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Waterway tunnel reinforcement method (strand sheet)

The definitive version of reinforcement for the inner surface of water channels. This is a reinforcement method that adheres strand sheets using resin materials applicable to concrete water channels in harsh wet environments.

〇 Completion of Evaluation for the Public-Private Partnership New Technology Research and Development Project by the Ministry of Agriculture, Forestry and Fisheries 〇 Winner of the Grand Prize in the Technology Development Category at the 4th Infrastructure Maintenance Awards 〇 Product Features - High Productivity: Carbon backing with strand sheets processed and hardened in the factory can be easily applied on-site - Excellent Adhesion: Special primer that exhibits excellent adhesion in wet environments - Low Roughness Coefficient: 0.0104, National Agriculture and Food Research Organization - Long-term Wear Durability: 0.32 mm/40 years, tested and measured by a university institution - Water Quality Safety: Passed by the Japan Water Works Association, JWWA K143 - Water-Flow Type Anchor with Check Valve: Eliminates adverse effects of back pressure from water.

basic information

Material List  Material       Product Name      Remarks ・Primer        FP-WE7        Moisture-resistant type ・Adhesive Resin     FB-C1S        Ceramic mixed epoxy mortar ・Carbon Fiber        Strand Sheet    FSS-HT-600      High strength type 600g/m2 ・Finishing Material   FB-C15 leveling liquid   Epoxy resin

Price information

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Applications/Examples of results

Reinforcement of the inner wall surfaces of various concrete water channels - Agricultural water channels - Water conveyance and drainage channels for power generation facilities

Waterway tunnel reinforcement method (strand sheet)

PRODUCT

Distributors

Oriental Shiraishi Co., Ltd. is a company primarily engaged in the construction and manufacturing sales of prestressed concrete, as well as the construction of pneumatic caissons and repair and reinforcement construction. We contribute to the development of social infrastructure by utilizing special technologies in a setting that looks towards the great nature, the earth, and the future of cities.

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