Automated Warehouse Logistics System

Evo-Tech Rigid Chain Technology: The Smart Lifting Revolution in Stereoscopic Warehouse Logistics

Automated Warehouse Logistics System

As the logistics industry evolves toward智能化 (smart) and high-density operations, automated立体仓库 have become the central hub of modern supply chain systems. Key challenges in warehouse logistics equipment used in automated storage and retrieval systems include positioning accuracy, operational efficiency, and equipment reliability. How is Evo-Tech’s rigid-chain lift platform breaking through the technological barriers of "high-density storage + rapid response + long-term stability" in automated warehouses?

 

Industrial Solutions

Automated Warehouse Logistics System

Industrial scenarios

In modern automated warehouses, the application of lifting functions spans the entire logistics process:

Shelf Access Operations Systemic Collaborative Operations
  • Precise alignment with high-level shelving: When operating on high-level racks, the horizontal error between the lift platform and the shelves must be kept within ±2mm.
  • Heavy-duty pallet handling: Ensure smooth lifting and lowering when moving heavy pallets, preventing cargo from tilting.
  • Coordinated with the stacker crane: As a ground-level interface device, it works seamlessly with the aisle stacker crane to enable a "goods-to-person" operation model.
  • Cross-floor transportation: Handles vertical movement in multi-level warehouses, replacing traditional elevators to boost efficiency.
  • AGV Shuttle Platform: Provides a highly adjustable loading and unloading interface for AGV systems, enabling seamless automated connections.

Challenges Facing Automated Warehouse Logistics

Currently, the automated warehouse lifting system faces critical technical challenges that urgently need to be addressed:

  • Precision degradation issue: Traditional lifting equipment suffers from declining positioning accuracy after prolonged, high-frequency use, leading to an increased failure rate in shelf docking.
  • Efficiency bottleneck limitation: Traditional systems typically have lifting speeds below 0.3 m/s, making it difficult to meet the operational pace requirements of modern logistics centers in certain scenarios.
  • Low space utilization: Traditional lifting equipment has a bulky design, consuming valuable warehouse space and reducing storage density.
  • High maintenance complexity: Replacing seals requires intensive maintenance time, disrupting the continuity of warehouse operations.
  • Prominent safety hazards: Malfunctions could lead to severe safety incidents.

Core Values and Logistics Efficiency

Enhancing warehouse operational efficiency

Reduce overall operating costs

Ensure long-term stable operation

  • Improved job efficiency: Higher throughput compared to traditional equipment.
  • Reduced error rate: Precise positioning boosts the success rate of shelf alignment.
  • Space optimization: The compact design of the equipment increases available storage space.
  • Energy consumption cost savings
  • Reduced maintenance costs
  • Artificial Cost Optimization
  • Equipment Reliability
  • Long service life
  • Minimal downtime

Evo-Tech's rigid-chain lift platforms are redefining the standards for vertical material handling in automated warehouses, thanks to their exceptional precision, efficiency, and reliability. Offering intelligent, high-performance, and cost-effective lifting solutions, these platforms empower modern logistics centers to build more competitive supply chain systems—helping businesses stay ahead in an increasingly dynamic market.

Evo-Tech Rigid Chain Technology Solution

01.

High-Precision Positioning System

Servo closed-loop control: Utilizing an absolute encoder and PLC-based closed-loop control to achieve repeatable positioning accuracy of ±1 mm.
Long-term stability: The special alloy chain, paired with a pre-tensioning device, exhibits virtually no precision degradation after 100,000 cycles.

02.

High-Performance Driven Design

Quick response capability: Lifting and lowering speeds reach up to 1.2 m/s, reducing cycle times for operations.

03.

Compact Space Optimization

Compact structural design: Saves space
Ground-level installation: Features a self-supporting structure, eliminating the need for underground foundation work and reducing civil construction costs.
Modular Expansion: Supports the parallel operation of multiple units, meeting the demands for handling heavy-tonnage and large-sized cargo.

Related Products

A core product specifically designed for vertical lifting applications with small to medium loads, it is manufactured from high-strength alloy materials and features a modular structure that ensures stable transmission. It can precisely perform vertical lifting and lowering operations and is compatible with the integration requirements of various industrial automation devices.
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Developed specifically for high-load vertical lifting applications, this product features enhanced load-bearing capacity and structural stability. Its optimized chain-link design improves fatigue resistance, enabling it to meet the long-term, high-frequency operational demands of heavy-duty construction machinery and large-scale construction equipment.
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Focusing on horizontal push-and-pull transmission, this system employs a chain-link structure with a low coefficient of friction, ensuring smooth and efficient operation. It enables precise material delivery and position adjustment even in confined spaces, making it well-suited for the automated retrofitting of small- and medium-sized logistics equipment.
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Custom-designed for high-load horizontal transmission applications, the chain body features an enhanced heat treatment process that provides exceptional torque resistance. It enables stable, long-distance push-and-pull operations in heavy-duty shelving systems for smart warehouses and material handling systems in large-scale production workshops.
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