End clamping type high-hardness button metal ornament
By using the design of high-hardness button metal decorations with end clamps, high-strength materials and reset components are used to drive the end clamping components to hold the buttons, solving the problems of button friction damage and reuse, and achieving the effects of lightweight durability and convenient assembly and disassembly.
Patent Information
- Application Number
- CN202520145619.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-21
AI Technical Summary
Existing button decorations are prone to friction damage to the side edges of the buttons and are difficult to reuse, increasing manufacturing costs and resulting in a poor user experience.
Design an end-clamp type high-hardness button metal decoration, using high-strength austenitic stainless steel material. Through the cooperation of the main body, reset part and end clamping part, the reset part drives the end clamping part to slide to clamp the button, avoiding friction damage, and adopts a magnetic structure or spring to realize convenient installation and removal.
Protects the side edges of buttons from damage, enhances the decorative effect, is lightweight and durable, easy to install and remove, and improves the user experience.
Smart Images

Figure CN223745875U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a button cover especially an end clamp type high hardness button metal decoration. BACKGROUND
[0002] In the case that there are brooches, tie clips and buttons on clothes, some buttons are finely processed into special styles, or are attached with gems, glass, crystal or other gems on clothes, or are made into such gems. In addition, in the case of dog buckle or lock buckle products in the hardware products of bags, new decorations need to be added to enhance the ornamental and artistic properties of the products and attract customers, but often increase the overall weight of the products and affect the user experience, so the decorations need to be light enough and have certain mechanical hardness.
[0003] However, if the decorations are not attached to the clothes from the beginning of the production, it is very difficult to attach the decorations in many cases, and if the decorations are attached to the clothes during the production, not only the production cost will increase, but also the decorations will be discarded when the clothes cannot be worn, even if the decorations are taken off and stored separately, the taken-off decorations cannot be used elsewhere, so the decorations cannot be reused in many cases, and the price of the decorations is correspondingly limited.
[0004] Although a button cover that clamps the button from the side and connects with the button has appeared in the market, since the button cover clamps the side of the button, it has the defect of causing friction damage to the side edge of the button.
[0005] Therefore, there is an urgent need for an end clamp type high hardness button metal decoration to overcome the above-mentioned defects. CONTENT OF THE UTILITY MODEL
[0006] The utility model aims at providing an end clamp type high hardness button metal decoration that does not cause friction damage to the side edge of the button and protects the button.
[0007] To achieve the above-mentioned purpose, the end clamp type high hardness button metal decoration of the utility model comprises a main body, a reset member and an end pressure member. A receiving cavity for receiving a button is formed in the main body, the cavity wall of the receiving cavity has a first cavity end wall and a second cavity end wall arranged opposite to each other; the end pressure member can slide on the main body along the opposite directions of the first cavity end wall and the second cavity end wall, the end pressure member can also partially extend into the receiving cavity from the second cavity end wall, so that the end pressure member and the first cavity end wall jointly clamp the button in the receiving cavity; the reset member is arranged between the main body and the end pressure member, and the reset member is configured to drive the end pressure member to slide into the receiving cavity.
[0008] Compared with the prior art, the design of the cavity wall of the accommodating cavity having oppositely arranged first and second cavity end walls, the end pressing member being slidably arranged on the main body in the opposite direction of the first and second cavity end walls, and the end pressing member being partially extended into the accommodating cavity from the second cavity end wall so that the end pressing member and the first cavity end wall jointly clamp the button in the accommodating cavity, and the reset member being arranged between the main body and the end pressing member and being configured to drive the end pressing member to slide into the accommodating cavity, enables the end pressing member to clamp the end of the button in the accommodating cavity together with the first cavity end wall under the action of the reset member, so that the side edge of the button is not damaged by friction, thereby protecting the button and improving the decorative effect of the button.
[0009] Preferably, the cavity wall of the accommodating cavity further has a cavity side wall, and the accommodating cavity further penetrates part of the cavity side wall to form an access cavity opening for the button to access the accommodating cavity; the main body is provided with an avoiding channel which is in communication with the accommodating cavity, penetrates the first cavity end wall in the opposite direction and the direction close to the access cavity opening, and forms an open end close to the access cavity opening.
[0010] Preferably, the position of the avoiding channel away from the open end comprises a central part located at the center and a connecting part connected between the central part and the open end, and the connecting part is arranged in an "eight" shape from the direction of the central part to the open end.
[0011] Preferably, the avoiding channel is in an "Ω" shape.
[0012] Preferably, the main body is further provided with a containing cavity for placing the end pressing member and a communication cavity which is in communication with the containing cavity and the accommodating cavity in the opposite direction, and the communication cavity further penetrates the second cavity end wall, and the cavity diameter of the communication cavity is smaller than the cavity diameter of the containing cavity; the end pressing member penetrates the communication cavity and is partially extended into the accommodating cavity, and the end pressing member further abuts against the cavity end wall of the containing cavity adjacent to the communication cavity under the action of the reset member.
[0013] Preferably, the reset member is a spring which is located in the containing cavity and abuts between the end pressing member and the main body in the opposite direction.
[0014] Preferably, the reset member comprises a first magnetic structure and a second magnetic structure which are magnetically attracted to each other, the first magnetic structure is assembled on the end pressing member, and the second magnetic structure is assembled on the first cavity end wall.
[0015] Preferably, the reset member comprises a first magnetic structure and a second magnetic structure which are magnetically repulsive to each other, the first magnetic structure is assembled on the end pressing member, and the second magnetic structure is assembled on the main body at a position for defining the accommodating cavity.
[0016] Preferably, the end pressing member is provided with a sleeve joint column for sleeving the spring at one end of the end pressing member facing the spring, and the sleeve joint column is located at the center of the one end; and the spring is a conical spring with a conical top close to the end pressing member.
[0017] Preferably, the end pressing member comprises a central arch portion and an outer edge portion located at the outside, the arch portion extends into the accommodating cavity, and the size of the arch portion is arranged in a decreasing manner along the direction of extending into the accommodating cavity.
[0018] Preferably, the arch portion is a spherical shape smaller than a hemisphere, and a groove matching the spherical shape is formed on the side of the arch portion opposite to the first cavity end wall.
[0019] Preferably, the main body comprises a first cover body, an intermediate body and a second cover body arranged in sequence in opposite directions, the first cover body and the intermediate body are cover-connected and jointly define the accommodating cavity, the first cavity end wall is formed on the first cover body, the second cavity end wall is formed on the intermediate body, and the intermediate body is further cover-connected with the second cover body; and the end pressing member and the reset member are both arranged between the intermediate body and the second cover body.
[0020] Preferably, the side of the second cover body opposite to the intermediate body is provided with decorations or color patterns.
[0021] Preferably, one of the intermediate body and the second cover body is provided with a plurality of plug-in blocks spaced from each other and extending in the opposite direction, and the other of the intermediate body and the second cover body is provided with plug-in grooves matched with the plug-in blocks. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is a perspective view of the end clamping type high-hardness button metal decoration in a clamped state of a button.
[0023] Figure 2 It is a plan view when viewed from top to bottom. Figure 1
[0024] It is an internal view along the B-B line. Figure 3 Figure 2 It is a perspective view after hiding the button.
[0025] Figure 4 It is a perspective view after hiding the button. Figure 1
[0026] Figure 5 is Figure 4 a perspective exploded view.
[0027] Figures 6a to 6c is a state diagram showing the end clamp type high hardness button metal decoration and the button connected to the clothing being assembled and connected. DETAILED DESCRIPTION
[0028] In order to explain the technical content and structural features of the utility model in detail, the following further description is made in combination with the embodiments and the accompanying drawings.
[0029] Please refer to Figure 6c , the end clamp type high hardness button metal decoration 100 is clamped to the end 210 of the button 200 when it is slid to the preset position along the button 200 connected to the clothing 400, realizing that the end clamp type high hardness button metal decoration 100 of the utility model is connected to the clothing 400 together with the help of the button 200, achieving the purpose of covering the button 200 and decorating the clothing 400, as shown in Figure 6c ; alternatively, in Figures 6a to 6c , as an example, the button 200 is sewn to the clothing 400 with the help of the needle thread 300 passing through the buttonhole 220 of the button 200; obviously, according to actual needs, the connection of the button 200 and the clothing 400 can also have other ways, so it is not limited to Figures 6a to 6c .
[0030] In combination with Figures 1 to 4 , the end clamp type high hardness button metal decoration 100 of the utility model comprises a main body 10, a spring 20 and an end pressing piece 30. The main body 10 is provided with a receiving cavity 11 for accommodating the button 200, and the cavity wall 11a of the receiving cavity 11 has a first cavity end wall 111 and a second cavity end wall 112 arranged oppositely. The end pressing piece 30 can be slid on the main body 10 in the opposite direction (indicated by the double-headed arrow A) of the first cavity end wall 111 and the second cavity end wall 112 to meet the need of reciprocating sliding of the end pressing piece 30 relative to the main body 10; the end pressing piece 30 can also partially extend into the receiving cavity 11 from the second cavity end wall 112, so that the end pressing piece 30 and the first cavity end wall 111 together clamp the button 200 in the receiving cavity 11 in the opposite direction, as shown in Figure 3 and Figure 6c . The spring 20 is arranged between the main body 10 and the end pressing piece 30, and the spring 20 is configured to drive the end pressing piece 30 to slide into the receiving cavity 11, so that the end pressing piece 30 can always maintain the state of pressing the end 210 of the button 200 in the receiving cavity 11 under the action of the spring 20; alternatively, in Figure 3 , Figure 6a , Figure 6b and Figure 6cIn this example, spring 20 abuts against end pressure member 30 and body 10 in opposite directions to simplify the connection between spring 20 and end pressure member 30 and body 10 respectively, and to make the connection between spring 20 and end pressure member 30 and body 10 more compact; obviously, the relationship between spring 20 and end pressure member 30 and body 10 can be other than that required by actual needs, so it is not considered as such. Figure 3 , Figure 6a , Figure 6b and Figure 6c The above is a limited description. More specifically, as follows:
[0031] Combination Figures 1 to 5 As an example, the cavity wall 11a of the receiving cavity 11 also has a cavity sidewall 113. In this case, the receiving cavity 11 also forms an inlet / outlet port 12 through a portion of the cavity sidewall 113 for the button 200 to enter and exit the receiving cavity 11. For example, in Figure 2 In this design, the button 200 enters the receiving cavity 11 in the opposite direction to arrow C, and correspondingly, the button 200 retracts into the receiving cavity 11 in the direction indicated by arrow C. Furthermore, the main body 10 has a clearance channel 13 that communicates with the receiving cavity 11 and penetrates the first cavity end wall 111 in the opposite direction and near the inlet / outlet 12 (see arrow C). The end of the clearance channel 13 near the inlet / outlet 12 forms an open opening 131, which is arranged opposite to the inlet / outlet 12 in the opposite direction. Therefore, by means of the inlet / outlet 12, the button 200 connected to the garment 400 enters and exits the receiving cavity 11 of the main body 10 from the side. During this process, the clearance channel 13 avoids the needle and thread 300 that connects the button 200 and the garment 400, thereby improving the ease of use and user experience of the end-clamp button decoration 100 of this utility model. Specifically, in Figure 1 , Figure 2 , Figure 4 and Figure 5 As an example, the clearance passage 13, located away from the opening 131, includes a central portion 132 and a connecting portion 133 between the central portion 132 and the opening 131. The connecting portion 133 is arranged in a figure-eight shape from the central portion 132 toward the opening 131. Therefore, the figure-eight-shaped connecting portion 133 effectively improves the smoothness and convenience of the button 200 connected to the garment 400 entering and exiting the receiving cavity 11 of the main body 10. Furthermore, in... Figure 2 In the middle, the entire avoidance passage 13 is shaped like an "Ω".
[0032] Combination Figures 3 to 5, as an example, the body 10 is further provided with a receiving cavity 14 for placing the end pressing member 30 and the spring 20, and a communicating cavity 15 which is in communication with the receiving cavity 14 and the accommodating cavity 11 in opposite directions, the communicating cavity 15 further penetrates the second cavity end wall 112, and the cavity diameter of the communicating cavity 15 is smaller than that of the receiving cavity 14; the end pressing member 30 penetrates the communicating cavity 15 and partially extends into the accommodating cavity 11, and the end pressing member 30 further abuts against the cavity end wall 141 of the receiving cavity 14 adjacent to the communicating cavity 15 under the action of the spring 20, so as to prevent the end pressing member 30 from accidentally sliding out of the receiving cavity 14. Specifically, in Figure 1 , Figure 3 , Figure 4 and Figure 5 , as an example, the body 10 comprises a first cover 10a, an intermediate body 10b and a second cover 10c which are arranged in sequence in opposite directions, the first cover 10a is connected with the intermediate body 10b in a cover combination manner, and the two together define the aforementioned accommodating cavity 11, the first cavity end wall 111 is formed on the first cover 10c, and optionally, in Figures 1 to 5 , as an example, the first cavity end wall 111 is formed by the entire first cover 10c, and obviously, according to actual needs, the first cavity end wall 111 can also be formed by part of the first cover 10c, and is not limited to that shown in Figures 1 to 5 ; the second cavity end wall 112 is formed on the intermediate body 10b, and optionally, in Figure 5 , as an example, the second cavity end wall 112 is formed by part of the intermediate body 10b; in addition, the intermediate body 10b is also connected with the second cover 10c in a cover combination manner. When the body 10 comprises the first cover 10a, the intermediate body 10b and the second cover 10c, at this time, the aforementioned communicating cavity 15 is located on the intermediate body 10b, and the intermediate body 10b and the second cover 10c together define the aforementioned receiving cavity 14, which is designed so that the end pressing member 30 and the spring 20 received by the receiving cavity 14 are each located between the intermediate body 10b and the second cover 10c, thereby facilitating the assembly operation of the end pressing member 30 and the spring 20 on the body 10. More specifically, in Figure 5 , as an example, the second cover 10c is provided with a plurality of insertion blocks 16 which are spaced apart from each other and extend in opposite directions, the intermediate body 10b is provided with insertion grooves 17 which cooperate with the insertion blocks 16, so as to improve the convenience of assembly operation between the intermediate body 10b and the second cover 10c by means of cooperation between the insertion blocks 16 and the insertion grooves 17; in addition, the intermediate body 10b is further provided with a recessed ring groove 18 for embedding assembly of the first cover 10a, and the first cover 10a is embedded in the recessed ring groove 18, so as to improve the convenience of assembly between the intermediate body 10b and the first cover 10c. It can be understood that although Figure 5 shows that the insertion blocks 16 are provided on the second cover 10c and the insertion grooves 17 are provided on the intermediate body 10b, obviously, according to actual needs, the positions of the insertion blocks 16 and the insertion grooves 17 can be interchanged, and are not limited to that shown inFigure 5 as shown.
[0033] As Figure 3 and Figures 6a to 6c shown, as an example, the end pressing piece 30 is provided with a sleeve joint column 31 for the spring 20 to be sleeved at one end of the end pressing piece 30, and the sleeve joint column 31 is located at the center of the one end, which on the one hand improves the reliability of the connection between the spring 20 and the end pressing piece 30, and on the other hand makes the spring 20 exert force on the central position of the end pressing piece 30, thereby ensuring the uniformity of the distribution of the elastic force on the end pressing piece 30. Specifically, in Figure 3 , Figure 5 and Figures 6a to 6c , as an example, the spring 20 is a conical spring with a tapered end close to the end pressing piece 30; such design on the one hand reduces the space occupied by the one end of the spring 20 facing the end pressing piece 30, and on the other hand ensures that the other end of the spring 20 away from the end pressing piece 30 is reliably supported by the main body 10, specifically by the second cover body 10c of the main body 10, effectively ensuring the stability and smoothness of the extension and contraction of the spring 20 together with the end pressing piece 30 in the opposite direction.
[0034] In combination with Figures 5 to 6c , as an example, the end pressing piece 30 comprises a central arch portion 30a and an outer edge portion 30b located on the outer side, the arch portion 30a extends into the accommodation cavity 11, and the size of the arch portion 30a decreases in the direction of extending into the accommodation cavity 11; such design on the one hand can reduce the pressing position of the button 200 in the accommodation cavity 11 by the end pressing piece 30, and on the other hand, in the process of sliding of the end clamping type high-hardness button metal decoration 100 along the direction indicated by arrow C in Figure 6a , the button 200 can easily push the end pressing piece 30 to slide out of the accommodation cavity 11, thereby more effectively improving the convenience of the end clamping type high-hardness button metal decoration 100 of the present application to clamp the end portion 210 of the button 200 entering the accommodation cavity 11. Specifically, in Figure 3 and Figures 6a to 6c , as an example, the arch portion 30a is a spherical shape smaller than a hemisphere, so as to further improve the smoothness of the button 200 connected to the clothing 400 in the process of entering the accommodation cavity 11 to push the end pressing piece 30 to slide out of the accommodation cavity 11, thereby making the assembly and disassembly of the end clamping type high-hardness button metal decoration 100 and the button 200 of the present application more flexible and more convenient. More specifically, in Figure 3 and Figures 6a to 6cIn the embodiment, as an example, the side of the arch portion 30a opposite to the first cavity end wall 111 is provided with a groove 32 matching the spherical surface to improve the softness of the arch portion 30a. It can be understood that when the end pressing member 30 comprises the arch portion 30a and the outer edge portion 30b, the outer edge portion 30b is in abutment with the cavity end wall 141 of the accommodating cavity 14 adjacent to the communicating cavity 15 under the action of the spring 20.
[0035] Compared with the prior art, by virtue of the fact that the cavity wall 11a of the accommodating cavity 11 has the oppositely arranged first cavity end wall 111 and the second cavity end wall 112, the end pressing member 30 can be slid on the main body 10 in the opposite direction of the first cavity end wall 111 and the second cavity end wall 112, and the end pressing member 30 can also partially extend into the accommodating cavity 11 from the second cavity end wall 112 to enable the end pressing member 30 and the first cavity end wall 111 to jointly hold the button 200 in the accommodating cavity 11, as shown in the state of Figure 3 and Figure 6c The spring 20 is arranged between the main body 10 and the end pressing member 30, and the spring 20 is configured to drive the end pressing member 30 to slide into the accommodating cavity 11. Such a design enables the end pressing member 30 to hold the end portion 210 of the button 200 in the accommodating cavity 11 together with the first cavity end wall 111 under the action of the spring 20, so that the side edge of the button 200 is not damaged by friction, thereby protecting the button 200 and improving the decorative effect of the button 200.
[0036] It is worth noting that the aforementioned spring 20 is only one embodiment of the reset member, and it is obvious that the reset member can also be designed to include a first magnetic structure and a second magnetic structure that repel each other magnetically, wherein the first magnetic structure is assembled on the end pressing member 30, and the second magnetic structure is assembled on the main body 10 for defining the position of the accommodation cavity 14; or the reset member can also be designed to include a first magnetic structure and a second magnetic structure that attract each other magnetically, wherein the first magnetic structure is assembled on the end pressing member 30, and the second magnetic structure is assembled on the first cavity end wall 111; so that the magnetic repulsion or attraction between the first magnetic structure and the second magnetic structure can also achieve the reset of the end pressing member 30 and the state that the end pressing member 30 always keeps pressing the button 200 in the accommodation cavity 11. In addition, as an example, the end clamping type high hardness button metal decoration 100 of the utility model is a cover type structure. In addition, in the end clamping type high hardness button metal decoration 100 of the utility model, the main body 10 can be made of an alloy material such as austenitic stainless steel with high strength, which has the advantages of surface gloss, more texture, beautiful design, wear resistance, aging resistance and impact resistance compared with traditional nylon materials or other plastic products, has the characteristics of light weight and good metal hardness, is beneficial to long-term use, and avoids deformation and damage caused by external force. Finally, the end pressing member 30 can be, but is not limited to, a soft rubber structure, and the second cover body 10c is provided with decorations or color patterns on the side opposite to the intermediate body 10b.
[0037] The above disclosure is only a preferred embodiment of the utility model, and cannot limit the scope of the utility model, so equivalent changes made according to the utility model claims are all within the scope covered by the utility model.
Claims
1. An end clamp type high hardness button metal ornament comprising a main body in which a receiving cavity for receiving a button is formed, characterized in that, The end-clamping high-hardness button metal ornament further comprises a reset member and an end-pressing member, the cavity wall of the accommodating cavity has oppositely arranged first and second cavity end walls; the end-pressing member is slidably arranged on the main body along the opposite direction of the first and second cavity end walls, and the end-pressing member can partially extend into the accommodating cavity from the second cavity end wall, so that the end-pressing member and the first cavity end wall jointly clamp the button in the accommodating cavity. The reset member is arranged between the main body and the end-pressing member, and is configured to drive the end-pressing member to slide into the accommodating cavity.
2. The end clip high durometer button metal ornament of claim 1, wherein, The cavity wall of the accommodating cavity further has a cavity side wall, and the accommodating cavity further penetrates part of the cavity side wall to form an access cavity opening for the button to access the accommodating cavity; the main body is provided with an avoidance channel which is in communication with the accommodating cavity and penetrates the first cavity end wall in the opposite direction and the direction close to the access cavity opening, and the end of the avoidance channel close to the access cavity opening forms an open opening, and the open opening is oppositely arranged with the access cavity opening in the opposite direction.
3. The end clip high durometer button metal ornament of claim 2, wherein, The position of the avoidance channel away from the open opening comprises a central part located at the center and a connecting part connected between the central part and the open opening, and the connecting part is arranged in an "eight" shape from the central part towards the open opening; or the avoidance channel is in the shape of "Ω".
4. The end clip high durometer button metal ornament of claim 1, wherein, The main body is further provided with a containing cavity for placing the end-pressing member and a communication cavity in communication with the containing cavity and the accommodating cavity in the opposite direction, and the communication cavity further penetrates the second cavity end wall, and the cavity diameter of the communication cavity is smaller than the cavity diameter of the containing cavity; the end-pressing member penetrates the communication cavity and partially extends into the accommodating cavity, and the end-pressing member further abuts against the cavity end wall of the containing cavity adjacent to the communication cavity under the action of the reset member.
5. The end clip high durometer button metal ornament of claim 4, wherein, The reset member is a spring located in the containing cavity and abutting between the end-pressing member and the main body in the opposite direction; or the reset member comprises a first magnetic structure and a second magnetic structure which are magnetically attracted to each other, the first magnetic structure is arranged on the end-pressing member, and the second magnetic structure is arranged on the first cavity end wall; or the reset member comprises a first magnetic structure and a second magnetic structure which are magnetically repelled to each other, the first magnetic structure is arranged on the end-pressing member, and the second magnetic structure is arranged on the main body for defining the position of the containing cavity.
6. The end clip high durometer button metal ornament of claim 5, wherein, The end of the end-pressing member facing the spring is provided with a sleeve connecting column for sleeving the spring, and the sleeve connecting column is located at the center of the end; the spring is a conical spring with a tapered top close to the end-pressing member.
7. The end clamp high durometer button metal ornament of claim 1 or 4, wherein, The end-pressing member comprises a central arch part and an outer edge part located on the outside, the arch part extends into the accommodating cavity, and the size of the arch part decreases in the direction of extending into the accommodating cavity.
8. The end clip high durometer button metal ornament of claim 7, wherein, The arch part is a spherical shape smaller than a hemisphere, and the side of the arch part facing away from the first cavity end wall is provided with a groove matching the spherical shape.
9. The end clamp high durometer button metal ornament of claim 1 or 5, wherein, The main body comprises a first cover, an intermediate body and a second cover arranged in sequence in the opposite direction, the first cover and the intermediate body are connected in a cover joint manner and jointly define the accommodation cavity, the first cavity end wall is formed on the first cover, the second cavity end wall is formed on the intermediate body, and the intermediate body is further connected with the second cover in a cover joint manner; the end pressing member and the reset member are both arranged between the intermediate body and the second cover; and the second cover is provided with decorations or color patterns on the side opposite to the intermediate body.
10. The end clip high durometer button metal ornament of claim 9, wherein, One of the intermediate body and the second cover is provided with a plurality of insertion blocks spaced from each other and extending in the opposite direction, and the other of the intermediate body and the second cover is provided with insertion slots matched with the insertion blocks.