一种带有辅助提示的模块化通道
By using modularly designed self-generating luminescent bricks, which utilize PZT ceramic particles to generate current and combine it with sensors to control the luminescence, the problems of low construction efficiency and high resource consumption are solved, achieving efficient construction and long-term luminescence.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BAIC CCL CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-07-17
AI Technical Summary
Existing luminescent bricks have shortcomings in terms of replacement and construction efficiency, and traditional luminescent bricks consume a lot of resources, the luminescence duration of polymer materials is short, and the structure of photovoltaic power generation bricks is complex.
The self-generating and luminous road bricks with a modular design include a metal bracket, a limiting part, a detachable metal track and a self-generating luminous brick. They use PZT ceramic particles to generate current, and combine conductive components, energy storage components and luminous components. The light intensity is detected by a sensor to control the luminescence.
It achieves a modular channel design that is efficient in construction and easy to replace, saving time, reducing resource consumption, and increasing the duration and intensity of light emission.
Smart Images

Figure CN224513981U_ABST
Abstract
Claims
1. A modular passageway with secondary cues, characterized by, Includes metal support (10) and self-generating and luminescent road bricks; The metal bracket (10) is arranged in a straight line, and the self-generating and luminous road bricks are rectangular; The metal bracket (10) is provided with a plurality of limiting parts (20) arranged in a matrix. The self-generating and luminous road bricks are placed on the limiting parts (20). The limiting parts (20) are used to support and restrict the self-generating and luminous road bricks. The self-generating and luminescent road bricks are capable of emitting light; The metal bracket (10) is provided with a detachable metal track (30), which is pressed against the upper surface of the self-generating and luminous road brick.
2. The modular passageway with secondary cues of claim 1, wherein, The length of the metal track (30) is set along the length of the metal bracket.
3. The modular passageway with secondary cues of claim 2, wherein, The spacing between two adjacent self-generating and luminous road bricks in the same row is 3mm-5mm.
4. The modular passageway with secondary cues of claim 3, wherein, Both the metal bracket (10) and the metal track (30) are made of stainless steel.
5. The modular channel with auxiliary prompts according to claim 1, characterized in that, The self-generating and luminescent road bricks include: An electrogenic polymer (1) of a predetermined shape, wherein the electrogenic polymer (1) is capable of generating an electric current under external pressure; Conductive component (2) is disposed on the two opposite sides of the extruded electrogenic polymer (1); Energy storage component (3), which is electrically connected to the conductive component (2); A light-emitting component (4) is disposed on one side of the electrogenerating polymer (1), and the light-emitting component (4) is electrically connected to both the electrogenerating polymer (1) and the energy storage component (3). A sensor (5) is disposed on one side of the electrogenic polymer (1), and the sensor (5) is used to detect light intensity; A barrier assembly (7) is disposed on the outside of the sensor (5), and the barrier assembly (7) is used to block the light generated by the light-emitting assembly (4) received by the sensor (5); The control component (6), the energy storage component (3), the light-emitting component (4), and the sensor (5) are all electrically connected to the control component (6).
6. The modular passageway with secondary cues of claim 5, wherein, The conductive component (2) includes a conductive layer (21) or an electrode, the conductive layer (21) being disposed on an opposing surface of the electrogenic polymer (1) being extruded; The electrode is disposed on an opposing surface of the electrogenic polymer (1) being compressed; The conductive layer (21) or the electrode is connected to the light-emitting component (4) and the energy storage component (3).
7. The modular passageway with secondary cues of claim 6, wherein, The light-emitting component (4) includes a light source (41) and a docking power slot (42) electrically connected to the light source (41). The docking power slot (42) is plugged into the energy storage component (3) to achieve electrical connection.
8. The modular passageway with secondary cues of claim 5, wherein, The barrier assembly (7) is located below the light-emitting assembly (4), and the sensor (5) is located below the barrier assembly (7).
9. The modular passageway with secondary cues of claim 6, wherein, The electrogenic polymer (1) and the conductive layer (21) are covered with a protective layer (8).