Through the integration of an automated vertical storage system, stacker cranes, and the TY-WIS control system, theautomated logistics and warehousing solution enables high-density material storage and intelligent scheduling.
Through the integration of an automated vertical storage system, stacker cranes, and the TY-WIS control system, theautomated logistics and warehousing solution enables high-density material storage and intelligent scheduling.
Space utilization is increased by more than 300%, while storage and retrieval efficiency improves by 50%-80%.Whencombined with AGV forklifts, the system supports 24/7 unmanned "lights-out" operation.
With precise inventory control, the system ensures first-in, first-out(FIFO) management and full-process traceability.significantly reducing labor dependency and error rates.t serves as a fundamental cornerstone for building highly efficientmaterial flow systems and enhancing overall supply chain responsiveness.
Types of Warehouse and logistics automation
Warehouse Automation Storage System
Automated Single-Tower Storage System
Automated Dual-Tower Sheet Metal Storage System
Automated Guided Vehicle(AGV) Forklift
How Modular Storage Systems Grow with Your Production Needs
Scalable rack modules expand as capacity increases
Automated infeed and outfeed stations adapt to new equipment
Supports laser, punch, and bending lines from one central system
Digital material tracking prevents shortages and errors
Maximizes space utilization and improves logistics efficiency
automated storage systems in warehouses
How Vertical Storage Systems Maximize Factory Layout Efficiency
Spatial Restructuring: From Planar Expansion to Three-Dimensional Multiplication
Flow Optimization: Shortening Material Handling Paths and Eliminating Ineffective Waiting
Data-Driven: Intelligent Scheduling and Precise Decision-Making
Appropriate Vertical Storage Application Strategies for Different Stages of Manufacturing
FAQs of Automated Sheet Metal Storage System
What types of materials (size, weight) can your system store?
A :
Various metal sheet materials,cut parts processed by laser cutters or punch presses; semi-finished products awaiting bending or assembly; complete finished product sets; stamping dies, bending dies, etc.
What size and weight of materials can your system store?
A :
Maximum Storage Dimensions: L6000 × W2000 mm
Minimum Storage Dimensions: Typically supports materials of L1000 × W500 mm or smaller.
Maximum Load per Pallet: 5000 kg.
Storage Height (including pallet): Standard shelf height is 260 mm or 280 mm; custom heights can be configured based on specific material stacking requirements.
Pallet Dimensions: Steel pallets; dimensions are typically slightly larger than the maximum material dimensions to ensure material stability.
What is the average storage and retrieval time?
A :
The average time for a single complete access cycle (either a single put-away or a single retrieval) typically ranges from 90 to 180 seconds (1.5 to 3 minutes).
How does the system optimize storage space utilization?
A :
Multi-tier high-density storage, intelligent slot management, hybrid storage, and flexible shelf heights.
What happens during a power failure or system error?
A :
The system design prioritizes data integrity, task recoverability, and the safety of personnel and equipment as its paramount principles.
How do you ensure safe access for occasional manual retrieval?
A :
We establish multiple lines of defense—comprising hardware isolation, electrical interlocks, and rigorous procedures—to ensure "human-machine isolation."
This is the core execution unit for achieving unmanned and intelligent sheet metal bending. The keyto system configuration lies in determining the robot payload and arm reach based on the maximumworkpiece size, weight, and process complexity.Depending on the production mode(standalone, inline,or connected to storage... moreRobotic Press Brake Bending Cell EB-ER130 for Sheet Metal https://www.toyuris.com/products/robotic-press-brake-bending-cell-eb-er130-for-sheet-metal.html
This is the core execution unit for achieving unmanned and intelligent sheet metal bending. The keyto system configuration lies in determining the robot payload and arm reach based on the maximumworkpiece size, weight, and process complexity.Depending on the production mode(standalone, inline,or connected to storage), a seventh axis and its length may be required.Deep compatibility with the pressbrake control system is essential to ensure precise synchronized motion and coordinated operation.
Gallery of Robotic Press Brake Bending Cell EB-ER130 for Sheet Metal
robotic press brake bending
TOYURIS’s automated laser cutting systems integrate laser machines with intelligent loading, unloading, and material handling units to achieve continuous and high-efficiency production. Designed for high-mix and batch CNC laser sheet metal cutting, the system reduces manual labor, improves cutting accuracy, and shortens production cycl... moreLaser Cutting Machine Automated Production Unit https://www.toyuris.com/products/laser-cutting-machine-automated-production-cell/
TOYURIS’s automated laser cutting systems integrate laser machines with intelligent loading, unloading, and material handling units to achieve continuous and high-efficiency production. Designed for high-mix and batch CNC laser sheet metal cutting, the system reduces manual labor, improves cutting accuracy, and shortens production cycles. With modular layouts and smart control, the laser cutting automation system enables fast changeovers, stable operation, and seamless connection with storage systems and MES for fully digitalized production management.
Types of Automated Laser Cutting Systems
GL3015-01 Automated Laser Cutting Production Line with Intelligent Storage
GL3015-02 Automated Laser Cutting Production Line with Intelligent Storage
Single-Storage Laser Cutting & Punching Automation GLP3015
Laser Cutting Loading & Unloading Automation System
Laser Cutting Loading & Sorting Automation System
Why Fiber Lasers are Dominating Modern Sheet Metal Fabrication
High cutting speed and energy efficiency for steel, stainless steel, and aluminum
Lower maintenance and operating costs compared with CO₂ lasers
Seamless integration with laser cutting loading and unloading and an automated warehouse system
Supports high-mix, small-batch automated laser cutting with fast changeovers
Delivers stable accuracy, cleaner edges, and higher material utilization
How Automated Inspection is Ensuring Zero-Defect Laser Cutting
High-precision vision + AI defect recognition
Laser line scanning and 3D contour measurement
Real-time X-ray imaging inspection
Automatic spot distribution and coaxiality calibration
FAQs of Laser Cutting Machine Automated Production Cell
What are the core components of an automated cell?
A :
It primarily consists of three main parts: an automated warehouse system (used for storing and managing raw materials), automated loading and unloading manipulators (responsible for retrieving, loading, and unloading materials), and a central control system (responsible for scheduling, production planning, and monitoring). These components work in synergy with a laser cutting machine to form a closed-loop laser cutting system.
How do you ensure that only a single sheet is picked up during the loading process?
A :
Through a dual-safeguard system involving "sheet separation plus thickness detection." During laser cutting loading, the manipulator employs methods such as mechanical flanging, magnetic separation, or air-blowing to separate the sheets; immediately after gripping, the sheet is verified using a thickness sensor. Loading proceeds only if the thickness of the single sheet falls within the preset range; otherwise, an alarm is triggered.
How can scratching of the sheet material be prevented during the unloading process?
A :
The forks of the unloading manipulator in the laser cutting automation system are coated with a layer of anti-scratch engineering plastic or fitted with wear-resistant strips to prevent direct metal-to-sheet contact. Additionally, the manipulator's lifting and lowering movements are synchronously controlled by servo motors to ensure smooth handling.
If a laser machine malfunctions, can the automation unit still operate?
A :
It can continue to run in a degraded mode. The central control system automatically detects the faulty equipment and directs the loading and unloading system to bypass the defective machine, continuing to service the other operational laser cutting systems. Additionally, the system supports switching to manual or single-machine modes to maintain partial production.
How does the automated cell know which material to cut?
A :
It operates on a data-driven basis. Production orders and sheet material information—including specifications, material type, and thickness—are transmitted through MES automation. Acting on these instructions, the automated warehouse system retrieves the corresponding pallets; subsequently, the loading robot performs a final verification via thickness measurement to ensure complete alignment between the information flow and the physical material flow.
What are the facility requirements for implementing an automated cell?
A :
There are three key requirements: floor load-bearing capacity (which must accommodate the weight of the material storage system, equipment, and fully loaded sheet materials—including provisions for embedded tracks); a stable energy supply (three-phase electricity, compressed air, and cooling water); and sufficient space (covering the laser cutting line layout, safety zones, and material flow lanes).
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