Hangzhou PYO Homes Co., Ltd. is a modern and technology-oriented enterprise specializing in steel structure construction, positioned as a Steel Structure Building Manufacturer | Industrial Plant & Warehouse Construction Solutions provider.
Established in 2011 in Hangzhou, China, PYO Homes began as a regional supplier of light steel framing components. With the rapid growth of industrial construction and demand for faster, more efficient building methods, the company expanded into full-scale steel structure engineering and manufacturing. By 2016, PYO Homes had developed comprehensive capabilities covering design, fabrication, and installation of pre-engineered steel buildings.
Today, our engineering expertise extends directly into the data center vertical. Because data storage facilities demand ultra-high structural stability, strict deflection controls under high equipment loading, and integrated thermal insulation envelope designs, our factory utilizes CNC laser cutting lines, automated H-beam welding lines, and rigorous ISO 9001 quality audits. We provide mission-critical envelopes that accommodate massive mechanical cooling structures and extensive cable routing networks.
Our structures serve global clients across Asia, the Middle East, Africa, and South America. By engineering specific responses to extreme environments—such as high wind-load coastal zones, high seismic areas, and hyper-arid spaces where dust filtration and tight seals are required—we guarantee that our data storage structures offer robust protection for sensitive IT equipment.
Designing structural solutions optimized for digital scale, high thermal dissipation density, and zero downtime tolerances.
Our multi-tier structural frames are engineered using high-strength steel (typically Q355B or Q420) to handle dead loads exceeding 15 kN/m² in server halls. This structural integrity easily supports dynamic overhead equipment loads, busways, cooling duct networks, and heavy overhead cable runs.
We implement dynamic stiffness modeling to eliminate structural vibrations that can cause disk failure and optical alignment errors in dense storage clusters.
Data facilities generate massive heat, requiring precise containment. Our prefabricated wall panels feature rockwool or polyurethane (PIR) cores up to 200mm thick. This insulation structure achieves U-values low enough to minimize ambient energy transfer, lowering operating Power Usage Effectiveness (PUE).
Thermal bridging is completely minimized using specially engineered isolators at structural connection joints.
For modular expansion, PYO Homes offers skid-mounted container frames and fast-assembly modular pods. The structural parts are manufactured at our factory under tight tolerances (under 1mm deviation) using automated CNC machinery, ensuring perfect alignment in the field.
These systems allow fast deployment on sites with minimal ground preparation and are designed for plug-and-play integrations.
As AI, cloud computing, and high-performance computing (HPC) grow, global demand for data center infrastructure is accelerating. Traditional reinforced concrete construction, which can take 18–24 months, is too slow for modern technology lifecycles. Prefabricated structural steel is now the preferred construction method for rapid delivery.
By shifting structural manufacturing from the field to our quality-controlled factory, we reduce onsite build times by up to 40%. This speed is critical for Tier III and Tier IV data center operators competing for regional capacity.
Additionally, modern ESG mandates require clean manufacturing processes. Our steel structures are fabricated from recycled structural steel materials and are fully recyclable at end-of-life, aligning with sustainability benchmarks required by global capital funds and corporate operators.
Compliance is a critical concern for infrastructure engineers. Hangzhou PYO Homes manufactures structures fully compliant with European standards under the CE Construction Products Regulation (CPR 305/2011/EU), particularly EN 1090-1 and EN 1090-2 (Execution Classes EXC2 & EXC3).
For developers building in the EU, the UK, or regions using Eurocodes, our CE certification confirms our steel structures undergo Factory Production Control (FPC) audits, weld chemistry analysis, and systematic non-destructive testing (NDT) by certified personnel.
We work with international freight companies to deliver structural components organized by assembly sequence, matching your local contractor's build schedule.
Welding protocols qualified under EN ISO 15614-1, using certified S355JR / S355J2 grade steels for high cold-temperature impact resistance.
Calculated dynamic response spectra complying with Eurocode 8 and ASCE 7-16 requirements for high-risk zones.
Hot-dip galvanizing to EN ISO 1461, ensuring corrosion protection in C3 to C5-I industrial environments.
Sea freight packaging designed to prevent structural distortion during transit, complete with installation drawings.




Designed for locations where real estate cost requires multi-level vertical construction. Our structures feature multi-tier framing designs that allow multi-story layouts without compromising load limits on upper levels.
Columns are engineered to minimize width while maintaining maximum load capacity, leaving more floor space for server racks.
Designed for landing stations, edge centers, and coastal facilities. These structures are built to withstand wind speeds up to 280 km/h (Category 5 hurricane equivalent).
We use heavy hot-dip galvanized coating systems and marine-grade protective paints to prevent salt-spray degradation and structural rust.
For facilities built next to petrochemical plants, mining operations, or heavy industrial zones. These structures feature blast-resistant designs, fire-rated partitions (up to 4 hours), and dust-sealing envelopes.
This protects clean-room storage operations from external particulates and environmental risks.



Modern data centers are changing, and our structural designs are evolving along with them. As liquid cooling systems, such as immersion tanks and direct-to-chip plumbing, become more common, structural loads are increasing significantly compared to traditional air-cooled configurations.
PYO Homes' roadmap addresses these changes by integrating plumbing and high-density liquid lines directly into our structural beams during the design stage.
We are also adopting LOD 400 BIM Modeling. This approach integrates our structural designs directly with client MEP (Mechanical, Electrical, Plumbing) designs, preventing clashes in the field and reducing layout changes during installation.
Our commitment to green energy includes pre-engineering roof truss structures to support the dead load of solar systems without requiring extra reinforcement on site.