Explore our foundational range of heavy-duty display solutions, commercial retail units, and storage optimization systems engineered for global supply chains.
Providing certified structural stability, innovative R&D structural adaptations, and extensive supply chain resilience for modern logistics footprints.
Established in 2016, Nanjing Fortis Storage Equipment Manufacturing Co., Ltd. stands at the forefront of spatial optimization engineering. Over the past decade, we have developed high-density warehouse racking and modular stacking equipment tailored to demanding international standards. Our primary production facility spans a fully optimized 48,000 square meters, designed to integrate raw material ingestion with precision fabrication lines. We perform continuous automated CMM dimensional checks and rigorous salt spray corrosion testing to satisfy strict ISO14001 and TUV Rheinland specifications.
As a direct manufacturer and global exporter, our commercial reach stretches across Western Europe, South America, and the Middle East. Through a reliable ecosystem of over 1,400 supply chain partners, we ensure reliable delivery pipelines for mega-warehouse developers, cold chain operators, and multi-national retail conglomerates. In the last fiscal year alone, our dedicated R&D department consisting of 80 structural engineers introduced 350 proprietary configurations, offering customizable load profiles, customized surface treatment formulations, and advanced spatial designs.
How automation, material sciences, and regional regulations are reshaping B2B industrial storage design.
Modern stackable storage is no longer static. Racks and dynamic stacking pallets must interact seamlessly with Autonomous Mobile Robots (AMRs) and Automated Guided Vehicles (AGVs). This requires strict structural dimensional tolerances and optimized floor clearance configurations.
Using advanced high-strength steel alloys allows manufacturers to reduce overall rack weight while maintaining or increasing structural load limits. This optimization lowers logistics costs and minimizes carbon footprints during transport.
CE marking and environmental certifications (like ISO14001) are mandatory for Western European and global projects. Industrial buyers prioritize manufacturers capable of providing transparent weld quality data, material chemical compositions, and load deflection certificates.
Industrial facilities require customized approaches depending on operational speeds and environmental variables. Nanjing Fortis designs specific solutions that align structural capacity with functional workflows:
Utilizing tall stackable racking systems that support high structural density, maximizing vertical space while maintaining convenient picking accessibility.
High-strength structures designed with customized surface treatments that resist low-temperature embrittlement, condensation, and corrosion, ensuring reliable operation in sub-zero settings.
Modular, flexible stackable configurations that adjust rapidly to changing seasonal inventory levels and high-volume SKU rotation cycles.
Take a closer look at our raw material processing, precision fabrication steps, and modern machinery layout.
At Nanjing Fortis, global compliance and quality control are primary operational standards. Our raw materials are source-tracked to ensure compliance with EN 10204 3.1 certification. Mechanical parameters are verified using automated Coordinate Measuring Machines (CMM) to maintain manufacturing dimensional tolerances within 0.1mm.
For maritime transport and harsh environments, our coatings undergo standard salt spray testing to verify corrosion resistance over long shipping routes. All structural rack welding is performed by certified technicians in line with European EN standards, ensuring high-strength performance under dynamic mechanical stress.
Third-party audits confirm our manufacturing capacities, factory layout, and quality management systems meet European market expectations.
Ensuring stackable structures comply fully with EU safety, health, and environmental requirements.
Offering customized DDP/CIF shipping solutions, clearing customs efficiently, and delivering straight to industrial sites globally.
Our engineering team is focused on expanding our technology roadmap through three core research pillars:
1. Eco-friendly Coatings: We are transitioning our paint production lines to bio-based and low-VOC powders, which reduces manufacturing carbon emissions without compromising salt spray or impact resistance.
2. Structural Optimization via FEA: Utilizing Finite Element Analysis (FEA) to simulate earthquake loads and long-term storage fatigue. This allows us to redesign stackable frames for optimal weight and safety.
3. IoT and Smart Tracking: Integrating RFID chips and real-time weight sensor slots directly into stackable frames, enabling automated inventory tracking in next-generation smart warehouses.
Technical guidance and commercial parameters for industrial storage system procurement.
We calculate maximum load parameters using standard EN 15512 codes, which factor in load deflections and horizontal stability. Additionally, we conduct Finite Element Analysis (FEA) to confirm safety margins for specific high-density configurations, ensuring stability even under asymmetrical loading.
Our CE documentation and declarations of conformity are included with all shipping bills of lading. This prevents customs delays at European ports and ensures compliance with EU health and safety rules, making local building approvals straightforward.
For cold chain applications, we apply specialized electrostatic epoxy powder coatings or hot-dip galvanization (HDG). These treatments prevent corrosion and cracking at temperatures as low as -40°C, extending the service life of our storage racks in refrigerated and high-humidity environments.
Typical factory fabrication takes 25 to 35 days from order confirmation to port loading, depending on customization details. Sea transit to European or South American ports adds 25 to 40 days. We coordinate directly with your shipping agents to ensure smooth logistics.
Yes. Our R&D team designs rack feet, ground clearance, and load beams to match your AGV/AMR sensors and fork pick-up mechanics, facilitating seamless integration with automated warehouse systems.
Explore our second selection of storage systems, heavy-duty warehouse racking, and durable handling solutions designed for diverse logistics needs.