
What issues should be paid attention to during the installation of steel structure warehouse?
1. Pre-Installation Preparation
① Foundation Inspection & Acceptance
Verify Foundation Accuracy: Ensure the foundation (concrete slab/piles) meets design requirements for flatness, elevation, anchor bolt positions, and concrete strength (typically ≥75% of design strength before installation).
Check Alignment: Use laser levels or total stations to confirm foundation centerlines and anchor bolt spacing match the steel frame’s layout.
Surface Treatment: Clean foundation surfaces to remove debris, oil, or moisture that could affect bolt anchoring.
② Material Verification & Protection
Check Steel Components: Confirm all steel beams, columns, purlins, and bracing arrive with no deformation, rust, or damage (inspect for shipping-related issues).
Protect Coatings: Avoid scratching anti-corrosion coatings (galvanized/painted surfaces) during handling; cover components if storage is prolonged.
Tool & Equipment Readiness: Prepare cranes, bolts, wrenches, welding machines, and alignment tools (e.g., spirit levels, plumb bobs).
2. Erection Process Key Points
① Column & Beam Installation
Column Alignment:
Use temporary bracing to stabilize columns during lifting; ensure verticality (allowable deviation: typically ≤H/1000, max 10mm).
Anchor bolts must be tightly secured (torque to design specs) to prevent loosening under load.
Beam Connections:
High-strength bolts (Grade 10.9) require pre-tightening to “initial torque” by final torque (follow manufacturer’s guidelines).
Welded connections must follow AWS D1.1/D1.5 standards (avoid excessive heat input to prevent warping).
② Roof & Wall Purlin Installation
Purlin Spacing: Adhere to design spacing (typically 1.2m–2.4m) to support roofing/wall panels; avoid overloading.
Bracing System: Install cross-bracing and wind bracing (diagonal/vertical) to enhance lateral stability; skip this step risks deformation under wind loads.
③ Roof & Wall Panel Installation
Panel Sealing: Overlap panels correctly (typically 200mm–300mm) and fix with self-tapping screws (avoid over-tightening to prevent panel cracking).
Seal Joints: Apply sealant tape or butyl tape at panel edges, ridge caps, and penetrations (vents, skylights) to prevent water leakage.
3. Safety & Compliance
① Structural Safety
Load Distribution: Ensure temporary supports (e.g., scaffolding, cranes) distribute loads evenly; avoid concentrated stress on single points.
Wind Resistance: During installation, tie down loose components (e.g., uninstalled purlins) to prevent uplift in windy conditions (critical in typhoon-prone areas).
② Worker Safety
Fall Protection: Use harnesses, guardrails, and safety nets when working at heights (e.g., roof installation).
Crane Operation: Follow OSHA/GB 5082 (China) crane safety standards; prohibit overloading or operating in high winds (>6 Grade).
4. Post-Installation Checks
① Structural Integrity Verification
Measurements: Recheck column verticality, beam levelness, and diagonal bracing alignment (use plumb bobs and laser levels).
Bolt Tightening: Re-torque high-strength bolts after 24–48 hours (steel may settle slightly).
② Waterproofing & Finishing
Roof Inspection: Check for gaps, loose screws, or damaged sealant; repair immediately to prevent leaks.
Door/Window Installation: Ensure frames are plumb and sealed (weatherproof strips installed) to prevent air/water infiltration.
③ Documentation & Handover
As-Built Drawings: Update drawings to reflect actual installation deviations (if any) for future maintenance.
Warranty & Manuals: Provide manufacturer’s maintenance guidelines (e.g., coating reapplication intervals, bolt inspection cycles).
Common Pitfalls to Avoid
Skipping foundation inspection → Leads to uneven settling or bolt misalignment.
Omitting temporary bracing → Causes beam/column instability during lifting.
Incorrect bolt torque → Results in loose connections under load.
Ignoring weather conditions → Wind/rain accelerates coating damage or risks accidents.
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