Screen-control integrated AI forklift intelligent auxiliary system
By designing an intelligent auxiliary system forklifts with integrated screen control, the existing equipment cannot cover blind spots and unstable heat dissipation, the integrated monitoring and display of forklift data is realized, and the system's use safety is improved.
Patent Information
- Application Number
- CN202422538045.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-10-21
AI Technical Summary
Existing forklift auxiliary equipment cannot fully cover blind spots, too many installed equipment and is not systematic, resulting in confusion of signal receipts, unable to effectively obtain warning information, and unstable heat dissipation when integrated data is displayed.
An intelligent auxiliary system for AI forklift integrated with screen control is designed, including a support base plate, a sealed shell, an upper box lid and a touch display. The sensor is connected through multiple external ports, wireless connection is used for antenna interface, and a thermal conductivity strip and a heat exchange box are combined for stable heat dissipation.
The integrated acquisition and display of forklift operation data is realized, and the forklift driving speed is monitored through wireless connections to ensure the stability of data display and adjustment, and the system's use safety is improved through an effective heat dissipation mechanism.
Smart Images

Figure CN223033041U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of forklift auxiliary equipment, in particular to an AI forklift intelligent auxiliary system integrating a screen and control. Background Technique
[0002] Forklift intelligent auxiliary equipment refers to the equipment installed on forklifts to assist operators in operating forklifts through machines, prevent accidents, and standardize driving habits. It adopts the combination of cameras and intelligent chips to accurately identify the operator's identity and realize the functions of automatic start and stop, so as to meet the requirements for forklift operation specifications in (factory) sites and ensure the safety of operators. Moreover, the auxiliary equipment is used to make up for the visual blind spots that operators cannot take into account and give timely warnings of driving dangers, helping operators operate forklifts safely and standardly.
[0003] When the existing forklift auxiliary equipment is in use, it cannot fully cover blind spots or there are too many installed devices, resulting in chaotic signal feedback due to lack of a system, and it is impossible to effectively obtain warning information. Moreover, it is not easy to maintain stable heat dissipation when integrating and displaying various data. Therefore, it does not meet the existing requirements, and for this reason, we propose an AI forklift intelligent auxiliary system integrating a screen and control. Content of the Utility Model
[0004] The purpose of the utility model is to provide an AI forklift intelligent auxiliary system integrating a screen and control, so as to solve the problems in the above background technique that when the existing forklift auxiliary equipment is in use, it cannot fully cover blind spots or there are too many installed devices, resulting in chaotic signal feedback due to lack of a system, and it is impossible to effectively obtain warning information, and it is not easy to maintain stable heat dissipation when integrating and displaying various data.
[0005] To achieve the above purpose, the utility model provides the following technical solution: an AI forklift intelligent auxiliary system integrating a screen and control, including a support bottom plate, on the upper end surface of which a sealed housing is fixedly installed, on the upper end surface of the sealed housing an upper box cover is fixedly installed, on the upper end surface of the upper box cover a touch display screen is installed, outside the touch display screen a frame-shaped pressing strip is installed, at one end of the sealed housing three antenna interfaces are fixedly installed, and at one end of one of the antenna interfaces a transmission antenna is installed.
[0006] On the rear end surface of the sealed housing a heat dissipation box is fixedly installed, on the rear end surface of the heat dissipation box a ventilation plate is installed, inside the heat dissipation box a heat exchange box is installed, on the rear end surface of the heat exchange box there are a plurality of heat dissipation fins, and on both ends of the heat exchange box heat conduction strips are installed.
[0007] Preferably, a partition frame is fixedly installed in the middle of the sealed housing, inside the partition frame a processor is provided, and the processor is fixedly connected to the support bottom plate.
[0008] Preferably, a plurality of external ports are installed on the front end face of the support base plate. A locking nut is connected to the outside of the external port by a thread. The rear end of the external port penetrates through the sealing housing and is electrically connected to the processor. A sealing ring is provided between the external port and the sealing housing. The external port and the sealing housing are fixedly connected by the locking nut.
[0009] Preferably, the heat exchange box is fixedly connected to the heat dissipation box. One end of two heat conduction strips penetrates through the heat dissipation box and is connected to the inside of the heat exchange box in a through manner. The inner wall of the sealing housing is in close contact with the two heat conduction strips. The inside of the heat exchange box is filled with a coolant.
[0010] Preferably, the frame-shaped pressing strip is fixedly connected to the upper box cover by screws. The side of the touch display screen is inserted between the upper box cover and the frame-shaped pressing strip. A sealing gasket is provided between the touch display screen and the upper box cover. The touch display screen is electrically connected to the processor.
[0011] Preferably, one end of the antenna interface penetrates through the sealing housing and is electrically connected to the processor. The power supply voltage of the processor is 12V.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0013] 1. The present utility model can stably isolate the whole through the support base plate, the sealing housing and the upper box cover. The touch display screen is fixed on the upper end face of the upper box cover through the frame-shaped pressing strip, so that data can be displayed and adjusted conveniently during stable installation through the display screen. The various sensors on the forklift are electrically connected through a plurality of external ports, so that the processor inside the partition frame can obtain and integrate various data during the operation of the forklift through the plurality of external ports and display them through the touch display screen;
[0014] 2. The present utility model can wirelessly connect the antenna interface to the speed sensor on the forklift hub through the transmission antenna, thereby facilitating the monitoring of the driving speed of the forklift. The heat conduction strips are in close contact with the inner wall of the sealing housing. Therefore, the coolant inside the heat exchange box can continuously perform heat exchange on the inner side of the sealing housing through the two heat conduction strips. Furthermore, the heat exchange box can stably dissipate heat to the whole through the air permeable plate, improving the use safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic structural diagram of the whole of the present utility model;
[0016] Figure 2 is a schematic sectional structure diagram of the sealing housing of the present utility model;
[0017] Figure 3 is a schematic installation structure diagram of the partition frame of the present utility model;
[0018] Figure 4 This is a schematic cross-sectional structure diagram of the heat dissipation box of the present utility model.
[0019] In the figure: 1, support bottom plate; 2, sealed housing; 3, upper box cover; 4, frame-shaped pressing strip; 5, touch display screen; 6, antenna interface; 7, transmission antenna; 8, external connection port; 9, lock nut; 10, partition frame; 11, heat dissipation box; 12, air-permeable plate; 13, heat exchange box; 14, heat conduction strip; 15, heat dissipation fin. Specific embodiments
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0021] Please refer to Figure 1 and Figure 2 , an embodiment provided by the present utility model: An AI forklift intelligent auxiliary system integrated with a screen control, including a support bottom plate 1, a sealed housing 2 is fixedly installed on the upper end surface of the support bottom plate 1, a plurality of external connection ports 8 are installed on the front end surface of the support bottom plate 1, a lock nut 9 is connected to the outside of the external connection port 8 by a thread, a sealing ring is provided between the external connection port 8 and the sealed housing 2, the external connection port 8 and the sealed housing 2 are fixedly connected by the lock nut 9, a partition frame 10 is fixedly installed in the middle of the sealed housing 2, a processor is provided inside the partition frame 10, the processor is fixedly connected to the support bottom plate 1, the rear end of the external connection port 8 penetrates the sealed housing 2 and is electrically connected to the processor, the touch display screen 5 is electrically connected to the processor, so that the processor inside the partition frame 10 can obtain and integrate various data during the operation of the forklift through a plurality of external connection ports 8.
[0022] Please refer to Figure 1 and Figure 3 , an upper box cover 3 is fixedly installed on the upper end surface of the sealed housing 2, a touch display screen 5 is installed on the upper end surface of the upper box cover 3, the frame-shaped pressing strip 4 is fixedly connected to the upper box cover 3 by screws, the side of the touch display screen 5 is inserted between the upper box cover 3 and the frame-shaped pressing strip 4, a sealing pad is provided between the touch display screen 5 and the upper box cover 3, a frame-shaped pressing strip 4 is installed outside the touch display screen 5, three antenna interfaces 6 are fixedly installed at one end of the sealed housing 2, a transmission antenna 7 is installed at one end of one of the antenna interfaces 6, one end of the antenna interface 6 penetrates the sealed housing 2 and is electrically connected to the processor, the power supply voltage of the processor is 12V, and the antenna interface 6 can wirelessly connect to the speed sensor on the forklift hub through the transmission antenna 7, so as to facilitate the monitoring of the driving speed of the forklift.
[0023] Please refer to Figure 3and Figure 4 At the rear end face of the sealed housing 2, a heat dissipation box 11 is fixedly installed. At the rear end face of the heat dissipation box 11, a ventilation plate 12 is installed. Inside the heat dissipation box 11, a heat exchange box 13 is installed. At the rear end face of the heat exchange box 13, a plurality of heat dissipation fins 15 are provided. At both ends of the heat exchange box 13, heat conduction strips 14 are installed. The heat exchange box 13 is fixedly connected to the heat dissipation box 11. One end of each of the two heat conduction strips 14 penetrates through the heat dissipation box 11 and is connected to the inside of the heat exchange box 13 in a through manner. The inner wall of the sealed housing 2 is in close contact with the two heat conduction strips 14. The inside of the heat exchange box 13 is filled with a coolant. The coolant inside the heat exchange box 13 can continuously perform heat exchange on the inside of the sealed housing 2 through the two heat conduction strips 14. Furthermore, the heat exchange box 13 can stably dissipate heat from the whole through the ventilation plate 12.
[0024] During use, the support base plate 1, the sealed housing 2, and the upper box cover 3 are fixedly connected, so that the whole can be stably isolated through the support base plate 1, the sealed housing 2, and the upper box cover 3. The touch display screen 5 is fixed to the upper end face of the upper box cover 3 through the frame-shaped pressing strip 4. The various sensors on the forklift are electrically connected through a plurality of external ports 8, so that the processor inside the partition frame 10 can obtain and integrate various data during the operation of the forklift through the plurality of external ports 8 and display them through the touch display screen 5;
[0025] The antenna interface 6 can wirelessly connect to the speed sensor on the forklift hub through the transmission antenna 7, which is convenient for monitoring the traveling speed of the forklift. The two heat conduction strips 14 penetrate through the heat dissipation box 11 and are connected to the heat exchange box 13 in a through manner, and the heat conduction strips 14 are in close contact with the inner wall of the sealed housing 2. Furthermore, the coolant inside the heat exchange box 13 can continuously perform heat exchange on the inside of the sealed housing 2 through the two heat conduction strips 14. Furthermore, the heat exchange box 13 can stably dissipate heat from the whole through the ventilation plate 12, improving the safety of use.
[0026] For those skilled in the art, it is obvious that the present utility model is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present utility model, the present utility model can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present utility model is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be encompassed within the present utility model. Any reference signs in the claims should not be regarded as limiting the claimed rights.
Claims
1. An AI forklift intelligent assistance system with integrated screen control, comprising a supporting base plate (1), characterized in that: A sealed housing (2) is fixedly mounted on the upper end surface of the support base plate (1), an upper box cover (3) is fixedly mounted on the upper end surface of the sealed housing (2), a touch display screen (5) is mounted on the upper end surface of the upper box cover (3), a frame-shaped molding (4) is mounted on the outer side of the touch display screen (5), and three antenna interfaces (6) are fixedly mounted on one end of the sealed housing (2), one end of one of the antenna interfaces (6) being mounted with a transmission antenna (7); A heat dissipation box (11) is fixedly mounted on the rear end face of the sealed housing (2), a breathable plate (12) is mounted on the rear end face of the heat dissipation box (11), a heat exchange box (13) is mounted inside the heat dissipation box (11), a plurality of heat dissipation fins (15) are provided on the rear end face of the heat exchange box (13), and heat conduction strips (14) are mounted on both ends of the heat exchange box (13).
2. The AI forklift intelligent assistance system with integrated screen and control according to claim 1 is characterized by: A partition frame (10) is fixedly mounted in the middle of the sealed housing (2), a processor is provided on the inner side of the partition frame (10), and the processor is fixedly connected to the supporting base plate (1).
3. The AI forklift intelligent assistance system with integrated screen and control according to claim 2 is characterized by: A plurality of external ports (8) are installed on the front end surface of the support base plate (1); the outer sides of the external ports (8) are connected to locking nuts (9) via threads; the rear ends of the external ports (8) penetrate the sealed housing (2) and are electrically connected to the processor; a sealing ring is provided between the external ports (8) and the sealed housing (2); and the external ports (8) and the sealed housing (2) are fixedly connected via locking nuts (9).
4. The AI forklift intelligent assistance system with integrated screen and control according to claim 3 is characterized by: The heat exchange box (13) is fixedly connected to the heat dissipation box (11), one end of the two heat-conducting strips (14) passes through the heat dissipation box (11) and is connected to the interior of the heat exchange box (13), the inner wall of the sealed shell (2) is in close contact with the two heat-conducting strips (14), and the interior of the heat exchange box (13) is filled with cooling liquid.
5. The AI forklift intelligent assistance system with integrated screen and control according to claim 4 is characterized by: The frame-shaped pressure strip (4) and the upper box cover (3) are connected and fixed by screws, the side of the touch display screen (5) is inserted between the upper box cover (3) and the frame-shaped pressure strip (4), a sealing gasket is provided between the touch display screen (5) and the upper box cover (3), and the touch display screen (5) is electrically connected to the processor.
6. The AI forklift intelligent assistance system with integrated screen and control according to claim 5 is characterized by: One end of the antenna interface (6) passes through the sealed housing (2) and is electrically connected to the processor, and the power supply voltage of the processor is 12V.