Forklift type mobile intelligent charging trolley
By using a forklift-type mobile intelligent charging vehicle, which utilizes an intelligent grasping system and an Internet of Things system, charging services are directly provided for new energy vehicles, solving the problem of scarce charging facilities for new energy vehicles and achieving a convenient and efficient charging experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHANGZHOU LIYE HEAVY EQUIP TECH CO LTD
- Filing Date
- 2023-08-29
- Publication Date
- 2026-05-29
AI Technical Summary
The scarcity of charging facilities for new energy vehicles forces car owners to travel long distances to find charging stations and experience long charging times, causing charging anxiety.
Design a forklift-type mobile intelligent charging vehicle equipped with an intelligent grasping system and a charging system. It can transport replaceable battery packs and connect to an Internet of Things (IoT) system to directly provide charging services for new energy vehicles.
It solves the problem of charging difficulties for new energy vehicles, provides a convenient and efficient charging solution, reduces waiting time for car owners, and alleviates charging anxiety.
Smart Images

Figure CN224297025U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of new energy charging technology, and in particular relates to a forklift-type mobile intelligent charging vehicle. Background Technology
[0002] With the rapid development of new energy vehicles, the number of fixed charging stations on the market is far from reaching the corresponding proportion, and fixed charging stations are even scarcer in some older residential areas or towns. Many new energy vehicle owners often have to drive several kilometers to find a charging station, and even after finding one, they still have to queue to charge, especially when they are on the highway, where the waiting time is greatly increased. Utility Model Content
[0003] The purpose of this utility model is to provide a forklift-type mobile intelligent charging vehicle to solve the above-mentioned technical problems.
[0004] To solve the above-mentioned technical problems, the specific technical solution of this utility model for a forklift-type mobile intelligent charging vehicle is as follows:
[0005] A forklift-type mobile intelligent charging vehicle includes an intelligent forklift body and an intelligent gripping system. The intelligent gripping system is fixedly connected to the front of the intelligent forklift body, and a charging system is located at the rear of the intelligent forklift body. An on-board intelligent communication management system is located on the top of the intelligent forklift body. The charging system, the intelligent gripping system, and the on-board intelligent communication management system are electrically connected to each other.
[0006] The charging system is used to provide DC power to new energy vehicles;
[0007] The intelligent grasping system is used to grasp replaceable battery packs;
[0008] The vehicle-mounted intelligent communication management system is used to establish communication connections with IoT intelligent communication systems.
[0009] Furthermore, it includes a forklift chassis, a hydraulic system, and an electrical system. The forklift chassis is fixedly connected to the bottom of the intelligent forklift body, and the hydraulic system and electrical system are installed inside the forklift chassis. The forklift chassis is used to support the vehicle body and facilitate movement.
[0010] The electrical system is used to drive the forklift motor;
[0011] The hydraulic system is used for lifting and grasping by the intelligent grasping system.
[0012] Furthermore, the charging system includes: a charging gun, a DC cable, and a power distribution cabinet. The power distribution cabinet is fixed on the intelligent forklift body and is connected to the charging gun via the DC cable. The charging gun is used to insert into the charging port of the new energy vehicle, and the power distribution cabinet is used to control the DC voltage on and off.
[0013] Furthermore, the intelligent grasping system includes: a laser positioning sensor and a forklift-type grasping structure. The laser positioning sensor is used to locate and identify replaceable battery packs, and the forklift-type grasping structure is a forklift fork used to pick up replaceable battery packs in the intelligent battery pack storage warehouse.
[0014] Furthermore, the IoT intelligent communication system includes: an IoT platform, an intelligent mobile communication terminal, a data collector, and a data processor. The IoT platform is used to place orders and manage the charging vehicle and the replaceable battery pack. The intelligent mobile communication terminal provides a carrier for the IoT platform. The data collector is used to collect information from the vehicle-mounted intelligent communication management system and the replaceable battery pack. The data processor is used to process the data and display the device status and battery status through the IoT platform.
[0015] Furthermore, the replaceable battery pack includes: a storage battery, a battery casing, a battery management system, and a charging / discharging interface. The storage battery and the battery management system are housed inside the battery casing. The battery management system is used to manage the storage battery. The charging / discharging interface is embedded outside the battery casing and is used to provide a charging interface for the storage battery. The storage battery and the battery management system are electrically connected to each other.
[0016] Furthermore, the battery management system includes charging status information and power information management.
[0017] Furthermore, the replaceable battery pack includes a cooling system housed within the battery casing, the cooling system being electrically connected to the battery management system, and the cooling system being used to cool the energy storage batteries.
[0018] The forklift-type mobile intelligent charging cart of this utility model has the following advantages: The forklift-type mobile intelligent charging cart of this utility model can transport replaceable battery packs to the vicinity of new energy vehicles for charging, thereby solving the problems of charging difficulties, long charging times, and difficulty in finding charging piles for new energy vehicles. Vehicle owners do not need to wait nearby when charging, thus completely realizing the charging freedom of vehicle owners, providing a more convenient and faster charging experience for new energy vehicle owners, and alleviating the charging anxiety problem caused by the lack of fixed charging piles in the current market. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the forklift-type mobile intelligent charging trolley of this utility model.
[0020] Figure 2 This is a block diagram of the Internet of Things (IoT) intelligent communication system of this utility model;
[0021] Figure 3This is a schematic diagram of the replaceable battery pack structure of this utility model;
[0022] The markings in the diagram are as follows: 11. Intelligent forklift body; 12. Forklift chassis; 13. Intelligent gripping system; 131. Laser positioning sensor; 132. Forklift-type gripping structure; 14. Hydraulic system; 15. Electrical system; 16. Charging system; 161. DC cable; 162. Power distribution cabinet; 17. Onboard intelligent communication management system; 3. Replaceable battery pack; 31. Storage battery; 32. Battery casing; 33. Cooling system; 34. Battery management system; 35. Charging / discharging interface; 4. Internet of Things (IoT) intelligent communication system; 41. IoT platform; 42. Intelligent mobile communication terminal; 43. Data collector; 44. Data processor. Detailed Implementation
[0023] To better understand the purpose, structure, and function of this utility model, the following description, in conjunction with the accompanying drawings, provides a more detailed account of a forklift-type mobile intelligent charging vehicle.
[0024] like Figure 1 As shown, this utility model discloses a forklift-type mobile intelligent charging trolley, comprising an intelligent forklift body 11, a forklift chassis 12, an intelligent gripping system 13, a hydraulic system 14, an electrical system 15, a charging system 16, and an on-board intelligent communication management system 17. The forklift chassis 12 is fixedly connected to the bottom of the intelligent forklift body 11, the intelligent gripping system 13 is fixedly connected to the front of the intelligent forklift body 11, and the charging system 16 is fixedly connected to the rear of the intelligent forklift body 11. The hydraulic system 14 and the electrical system 15 are installed inside the forklift chassis 12, and the on-board intelligent communication management system 17 is installed on the top of the intelligent forklift body 11. The charging system 16, the intelligent gripping system 13, and the on-board intelligent communication management system 17 are electrically connected to each other.
[0025] The forklift chassis 12 is used to support the vehicle body and facilitate movement.
[0026] Electrical system 15 is used to drive the forklift motor.
[0027] The hydraulic system 14 is used for lifting and gripping by the intelligent gripping system 13.
[0028] The charging system 16 is used to provide DC power to new energy vehicles. The charging system 16 includes: a charging gun, a DC cable 161, and a power distribution cabinet 162. The power distribution cabinet 162 is fixed on the intelligent forklift body 11. The power distribution cabinet 162 is connected to the charging gun through the DC cable 161. The charging gun is used to insert into the charging port of the new energy vehicle (new energy vehicles include new energy cars, new energy engineering vehicles and all electrified vehicles). The power distribution cabinet 162 is used to control the DC voltage on and off.
[0029] The intelligent gripping system 13 is used to grip the replaceable battery pack 3. The intelligent gripping system 13 includes: a laser positioning sensor 131 and a forklift-type gripping structure 132. The laser positioning sensor 131 is used to locate and identify the replaceable battery pack 3. The forklift-type gripping structure 132 is a forklift fork, used to forklift the replaceable battery pack 3 in the intelligent battery pack storage warehouse.
[0030] The vehicle-mounted intelligent communication management system 17 is used to establish a communication connection with the Internet of Things intelligent communication system 4.
[0031] like Figure 2 As shown, the IoT intelligent communication system 4 includes: an IoT platform 41, an intelligent mobile communication terminal 42, a data collector 43, and a data processor 44. The IoT platform 41 is used to place orders and manage the charging vehicle and the replaceable battery pack 3. The intelligent mobile communication terminal 42 provides a carrier for the IoT platform 41. The data collector 43 is used to collect information from the vehicle-mounted intelligent communication management system and the replaceable battery pack 3. The data processor 44 is used to process the data and display the device status and battery status through the IoT platform 41.
[0032] like Figure 3 As shown, the replaceable battery pack 3 includes: a storage battery 31, a battery casing 32, a cooling system 33, a battery management system 34, and a charging / discharging interface 35. The storage battery 31, cooling system 33, and battery management system 34 are housed within the battery casing 32. The storage battery 31 includes hydrogen fuel cells and various supplementary energy batteries. The cooling system 33 is used to cool the storage battery 31, and the battery management system 34 is used to manage the storage battery 31, including charging status information and power information management. The charging / discharging interface 35 is embedded outside the battery casing 32 and provides a charging interface for the storage battery 31. The storage battery 31, cooling system 33, and battery management system 34 are electrically connected to each other.
[0033] The usage process of this forklift-type mobile intelligent charging cart is as follows:
[0034] Under normal circumstances, after receiving the order information, the IoT intelligent communication system 4 will have its staff drive the forklift-type mobile intelligent charging trolley to the new energy vehicle requiring charging. The staff will connect the replaceable battery pack 3's charging / discharging interface 35 to the DC cable 161 and insert the charging gun into the new energy vehicle's charging port. After confirmation, the electrical system 15 will be activated. The battery management system 34 will release power from the energy storage battery pack based on the new energy vehicle's power level. Once the battery is fully charged, the battery management system 34 will stop outputting power from the battery pack, and the data collector 43 will receive a charging completion signal. The data processor 44 will then send the relevant information to the staff. The staff will then shut down the electrical system 15 and return the charging gun to the trolley. After confirming safe completion of charging, the IoT intelligent communication system 4 will send information regarding the charging fee and amount charged to the customer for payment and confirmation. At the same time, the data collector 43 sends the remaining power of the replaceable battery pack 3 to the staff. The staff then drive the mobile intelligent charging trolley with a forklift structure to the battery swapping location based on the power information and use the intelligent grasping system 13 to replace the new energy storage battery pack.
[0035] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.
Claims
1. A forklift-type mobile intelligent charging trolley, comprising an intelligent forklift body (11) and an intelligent gripping system (13), wherein the intelligent gripping system (13) is fixedly connected to the front of the intelligent forklift body (11), characterized in that, The intelligent forklift body (11) has a charging system (16) at the rear and an on-board intelligent communication management system (17) at the top. The charging system (16), the intelligent gripping system (13), and the on-board intelligent communication management system (17) are electrically connected to each other. The charging system (16) is used to provide DC power to new energy vehicles; The intelligent grasping system (13) is used to grasp the replaceable battery pack (3). The vehicle-mounted intelligent communication management system (17) is used to establish a communication connection with the Internet of Things intelligent communication system (4).
2. The forklift-type mobile intelligent charging trolley according to claim 1, characterized in that, Includes a forklift chassis (12), a hydraulic system (14), and an electrical system (15). The forklift chassis (12) is fixedly connected to the bottom of the intelligent forklift body (11). The hydraulic system (14) and the electrical system (15) are installed inside the forklift chassis (12). The forklift chassis (12) is used to support the vehicle body and move it. The electrical system (15) is used to drive the forklift motor; The hydraulic system (14) is used for lifting and gripping of the intelligent gripping system (13).
3. The forklift-type mobile intelligent charging trolley according to claim 1, characterized in that, The charging system (16) includes: a charging gun, a DC cable (161), and a power distribution cabinet (162). The power distribution cabinet (162) is fixed on the intelligent forklift body (11). The power distribution cabinet (162) is connected to the charging gun through the DC cable (161). The charging gun is used to insert into the charging port of the new energy vehicle. The power distribution cabinet (162) is used to control the DC voltage on and off.
4. The forklift-type mobile intelligent charging trolley according to claim 1, characterized in that, The intelligent gripping system (13) includes: a laser positioning sensor (131) and a forklift-type gripping structure (132). The laser positioning sensor (131) is used to locate and identify the replaceable battery pack (3). The forklift-type gripping structure (132) is a forklift fork used to pick up the replaceable battery pack (3) in the intelligent battery pack storage warehouse.
5. The forklift-type mobile intelligent charging trolley according to claim 1, characterized in that, The IoT intelligent communication system (4) includes: IoT platform (41), intelligent mobile communication terminal (42), data collector (43), and data processor (44). The IoT platform (41) is used to place orders and manage charging vehicles and replaceable battery packs (3). The intelligent mobile communication terminal (42) provides a carrier for the IoT platform (41). The data collector (43) is used to collect information from the vehicle intelligent communication management system (17) and the replaceable battery pack (3). The data processor (44) is used to process data information and display the device status and battery status through the IoT platform (41).
6. The forklift-type mobile intelligent charging trolley according to claim 1, characterized in that, The replaceable battery pack (3) includes: a storage battery (31), a battery casing (32), a battery management system (34), and a charging / discharging interface (35). The storage battery (31) and the battery management system (34) are housed inside the battery casing (32). The battery management system (34) is used to manage the storage battery (31). The charging / discharging interface (35) is embedded outside the battery casing (32) and is used to provide a charging interface for the storage battery (31). The storage battery (31) and the battery management system (34) are electrically connected to each other.
7. The forklift-type mobile intelligent charging trolley according to claim 6, characterized in that, The battery management system (34) includes charging status information and power information management.
8. The forklift-type mobile intelligent charging trolley according to claim 6, characterized in that, The replaceable battery pack (3) includes a cooling system (33) which is housed inside the battery casing and is electrically connected to the battery management system (34). The cooling system (33) is used to cool the energy storage battery (31).