Q620qF Bridge Steel Plate

High-strength structural steel designed for long-span bridge engineering, compliant with GB/T 714-2015, offering excellent durability and reliability at -60°C ultra-low-temperature environment.

About Q620qF Bridge Steel Plate

Q620qF is a high-strength low-alloy structural steel under Chinese standard (GB/T 714-2015), specially developed for large-span bridge engineering in frigid extreme cold regions.

The letter "q" in the grade stands for "qiaoliang" (bridge), and "F" indicates the steel's impact test temperature is -60°C, suitable for long-span bridge construction projects in frigid regions of China and worldwide.

This steel features ultra-high reliable strength (yield strength 620MPa), excellent weldability, and outstanding ultra-low-temperature toughness, making it the optimal choice for long-span bridge infrastructure projects in -60°C ultra-low-temperature environments.

Q620qF Steel Plate - High Strength Bridge Steel for Frigid Environments

Technical Specifications

Basic Information

Standard: GB/T 714-2015
Equivalent Grade: F
Product Form: Steel Plate
Thickness Range: 6mm - 120mm
Width Range: 1500mm - 3600mm
Length Range: 3000 - 12000mm
Delivery Condition: Normalized / TMCP
Impact Test Temperature: -60°C

Mechanical Properties

Thickness(mm) Yield Strength(MPa) ≥ Tensile Strength(MPa)≥ Elongation(%) ≥ Impact Energy(J) ≥
≤50 620 720 15 47
>50--≤100 580 720 15 47
>100--≤150 - 720 15 47

Q620qF Chemical composition of tempered steel (Mass Fraction %)

Element C ≤ Si ≤ Mn Nb  V Ti  Als Cr ≤ Ni ≤ Cu ≤ Mo ≤ N ≤
Content 0.14 0.55 0.80-1.70 0.005-0.090 0.010-0.080 0.006-0.030 0.010-0.045 0.40-0.80 0.25-1.00 0.15-0.55 0.20-0.50 0.008

Note: Carbon Equivalent (Ceq) ≤ 0.46%, Welding Carbon Equivalent (Pcm) ≤ 0.25%. Optimized chemical composition balances ultra-high reliable strength (620MPa yield strength) with -60°C ultra-low-temperature toughness, ideal for frigid region long-span bridge applications.

International Standard Comparison

Q620qF (GB/T 714-2015) - China
S620NL (EN 10025) - Europe
A709 Grade 65 (ASTM A709) - USA

Mechanical Properties Comparison (Thickness ≤50mm)

Property Q620qF (GB/T 714-2015) S620NL (EN 10025) A709 Gr65 (ASTM A709)
Min Yield Strength (MPa) 620 620 450 (65 ksi)
Tensile Strength (MPa) 720 720 530-690 (77-100 ksi)
Min Elongation (%) 15 18 20
Impact Test Temperature (°C) -60 -20 -20°C

Chemical Composition Comparison (%)

Element Q620qF (Max/Range) S620NL (EN 10025) (Max/Range) A709 Gr65 (ASTM A709) (Max/Range)
Carbon (C) ≤0.14 ≤0.22 ≤0.23
Silicon (Si) ≤0.55 ≤0.60 0.15-0.40
Manganese (Mn) 0.80-1.70 1.40-1.90 0.90-1.60
Key Differences Summary:
  • Q620qF offers ultra-high yield strength (620MPa) with excellent -60°C ultra-low-temperature toughness
  • Strictest impurity limits ensure superior performance in frigid environments
  • Impact test temperature of -60°C, designed for frigid region long-span bridge construction
  • Optimized carbon equivalent (Ceq ≤ 0.46%) and welding carbon equivalent (Pcm ≤ 0.25%) maintain excellent weldability
  • Ultra-high-strength solution for long-span bridges in frigid climate regions
  • Strict quality control meets GB/T 714-2015 standard requirements for bridge steel

Application Projects

Q620qF Steel Plate Used in Frigid Region Bridge Project

Frigid Region Long-Span Highway Bridge

Used for long-span highway bridges in frigid regions, providing excellent ultra-low-temperature toughness and structural stability at -60°C environment.

  • Plate Thickness: 25mm-70mm
  • Total Consumption: 28,500 tons
  • Suitable for -60°C ultra-low-temperature environments
Q620qF Steel Plate Used in Frigid Region Railway Bridge

Frigid Region Long-Span Railway Bridge Project

Applied to long-span railway bridges in frigid climate areas, featuring outstanding fatigue resistance and stable ultra-low-temperature mechanical properties.

  • Total Consumption: 35,600 tons
  • 100-year design life in frigid environments
Q620qF Steel Plate Used in Frigid Region Urban Bridge

Frigid Region Urban Long-Span Viaduct Project

Used for long-span urban viaduct bridges in northern frigid cities, offering reliable structural support and excellent ultra-low-temperature performance.

  • Plate Thickness: 35mm-75mm
  • Total Consumption: 29,400 tons
  • Excellent weldability in ultra-low temperatures

Other Typical Applications

Frigid Region Long-Span Highway & Railway Bridges
Frigid Zone Long-Span Urban Viaducts
-60°C Ultra-Low Temperature Long-Span Bridges
Frigid Zone Ultra-High-Strength Bridge Components
Frigid Climate Long-Span Bridge Engineering
Ultra-Low Temperature Ultra-High-Strength Structural Steel Parts

Frequently Asked Questions (FAQ)

What is the difference between Q620qF and Q620qD/Q620qE steel plates?

Main differences between Q620qF, Q620qD and Q620qE bridge steel plates:

  • Impact Test Temperature: Q620qD (-20°C) < Q620qE (-40°C) < Q620qF (-60°C)
  • Impurity Limits: Q620qD (P≤0.015%/S≤0.010%) < Q620qE < Q620qF (strictest control)
  • Application: Q620qD for normal cold regions, Q620qE for extremely cold regions, Q620qF for frigid regions
  • Low-Temperature Performance: Q620qF has excellent toughness at -60°C ultra-low temperature
  • Environment Adaptability: Q620qF for frigid climate long-span projects

What are the welding requirements for Q620qF steel plates?

Q620qF has excellent weldability (Ceq ≤0.46%) with special requirements for ultra-low temperature environments:

  • Preheat to 220-260°C when ambient temperature <0°C for all thicknesses
  • Preheat to 260-300°C for thickness >40mm at normal temperatures
  • Use E7018-G/E8015-G low-alloy electrodes for high-strength welding
  • Interpass temperature control 260-300°C during multi-pass welding
  • Post-weld slow cooling and insulation required in ambient temperature < -20°C conditions
  • Optimized for reliable welding joints in frigid environment construction

Follow strict frigid region welding procedures for Q620F series ultra-high-strength structural steels.

What is the operating temperature range of Q620qF steel?

Q620qF is designed for frigid climate environments with the following temperature range:

  • Minimum Operating Temperature: -60°C (meets impact energy requirements at this temperature)
  • Recommended Continuous Operating Temperature: -60°C ~ 200°C
  • Short-term Maximum Operating Temperature: 300°C
  • Optimal Welding Temperature: Preheating required below 0°C
  • Storage/Transport Temperature: Suitable for frigid winter conditions

Q620qF is the preferred ultra-high-strength bridge steel for frigid region long-span infrastructure projects.

What advantages does Q620qF have for frigid region long-span bridge construction?

Q620qF has outstanding advantages for frigid region long-span bridge construction:

  • Ultra-high yield strength (620MPa) for super long-span bridge load-bearing requirements
  • Excellent -60°C ultra-low-temperature toughness prevents brittle fracture
  • Strictest impurity control for superior frigid environment reliability
  • Optimized composition ensures stable performance in frigid climates
  • Excellent weldability even in ultra-low-temperature construction conditions
  • Perfect for northern China frigid and global frigid climate long-span bridge projects
  • Complies with GB/T 714-2015 bridge steel standards

These advantages make Q620qF the first choice for ultra-high-strength long-span bridge engineering in frigid climate regions.

What quality inspections are performed for Q620qF steel plates?

Comprehensive quality inspections are provided for Q620qF steel plates:

  • EN 10204 3.1 material test certificate with -60°C impact test results
  • GB/T 714-2015 bridge steel compliance certification
  • 100% ultrasonic testing for internal quality inspection
  • Mechanical property test including yield and tensile strength
  • -60°C Charpy V-notch impact toughness test report
  • Chemical composition analysis with strictest impurity limits
  • Third-party inspection certification available upon request

All Q620qF steel plates undergo strict frigid-region quality inspections to ensure compliance.

Core Advantages of Q620qF

-60°C Ultra-Low-Temperature Toughness

Superior ultra-low-temperature performance, ideal for frigid region long-span bridge engineering.

Excellent Frigid Weldability

Optimized carbon equivalent ensures reliable welding performance even in -60°C ultra-low-temperature conditions.

Ultra-High Strength (620MPa)

620MPa ultra-high yield strength, perfect for super long-span bridge construction in frigid zones.

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