Project Portfolio

A curated showcase of UHPC applications demonstrating exceptional mechanical performance, durability, and engineering innovation across diverse structural disciplines.

Nanjing Yangtze River Cable-Stayed Bridge
Bridge

Nanjing Yangtze River Cable-Stayed Bridge

Nanjing, Jiangsu Province, China

Ultra-high performance concrete deck panels and precast diaphragms engineered for exceptional durability in chloride-rich marine exposure zones. Fiber-reinforced UHPC achieved 150 MPa characteristic compressive strength with self-compacting rheology for complex formwork geometries.

150MPa
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Shanghai Lujiazui Financial District Facade System
Facade

Shanghai Lujiazui Financial District Facade System

Shanghai, China

Architectural UHPC rainscreen cladding panels with integrated GRC hybrid reinforcement. Achieved 120 MPa compressive strength while maintaining 25 mm thin-section profiles for reduced dead load and enhanced seismic performance.

120MPa
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Advanced Fiber-Matrix Interface Research Program
Lab R&D

Advanced Fiber-Matrix Interface Research Program

Wuhan, Hubei Province, China

Collaborative R&D initiative developing next-generation UHPC formulations with hybrid PVA-steel fiber systems. Achieved record 180 MPa compressive strength with enhanced post-cracking ductility for seismic-resilient structural applications.

180MPa
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Hangzhou Bay Sea-Crossing Link Precast Girders
Bridge

Hangzhou Bay Sea-Crossing Link Precast Girders

Hangzhou, Zhejiang Province, China

Precast UHPC I-girders for a major sea-crossing link, designed for minimal maintenance intervals in high-salinity coastal environments. Integrated stainless micro-reinforcement eliminated conventional shear stirrup congestion.

140MPa
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Shenzhen Tech Park Modular Facade Envelope
Facade

Shenzhen Tech Park Modular Facade Envelope

Shenzhen, Guangdong Province, China

Modular UHPC facade units for a LEED Platinum-certified technology campus. Integrated thermal break connections and precision-milled panel joints achieved ±1 mm installation tolerance across 12,000 m² envelope area.

110MPa
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Nano-Silica Densification Protocol Development
Lab R&D

Nano-Silica Densification Protocol Development

Beijing, China

Fundamental materials science program establishing optimized nano-silica incorporation protocols for UHPC. Developed proprietary dispersion methodology achieving homogeneous 170 MPa mixes at industrial batch scales exceeding 3 m³ per pour.

170MPa
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