Steel Structure Bridge Engineering
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Advanced Steel Structure Bridges

High-strength truss bridges, Bailey bridges, and pedestrian overpasses. Engineered for large spans, fast erection, and unyielding durability.

Cross-River & Highway Solutions

Bridging Distances with Precision Engineering

Steel bridges offer unparalleled advantages over traditional concrete structures, specifically their phenomenal strength-to-weight ratio. This makes them the ultimate solution for large-span river crossings, elevated highways, and urban pedestrian overpasses.

From heavy-duty box girders supporting constant vehicular traffic to modular Bailey bridges designed for rapid emergency deployment, YG Steel Structure utilizes high-tensile structural steel combined with deep anti-corrosion galvanization to ensure 50+ years of maintenance-free service life.

  • Exceptional Spanning Capability
  • Rapid Modular Erection
  • High Seismic & Wind Resistance
  • Marine-Grade Anti-Corrosion
Steel Bridge Perspective Design

Bridge Typology & Key Components

Steel Truss Bridges

The most efficient design for long spans. Built from an interconnected network of triangles using high-grade tubular or H-section steel to distribute heavy dynamic loads evenly.

Bailey Bridges

Modular, pre-fabricated systems designed for rapid assembly. Perfect for emergency relief, temporary detours, or remote areas lacking heavy lifting equipment.

Pedestrian Overpasses

Sleek steel box girders or arched frames providing safe, highly aesthetic urban crossing solutions, often integrated with glass canopies and lighting.

Box Girder Bridges

Enclosed steel tubes offering immense torsional stiffness. Ideal for curved highway overpasses and light rail transit lines requiring high aesthetic appeal.

Bridge Engineering Specifications

Manufactured in strict adherence to AASHTO and international bridge codes, ensuring absolute safety for public infrastructure.

Bridge Span Capacity 15m to 150m+ (depending on structural type: Bailey, Truss, or Arch)
Main Steel Material High-tensile Q355B / Q420 / ASTM A572 Gr.50 or higher grade bridge structural steel
Decking System Orthotropic steel deck / Concrete composite deck / Anti-skid checkered steel plate
Connection Methods Friction-grip high-strength bolts (Grade 10.9) and full-penetration factory submerged arc welding
Surface Anti-Corrosion Hot-Dip Galvanized (HDG) up to 85μm-100μm / Multi-layer marine grade epoxy & polyurethane coating systems
Design Standards AASHTO, Eurocode, or GB (depending on project location requirements)
Fatigue Resistance Engineered to withstand millions of dynamic stress cycles from heavy vehicle/train loads
Bridge Engineering Blueprint
100% Tailored Engineering

Advanced Bridge Fabrication

Bridges demand zero margin for error. Our engineering team utilizes advanced finite element analysis (FEA) and Midas Civil software to simulate dynamic traffic loads, seismic shocks, and wind resonance before manufacturing begins.

1

Pre-Assembly Verification

For complex truss bridges, we conduct a full-scale pre-assembly test in our factory lot to verify perfect alignment of all bolt holes before shipping.

2

Flawless Automated Welding

Critical stress points are welded using multi-pass submerged arc welding, ensuring 100% penetration and zero internal defects.

3

Extreme Environment Coating

For river or coastal bridges, we utilize deep hot-dip galvanization combined with heavy marine-grade epoxy paints to halt corrosion entirely.

Comprehensive 30-Step Quality Control

Zero compromises on safety. Before shipping, your bridge components must pass our strict factory inspection protocol compliant with GB 50205-2020 and AWS D1.5 bridge welding standards.

Category No. Inspection Item Acceptance Criteria & Tolerance Method / Tools
I. Raw Material Incoming 1 Material Certification Original Material Test Certificates (MTC) required; Grade, Size, and Heat No. must match the physical material. Document Review
2 Stamps & Markings Steel surface must have clear manufacturer stamps or batch IDs. Tracking numbers must be legible. Visual Check
II. Thickness Acceptance 3 Under-Tolerance Control Under-tolerance must be within limits. For Export: Recommended actual thickness ≥ Nominal -0.3mm. Micrometer / UT Gauge
4 Surface Defects No bubbles, scabs, cracks, inclusions, or pressed-in iron oxide scale allowed. Visual Check
III. Cutting & Nesting 5 Part Dimensions Length & Width tolerance: ±2.0 mm. Steel Tape
6 Cut Perpendicularity ≤ 10% of thickness, and max ≤ 2.0 mm. Square / Feeler Gauge
7 Cut Surface Roughness Machine Cut ≤ 0.2 mm; Manual Cut ≤ 0.3 mm. Roughness Template
8 Notches / Edge Defects Depth ≤ 1.0 mm; deeper defects must be ground smooth or repaired. No sharp notches allowed. Depth Gauge
IV. Assembly / Fitting 9 Jig & Leveling Platform flatness deviation ≤ 3.0 mm; tack welds must be sound and free of cracks. Level / Visual
10 Section Size (H/B) Height & Width tolerance: ±2.0 mm. Steel Tape
11 Web Center Offset Web center to Flange center offset ≤ 2.0 mm. Steel Ruler
12 Flange Squareness Deviation b/100 and ≤ 2.0 mm. Square / Feeler Gauge
13 Overall Length Total component length tolerance: ±3.0 mm. Steel Tape / Laser
14 Assembly Gap Joint gap: 1.0 ~ 3.0 mm (depending on WPS). Feeler Gauge
V. Welding Execution 15 Pre-weld Cleaning No rust, oil, or moisture within 20mm of the groove/edge. Visual Check
16 Weld Appearance No cracks, weld bumps, burn-through, or craters; Reinforcement: 0 ~ 3 mm. Weld Gauge
17 Weld Leg Size Meet design requirements; Tolerance: 0 ~ +3.0 mm. Weld Gauge
18 Internal Defects No surface porosity/slag in Class I welds; Undercut strictly controlled. Magnifier / Visual
19 NDT (UT/RT) 100% UT/RT on all main bridge girders and critical tension joints. NDT Report
VI. Shot Blasting 20 Blast Grade Must reach Sa 2.5 Grade (Near-white metal, no visible scale/rust). Visual Comparison
21 Surface Roughness Maintain 40 ~ 75 μm (or per paint datasheet). Roughness Gauge
22 Cleanliness Surface must be blown clean; no dust, oil, or residual steel grit. White Cloth Test
VII. Coating & Painting 23 Dry Film Thickness 80-20 Rule: 80% points meet spec; 20% points not less than 80% of spec. DFT Meter
24 Coating Integrity No damage, no missed spots, no sags, and strictly NO RUST SPOTS. Visual (100%)
25 Adhesion Cross-cut test must achieve Grade 0 ~ 1. Cross-cut Kit
VIII. Final Audit & Loading 26 Global Geometry Strict adherence to bridge camber requirements. Plumb Line / Tape
27 Pallet/Crate Quality Pallets must be robust; load-bearing capacity must prevent deformation. Load Inspection
28 Container Fit Overall package width fits container interior or flat-rack specifications. Steel Tape
29 Categorized Stacking Sorted stacking; use timber or rubber pads between items to prevent paint damage. Visual Check
30 Bracing & Lashing Items secured to pallets, and pallets secured to container via steel straps. Tightness Check
Heavy Steel Component Hoisting and Container Loading
Safe & Efficient Logistics

Steel Bracket Packaging System

To guarantee that your massive bridge girders and truss components arrive in pristine condition, we abandon traditional loose loading. Instead, we utilize a proprietary Steel Bracket Unitized Packaging System.

Massive steel box girders, Bailey bridge panels, and arch components are meticulously categorized, padded with protective rubber, and strapped onto heavy-duty steel skids. This not only prevents paint friction and collision damage during ocean transit but also allows for rapid, one-lift crane unloading at your construction site.

  • Zero Paint Damage Guarantee
  • Maximized Container Space Utilization
  • Fast & Easy On-Site Unloading
Real-World Infrastructure

Related Bridge Projects

Explore how our steel bridges are conquering challenging terrains and transforming urban connectivity around the world.

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Factory Headquarters

Taian City, Shandong Province, China

Direct Line / WhatsApp

+86 159 6660 3653

Email Address

david@ygsteelbuild.com

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