magnetic buckle
The two-piece buckle assembly uses magnets and angled surfaces for secure and easy engagement and disengagement, addressing the need for a stable, part-less buckle system.
Patent Information
- Application Number
- JP2023523538
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-10-22
- Filing Date
- 2021-09-07
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2041-09-07
AI Technical Summary
Existing two-piece buckles require moving parts like springs or hinges, which can be cumbersome and insecure under tension, especially in applications like seat belts.
A two-piece buckle assembly using magnets to attract and lock buckle portions together, with angled surfaces to facilitate easy engagement and disengagement without requiring springs or hinges, utilizing fastening hooks and wedges for secure attachment and sliding disengagement.
The buckle assembly provides secure and easy engagement and disengagement without moving parts, maintaining stability under tension, and aligning buckle sections for reliable connection.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to magnetic buckles, and more particularly to a two-piece slide buckle that is held in place by the cooperation of respective magnets in each piece. [Background technology]
[0002] Two-piece buckles are often used to connect two straps, such as in seat belts. The buckle is often locked together by a spring-loaded latch mechanism that can be released by lifting or lowering the latch or by pressing a button. Summary of the Invention [Problem to be solved by the invention]
[0003] An object of the present invention is to provide a two-piece buckle assembly that is easy to engage and disengage, does not require moving parts such as springs or hinges, and remains secure even under tension. [Means for solving the problem]
[0004] This and other objects are achieved by a buckle assembly having a first buckle portion cooperating with a second buckle portion, each buckle portion including a base having a plurality of outer surfaces and a plurality of inner surfaces extending from a central circular plane, a fastening opening having a fastening hook at one longitudinal end of the base and a first fastening wedge at the other longitudinal end of the base opposite the circular plane from the fastening hook. , base body Under the circular plane ofand a magnet enclosed within the first buckle portion. The first and second buckle portions are configured such that, by placing the inner surface of the first buckle portion in contact with the inner surface of the second buckle portion, the magnets attract each other and the fastening hooks of each buckle portion enter the fastening openings of the other buckle portion, locking the two buckle portions together and preventing disengagement under tension in opposite directions parallel to the longitudinal extent of the buckle assembly.
[0005] The fastening wedges are connected to the base and extend into the fastening openings of the first and second buckle sections, respectively. When the fastening hooks enter the openings and lock the two buckle sections together, the fastening hooks engage with the fastening wedges. Department The buckle portion has two side inclined and / or curved surfaces. These surfaces are formed to correspond to the shape of the opposing surface of the other buckle portion, so that when the two buckle portions are connected, the side The inclined surfaces face each other to form a sliding guideway that assists in disengaging the parts. The buckle parts are disengaged from each other by pushing the ends of the buckle parts inward and sliding the buckle parts away from each other parallel to the longitudinal direction of the buckle until the fastening wedge disengages from the fastening hook. The force required to move the buckle parts to disengage them must overcome the magnetic force holding the two buckle parts together as well as the frictional force connecting the fastening wedge to the fastening hook. side Because the angled and / or curved surfaces form a ramp that opposing buckle sections slide onto, the side angled surfaces provide additional force to disengage the buckle sections from one another when the buckle sections are slid in opposite directions. These side angled surfaces also help align the buckle sections with one another during engagement. Even if the sections are not initially aligned, the opposing buckle sections will disengage as the magnets pull the buckle sections toward one another. side The ramps slide relative to one another to align the two buckle sections and the hooks engage the fastening wedges to secure the buckle sections together.
[0006] The magnets attract each other when the inner surfaces of the buckle sections are placed together to keep the fastening hooks and fastening wedges engaged. When the two buckle sections are connected, each fastening wedge engages with the fastening hook of a corresponding one of the buckle sections. The side beveled surfaces allow one buckle section to more easily slide out of the other buckle section when sufficient longitudinal force is applied to disengage the buckle sections from each other.
[0007] To assist in disengaging the buckle sections from one another, the buckle sections are formed so that an edge of the first buckle section and an opposing edge of the second buckle section at one longitudinal end extend beyond the opposing edges of the second buckle section and the first buckle section, respectively, when the two buckle sections are connected. In this way, the outwardly extending edges can be more easily grasped and pressed by a user to disengage the buckle sections.
[0008] Preferably, each of the first and second buckle portions has at least one strap retaining bar connected to the base at an end having a fastening recess to allow the buckle portion to be connected to another object.
[0009] In one embodiment, the fastening hooks of at least one buckle section extend entirely across the base of another buckle section such that the fastening hooks are visible from the outer surface of the other buckle section when the buckle sections are locked together.
[0010] A cover may be attached to one or both of the substrates to cover their outer surfaces.
[0011] Other objects and features of the present invention will become apparent from the following detailed description considered in connection with the accompanying drawings, which are to be understood, however, as being designed for illustrative purposes only and not as a definition of the limits of the invention.
[0012] In the drawings, like reference numerals refer to like elements throughout the several views. [Brief explanation of the drawings]
[0013] [Figure 1] FIG. 2 is a top view of a buckle assembly according to the present invention. [Figure 2] FIG. 2 is a side view of the buckle assembly. [Figure 3] 1A and 1B are bottom and side perspective views of the buckle assembly. [Figure 4] FIG. 4 is a cross-sectional view taken along line IV-IV in FIG. [Figure 5] 10A and 10B are bottom and side perspective views of a second buckle portion according to the present invention. [Figure 6] 10A and 10B are perspective views of the top and side of the second buckle portion. [Figure 7] FIG. 10 is a side view of the second buckle portion. [Figure 8] FIG. 8 is a cross-sectional view taken along line VIII-VIII in FIG. 5. [Figure 9] 3A and 3B are perspective views of the bottom and side of the first buckle portion. [Figure 10] 1A and 1B are perspective views of the top and side of a first buckle portion. [Figure 11] FIG. 2 is a side view of the first buckle portion. [Figure 12] FIG. 10 is a cross-sectional view taken along line XII-XII in FIG. 9. [Figure 13] 10A and 10B are perspective views of the top and side of a cover for connecting to one of the buckle portions. [Figure 14] 1 is a perspective view of the bottom and side of the cover. FIG. [Figure 15] 1 is a top and side perspective view of a magnet enclosure. FIG. [Figure 16] 1 is a perspective view of the bottom and side of the magnet enclosure. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0014] Referring now in detail to the drawings, FIGS. 1-5 show a buckle assembly 1 according to the present invention. Buckle assembly 1 includes a first buckle section 10 and a second buckle section 20. Buckle section 10 has a base 11 having a plurality of outer surfaces 112 and a plurality of inner surfaces 111. Buckle section 20 has a base 21 having a plurality of outer surfaces 212 and a plurality of inner surfaces 211. Strap retaining bars 15, 25 are located on the outer edges of the bases 11, 21, respectively, extending beyond the overlapping portions of the bases 11, 21. Two additional strap retaining bars 151, 251 are also present on buckle sections 10, 20, respectively, to allow adjustment of each connected strap.
[0015] In another embodiment (not shown), strap retaining bar 151 may be configured the same as strap retaining bar 251 to allow adjustment of the straps on both buckle portions.
[0016] The edge 152 of the buckle portion 10 is located at the outer end of the base body 11, and the edge 252 of the buckle portion 20 is located at the end of the base body 21 opposite the edge 152. The cover 30 shown in FIGS. 13 and 14 is connected to the base body 21 of the second buckle portion 20 by fitting the protrusion 32 into the recess 29 (see FIG. 6) of the base body 21. As can be seen in FIG. 4, the cover 30 The other end of the cover is connected to the base 21 by fitting the claws 31 into the recesses 28 of the hooks 23 (see FIG. 5) to immovably secure the cover onto the base 21.
[0017] The individual buckle portions 10, 20 are shown in detail in Figures 5 to 12. Both buckle portions may be of the same construction, or may be made to differ in appearance and / or structure, as long as their cooperating properties are not compromised.
[0018] 5 to 8 and 13 to 16 show the buckle part 20 in an unassembled state. As shown in FIG. 5, the base body 21 is center Circular plane (Circular plane)2111. On the opposite side of the circular plane 2111 is a fastening hook 23, which extends upward from the inner surface 211. The fastening hook 23 is arc-shaped. There are two side inclined surfaces 26 extending from the circular plane 2111. As shown in FIG. 8, the magnet 50 is placed in the cavity 41 (FIG. 16) of the enclosure 40. , base Body 21 Under the circular plane 2111 The circular flat surface 2111 includes a slot 2112 (FIG. 5) for locating the magnet 50 and enclosure 40 assembly in a mold during the manufacturing process. As shown in FIG. 6, the opening 27 is formed so that the fastening wedge 24 is visible from the outer surface 212 of the buckle portion 20 while the cover 30 is not assembled to the buckle portion 20. Extending through the substrate 21 .
[0019] When the strap is wrapped around the strap retaining bar 151, 251, the structure and toughness of the strap prevents the buckle parts 10, 20 from flipping over due to the magnetic attraction between their outer surfaces 112 and 212 during engagement of the buckle parts.
[0020] 9 to 12 and 15 to 16 show the buckle part 10 in an unassembled state. As shown in FIG. 9, the base body 11 is center Circular plane (Circular plane) 1111 has an opening 17 with a fastening wedge 14 therein. Opposite the circular flat surface 1111 is a fastening hook 13, which extends upward from the inner surface 111. The fastening hook 13 is arc-shaped. There are two side inclined surfaces 16 extending from the circular flat surface 1111. As shown in FIG. 12, the magnet 50 is disposed within the cavity 41 (FIG. 16) of the enclosure 40, base body 11 Under the circular plane 1111 The circular flat surface 1111 includes a slot 1112 (FIG. 9) for locating the magnet 50 and encapsulant 40 in the mold during the manufacturing process. As shown in FIG. 10, the opening 17 accommodates a fastening wedge. 14 is visible from the outer surface 112 of the buckle portion 10. Extending through the substrate 11 .
[0021] The operation of buckle assembly 10 is described as follows, with particular reference to Figures 4, 5, and 9. To assemble buckle portions 10 and 20, the two buckle portions are positioned together with their inner surfaces 111, 211 facing each other and the strap retention bars 15, 25 at opposite ends. The attractive force of the magnets 50 in each of buckle portions 10, 20 draws buckle portions 10, 20 together so that side ramps 16 meet side ramps 26. Ramped surfaces 16, 26 slide against each other, helping to guide the two buckle portions into the correct engagement position. Ramped surfaces 16, 26 also have correspondingly curved profiles to further assist in guiding buckle portions 10, 20 into proper alignment. Once the two buckle sections are connected, the fastening hook 13 of the first buckle section 10 extends into the opening 27 of the second buckle section 20 and then engages the fastening wedge 24. Similarly, on the opposite side, the side inclined surface 26 meets the side inclined surface 16, so that each buckle section 10, 20 fits along the other side inclined surface 16, 26. The fastening hook 23 of the second buckle section 20 extends into the opening 17 of the first buckle section 10 and engages the fastening wedge 14. When a force is applied in the longitudinal direction L, such as by tension in a strap (not shown) connected to the bars 15, 25, the secure engagement of the fastening hooks 13, 23 in the openings 27, 17, respectively, prevents the buckle sections 10, 20 from disengaging.
[0022] To disengage the buckle sections 10, 20, the user simultaneously pushes the edges 152, 252 of the buckle sections 10, 20 inward in the direction of the inward arrows in FIG. 3 , which are parallel to the longitudinal direction L, thereby pushing the buckle sections toward each other along this direction. This causes the buckle sections 10, 20 to slide longitudinally relative to each other toward the center of the buckle assembly. As the buckle sections slide longitudinally, the fastening hooks 13, 23 of each buckle section also slide longitudinally until the inclined side surfaces 16, 26 contact each other. At this point, each buckle section 10, 20 slides along the inclined contours of the inclined side surfaces 16, 26, which pull the two buckle sections away from each other. Additionally, the longitudinal sliding breaks the attractive force between the two magnets 50, allowing the two buckle sections 10, 20 to be easily released from each other. Even when subjected to a pulling force in the direction L along the arrows in FIG. 3 pointing away from each other, the buckle parts remain locked together with the fastening hooks 13, 23 firmly engaged with the fastening wedges 24, 14, respectively.
[0023] The present invention provides a simple and reliable method for attaching two buckle sections together without requiring a large amount of force to disengage the parts and without requiring any moving parts in the buckle.
[0024] Accordingly, while only a few embodiments of the invention have been shown and described, it will be apparent that many changes and modifications can be made thereto without departing from the spirit and scope of the invention.
Claims
1. A buckle assembly comprising a first buckle portion and a second buckle portion, the first buckle portion has a first base body and a first magnet, The first substrate is a plurality of outer surfaces; a first central circular plane; a plurality of interior surfaces extending from the first central circular plane; a first fastening opening having a first fastening hook at one end of a first longitudinal direction of the first base and a first fastening wedge at the other end of the first longitudinal direction opposite the first central circular plane from the first fastening hook; a first magnet is enclosed in the first substrate below the first central circular plane; the second buckle portion has a second base body and a second magnet, The second substrate is a plurality of outer surfaces; a second central circular plane; a plurality of interior surfaces extending from the second central circular plane; a second fastening opening having a second fastening hook at one end of a second longitudinal direction of the second base and a second fastening wedge at the other end of the second longitudinal direction opposite the second central circular plane from the second fastening hook; the second magnet is enclosed in the second substrate below the second central circular plane; the first buckle portion and the second buckle portion are configured such that, by placing the inner surface of the first buckle portion in contact with the inner surface of the second buckle portion, the first and second magnets attract each other, the fastening hooks of each buckle portion enter the fastening openings of the other buckle portion, locking the two buckle portions together and preventing disengagement under tension in opposite directions parallel to the longitudinal extent of the buckle assembly; the first base body includes a first pair of side inclined surfaces extending from the first central circular plane when viewed from the first width direction on both sides in a first width direction perpendicular to the first longitudinal direction, and the first pair of side inclined surfaces are inclined when viewed from the first width direction so as to move away from the first magnet as they progress in the first longitudinal direction and in a direction opposite to a direction in which the first buckle portion connects with the second buckle portion, the second base body includes a second pair of side inclined surfaces extending from the second central circular plane when viewed from the second width direction on both sides in a second width direction perpendicular to the second longitudinal direction, and the second pair of side inclined surfaces are inclined when viewed from the second width direction so as to move away from the second magnet as they progress in the second longitudinal direction and in a direction opposite to a direction in which the second buckle portion connects with the first buckle portion, When the first and second buckle portions are connected to each other, the first and second pairs of side inclined surfaces are aligned with each other, a buckle assembly in which, when the first and second buckle parts are pushed in opposite directions parallel to the first and second longitudinal directions, the first and second pairs of side angled surfaces slide relative to each other until the first and second fastening wedges disengage from the second and first fastening hooks, respectively, and the buckle parts are released from a locked position.
2. 2. The buckle assembly of claim 1, wherein the first and second fastening wedges are connected to the first and second bases, respectively, and extend into the first and second fastening openings, respectively, and when the fastening hooks enter the fastening openings and the two buckle sections are locked together, the first and second fastening hooks each engage with one of the fastening wedges of an opposite one of the buckle sections.
3. 2. The buckle assembly of claim 1, wherein the buckle sections are formed such that, when the two buckle sections are connected, an edge of the first buckle section at one longitudinal end of the buckle assembly extends beyond an edge of the second buckle section at the same longitudinal end of the buckle assembly, and an opposite edge of the second buckle section extends beyond an edge of the first buckle section at the same longitudinal end of the buckle assembly.
4. 2. The buckle assembly of claim 1, wherein each of the first buckle portion and the second buckle portion has at least one strap retaining bar connected to the base at an end closer to the fastening opening, the at least one strap retaining bar configured to enable each buckle portion to be connected to another object.
5. 2. The buckle assembly of claim 1, wherein the fastening opening of at least one of the buckle sections extends through the base such that the fastening wedge of one buckle section is visible through the fastening opening of the other buckle section when the buckle sections are fastened together.
6. A buckle assembly as described in claim 1, further comprising a cover connected to one of the two buckle portions, the cover extending over at least some of the multiple outer surfaces of the first base or the second base of the one buckle portion.
7. The buckle assembly of claim 1 , wherein at least one of the fastening hooks is arc-shaped.
Citation Information
Patent Citations
Magnetic attraction side-opening type fastener
CN210471196U
A closure device for detachably connecting two parts.
JP2016505306A