UHPC Application
Fields

Seven Major Application Categories Covering Infrastructure Engineering, Architecture & Facade, Transportation & Rail, Energy & Marine Engineering, and More, Empowering Architectural Evolution through Material Revolution

Seven Major Application Fields

Comprehensive UHPC
Application Portfolio

From infrastructure engineering to specialized application scenarios, UHPC technology demonstrates outstanding value in multiple industries with ultra-high mechanical properties, extreme durability and green environmental protection characteristics, redefining the application standards of building materials

Traffic Engineering

Core components for transportation infrastructure.

Precast components
Steel-UHPC composite structures
Crash Barriers

Construction Engineering

High-performance solutions for building systems.

Prefabricated buildings
High-performance curtain wall panels
Ultra-thin/ultra-light curtain wall components

Building Curtain Wall

High-performance building exterior enclosure components.

Curtain wall panel systems
Suspension & support structures
Sealing & waterproofing assemblies

Urban Furniture

Aesthetic & functional urban space components.

Landscape Platforms
Artistic Sculptures
Municipal Facilities

Reinforcement & Maintenance

Durable maintenance for infrastructure.

Aging building structural reinforcement
Bridge & tunnel maintenance
Nuclear power plant structure reinforcement

Energy Engineering

High-strength energy system components.

Wind turbine tower structures
Solar photovoltaic panel supports
Energy storage facility casings

Marine Engineering

Corrosion-resistant marine applications.

Offshore Platforms
Coastal protection structures
Marine pipeline protection casings

Military Engineering

Protective bunkers, missile launch facilities, military vehicle protection, and specialized defense structures.

Protective Bunkers
Military bridge structure enhancement
Rapid airport runway repair

Traffic Engineering

Applied to core scenarios such as precast components, high-strength wet joints, composite structures, high-performance crash barriers, etc. Its low-porosity microstructure solves pain points like weak impact resistance of traditional facilities, while reducing cement usage and carbon emissions, aligning with green transportation needs.

100-200
MPa Compressive Strength
12-30
MPa Flexural Strength

Wuhan Youyi Avenue

Adopted UHPC seamless wear-resistant flooring to solve heavy-load area cracking.

Compressive Strength: ≥100 MPa
Core Solution: Heavy-load cracking prevention

Tianma Road Heavy-Duty Pavement

Adapted to heavy-load traffic via high wear resistance & impact resistance.

Key Performance: High wear resistance
Scenario: Heavy-load traffic

Bridge Crash Barrier Project

Improved road safety with high impact resistance.

Performance Feature: High impact resistance
Core Role: Enhance safety protection

Construction Engineering

Suitable for prefabricated building structures, high-performance curtain wall panels, etc. It realizes lightweight (60% weight reduction) and high moldability, balancing structural performance & aesthetics, while meeting "dual carbon" goals by reducing life-cycle carbon emissions.

Factory-controlled quality

Component precision up to millimeter level

Lightweight solution

Reduce building load by 65%-85%

Naver Headquarters (Korea)

Applied 15,000 ㎡ UHPC decorative panels for ultra-thinness & high moldability.

Application Area: 15,000 ㎡
Feature: Ultra-thin & high moldability

Wuxi Jiangyin Guole Island

Used 27,000 ㎡ UHPC curtain wall panels to build an urban landmark.

Application Area: 27,000 ㎡
Role: Create urban cultural landmark

Renmin University of China Tongzhou Campus

Applied 13,000 ㎡ UHPC decorative composite panels (domestic large-scale benchmark).

Application Area: 13,000 ㎡
Position: Domestic large-scale application benchmark

Building Curtain Wall

Its low-porosity microstructure solves traditional curtain wall pain points such as heavy self-weight, limited shaping, and poor durability. It reduces cement usage and carbon emissions, meeting green building demands.

150-200
MPa Compressive Strength
25-35
MPa Flexural Strength

The Palace Museum North Campus Project (Beijing, China)

Adopted UHPC curtain wall panels combined with golden aluminum round tubes to replicate the classic "Forbidden City Red" wall style.

Key Parameter: Color stability ΔE ≤ 0.5/5 years
Core Solution: Restoration of traditional architectural style with long-term durability

Hainan New Sports Center Project (Hainan, China)

Used 8,000㎡ UHPC curtain wall panels (max size 7.6m×1.3m) for stadium facades, supporting large-span design.

Key Performance: Wind pressure resistance ≥ 12 kPa
Scenario: Large-scale public sports venues

Museum of European and Mediterranean Civilizations (Marseille, France)

Applied UHPC lace-like mesh curtain walls to cope with coastal salt spray erosion and complex curved design needs.

Performance Feature: Chloride ion diffusion coefficient < 1×10⁻¹⁴ m²/s
Core Role: Corrosion resistance and artistic shape realization

Reinforcement & Protection

Aimed at aging building strengthening, bridge-tunnel rapid repair, etc. It realizes efficient reinforcement via high bond strength & low shrinkage, bonding closely with original structures without large-scale demolition, shortening construction period by 50% and extending service life to 100+ years.

Simple construction
Shorten construction period by 50% (no large-scale demolition)
High bond strength
Bond closely with original structures for co-stressing

High-Speed Old Bridge Reinforcement Project

Used structural powder for wet joint treatment & structural strengthening.

Core Operation: Wet joint treatment
Goal: Improve bridge bearing capacity

Reservoir Spillway Repair Project

Extended water conservancy facility service life via high abrasion & corrosion resistance.

Key Performance: High corrosion resistance
Goal: Extend facility service life

Old Building Renovation Project

Solved old building cracking via UHPC low shrinkage.

Core Solution: Low shrinkage
Goal: Superior

Urban Furniture

Applied to landscape components, decorative railings, curb stones, etc. It combines all-climate weather resistance, stain resistance & aesthetic design; its dense surface enables 0-pollutant penetration, with low maintenance cost and 50+ years service life.

All-climate weather resistance
UV & freeze-thaw resistant (adapt to diverse regions)
Dense stain-resistant surface
Low maintenance cost (easy cleaning with water)

Oakland Park Observation Tower (San Francisco, USA)

Used UHPC washed stone mirror effect (21m high, 22.14m bottom circumference).

Height: 21 meters
Bottom Circumference: 22.14 meters

Shanghai Songjiang Comprehensive Activity Center

Applied 4,500 ㎡ UHPC products for "big bowl-shaped" special-shaped building.

Application Area: 4,500 ㎡
Scenario: Special-shaped building appearance

Xujiahui Academy

Used 10,000 ㎡ UHPC materials with beige washed stone texture.

Application Area: 10,000 ㎡
Surface Texture: Beige washed stone

Energy Engineering

Focused on nuclear power foundation reinforcement, wind turbine supports, etc. It provides high protection & stability via high density (low porosity) & impermeability, meeting nuclear power-grade safety standards with 100+ years service life, adapting to harsh environments.

Service Life
100+ Years
Safety Level
Nuclear power grade safety standard

Shandong Nuclear Power Base Foundation Reinforcement Project

Customized UHPC foundation components for safety protection.

Product: Customized UHPC foundation components
Standard: Nuclear power grade safety

Inner Mongolia Wind Turbine Tower Support Project

Adapted to harsh grassland climate for stable wind power operation.

Scenario: Harsh grassland climate
Goal: Ensure long-term stable operation

Photovoltaic Support Structure Project

Optimized installation efficiency via high strength & lightweight.

Key Features: High strength & lightweight
Goal: Improve installation & O&M efficiency

Marine Engineering

Applied to offshore platform supports, subsea tunnel lining, etc. Aimed at high-salt/corrosion marine environments, it realizes 100+ years service life via excellent chloride ion penetration resistance, adapting to 30-50m deep sea environments.

Service Life
100+ Years
Corrosion Resistance
Excellent (adapt to high-salt marine environments)

East China Sea Offshore Wind Power Foundation Project

Resisted salt spray corrosion & wave impact (adapt to 30-50m water depth).

Adaptable Water Depth: 30-50m
Key Performance: Salt spray corrosion resistance

Xiamen Subsea Tunnel Lining Project

Ensured tunnel safety via anti-seepage & corrosion resistance.

Core Performance: Anti-seepage & corrosion resistance
Goal: Ensure long-term operation safety

Hangzhou Bay Phase II Project

Reduced marine environment erosion (domestic cross-sea project benchmark).

Position: Domestic cross-sea project benchmark
Goal: Reduce structural erosion

Military Engineering

Applied to high-strength protective shelters, missile silo supports, etc. With ultra-high strength (100-200MPa) & impact resistance (≥15kJ/m²), it achieves high-grade protection; precast components enable rapid on-site assembly, balancing protection & concealment.

Ultra-high impact resistance
Resist high-intensity impact & explosion loads
Rapid deployment
Precast components for fast on-site assembly

A Military Base Protective Bunker Project

Reached military protection level 1 (compressive strength ≥150MPa).

Protection Level: Military level 1
Compressive Strength: ≥150 MPa

Military Airport Runway Rapid Repair Project

Realized rapid runway damage repair for fighter take-off/landing safety.

Core Function: Rapid runway repair
Goal: Ensure fighter operation safety

Military Command Post Reinforcement Project

Improved facility damage resistance via high protection performance.

Core Performance: High protection
Goal: Enhance facility damage resistance
Technical Specifications

UHPC Material Properties
Performance Excellence

Comprehensive technical specifications demonstrate superior performance across all application scenarios. With "empowering architectural evolution through material revolution" as the core, it achieves a triple breakthrough in mechanical properties, durability and environmental protection through unique formulas and intelligent production systems

100-200
MPa
Compressive Strength
12-30
MPa
Flexural Strength
100+
Years
Service Life
2400
kg/m³
Density

Performance Benefits Across Applications

Structural Excellence

  • •Ultra-high compressive strength and tensile strength, excellent bearing capacity
  • •Superior flexural performance and impact resistance, outstanding explosion and impact resistance
  • Fiber toughening technology improves material toughness and reduces cracking risk
  • Reduces structural thickness, realizes lightweight design, and lowers building load

Durability Advantages

  • Extended service life (100+ years), far exceeding traditional building materials
  • Excellent corrosion resistance, resisting erosion by chloride ions, sulfides, acids, etc.
  • Strong freeze-thaw stability, adapting to extreme climate environments
  • Low water absorption and high density, anti-seepage and anti-mildew

Economic Benefits

  • Modular production and rapid installation, shortening the construction period by more than 50%
  • Reduces lifecycle costs by 40%, reducing maintenance and replacement costs
  • Efficient material utilization, with cost only 25%-50% of the industry average
  • Enhances project value, creating iconic buildings with durability and sustainability
Technical Resources Hub

Comprehensive Technical
Documentation

Download detailed specifications, installation guidelines, and best practices for each UHPC application field. Relying on a number of patented technologies and exclusive know-how, it provides professional support for project implementation

Traffic Engineering Resources

Bridge wet joints, composite structures, and crash barrier specifications

Technical Datasheet
Installation Guide
Case Studies

Construction Engineering Resources

Building components, prefabricated structures, and facade system specifications

Technical Datasheet
Installation Guide
Case Studies

Energy & Marine Resources

Offshore structure components, energy facility anti-corrosion components specifications

Technical Datasheet
Installation Guide
Case Studies

Urban Furniture Resources

Public facility components, landscape structure parts specifications

Technical Datasheet
Installation Guide
Case Studies

Reinforcement & Protection Resources

Structure reinforcement components, anti-corrosion protection system specifications

Technical Datasheet
Installation Guide
Case Studies

uilding Curtain Wall Components & Systems

High-performance curtain wall panel systems, installation & waterproofing system specifications

Technical Datasheet
Installation Guide
Case Studies

Special Engineering Resources

Special scenario structure components, high-performance structure parts specifications

Technical Datasheet
Installation Guide
Case Studies

Product Technical Manual

Including product formulas, technical parameters, usage methods, packaging and shelf life instructions for each model

Product Technical Manual

Construction Guidance Plan

Including equipment evaluation, test requirements, and operator training guidelines

Construction Guidance Plan
Success Metrics & Benefits

Proven Performance
Across All Applications

Quantified benefits and performance improvements demonstrated across diverse UHPC application projects. With advantages of leading technology, world-unique production system and full-scenario coverage, it has become a global UHPC leader

0 M+
Benchmark Project Area (㎡)

Covering cultural venues, university campuses, municipal landscapes, transportation infrastructure and other fields

0%
Performance Improvement

Comprehensive improvement in mechanical properties and durability compared with traditional building materials

0+
Years Service Life

Far exceeding the service life of 3-5 years/8-10 years of traditional materials

0%
Lifecycle Cost Savings

Reducing maintenance, replacement and reconstruction costs

Environmental Benefits

Carbon Footprint Reduction

Extended service life significantly reduces carbon emissions from reconstruction and maintenance activities

Material Efficiency

Higher strength allows for reduced material usage while maintaining superior structural performance

Sustainable Development

Contributes to sustainable construction practices and green building certifications