A badge with anti-displacement function
By designing an L-shaped connecting pin and sliding plate on the badge, and using elastic elements to make the plate fit snugly against clothing, the problem of difficulty in wearing and easy displacement of existing badges is solved, achieving a convenient and stable wearing effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- WENZHOU BEJIWANG BADGE CO LTD
- Filing Date
- 2025-07-29
- Publication Date
- 2026-08-04
AI Technical Summary
The existing badges require the fixing block to be placed inside the clothing when worn, which makes the wearing operation difficult and the badges easy to shift.
Design a badge structure with an L-shaped connecting pin and a sliding stop plate. The stop plate slides on the connecting pin through an elastic element. The badge is securely worn by the tight contact between the stop plate and the clothing. The operation is performed on the outside of the clothing.
实现了徽章的便捷佩戴和稳固佩戴,避免了徽章在衣物上移位,操作简单且稳定性高。
Smart Images

Figure CN224584304U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of decorative arts, and in particular to a badge with anti-displacement function. Background Technology
[0002] A badge is an ornament worn on the chest, collar, or other part of clothing for decoration and identification. There are two main ways to wear badges: one is by using a pin, and the other is by using a pin and a sleeve. The second method, where the pin penetrates the clothing and is securely fastened to the sleeve, can better prevent the badge from shifting after wearing. For example, the utility model patent "Anti-displacement Badge" (publication number: CN218737564U) discloses a badge structure in which a first connecting rod, a second connecting rod, and a fixing rod pass through the clothing and are securely connected to a fixing block located inside the clothing to achieve badge wearing. However, in the above structure, since the fixing block needs to be placed inside the clothing when wearing the badge, there is a certain degree of difficulty in wearing the badge while wearing clothing.
[0003] To address the aforementioned problems, this utility model provides improvements. Utility Model Content
[0004] This invention proposes a badge with anti-displacement function, which solves the above-mentioned problems existing in the use of the prior art.
[0005] The technical solution of this utility model is implemented as follows: An anti-displacement badge includes a badge body, an L-shaped connecting pin fixedly connected to the back of the badge body, a horizontal portion of the connecting pin fixedly connected to the badge body, and a stop plate that can slide axially along the horizontal portion of the connecting pin on the horizontal portion of the connecting pin. An elastic element is provided on the badge body between the badge body and the stop plate, and a restoring force is applied to the stop plate. The elastic element causes the stop plate to have a tendency to slide along the horizontal portion of the connecting pin toward the vertical portion of the connecting pin.
[0006] Preferably, the elastic element includes a mounting ring and elastic claws made of elastic metal. The mounting ring has several mounting notches on its periphery. The badge body end face has several mounting posts with T-shaped cross-sections that match the mounting notches. The mounting ring is placed on the badge body end face so that the small end of the mounting post is inserted into the mounting notch. Several elastic claws are formed in a ring array along the horizontal horizontal part of the mounting ring connecting the pin. The ends of the elastic claws abut against the abutment plate.
[0007] Preferably, the end of the elastic claw forms a limiting ball head, and the end face of the abutment plate is provided with a plurality of limiting grooves that match the limiting ball head and extend radially along the abutment plate, and the limiting ball head is held in the limiting groove and abuts against the abutment plate.
[0008] Preferably, the end face of the abutment facing the vertical part of the connecting pin has a plurality of anti-slip protrusions.
[0009] Preferably, the end of the vertical portion of the connecting pin is bent toward the abutment plate, and the abutment plate has an opening groove through which the end of the vertical portion of the connecting pin can pass.
[0010] Preferably, the badge body includes a connecting layer, a rotating layer, and a decorative layer. The elastic element and the connecting pin are disposed on the connecting layer, and a connecting post is formed on the end face of the connecting layer away from the abutment. The rotating layer is rotatably disposed on the connecting post, and a counterweight is eccentrically disposed on the rotating layer. The decorative layer is disposed on the end face of the rotating layer away from the connecting layer.
[0011] Preferably, the decorative layer has a plurality of T-shaped snap-fit posts, and the rotating layer has a plurality of snap-fit holes that match the small ends of the snap-fit posts. The decorative layer is placed on the end face of the rotating layer so that the snap-fit posts are snapped into the snap-fit holes.
[0012] In summary, the beneficial effects of this utility model are as follows: the connecting pin penetrates the clothing so that the vertical part of the connecting pin is located inside the clothing, and the abutment plate located on the outside of the clothing slides towards the vertical part of the connecting pin under the restoring force of the elastic element. This allows the vertical part of the connecting pin and the abutment plate to press tightly against the inside and outside of the clothing, respectively, thus achieving a secure wearing of the badge body on the clothing. Since the wearing operation only needs to be performed on the outside of the clothing, the operation is more convenient. Furthermore, after the connecting pin penetrates the clothing, the tight contact between the base plate and the clothing can prevent the badge body from shifting, ensuring the stability of the badge body after wearing. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a cross-sectional schematic diagram of the present invention; Figure 3 This is an exploded view of the present invention; Figure 4 This is an exploded view of another aspect of the present invention.
[0015] In the diagram: 1. Badge body; 11. Connecting shelf; 111. Mounting post; 112. Connecting stake; 12. Rotating shelf; 121. Counterweight; 122. Snap-fit hole; 13. Finishing shelf; 131. Snap-fit stake; 2. Connecting pin; 3. Support plate; 31. Limiting groove; 32. Anti-slip protrusion; 33. Opening groove; 4. Elastic element; 41. Mounting ring; 42. Mounting notch; 43. Elastic claw; 44. Limiting ball head. Detailed Implementation
[0016] The following will refer to the appendix in the embodiments of this utility model. Figure 1-4 The technical solutions in the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0017] As shown in the figure, a badge with anti-displacement function includes a badge body 1. An L-shaped connecting pin 2 is fixedly connected to the back of the badge body 1. The horizontal part of the connecting pin 2 is fixedly connected to the badge body 1, and a stop plate 3 is provided on the horizontal part of the connecting pin 2, which can slide along the axial direction of the horizontal part of the connecting pin 2. An elastic member 4 is provided on the badge body 1 between the badge body 1 and the stop plate 3, and a restoring force is applied to the stop plate 3. The elastic member 4 makes the stop plate 3 have a tendency to slide from the horizontal part of the connecting pin 2 to the vertical part of the connecting pin 2.
[0018] Specifically, the elastic structure is as follows: the elastic element 4 includes a mounting ring 41 and elastic claws 43 made of elastic metal. The mounting ring 41 has several mounting notches 42 on its periphery. The badge body 1 has several mounting posts 111 with T-shaped cross-sections that match the mounting notches 42 on its end face. The mounting ring 41 is placed on the end face of the badge body 1 so that the small end of the mounting post 111 is inserted into the mounting notch 42. Several elastic claws 43 are formed in a ring array along the horizontal part of the connecting pin 2 on the mounting ring 41. The ends of the elastic claws 43 abut against the abutment plate 3. The mounting ring 41 is fixedly installed on the badge body 1 by the cooperation of the mounting post 111 and the mounting notch 42, which limits the displacement of the mounting ring 41 relative to the badge body 1. This also facilitates the disassembly and assembly of the mounting ring 41, thereby facilitating the operation during assembly and the replacement of the elastic element 4 during later use to ensure the elasticity of the elastic element 4. Furthermore, several elastic claws 43 arranged in a ring array along the connecting pin 2 can apply a more uniform and stable restoring force to the abutment plate 3.
[0019] In the above structure, the abutment plate 3 is inserted through the horizontal part of the connecting pin 2 to achieve a sliding setting on the connecting pin 2. The end of the elastic claw 43 abuts against the abutment plate 3, and the restoring force after the elastic claw 43 deforms and swings is applied to the abutment plate 3, so that the abutment plate 3 has a tendency to slide towards the vertical part of the connecting pin 2. When the badge is worn on clothing, the abutment plate 3 is pressed to make it slide closer to the badge body 1 and push the elastic claw 43 to deform and swing. Then, the tip of the vertical part of the connecting pin 2 is passed through the clothing so that the vertical part of the connecting pin 2 is located inside the clothing. After the abutment plate 3 is released, the abutment plate 3 slides towards the vertical part of the connecting pin 2 under the restoring force of the elastic claw 43, so that the abutment plate 3 and the vertical part of the connecting pin 2 are respectively pressed tightly against the outside of the clothing. On the sides and inside, the badge body 1 is securely attached to the clothing by clamping the clothing with the abutment plate 3 and the connecting pin 2. Compared with the pin-attaching method in the prior art, the tight contact between the abutment plate 3 and the clothing can prevent the badge body 1 from shaking or shifting after being worn, keeping the badge body 1 stable. Moreover, the operation can be performed on the outside of the clothing when wearing the badge body 1, making the operation of wearing the badge body 1 more convenient. The more uniform restoring force applied to the base plate by several elastic claws 43 allows the abutment plate 3 to be firmly attached to the clothing, thereby ensuring the stability of the badge body 1 after being worn.
[0020] Furthermore, based on the above structure, a limiting ball head 44 is formed at the end of the elastic claw 43, and a plurality of limiting grooves 31 are provided on the end face of the abutment plate 3, which match the limiting ball head 44 and extend radially along the abutment plate 3. The limiting ball head 44 is held in the limiting groove 31 and abuts against the abutment plate 3. During the process of pressing the abutment plate 3 and actuating the elastic claw 43 to deform and swing or the elastic claw 43 to reset and swing, the limiting ball head 44 is always subjected to the force from the elastic claw 43 and is kept sliding in the limiting groove 31. The cooperation between the limiting ball head 44 and the limiting groove 31 limits the rotation of the abutment plate 3 relative to the elastic member 4, which also limits the rotation of the abutment plate 3 relative to the badge body 1, so that the abutment plate 3 and the badge body 1 remain relatively stable, thereby keeping the badge body 1 stable after the abutment plate 3 is pressed against the clothing.
[0021] Furthermore, based on the above structure, a plurality of anti-slip protrusions 32 are formed on the end face of the abutment plate 3 facing the vertical part of the connecting pin 2. When the abutment plate 3 is pressed against the clothing, the anti-slip protrusions 32 contact the clothing. The anti-slip protrusions 32 increase the friction between the abutment plate 3 and the clothing, restricting the rotation of the base plate on the clothing, thereby restricting the rotation of the badge body 1 and keeping the badge body 1 stable after being worn.
[0022] Furthermore, based on the above structure, the end of the vertical part of the connecting pin 2 bends towards the abutment plate 3, that is, the tip of the connecting pin 2 bends towards the abutment plate 3. The abutment plate 3 has an opening groove 33 for the end of the vertical part of the connecting pin 2 to pass through. After the connecting pin 2 penetrates the clothing, the tip of the vertical part of the connecting pin 2 penetrates the clothing from the inside out and gets stuck in the opening groove 33 when the elastic member 4 of the abutment plate 3 and the vertical part of the connecting pin 2 come close to each other. This prevents the tip of the vertical part of the connecting pin 2 from coming into contact with the human body and causing injury. Moreover, after the tip of the vertical part of the connecting pin 2 gets stuck in the opening groove 33, it also limits the relative rotation between the connecting pin 2 and the abutment plate 3, ensuring that the vertical part of the connecting pin 2 can cooperate with the abutment plate 3 to clamp the clothing, thereby enhancing the stability of the badge body 1 after wearing.
[0023] Furthermore, based on the above structure, the badge body 1 includes a connecting layer 11, a rotating layer 12, and a decorative layer 13. The elastic element 4 and the connecting pin 2 are disposed on the connecting layer 11, and a connecting post 112 is formed on the end face of the connecting layer 11 away from the abutment plate 3. The rotating layer 12 is rotatably disposed on the connecting post 112, and a counterweight 121 is eccentrically disposed on the rotating layer 12. The decorative layer 13 is disposed on the end face of the rotating layer 12 away from the connecting layer 11. The decorative layer 13 is used to support the identifying pattern and shape. The badge body 1 is connected to the abutment plate via the connecting pin 2. After the pin 3 is securely fastened to the clothing, the connecting plate 11 and the abutment 3 remain relatively stable to ensure the stability of the garment. The rotating plate 12, which is rotatably mounted on the connecting pin 112, rotates the decorative plate 13 under the action of the eccentrically mounted counterweight 121 and keeps it in a downward position. This ensures that no matter from which direction the connecting pin 2 passes through the clothing to wear the badge body 1, the rotation of the decorative plate 13 will keep the bottom of the decorative plate 13 facing downward, thus keeping the logo and shape on the decorative plate 13 upright, making it more aesthetically pleasing and convenient to operate when wearing the badge body 1.
[0024] Furthermore, based on the above structure, the decorative layer 13 has several T-shaped locking posts 131, and the rotating layer 12 has several locking holes 122 that match the small ends of the locking posts 131. The decorative layer 13 is placed on the end face of the rotating layer 12 so that the locking posts 131 are locked into the locking holes 122. The cooperation between the locking posts 131 and the locking holes 122 enables the decorative layer 13 and the rotating layer 12 to be detachably connected. This facilitates the replacement of decorative layers 13 with different patterns and shapes as needed to meet the wearer's needs and reduces the cost of use.
[0025] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A badge with anti-displacement function, comprising a badge body (1), characterized in that: The badge body (1) has an L-shaped connecting pin (2) fixedly connected to its back. The horizontal part of the connecting pin (2) is fixedly connected to the badge body (1), and a stop plate (3) that can slide along the axial direction of the horizontal part of the connecting pin (2) is provided on the horizontal part of the connecting pin (2). An elastic member (4) is provided on the badge body (1) between the badge body (1) and the stop plate (3) and the restoring force acts on the stop plate (3). The elastic member (4) makes the stop plate (3) tend to slide on the horizontal part of the connecting pin (2) toward the vertical part of the connecting pin (2).
2. The anti-displacement badge of claim 1, wherein: The elastic element (4) includes a mounting ring (41) and elastic claws (43) made of elastic metal. The mounting ring (41) has several mounting notches (42) on its periphery. The badge body (1) has several mounting posts (111) with T-shaped cross sections that match the mounting notches (42) on its end face. The mounting ring (41) is placed on the end face of the badge body (1) so that the small end of the mounting post (111) is inserted into the mounting notch (42). Several elastic claws (43) are formed in a ring array on the mounting ring (41) along the horizontal flat part of the connecting pin (2). The end of the elastic claw (43) abuts against the abutment plate (3).
3. The anti-displacement badge of claim 2, wherein: The end of the elastic claw (43) forms a limiting ball head (44), and the end face of the abutment (3) is provided with a plurality of limiting grooves (31) that match the limiting ball head (44) and extend radially along the abutment (3). The limiting ball head (44) is held in the limiting groove (31) and abuts against the abutment (3).
4. The anti-displacement badge of claim 3, wherein: The abutment (3) has several anti-slip protrusions (32) formed on the end face of the vertical part facing the connecting pin (2).
5. The anti-displacement badge of claim 4, wherein: The end of the vertical part of the connecting pin (2) is bent toward the abutment plate (3), and the abutment plate (3) has an opening groove (33) through which the end of the vertical part of the connecting pin (2) can pass.
6. The anti-displacement badge of claim 5, wherein: The badge body (1) includes a connecting layer plate (11), a rotating layer plate (12) and a decorative layer plate (13). The elastic element (4) and the connecting pin (2) are disposed on the connecting layer plate (11), and a connecting post (112) is formed on the end face of the connecting layer plate (11) away from the abutment plate (3). The rotating layer plate (12) is rotatably disposed on the connecting post (112), and a counterweight (121) is eccentrically disposed on the rotating layer plate (12). The decorative layer plate (13) is disposed on the end face of the rotating layer plate (12) away from the connecting layer plate (11).
7. The anti-displacement badge of claim 6, wherein: The decorative layer (13) has a number of T-shaped snap-fit posts (131) formed on it. The rotating layer (12) has a number of snap-fit holes (122) that match the small ends of the snap-fit posts (131). The decorative layer (13) is placed on the end face of the rotating layer (12) so that the snap-fit posts (131) are snapped into the snap-fit holes (122).