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HEAVY DUTY RACK
NARROW AISLE RACK
A stacker crane combined with shuttle-based automated storage systems enables rapid sorting and retrieval of goods. Typically, such systems consist of high-density shelving, aisle stacker cranes, and other automated storage and retrieval equipment, integrated with computer systems and control technologies to create a modern, unmanned warehouse that achieves fully automated storage and retrieval operations.
The structure consists of upright posts, cross beams, horizontal braces, diagonal braces, and other components, ensuring stability. The primary structural materials for the shelving are typically cold-rolled steel profiles, with strength and toughness selected according to load-bearing requirements. The plug-in design is secured by safety pins. The cross-sectional dimensions are chosen based on the load, and the assembly is both convenient and structurally robust.
The racking system featuring uprights and beams paired with pallets is similar to conventional pallet racking; however, its aisle width is only 20–30 centimeters wider than the forklift’s width, requiring the use of three-way reach trucks or front-moving forklifts. Its high-precision manufacturing ensures the verticality of the uprights, while integrated rails or magnetic guides further enhance operational safety.
The system consists of a racking system, shuttle cars, forklifts, and a control system. Tracks are installed within the racking aisles, and shuttle cars run automatically along these tracks, enabling horizontal movement of goods. Forklifts or lifts are used at the aisle entrances to pick up and put down goods, creating an efficient "goods move, forklift stays stationary" operational mode.
The system consists of a shelving framework, CTU robots, and a warehouse management system. The shelving is designed in a modular fashion, enabling flexible assembly and expansion. The CTU robots are equipped with a multi-sensor fusion system that integrates laser navigation, visual recognition, and other sensors, working in tandem with high-precision servo motors to achieve precise positioning with an accuracy of ±5 mm and autonomous shuttle operations. The dispatching system, based on AI algorithms, dynamically adjusts the order of operations and robot routes. With the coordinated operation of these multiple systems, the CTU robots can respond to cargo storage and retrieval instructions within milliseconds, realizing an "optimal flow path" for efficient warehousing. This significantly enhances warehouse space utilization and operational efficiency.
It is a high-density storage device primarily used for storing large quantities of goods with few varieties and low frequency of inbound and outbound movements. Its core design concept lies in integrating the storage area with forklift aisles into a single, unified space, thereby maximizing storage capacity within a limited warehouse footprint.
CANTTILEVER RACK
It consists of upright posts, cantilever beams, vertical tie rods, and a base. The upright posts are connected to the cantilever beams via high-strength bolts, forming a stable lateral support structure. The length of the cantilever can be adjusted, and end stops prevent goods from sliding off. This system features strong load-bearing capacity, high space utilization, and convenient access. The spacing between cantilevers can be customized as needed, making it suitable for storing long and irregular-shaped goods.
MEZZANINE RACK
It is a simple shelving system that involves constructing an intermediate mezzanine level on top of existing workspaces or racks to increase storage capacity. The system is equipped with stairs and cargo lifts for material handling. Typically, it uses medium- or heavy-duty pallet racking as the primary structural support and employs cold-formed steel sections, patterned steel plates, or steel grating for the floor panels.
STEEL PLATFORM RACK
It is a space-efficient work platform primarily composed of decking, main and secondary beams, columns, ladders, guardrails, and other components. It features a fully assembled structure and flexible design. Typically used as a storage and operational platform, it can meet various application requirements, such as platforms for static and dynamic loads, as well as auxiliary production platforms.
GRAVITY RACK
It consists of a fully assembled structure made up of upright frames and beams, featuring strong load-bearing capacity and a wide range of height adaptability. There are no separate aisles inside the shelving system; instead, storage and retrieval aisles are set up only at both ends of the aisle. Palletized goods are loaded into the system from the higher end and retrieved from the lower end.
It consists of a column frame, drawer-style shelves, guide rails, and a safety locking mechanism. Each shelf is equipped with sliding drawers that can be flexibly extended and retracted along the guide rails, enabling convenient access to molds. A safety locking mechanism secures the drawers in place to prevent them from slipping, thus creating a safe operating mode characterized by "drawer mobility and mold stability."
SLIDE OVER RACK
The shelving system features a main frame constructed from cold-rolled steel or stainless steel uprights. It employs angled flow racks that allow goods to slide individually from the entry end to the exit end, leveraging the weight of the goods themselves.
SHELF RACK
It features a simple structure, convenient disassembly and assembly, and flexible adjustment. The spacing between shelf levels can be freely adjusted according to the height of the goods, and each level can support loads ranging from tens of kilograms to over a ton.