Multi Story Prefabricated Steel Structure Building with Load-bearing Steel Frame and Thermal Insulation
Load-bearing Steel Frame Building
,Thermal Insulation Steel Structure Building
,CAD Tekla Prefabricated Building
- Superior Cost-Efficiency: Reduces labor/overhead via prefabrication and 30-50% faster construction (vs. concrete). Low maintenance costs, strong resale value, and support for disassembly/relocation cut long-term expenses.
- Maximized Flexible Space: Offers 20-30m column-free spans for full storage use (racks, conveyors, offices). Enables quick layout reconfiguration as business needs change, no major structural tweaks.
- Rapid On-Site Construction: Key components (beams, columns, panels) are prefabricated off-site, streamlining assembly and slashing build time by 30-50% vs. concrete warehouses.
- Exceptional Strength & Durability: Withstands heavy loads and harsh weather (winds, snow, rain) without deformation. Corrosion-resistant, ensuring a 45+ year service life.
- Strong Sustainability Performance: 100% recyclable (many components use recycled materials). Long lifespan and optional insulated panels lower environmental impact and operational carbon footprints.
- Commercial Buildings: Offices, shopping malls, and hotels (benefiting from open layouts and quick occupancy).
- Residential Complexes: Apartments or mixed-use buildings (balancing space efficiency and structural stability).
- Institutional Facilities: Hospitals, schools, and government buildings (prioritizing safety and adaptability for evolving needs).
- Load-Bearing Capacity: Calculate vertical loads (flooring, furniture, occupants) and lateral forces (wind, earthquakes) to ensure structural stability.
- Fire Safety: Integrate fireproofing materials (e.g., intumescent coatings) to meet building codes, as steel loses strength at high temperatures.
- Corrosion Protection: Use coatings or galvanization, especially in humid or coastal areas, to prevent rust and extend lifespan.
- Vibration Control: Design for minimal vibration (critical for hospitals, labs) using dampers or flexible joints, especially in areas with heavy machinery.
- Integration with Systems: Coordinate steel framing with utilities (electrical, plumbing, HVAC) and facade systems (curtain walls, cladding) for seamless functionality.
- Cost & Efficiency: Balance material quality with budget, leveraging steel's long-term durability to reduce maintenance costs over time.
- Measuring, cutting and welding the steel
- Placing the holes and cleats in the correct position
- Packaging and carefully loading in the right sequence
- Dispatching to site and erecting if required
2. We will design accordingly, free of charge. Afterwards, please check and confirm whether you like the drawings. If not, we shall get the drawings revised until your confirmation.
3. Pay 30% deposit after signing contract
4. Confirm the details of the design
5. Production and pay the final payment before shipment
6. Supply Installation service on line or paid installation
| 1 | Location (where will be built?) | _____country, area |
|---|---|---|
| 2 | Size: length*width*height | _____mm*_____mm*_____mm |
| 3 | wind load (max. wind speed) | _____kn/m2, _____km/h, _____m/s |
| 4 | snow load (max. snow height) | _____kn/m2, _____mm |
| 5 | anti-earthquake | _____level |
| 6 | brickwall needed or not | If yes, 1.2m high or 1.5m high |
| 7 | thermal insulation | If yes, EPS, fiberglass wool, rockwool, PU sandwich panels will be suggested; . if not, the metal steel sheets will be ok. The cost of the latter will be much lower than that of the former |
| 8 | door quantity & size | _____units, _____(width)mm*_____(height)mm |
| 9 | window quanity & size | _____units, _____(width)mm*_____(height)mm |
| 10 | crane needed or not | If yes, _____units, max. lifting weight____tons; max. lifting height _____m |