A detachable bell and rope installation structure
Patent Information
- Application Number
- CN202522337186.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-04
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-04
AI Technical Summary
目前市场上的常规吊钟通常为一体式结构,其使用存在以下缺陷:其一,具备安装限制,常规吊钟必须在绳带两端固定前进行穿孔组装,当绳带两端已固定或装配完成后,无法再安装吊钟;其二,其不可拆卸,一旦安装完成,吊钟无法无损拆卸,若需要更换或调整位置,只能破坏吊钟或绳带;为解决以上至少一种技术问题,有必要开发一种可拆卸式吊钟及绳带安装结构
[0027]本实用新型设置第一开口以及第一通孔,便于绳子通过第一开口连接至第一通孔中,设置第二开口以及第二通孔,使绳子可通过第二开口进入第二通孔中,从而可使连接绳子的第二组件本体沿绳子延伸方向套设于第一组件本体内部;拆卸时解除第二组件对第一组件的套接状态,从而实现两者的分离,该种结构实现了吊钟的可拆卸功能,方便安装、更换和调整;同时由于采用分体式结构,可在绳子两端固定后,通过设置的第一开口、第二开口将绳子放入,再进行组装,实现了先组绳子后装吊钟的使用方式。
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Figure CN224806010U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of hanging bell technology, specifically relating to a detachable hanging bell and its rope installation structure. Background Technology
[0002] Hanging bells are widely used accessories in clothing, bags, shoelaces, and other products, primarily serving decorative and anti-fraying purposes, such as preventing the ends of the ropes from loosening. Currently, conventional hanging bells on the market are usually one-piece structures, which have the following drawbacks: First, they have installation limitations; conventional hanging bells must be assembled by drilling holes before the ends of the rope are fixed, and once the ends of the rope are fixed or assembled, the hanging bell cannot be installed. Second, they are not detachable; once installed, the hanging bell cannot be disassembled without damage, and if replacement or repositioning is needed, the hanging bell or rope must be damaged. To solve at least one of these technical problems, it is necessary to develop a detachable hanging bell and rope installation structure. Utility Model Content
[0003] The purpose of this utility model is to provide a detachable bell and rope installation structure to solve the above-mentioned technical problems. It features a first opening and a first through hole to facilitate the rope's connection to the first through hole, and a second opening and a second through hole to allow the rope to enter the second through hole. This allows the second component body, which connects the rope, to be fitted inside the first component body along the rope's extension direction. During disassembly, the second component is released from its fitted position on the first component, thus separating the two. This structure enables the bell to be detachable, facilitating installation, replacement, and adjustment. Furthermore, due to its split structure, the rope can be fixed at both ends before being inserted through the first and second openings for assembly, allowing for the installation of the bell after the rope is assembled.
[0004] To achieve the above-mentioned objectives, the technical solution adopted by this utility model is as follows:
[0005] A detachable pendant bell includes a first component and a second component that are interlocked with each other.
[0006] The first component includes a first component body that can be connected to a rope, a first opening disposed on one side of the first component body, and a first through hole that extends through the first component body along its axial direction, wherein the first through hole is connected to the first opening;
[0007] The second component includes a second component body internally capable of being fitted onto the first component body, a second opening disposed on one side of the second component body, and a second through hole axially extending through the second component body and capable of accommodating the first component body, wherein the second through hole is connected to the second opening. The first component also includes a first fitting end disposed radially away from the first opening of the first component body.
[0008] The second component also includes a second mating end disposed near the second opening in the body of the second component;
[0009] The first fitting end and the second fitting end fit together. The first fitting end and the second fitting end connect the first component and the second component, improving the connection stability. The overall surface formed after the first component and the second component are connected is arc-shaped. Specifically, the body of the first component is fitted inside the body of the second component; the second through hole is connected to the second opening and the first fitting groove; the first opening and the first through hole are provided to facilitate the rope connecting to the first through hole through the first opening; the second opening and the second through hole are provided to allow the rope to enter the second through hole through the second opening, thus allowing the body of the second component connecting the rope to be fitted inside the body of the first component along the rope's extension direction; during disassembly, the fitting of the second component to the first component is released, thereby separating the two. This structure realizes the detachable function of the bell, facilitating installation, replacement, and adjustment; simultaneously, due to the split structure, after the two ends of the rope are fixed, the rope can be inserted through the first and second openings before assembly, realizing the method of assembling the rope first and then installing the bell.
[0010] Preferably, the diameter of the first through hole is less than or equal to the diameter of the rope in its unconnected state. This satisfies the requirement that the first through hole limits the rope's movement; thus confining the rope within the first through hole, allowing the pull rope to connect to the bell.
[0011] Preferably, the color of the first mating end is different from the color of the outer peripheral surface of the second component;
[0012] Alternatively, the first component may be made of metal and the second component may be made of plastic.
[0013] Preferably, the first fitting end includes a first fitting block disposed on the first component body; along the radial direction of the first component body, the first fitting block is disposed on the side away from the first opening;
[0014] The second fitting end includes a first fitting groove disposed on the second component body and capable of fitting with the first fitting block;
[0015] The first fitting groove is connected to the second opening. This allows the first fitting groove to engage with the first fitting block, thereby connecting the first component and the second component.
[0016] Preferably, the first fitting block includes a first block and a second block arranged sequentially along the axial direction of the first component body;
[0017] The first fitting groove includes a first groove and a second groove that are sequentially arranged and interconnected along the axial direction of the second component body;
[0018] The first block engages with the first groove; the second block engages with the second groove. This provides multiple engagement positions between the first and second connecting ends, improving the connection stability between them.
[0019] Preferably, along the circumferential direction of the first component, the arc length of the first block is less than or equal to the arc length of the second block;
[0020] Along the circumferential direction of the second component, the arc length of the first groove is less than or equal to the arc length of the second groove. In this technical solution, the arc length of the first block is equal to the arc length of the first groove; the arc length of the second block is equal to the arc length of the second groove; along the axial direction of the first component, the maximum embedment of the second block in the second groove is limited by the lower end face of the first groove, thereby keeping the upper and lower end faces of the mutually fitted first and second components in a mutually flat state.
[0021] Preferably, the surface of the first fitting groove and / or the surface of the first fitting block are provided with anti-slip textures to enhance the friction between the first fitting groove and the first fitting block. This improves the connection stability between the first fitting groove and the second fitting groove.
[0022] Preferably, along the axial direction of the first component body, the upper end faces of the first component and the second component, which are nested together, are flush with each other.
[0023] The lower surfaces of the first and second components, which are interlocked, are flush with each other.
[0024] Preferably, the second component body has an open end at one end of its axial direction that is coaxially connected to the second through hole, and the diameter of the open end is smaller than the diameter of the second through hole. The cross-section of the open end is circular, so that the second component body can be connected to a rope, and the rope can pass through the second through hole.
[0025] This technical solution also provides a rope installation structure, including a rope, which is connected to the detachable bell and is fixedly connected in a first through hole.
[0026] This application has achieved beneficial technical effects:
[0027] This utility model features a first opening and a first through hole, facilitating the connection of a rope through the first opening to the first through hole. It also features a second opening and a second through hole, allowing the rope to enter through the second opening and then into the second through hole. This allows the second component body, which connects the rope, to be fitted inside the first component body along the rope's extension direction. During disassembly, the second component is released from its fitted position on the first component, thus separating the two. This structure enables the detachable function of the hanging bell, facilitating installation, replacement, and adjustment. Furthermore, due to its modular structure, after the rope is fixed at both ends, it can be inserted through the first and second openings before assembly, allowing for the installation of the hanging bell after assembling the rope. Attached Figure Description
[0028] Figure 1 The diagram shown is one of the assembly structure schematic diagrams of this utility model;
[0029] Figure 2 The second schematic diagram of the assembly structure of this utility model is shown.
[0030] Figure 3 The diagram shown is an exploded structural schematic of this utility model;
[0031] Figure 4 The diagram shown is one of the assembly process schematic diagrams of this utility model;
[0032] Figure 5 The second diagram shows the assembly process of this utility model;
[0033] Figure 6 The diagram shows a schematic of the rope installation structure.
[0034] Figure Labels
[0035] 3-Rope; 11-First component body; 12-First opening; 13-First through hole; 21-Second component body; 22-Second opening; 23-Second through hole; 14-First fitting block; 24-First fitting groove; 141-First block; 142-Second block; 241-First groove; 242-Second groove; 25-Opening end. Detailed Implementation
[0036] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the specific implementation methods of this utility model will be described below with reference to the accompanying drawings. Obviously, the drawings described below are merely some embodiments of this utility model. For those skilled in the art, other drawings and other implementation methods can be obtained based on these drawings without any creative effort.
[0037] The technical solution of this utility model will be described in detail below with specific embodiments.
[0038] Reference Figures 1 to 6 As shown, a detachable pendant bell includes a first component and a second component that are nested together.
[0039] The first component includes a first component body 11 that can be connected to a rope 3, a first opening 12 disposed on one side of the first component body 11, and a first through hole 13 that is disposed through the first component body 11 along the axial direction, wherein the first through hole 13 is connected to the first opening 12.
[0040] The second component includes a second component body 21 that can be fitted inside the first component body 11, a second opening 22 disposed on one side of the second component body 21, and a second through hole 23 that is axially disposed along the second component body 21 and can accommodate the first component body 11, wherein the second through hole 23 is connected to the second opening 22. Specifically, the first component body 11 is sleeved inside the second component body 21; the second through hole 23 is connected to the second opening 22 and the first fitting groove 24; the first opening 12 and the first through hole 13 are provided to facilitate the rope 3 to be connected to the first through hole 13 through the first opening 12, and the second opening 22 and the second through hole 23 are provided to allow the rope 3 to enter the second through hole 23 through the second opening 22, so that the second component body 21 connected to the rope 3 can be sleeved inside the first component body 11 along the extension direction of the rope 3; when disassembling, the sleeved state of the second component to the first component is released, thereby realizing the separation of the two. This structure realizes the detachable function of the bell, which is convenient for installation, replacement and adjustment; at the same time, due to the adoption of a split structure, after the two ends of the rope are fixed, the rope 3 can be put in through the first opening 12 and the second opening 22, and then assembled, realizing the usage method of assembling the rope 3 first and then installing the bell.
[0041] The diameter of the first through hole is less than or equal to the diameter of the rope in its unconnected state. This is sufficient to limit the rope's movement within the first through hole, thus confining the rope inside and connecting the pull rope to the bell.
[0042] The first component also includes a first mating end disposed along the radial direction of the first component body 11 away from the first opening 12;
[0043] The second component also includes a second mating end disposed on the second component body 21 near the second opening 22;
[0044] The first fitting end and the second fitting end fit together. The first fitting end and the second fitting end connect the first component and the second component, improving the connection stability between them. After the first component and the second component are connected, the overall surface formed is arc-shaped.
[0045] The first fitting end includes a first fitting block 14 disposed on the first component body 11; along the radial direction of the first component body 11, the first fitting block 14 is disposed on the side away from the first opening 12;
[0046] The second fitting end includes a first fitting groove 24 disposed on the second component body 21 and capable of fitting with the first fitting block 14;
[0047] The first fitting groove 24 is connected to the second opening 22. The first fitting groove 24 is fitted with the first fitting block 14 to connect the first component and the second component.
[0048] The first fitting block 14 includes a first block 141 and a second block 142 arranged sequentially along the axial direction of the first component body 11;
[0049] The first fitting groove 24 includes a first groove 241 and a second groove 242 that are sequentially arranged and interconnected along the axial direction of the second component body 21;
[0050] The first block 141 is fitted into the first groove 241; the second block 142 is fitted into the second groove 242. This provides multiple fitting positions between the first connecting end and the second connecting end, improving the connection stability between them.
[0051] Along the circumferential direction of the first component, the arc length set by the first block 141 is less than or equal to the arc length set by the second block 142;
[0052] Along the circumferential direction of the second component, the arc length of the first groove 241 is less than or equal to the arc length of the second groove 242. In this technical solution, the arc length of the first block 141 is equal to the arc length of the first groove 241; the arc length of the second block 142 is equal to the arc length of the second groove 242; along the axial direction of the first component, the maximum embedment of the second block 142 in the second groove 242 is limited by the lower end face of the first groove 241, thereby keeping the upper and lower end faces of the mutually fitted first and second components in a mutually flat state.
[0053] The surface of the first fitting groove 24 and / or the surface of the first fitting block 14 are provided with anti-slip textures to enhance the friction between the first fitting groove 24 and the first fitting block 14. This improves the connection stability between the first fitting groove and the second fitting groove.
[0054] Along the radial direction of the first component body, the cross-sectional outer periphery shape of the interlocking first and second components is one of a circle, a polygon, or an ellipse. In this technical solution, the cross-sectional outer periphery shape of the interlocking first and second components is circular.
[0055] Along the axial direction of the first component body 11, the upper end faces of the interlocking first component and second component are flush with each other and / or the lower end faces of the interlocking first component and second component are flush with each other.
[0056] The second component body 21 has an opening end 25 at one end of its axial direction, which is coaxially connected to the second through hole 23. The diameter of the opening end 25 is smaller than the diameter of the second through hole 23. The cross-section of the opening end 25 is circular, so that the second component body 21 can be connected to the rope 3, and the rope 3 passes through the second through hole 23.
[0057] Preferably, the first component is made of plastic and the second component is made of metal; or conversely, the first component is made of metal and the second component is made of plastic; the tight fit is achieved by utilizing the friction between the plastic and the metal.
[0058] Preferably, the first component and the second component are designed with different colors. Specifically, the color of the first mating end is different from the color of the outer peripheral surface of the second component, thus creating a contrasting color effect.
[0059] Preferably, the outer surface of the first component and / or the second component is provided with decorative textures or patterns.
[0060] This technical solution also provides a rope installation structure, including a rope 3 connected to the detachable bell, and the rope 3 fixedly connected in the first through hole 13.
[0061] This technical solution aims to solve the technical problems of existing hanging bells, such as non-removable design, limited installation, and insufficient aesthetics. It provides a hanging bell structure that can be installed after being fixed at both ends of the rope, and can still be removed after installation, while also having a good decorative effect.
[0062] When using, first secure both ends of the rope, such as... Figure 4 As shown, the first and second components are then inserted into the side of the rope in the direction of the arrow, so that the rope is located within the first through hole 13 and the second through hole 23; as shown Figure 5 The first fitting block 14 of the first component is then inserted into the first fitting groove 24 of the second component, and a tight fit is achieved by utilizing the friction between the plastic and the metal. When disassembly or adjustment is required, simply apply a certain external force to separate the first component and the second component.
[0063] This technical solution has the following advantages over existing technologies.
[0064] The detachable design, achieved through the detachable connection structure of the first and second components, enables the bell to be disassembled, facilitating installation, replacement, and adjustment.
[0065] Flexible installation: Due to its modular structure, the rope can be inserted through the component opening after both ends of the rope are fixed, and then assembled, realizing the usage method of assembling the rope first and then installing the bell.
[0066] Reliable connection: The tight fit is achieved by utilizing the friction between plastic and metal, ensuring the stability of the bell during use and preventing it from easily falling off.
[0067] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0068] The embodiments described above are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
[0069] The embodiments of the detachable bell and rope installation structure provided by this utility model have been described in detail above. Specific examples have been used to illustrate the principle and implementation of this utility model. The descriptions of the embodiments above are only for the purpose of helping to understand the core idea of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made to this utility model without departing from the principle of this utility model, and these improvements and modifications also fall within the protection scope of the claims of this utility model.
Claims
1. A detachable pendant bell, comprising a first component and a second component that are nested together, characterized in that, The first component includes a first component body (11) that can be connected to a rope (3), a first opening (12) disposed on one side of the first component body (11), and a first through hole (13) that is axially disposed along the first component body (11), wherein the first through hole (13) is connected to the first opening (12). The second component includes a second component body (21) that can be sleeved on the first component body (11), a second opening (22) disposed on one side of the second component body (21), and a second through hole (23) that is axially disposed along the second component body (21) and can accommodate the first component body (11). The second through hole (23) is connected to the second opening (22). The first component further includes a first fitting end disposed along the radial direction of the first component body (11) away from the first opening (12); The second component also includes a second fitting end disposed on the second component body (21) near the second opening (22); The first fitting end and the second fitting end fit together.
2. The detachable pendant bell according to claim 1, characterized in that, The diameter of the first through hole (13) is smaller than the diameter of the rope (3) in the unconnected state.
3. The detachable pendant bell according to claim 1 or 2, characterized in that, The color of the first mating end is different from the color of the outer peripheral surface of the second component; Alternatively, the first component may be made of metal and the second component may be made of plastic.
4. The detachable pendant bell according to claim 1, characterized in that, The first fitting end includes a first fitting block (14) disposed on the first component body (11); along the radial direction of the first component body (11), the first fitting block (14) is disposed on the side away from the first opening (12); The second fitting end includes a first fitting groove (24) disposed on the second component body (21) and capable of fitting with the first fitting block (14); The first fitting groove (24) is connected to the second opening (22).
5. The detachable pendant bell according to claim 4, characterized in that, The first fitting block (14) includes a first block (141) and a second block (142) arranged sequentially along the axial direction of the first component body (11); The first fitting groove (24) includes a first groove (241) and a second groove (242) arranged sequentially and interconnected along the axial direction of the second component body (21); The first block (141) is fitted into the first groove (241); the second block (142) is fitted into the second groove (242).
6. The detachable pendant bell according to claim 5, characterized in that, Along the circumferential direction of the first component, the arc length set by the first block (141) is less than or equal to the arc length set by the second block (142); Along the circumferential direction of the second component, the arc length set by the first groove (241) is less than or equal to the arc length set by the second groove (242).
7. The detachable pendant bell according to any one of claims 4 to 6, characterized in that, The surface of the first fitting groove (24) and / or the surface of the first fitting block (14) are provided with anti-slip textures to enhance the friction between the first fitting groove (24) and the first fitting block (14).
8. The detachable pendant bell according to claim 1, characterized in that, Along the axial direction of the first component body (11), the upper end faces of the first component and the second component that are nested together are flush with each other and / or the lower end faces of the first component and the second component that are nested together are flush with each other.
9. The detachable pendant bell according to claim 1, characterized in that, The second component body (21) has an opening end (25) at one end of its axial direction that is coaxially connected to the second through hole (23), and the diameter of the opening end (25) is smaller than the diameter of the second through hole (23).
10. A rope installation structure, comprising a rope, characterized in that, The rope (3) is connected to the detachable bell as described in any one of claims 1 to 9, and the rope (3) is fixedly connected to the first through hole (13).