Neon lamp mounting base device
Through the combination of bar components, docking components and rotary positioning structure, the problem that existing neon bases cannot be customized on-site adjustment is solved, and flexible shape and angle adjustment is achieved, adapting to variable installation occasions and reducing costs.
Patent Information
- Application Number
- CN202510721369.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-25
AI Technical Summary
The existing neon light installation base cannot be customized and adjusted on site according to actual conditions, and cannot adapt to irregular shapes and installation needs in different occasions.
The mounting base device including bar assembly, docking assembly and rotary positioning structure is adopted to achieve flexible splicing and angle adjustment of the components through the needle positioning structure and the damping positioning structure, allowing the shape and angle to be adjusted on site to meet the needs of different occasions.
It realizes flexible adjustment of neon light installation base, and can form a variety of shapes and shapes as needed on site, improve adaptability, reduce costs and eliminate secondary processing, and meet variable installation needs.
Smart Images

Figure CN120368255A_ABST
Abstract
Description
Technical Field
Background Art
[0003] CN202421456497.3, an adjustable-angle neon light strip, includes a base. An installation plate located above the base is rotatably arranged at the top of the base. An incomplete gear is arranged at the bottom end of the installation plate. The toothless part in the circumferential direction of the incomplete gear is connected to the bottom end of the installation plate. The axis direction of the incomplete gear is the same as the extension direction of the light strip body. The rack drives the installation plate to rotate through the incomplete gear, so that the light strip body on the installation plate can irradiate at different angles. The user only needs to drive the rack to slide through a driving mechanism to adjust the irradiation angle of the light strip body, which is very convenient. CN201320569622.7, an adjustable-angle type LED rigid light strip, can adjust the light angle of the light strip. The card seat clamps the flat groove in a U-shaped bayonet manner, and the flat groove can be horizontally adjusted in the U-shaped bayonet of the card seat, and it is very convenient to assemble and disassemble the light strip of this case.
[0004] Among the disclosed technical solutions, only the adjustment of the fixed length of the light strip and the adjustment of the flipping of the light irradiation angle are provided, and there is no way to perform personalized custom adjustment on the wire routing shape of the installation base of the light strip, and no on-site adjustment and installation according to the actual installation situation during on-site installation.
Summary of the Invention
[0006] A neon lamp mounting base device includes a plurality of strip components, a docking component and a rotation positioning structure. The plurality of strip components and the docking component are connected and assembled in sequence without limitation on the number. A smallest assembly unit includes a strip component, a docking component and a rotation positioning structure. The rotation positioning structure is connected between the strip component and the docking component, and the end of the docking component and the end of the strip component are connected through the rotation positioning structure.
[0007] The rotation positioning structure includes a spring pin positioning structure and a damping positioning structure.
[0008] The spring pin positioning structure includes a spring pin and a positioning gear. The end of the docking component and the end of the strip component are hinged through a hinge hole and a pin shaft. A spring pin is provided at the end of the docking component, and a positioning gear is provided at the end of the strip component. The spring pin is inserted into the positioning gear to limit the rotation angle and position.
[0009] The spring pin positioning structure includes a positioning gear and a spring pin. The spring pin includes a positioning pin, a spring and a spring fixing position. A spring fixing position is formed by inward depression at the end of the docking component. The spring is fixed in the spring fixing position, and the other end of the spring abuts against the positioning pin. A positioning gear is provided at the end of the strip component. The positioning gear is composed of a number of teeth with different angular intervals. The front end tip of the positioning pin is pushed by the spring and inserted between the teeth.
[0010] The positioning gear includes a number of teeth with different angular intervals, including an equally divided angular tooth type and an unequally divided angular tooth type.
[0011] The equally divided angular tooth type includes 15° equally divided angles, 20° equally divided angles and 30° equally divided angles.
[0012] The unequally divided angular tooth type is composed of a combination of 15° teeth and 60° teeth.
[0013] The damping positioning structure includes a damping rubber ring. The end of the docking component and the end of the strip component are hinged through a hinge hole and a pin shaft. A damping rubber ring is provided at the hinge, and the damping rubber ring limits the rotation angle and positions.
[0014] The damping rubber ring is an interference damping silica gel ring sleeved on the pin shaft.
[0015] There are several sling mounting holes on the strip-shaped component.
[0016] The neon lamp installation base device involved in the present invention is completed by splicing an unlimited number of strip-shaped components and docking components through a selection positioning structure to form any length, and the rotation positioning structure can also rotate the angle according to requirements, so that the installation base can be spliced into different shapes and forms to meet the installation requirements in different occasions and scenarios. Moreover, the structure is simple and flexible, can be modified and used on-site without secondary processing or special customization, with low cost, convenient use and wider adaptability.
Description of the Drawings
Specific Embodiments
[0019] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is a positional relationship, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.
[0020] Embodiment 1: Please refer to the attachment Figure 1, which shows a neon lamp installation base device used to carry and install a fixed neon lamp, and is fixed or hoisted to the position where the lamp needs to be installed through the base device.
[0021] In the prior art field, the common form of the lamp base is straight bar installation, or it is specially customized according to the shape to be displayed. After customization, it is transported to the installation site for reassembly. If there are any mistakes in the size or shape of the installation site, it may lead to the situation that the customized base cannot be installed or is different from the design draft. To solve such technical problems, we propose and design a base device that can adaptively adjust at the installation site, adjust its shape while installing, and meet the needs of various shapes.
[0022] Please refer to Appendix Figure 1 and Appendix Figure 2 : The neon lamp installation base device includes a plurality of strip components 10, a docking component 20, and a rotation positioning structure 30. The plurality of strip components 10 and the docking component 20 are connected and assembled in sequence without limiting the number. A minimum assembly unit includes a strip component 10, a docking component 20, and a rotation positioning structure 30. The rotation positioning structure 30 is connected between the strip component 10 and the docking component 20, and the end of the docking component 10 and the end of the strip component 20 are rotatably connected through the rotation positioning structure 30.
[0023] The rotation positioning structure 30 includes a spring pin positioning structure 31 and a damping positioning structure (not shown). The functions of these two structures are to adapt to the rotation process when the strip component 10 and the docking component 20 rotate, and to keep the current rotated position fixed when stopping at the target position.
[0024] Please refer to Appendix Figure 1 and Appendix Figure 3 , which shows the spring pin positioning structure. The spring pin positioning structure 31 includes a spring pin and a positioning gear 311. The end of the docking component 20 and the end of the strip component 10 are hinged through a hinge hole 11 and a pin shaft 12, so the strip component 10 and the docking component 20 have the freedom of relative rotation. A spring pin is provided at the end of the docking component 20, and a positioning gear 311 is provided at the end of the strip component 10. The spring pin is inserted into the positioning gear 311 to limit the rotation angle and position.
[0025] The spring pin positioning structure 31 includes a positioning gear 311 and a spring pin, wherein the spring pin includes a positioning pin 312, a spring 313 and a spring fixing position 314. A spring fixing position 314 is formed inwardly at the end of the docking component 20, and the spring 313 is fixed on the spring fixing position 314, while the other end of the spring 313 is tightly against the positioning pin 312. A positioning gear 311 is provided at the end of the bar component 10, and the positioning gear 311 is composed of a plurality of gear teeth 3111 with different interval angles. The positioning pin 312 is supported by the spring 313 to hold the front end needle tip between the gear teeth 3111.
[0026] The angle gear clamp 311 includes a plurality of gear teeth 3111 with different interval angles, including gear teeth of equal angles and gear teeth of unequal angles. Figure 5 , which shows a schematic diagram of the cooperation between the bar component and the docking component of the equally divided angle gear type.
[0027] The equally divided angle gear teeth include 15° equally divided angle, 20° equally divided angle and 30° equally divided angle.
[0028] Please refer to the attached Figure 4 , attached Figure 4 Yes Figure 3 The enlarged view of the part is actually the attached Figure 3 The positioning gear 311 is enlarged and shown in the attached Figure 4 The unequal angle gear type is shown in the figure, wherein the unequal angle gear tooth type is composed of a combination of 15° gear teeth α and 60° gear teeth β. The entire angle gear positioning covers a range of 180°. Within the 180° range of the end, gear teeth 3111 of different angles are spaced apart, and the positioning pins 312 can cooperate with the bar component 10 and the docking component 20 to allow relative rotation. When the bar component 10 rotates relative to the docking component 20, the spring 313 is compressed, and the positioning pin 312 retreats to avoid it, so that it can rotate. After rotating into place, it is pushed by the spring elastic force to support the positioning pin 312, and the tip of the positioning pin 312 is inserted between the gear teeth 3111 to position it; and the angle of rotation depends on the type and angle of the gear teeth 3111 that are skipped during the rotation.
[0029] The bar assembly 10 has a plurality of hoisting installation holes 13 connected to a plurality of hoisting parts 40 for hoisting and installing the neon lamp and the base device. At the site of assembling the neon lamp, firstly, according to the design requirements or the site conditions, a certain number of bar assemblies 10 and docking assemblies 20 are spliced through the rotating positioning structure 30. During the splicing process, the rotating positioning structure 30 is twisted to obtain the desired angle, as shown in the attached figure. Figure 1 The device can be any shape shown in the figure, and then hoisted through the hoisting installation hole 13 to complete the final fixed installation step.
[0030] Embodiment 2: In this embodiment, other structures are the same as those in Embodiment 1. The different structure lies in that the rotation positioning structure includes a damping rubber ring. The docking component and the strip-shaped component are hinged through the hinge hole 11 and the pin shaft 12, and a damping rubber ring is provided at the hinge. The docking component 20 and the strip-shaped component 10 are rotatably connected through the hinge hole 11 and the pin shaft 12, and the damping rubber ring limits the rotation angle and positions.
[0031] The damping rubber ring is an interference damping silica gel ring sleeved outside the pin shaft. Because the interference damping silica gel ring is adopted, a certain force is required to make the docking component 10 and the strip-shaped component 20 rotate relative to each other. When rotated to a suitable position and the force is stopped, the damping rubber ring 32 can keep the angle between the two stable and not rotate randomly.
[0032] The neon lamp installation base device involved in the present invention can be spliced into any length by an unlimited number of strip-shaped components and docking components through a selection positioning structure, and the rotation positioning structure can also rotate the angle according to requirements, so that the installation base can be spliced into different shapes and forms to meet the installation requirements in different occasions and scenarios. Moreover, the structure is simple and flexible, can be modified on-site and used without secondary processing or special customization, with low cost, convenient use and wider adaptability.
[0033] The above is only a preferred embodiment of the present invention, and it is not intended to limit the present invention in any form. Although the present invention is disclosed as above with a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art, without departing from the scope of the technical solution of the present invention, when making some changes or modifications using the above-disclosed technical content as equivalent embodiments of equivalent changes, but as long as it does not depart from the content of the technical solution of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical means of the present invention shall fall within the scope of the technical solution of the present invention.
Claims
1. A neon lamp installation base device, comprising a plurality of strip-shaped components, a docking component, and a rotation positioning structure. The plurality of strip-shaped components and the docking component are sequentially connected and assembled without a limited number. A smallest assembly unit includes a strip-shaped component, a docking component, and a rotation positioning structure. The rotation positioning structure is connected between the strip-shaped component and the docking component, and the end of the docking component and the end of the strip-shaped component are connected through the rotation positioning structure.
2. The neon lamp installation base device according to claim 1, characterized in that, The rotation positioning structure includes a spring pin positioning structure and a damping positioning structure.
3. The neon lamp installation base device according to claim 1, characterized in that, The spring pin positioning structure includes a spring pin and a positioning gear. The end of the docking component and the end of the strip-shaped component are hinged through a hinge hole and a pin shaft. A spring pin is provided at the end of the docking component, and a positioning gear is provided at the end of the strip-shaped component. The spring pin is inserted into the positioning gear to limit the rotation angle and position.
4. The neon lamp mounting base device according to claim 2, wherein, The spring pin positioning structure includes a positioning gear and a spring pin. The spring pin includes a positioning pin, a spring, and a spring fixing position. A spring fixing position is formed by inward depression at the end of the docking component. The spring is fixed in the spring fixing position, and the other end of the spring abuts against the positioning pin. A positioning gear is provided at the end of the strip-shaped component. The positioning gear is composed of a plurality of teeth with different angular intervals. The front tip of the positioning pin is pushed by the spring and inserted between the teeth.
5. The neon lamp installation base device according to claim 3, characterized in that, The positioning gear includes a plurality of teeth with different angular intervals, including an equally divided angular tooth type and an unequally divided angular tooth type.
6. The neon lamp installation base device according to claim 4, characterized in that The equally divided angular tooth type includes 15° equally divided angles, 20° equally divided angles, and 30° equally divided angles.
7. The neon lamp installation base device according to claim 4, characterized in that, The unequally divided angular tooth type is composed of a combination of 15° teeth and 60° teeth.
8. The neon lamp installation base device according to claim 1, characterized in that, The damping positioning structure includes a damping rubber ring. The end of the docking component and the end of the strip-shaped component are hinged through a hinge hole and a pin shaft. A damping rubber ring is provided at the hinge, and the damping rubber ring limits the rotation angle and positions.
9. The neon lamp mounting base device according to claim 7, characterized in that, The damping rubber ring is an interference damping silicone rubber ring sleeved on the pin shaft.
10. The neon lamp mounting base device according to any one of claims 1-8, characterized in that, A plurality of hanging rope installation holes are provided on the strip-shaped component.
Citation Information
Patent Citations
Angle-adjustable type LED rigid lamp bar
CN203489080U
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CN222651240U