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UHPC & GRC Complex Architecture Manufacturing
A Global Benchmark in Smart Architectural Fabrication
2025-11-24 16:41:59
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The application of 3D scanning technology in GRC modeling spans the entire process of "prototype replication, design development, production inspection, installation calibration, and later-stage maintenance." Through precise data acquisition and processing, it improves modeling accuracy and efficiency. Projects such as Qinglong's Shanghai Astronomy Museum and the Guangxi New Media Center have all leveraged this technology to achieve high-quality implementation.
1. Core Application Scenarios in Detail
Empowering GRC modeling implementation at multiple stages. Prototype replication: scanning natural prototypes (stone, sculptures, plants) or physical samples to obtain point cloud data with accuracy up to 0.05mm; Qinglong achieves a texture restoration rate of 98% after scanning. Design development: scanning existing building structures to coordinate with GRC modeling design and avoid conflicts; Qinglong's BIM coordination rectification rate after scanning is ≤1%. Production inspection: scanning components before delivery to inspect dimensions, curvature, and texture precision; Qinglong's inspection error is ≤0.3mm, with zero defective products leaving the factory. Installation calibration: scanning installation base surfaces and installed components on site to adjust installation positions in real time; Qinglong achieves joint precision of ≤1mm after installation calibration. Later-stage maintenance: scanning aged components and applying reverse modeling to achieve precise restoration; Qinglong's maintenance repair accuracy reaches 99%.
2. Key Processes of Technology Application
Standardized processes ensure application results. Scanning preparation: cleaning scan targets and setting scanning marker points; Qinglong's marker point spacing is ≤500mm to improve scanning accuracy. Data acquisition: using handheld or fixed 3D scanners for all-around scanning; Qinglong's scan point density is ≥100 points/m². Data processing: using Geomagic Studio software to process point cloud data and generate 3D models; Qinglong's model error after data processing is ≤0.1mm. Model export: exporting STL or CAD formats to interface with mold processing and design software; Qinglong's model export compatibility reaches 100%. Implementation: molds are precisely replicated according to scanned models, and installation is calibrated according to scan data; Qinglong's implementation error is ≤0.5mm.
3. Qinglong Project Practices and Technical Advantages
Real-world cases verify application value. Shanghai Astronomy Museum public art sculptures: scanning sculpture prototypes and using reverse modeling to produce GRC components, achieving a shape restoration rate of 99%. Guangxi New Media Center: scanning building structures to optimize hyperbolic GRC mold-splitting and installation plans, improving installation efficiency by 30%. Technical advantages: equipped with multiple high-precision 3D scanners, with industry-leading scanning accuracy. Team support: a professional scanning and data processing team with an average of over 6 years of industry experience. Efficiency improvement: 3D scanning shortens prototype replication cycles by 50% and installation calibration time by 40%. Cost optimization: reducing mold rework rates; Qinglong's scanning applications have reduced mold costs by 20%.