Technical Analysis of Carbon Fiber Fabric Reinforcement for Load-Bearing Beams
The core principle of reinforcing load-bearing beams with carbon‑fiber fabric is to harness the synergistic action between the high‑strength carbon‑fiber material and the beam itself, thereby enhancing the original concrete beam’s flexural and shear capacities and improving its load‑carrying capacity and durability.
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2026/07
The primary role of carbon fiber in tunnel and bridge reinforcement
Flexural Strengthening: Carbon fiber fabric or carbon fiber plates are bonded to the tension zone of beams, slabs, or tunnels, serving as a substitute for or supplement to reinforcing steel and significantly enhancing the structure’s flexural load-carrying capacity. This approach is particularly effective for structures subjected to higher loads or those whose load-bearing capacity has been compromised by rebar corrosion.
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2026/07
Baihui Plaza (formerly the Luzipu Project) is located in the heart of Nanjing’s Old South District, in the Qinhuai District, with a total floor area of approximately 128,000 square meters. By reinforcing the existing structure, conducting safety assessments, and undertaking a comprehensive renovation, the project aims to transform into a high-end commercial complex serving the surrounding community and establish itself as a new urban landmark.
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2026/07
Application of Tianlixin Crack-Sealing Adhesive in the Repair of Structural Cracks in Bridges
Structural cracks in bridges are primarily induced by external loads or structural deformations; their propagation directly compromises the structure’s load-carrying capacity and reduces its durability, necessitating reinforcement and strengthening measures.
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2026/07
To align with its new functional positioning, a biopharmaceutical park in the Jiangbei New Area has launched a comprehensive upgrade and renovation. Through systematic remodeling and structural reinforcement of a 31,000-square-meter space, the project aims to establish a core engine for biopharmaceutical R&D and innovation. During the renovation, Tianlixin leveraged its specialized reinforcement material system to provide critical technical support for the park’s strategic upgrade.
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2026/07
The first-phase renovation of the teaching building at the Dabancheng Campus of Xinjiang Vocational University is driving a comprehensive revitalization of the facility through systematic upgrades. The project focuses on seismic retrofitting and the holistic enhancement of safety performance for aging structures, strengthening the building’s structural integrity to lay a solid foundation for campus safety and to provide faculty and students with a modern, secure, and reliable learning environment.
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2026/07
A major industrial project in Mulei County, Xinjiang—the 125,500-carat-per-year synthetic diamond production line—has a total investment of RMB 470 million and occupies 60 mu of land, focusing on the manufacture of high-end materials. Due to insufficient structural load-bearing capacity, structural reinforcement was required, and Tianlixin’s high-performance steel‑bonding adhesive played a pivotal role in this reinforcement effort. With its excellent thixotropic properties and superior bonding strength, Tianlixin’s adhesive provided a reliable guarantee for the smooth progress of the project.
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2026/07