On-site physical evidence integrated intelligent exploration equipment fused with AIE technology
Through the integrated intelligent survey equipment of on-site physical evidence integrating AIE technology and integrating multiple survey functions, the problems of single functions and complex operations of existing equipment are solved, and the efficient manifestation and extraction of multiple physical evidence is achieved, which improves the efficiency and accuracy of on-site surveys.
Patent Information
- Application Number
- CN202422173052.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing on-site survey equipment has single functions, complex operation, inconvenient portability, poor performance, and poor connection between the equipment, which increases operating costs and time and reduces the efficiency and accuracy of physical evidence extraction.
Design an integrated intelligent survey equipment for on-site physical evidence integrating AIE technology, integrating camera modules, industrial cameras, laser light sources, atomization devices and footprint lights into one, realizing the display and extraction of multiple physical evidence, avoiding manual switching of equipment.
It improves the efficiency and accuracy of on-site inspection, reduces operating time and cost, simplifies operating procedures, and enhances the practicality and application scope of the equipment.
Smart Images

Figure CN223078686U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of exploration equipment, and particularly relates to an integrated intelligent exploration equipment for on-site physical evidence integrating AIE technology. Background Art
[0002] At present, the equipment for on-site exploration generally has problems such as single function, complex operation, inconvenient carrying, and poor manifestation effect, which seriously affect the efficiency of case detection. The existing physical evidence extraction equipment mainly includes multi-band light sources, chemical manifestation equipment, and special manifestation equipment for specific biological physical evidence, etc. However, these equipment still have certain defects. For example, the multi-band light source equipment can manifest various physical evidence, but the equipment is large, the operation is complex, and it is not convenient to carry and operate alone; the chemical manifestation equipment, such as using chemical reagents such as silver powder and carbon powder for manifestation, although the effect is good, it may have certain hazards to the environment and operators, and the operation steps are cumbersome; the special manifestation equipment, such as the manifestation equipment for specific physical evidence such as occult blood and fingerprints, although the effect is remarkable, has a single function and cannot meet the comprehensive on-site exploration requirements; especially the existing AIE visualization manifestation gun only has the AIE manifestation effect and does not have functions such as footprint lights, grazing light sources, ultraviolet photography, and video recording, and cannot meet the requirements of manifesting and extracting various physical evidence in on-site exploration. If different function exploration equipment is carried separately, it will increase the burden on on-site exploration personnel, and because the connection between the existing equipment in the manifestation and extraction steps is not tight, it often requires manual switching and adjustment of the equipment, increasing the time and operation costs and reducing the work efficiency and accuracy of physical evidence extraction. Summary of the Utility Model
[0003] The purpose of the utility model is to provide an integrated intelligent exploration equipment for on-site physical evidence integrating AIE technology to solve the problems put forward in the above background art.
[0004] In order to achieve the above purpose, the utility model is realized through the following technical solutions:
[0005] An integrated intelligent exploration equipment for on-site physical evidence integrating AIE technology, including an intelligent exploration equipment body, characterized in that the intelligent exploration equipment body includes an upper shell, an upper cover is arranged above the upper shell, a main screen is arranged in the middle of the upper cover, and a secondary screen and control buttons are arranged on one side of the main screen;
[0006] A main board is arranged inside the upper shell, and the main screen, the secondary screen, and the control buttons are all electrically connected to the main board;
[0007] The front side of the main board is provided with a camera module, an industrial camera, a laser light source, and an atomization device, and the camera module, the industrial camera, the laser light source, and the atomization device are all electrically connected to the main board. Below the inner side of the upper shell is provided with an upper shell bottom plate, and on the upper shell bottom plate are provided a video recording hole adapted to the camera module, a shooting hole adapted to the industrial camera, a first light transmission port adapted to the laser light source, and a spray port adapted to the atomization device;
[0008] The lower part of the upper shell is detachably connected with a lower shell. The inner side of the lower shell is provided with a footprint lamp, and on the bottom wall of the lower shell is provided a second light transmission port adapted to the footprint lamp.
[0009] Further, a power switch is provided on the main board, and an installation hole for passing through the power switch is provided on the side wall of the upper shell.
[0010] Further, a grazing light source is provided on the inner side of the upper shell, a third light transmission hole adapted to the grazing light source is provided on the upper shell bottom plate, and the grazing light source is electrically connected to the main board.
[0011] Further, the atomization device includes a storage tank for storing AIE reagent and an atomizer connected to the storage tank. The atomizer is arranged above the spray port, and the atomizer is electrically connected to the main board.
[0012] Further, a lens barrel is provided below the camera module, and a filter wheel is provided below the industrial camera.
[0013] Further, a first battery is provided on the inner side of the upper shell, the first battery is electrically connected to the main board, a second battery is provided on the inner side of the lower shell, and the second battery is electrically connected to the footprint lamp.
[0014] Further, the upper shell and the lower shell are connected by snap fasteners.
[0015] Further, one side of the upper shell is provided with a protruding grip portion.
[0016] The beneficial effects of the present utility model are as follows: It provides an integrated intelligent on-site physical evidence exploration equipment integrating AIE technology, which is convenient to carry and use. It not only has the AIE manifestation effect, but also has functions such as footprint lamp, video recording, etc. It can meet the needs of various physical evidence manifestation and extraction in on-site exploration, and can avoid manual switching of equipment, reducing the time and operation costs in the exploration process, and ensuring the work efficiency and accuracy of physical evidence extraction.
[0017] Other features and advantages of the present utility model will be described in the subsequent description, and in part, will be obvious from the description, or will be understood by implementing the present utility model. The objectives and other advantages of the present utility model can be achieved and obtained through the structures pointed out in the description and the drawings. Brief Description of the Drawings
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0019] Figure 1 Shows a partial structural schematic diagram of the present utility model;
[0020] Figure 2 Shows a partial structural exploded view of the present utility model.
[0021] In the figure: 1, upper cover; 2, main screen; 3, secondary screen; 4, control button; 5, holding part; 6, upper shell; 7, lower shell; 8, main board; 9, power switch; 10, first battery; 11, laser light source; 12, camera module; 13, industrial camera; 14, lens barrel; 15, filter wheel; 16, grazing light source; 17, atomizing device; 18, bottom plate of the upper shell; 19, second battery; 20, footprint light. Detailed Description of the Embodiments
[0022] In order to make the objectives, technical solutions, and advantages of the embodiments of the present utility model clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present utility model.
[0023] Such as Figure 1-2As shown in the figure, an integrated intelligent on-site physical evidence exploration equipment integrating AIE technology includes an intelligent exploration equipment body. The intelligent exploration equipment body includes an upper shell 6. Above the upper shell 6, there is an upper cover 1. In the middle of the upper cover 1, there is a main screen 2. On one side of the main screen 2, there is a secondary screen 3 and control buttons 4. Inside the upper shell 6, there is a main board 8. The main screen 2, the secondary screen 3, and the control buttons 4 are all electrically connected to the main board 8. On the front side of the main board 8, there are a camera module 12, an industrial camera 13, a laser light source 11, and an atomization device 17. And the camera module 12, the industrial camera 13, the laser light source 11, and the atomization device 17 are all electrically connected to the main board 8. Below the inside of the upper shell 6, there is an upper shell bottom plate 18. On the upper shell bottom plate 18, there are a recording hole adapted to the camera module 12, a shooting hole adapted to the industrial camera 13, a first light transmission port adapted to the laser light source 11, and a spray port adapted to the atomization device 17. The lower part of the upper shell 6 is detachably connected to a lower shell 7. Inside the lower shell 7, there is a footprint lamp 20. On the bottom wall of the lower shell 7, there is a second light transmission port adapted to the footprint lamp 20. This design is convenient to carry and use. It not only has the AIE manifestation effect, but also has functions such as the footprint lamp 20 and recording. It can meet the needs of the manifestation and extraction of various physical evidences in on-site exploration, and can avoid manual switching of equipment, reducing the time and operation costs in the exploration process, and ensuring the work efficiency and accuracy of physical evidence extraction.
[0024] To facilitate the operation of the intelligent exploration equipment body, the control buttons 4 are arranged below the secondary screen 3.
[0025] There is a power switch 9 on the main board 8, and there is an installation hole on the side wall of the upper shell 6 for passing through the power switch 9, so as to facilitate controlling the opening and closing of the intelligent exploration equipment body through the power switch 9.
[0026] There is a grazing light source 16 inside the upper shell 6. There is a third light transmission hole on the upper shell bottom plate 18 adapted to the grazing light source 16, and the grazing light source 16 is electrically connected to the main board 8 to conduct on-site exploration with the help of the grazing light source 16.
[0027] The atomization device 17 includes a storage tank for storing AIE reagent and an atomizer connected to the storage tank. The atomizer is arranged above the spray port. And the atomizer is electrically connected to the main board 8. Thus, with the help of the AIE aggregation-induced emission technology, the rapid and non-destructive manifestation of biological specimens such as fingerprints and DNA is realized. The AIE reagent is sprayed from the spray port to the surface of the biological specimen to be manifested through the atomizer, and then the AIE reagent is excited by the laser light source 11, and the precise position where the biological physical evidence is located can be visually manifested. The AIE reagent has an electrostatic interaction with biological macromolecules such as amino acids to form aggregates, so as to produce fluorescence manifestation under laser irradiation. And the AIE reagent is safe and environmentally friendly, harmless to the environment and operators.
[0028] To ensure the shooting effect of the camera module 12 and the shooting effect of the industrial camera 13, a lens barrel 14 is provided below the camera module 12, and a filter wheel 15 is provided below the industrial camera 13.
[0029] A first battery 10 is provided inside the upper shell 6. The first battery 10 is electrically connected to the main board 8. A second battery 19 is provided inside the lower shell 7. The second battery 19 is electrically connected to the footprint light 20. Thus, the first battery 10 provides electrical energy for the main board 8 and the components inside the upper shell 6, and the second battery 19 provides electrical energy for the footprint light 20, ensuring the use effect of the intelligent exploration equipment body.
[0030] The upper shell 6 and the lower shell 7 are connected by buckles, which facilitates the detachable connection between the upper shell 6 and the lower shell 7.
[0031] One side of the upper shell 6 is provided with a protruding holding part 5 to facilitate the operator to carry the intelligent exploration equipment body by holding the holding part 5. To ensure the integrity of the equipment, one side of the upper cover 1 is provided with a cover plate adapted to the holding part 5.
[0032] Through the cooperative work of components such as the camera module 12, the industrial camera 13, the laser light source 11, the atomization device 17 and the footprint light 20, the present utility model realizes functional integration, enabling the intelligent exploration equipment body to have functions such as shooting, AIE manifestation, footprint manifestation, etc. It realizes multiple functions in one machine, meets the requirements of on-site investigation for the manifestation and evidence collection of various physical evidences, improves the practicability and application range of the equipment, significantly reduces the weight and volume of the equipment. When conducting on-site investigation, personnel only need to carry one device, reducing the load, improving the simplicity and flexibility of operation, and can conveniently control the intelligent exploration equipment body through the main screen 2, the secondary screen 3, the control buttons 4 and the power switch 9. The overall operation time is greatly shortened, which is conducive to improving the subsequent physical evidence extraction efficiency, making the on-site investigation work more efficient and accurate, and enhancing the overall effect of on-site investigation.
[0033] Although the present utility model has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present utility model.
Claims
1. An on-site physical evidence integrated intelligent exploration equipment integrating AIE technology, including an intelligent exploration equipment body, characterized in that, The intelligent exploration equipment body includes an upper shell, an upper cover is arranged above the upper shell, a main screen is arranged in the middle of the upper cover, and a secondary screen and control buttons are arranged on one side of the main screen; A main board is arranged inside the upper shell, and the main screen, the secondary screen, and the control buttons are all electrically connected to the main board; A camera module, an industrial camera, a laser light source, and an atomization device are arranged on the front side of the main board, and the camera module, the industrial camera, the laser light source, and the atomization device are all electrically connected to the main board. An upper shell bottom plate is arranged below the inner side of the upper shell, and a video recording hole adapted to the camera module, a shooting hole adapted to the industrial camera, a first light transmission port adapted to the laser light source, and a spray port adapted to the atomization device are arranged on the upper shell bottom plate; The lower part of the upper shell is detachably connected to a lower shell, a footprint lamp is arranged inside the lower shell, and a second light transmission port adapted to the footprint lamp is arranged on the bottom wall of the lower shell.
2. The integrated intelligent on-site physical evidence investigation equipment integrating AIE technology according to claim 1, characterized in that, A power switch is arranged on the main board, and an installation hole for passing through the power switch is arranged on the side wall of the upper shell.
3. The integrated intelligent on-site physical evidence investigation equipment integrating AIE technology as claimed in claim 1, characterized in that A grazing light source is arranged inside the upper shell, a third light transmission hole adapted to the grazing light source is arranged on the upper shell bottom plate, and the grazing light source is electrically connected to the main board.
4. The integrated on-site physical evidence intelligent exploration equipment integrating AIE technology according to claim 1, characterized in that, The atomization device includes a storage tank for storing AIE reagent and an atomizer connected to the storage tank. The atomizer is arranged above the spray port, and the atomizer is electrically connected to the main board.
5. The integrated intelligent on-site physical evidence investigation equipment integrating AIE technology as claimed in claim 1, characterized in that, A lens barrel is arranged below the camera module, and a filter wheel is arranged below the industrial camera.
6. The integrated intelligent on-site physical evidence exploration equipment integrating AIE technology according to claim 1, characterized in that, A first battery is arranged inside the upper shell, the first battery is electrically connected to the main board, a second battery is arranged inside the lower shell, and the second battery is electrically connected to the footprint lamp.
7. The integrated intelligent on-site physical evidence investigation equipment integrating AIE technology as claimed in claim 1, characterized in that, The upper shell and the lower shell are connected by a buckle.
8. The integrated on-site physical evidence intelligent exploration equipment integrating AIE technology as claimed in claim 1, characterized in that A protruding grip part is arranged on one side of the upper shell.