable shoe according to claim 1, wherein The adjustment buckle includes a mounting portion adjacent to the first end walls of the two slots; the shoe body includes a positioning webbing, and the two ends of the positioning webbing are respectively installed on the dorsal section and the mounting portion of the adjustment buckle.
9. The webbing-adjustable shoe according to claim 8, wherein Each of the slots defines a middle dividing plane, and the middle dividing planes of the two slots intersect on one side of the mounting portion that is far from the two second end walls and adjacent to the two first end walls, so that an included angle between 15 degrees and 60 degrees is formed between the two middle dividing planes.
10. An adjusting buckle, characterized in that, The adjusting buckle includes a top surface and a bottom surface located on opposite sides along a thickness direction, and the adjusting buckle includes: Two slots, each of which is through along the thickness direction, and each slot has a first end wall and a second end wall; wherein, the bottom edge of the second end wall of each slot is located on the bottom surface; and Two limiting beams are respectively formed inside the two slots and adjacent to the top surface, and a front rope passing hole is formed between each limiting beam and the first end wall of the corresponding slot, and a rear rope passing hole is formed between the limiting beam and the second end wall.