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Heavy Duty Automated Guided Vehicle (AGV) is an intelligent unmanned transportation equipment designed specifically for heavy material handling needs in industrial scenarios. Its core characteristics are high load capacity (usually ranging from several tons to hundreds of tons), high-precision positioning, autonomous navigation, and flexible scheduling. It can replace traditional manual or fixed rail transportation methods and is suitable for complex, high-intensity, and high-risk industrial environments.
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product details:
Used for the transportation of small excavator chassis, with docking capabilities for automated warehouses. It supports the transportation of material racks with support legs, without limitations on product types or industries. The AGV can stealthily enter the bottom of the material rack and lift it for transportation; the dimensions of the material rack match the dimensions of the AGV. It features a four-wheel drive structure and hydraulic lifting.
Product Name | Backpack Lifting AGVs |
Model Number | LY-AU-3T-4-0B |
Product Weight | 2.2T |
Load Weight | 3T |
Product Size | L2620*W1620*H500mm |
Drive Unit Type | Superdrive |
Drive Unit Number | 4-Drive 8-Wheels |
Drive Unit Load Weight | 5T |
Remote Control | Manual Remote + Automatic Operation |
Navigation Type | Magnetic Stripe, Laser SLAM, QR code |
Lift Ability | Yes |
Castor | 0 |
Linkage Mode | Single AGV |
Frame Structure | Tubesheet |
Suspension Type | Hydraulic |
Turning Radius | 940mm |
Voltage | 48V |
Range/Battery | 120AH(Customized Available) |
Fixture/Tooling | Overall Lift |
Explosion-proof level | Depends on Demand |
Explosion-proof or not | / |
The main navigation methods of AGV are:
Magnetic strip navigation
Similar to electromagnetic guidance, magnetic strip navigation is used to replace metal wires buried under the ground with magnetic tapes on the road surface to achieve guidance through magnetic induction signals. It has better flexibility, is easier to change or expand the path, and is simple and easy to lay magnetic tapes. However, this guidance method is easily interfered by metal materials around the loop, and the magnetic tape is susceptible to mechanical damage. Therefore, the reliability of guidance is greatly affected by the outside world.
Laser SLAM navigation
Laser guidance is to install a precisely positioned laser reflector around the AGV driving path. The AGV emits a laser beam through a laser scanner and collects the laser beam reflected by the reflector to determine its current position and heading, and achieves AGV guidance through continuous trigonometric operations. The biggest advantage of this technology is that AGV positioning is accurate; no other positioning facilities are required on the ground; the driving path can be flexible and adaptable to a variety of on-site environments. It is currently the advanced guidance method preferred by many foreign AGV manufacturers; the disadvantage is that the manufacturing cost is high, the environmental requirements are relatively harsh (external light, ground requirements, visibility requirements, etc.), and it is not suitable for outdoor use (especially susceptible to rain, snow, and fog).
GNSS-GPS/Beidou navigation.
Visual navigation: Based on cameras and AI algorithms to identify ground signs or environmental features.
Advantages of AGV:
Efficiency improvement: 24-hour continuous operation, reduced reliance on manual labor, and shortened production cycle.
Safety: Avoid manual operation errors and reduce the risk of work-related injuries.
Flexibility and scalability: Quickly adjust paths and tasks to adapt to changes in production lines.
Cost optimization: Reduce manpower, equipment maintenance and site occupation costs.
Data-driven: Real-time monitoring of transportation status and optimization of production processes.
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