Welcome to Guangdong Qinglong Construction Engineering Co., Ltd.!
UHPC & GRC Complex Architecture Manufacturing
A Global Benchmark in Smart Architectural Fabrication
2025-11-21 16:52:01
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A manufacturer's detailed design capability can be demonstrated through five key technologies: 3D modeling, parametric design, node optimization, clash detection, and collaborative design platforms. Leveraging BIM technology and parametric tools, Qinglong achieves precise implementation of complex GRC components, providing projects with full-process detailed design services of "creative realization + cost optimization + construction adaptability".
1. 3D Modeling and Visualization Technology: Precisely Restoring Design Intent
3D modeling is the foundation of detailed design, reflecting the ability to control complex shapes. Core software application: Proficient use of software such as Rhino, Revit, and 3ds Max to build 1:1 3D models, accurately reproducing architectural lines, curves, hollow patterns and other details. Qinglong can achieve high-precision modeling of double-curved and irregular components with an error of ≤±0.5mm. Visual presentation: Renderings and walkthrough animations are used to show the effect of GRC components after installation, helping customers optimize design schemes. Qinglong can provide customers with multi-angle visualization schemes to avoid unsatisfactory decorative effects in advance. Model splitting technology: Oversized and complex components are split into modular units, with reasonable joint nodes set at the split points to ensure feasibility of production, transportation and installation. Qinglong split a 12m² oversized GRC component into 3 modules, which joined seamlessly after assembly.
2. Parametric Design and Node Optimization Technology: Improving Implementation Feasibility
Parametric design and node optimization reflect the professionalism of detailed design. Parametric tool application: Parametric tools such as Grasshopper are used to adjust design parameters (such as curvature, thickness, and aperture) in real time, adapting to the iterative optimization of complex shapes. Through parametric design, Qinglong's double-curved GRC components achieved an 80% improvement in adjustment efficiency. Structural node optimization: The connection nodes between GRC and the main structure are optimized to enhance stability and reduce stress concentration. Qinglong adopts stainless steel shear studs + flexible sealing joints to improve wind load and seismic resistance. Structural optimization: GRC thickness (15-30mm) and fiber distribution are optimized according to load conditions, reducing costs while ensuring strength. Through structural optimization, Qinglong reduced material costs by 12% on one project.
3. Clash Detection and Collaborative Design Technology: Ensuring Smooth Construction
Clash detection and collaborative design reflect the coordination capability of detailed design. BIM clash detection: GRC models are integrated with models of the main structure, MEP pipelines, curtain walls, etc. to detect clash points in advance and avoid conflicts during construction. Qinglong's BIM clash detection coverage rate reaches 100%; on one project, 12 clash points were identified and optimized in advance. Collaborative design platform: A multi-party collaboration platform (such as BIM 360) is built to enable real-time communication among design, construction and production teams, with design changes updated synchronously. Qinglong's collaboration platform ensures a response to design changes within 24 hours. Construction simulation technology: Construction simulation animations are used to optimize installation sequences and hoisting schemes, reducing construction risks. Qinglong's installation simulation of complex components achieves an accuracy rate of 95%, ensuring smooth construction.