New structural reinforcement technology-carbon fiber strengtheni

​The carbon fiber reinforcement method is a simpler reinforcement method compared with other reinforcement methods (enlarged interface, outer steel, external prestressing method, etc.).

The carbon fiber reinforcement method is a simpler reinforcement method compared with other reinforcement methods (enlarged interface, outer steel, external prestressing method, etc.). Today, we will briefly introduce the formation of carbon fiber cloth and its corresponding construction process.


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Key technology of carbon fiber to strengthen concrete structure


  1. The epoxy resin must be fully impregnated with the carbon fiber material, and each of the fine to micron-sized carbon fiber filaments must be bonded together to make them bear the stress together.


  2. The carbon fiber composite material must be firmly bonded to the existing structure to form a new structural component to withstand the stress.


Main technical advantages of carbon fiber reinforcement


1. The carbon cloth itself has light weight and small thickness, so it hardly increases mass and volume after reinforcement;

2, has good flexibility, suitable for beams, columns, plates, pipes and walls and other shapes of components;

3. Resistance to acid, alkali and physical corrosion, suitable for various environments;

4.Convenient construction and short cycle



Horse Construction Recommended Products

You can find anything here you are in need of, have a trust trying on these products, you will find the big difference after that.

HM-20 Unidirectional Carbon Fiber Wrap

High strength, unidirectional carbon fiber wrap pre-saturated to form a carbon fiber reinforced polymer (CFRP) wrap used to strengthen structural concrete elements.

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HM-1.2T Unidirectional Carbon Fiber Strip

High strength carbon fiber reinforced polymer (CFRP) strip / laminate / plate for structural strengthening and concrete repair

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HM-MJ50/100 Prestressed CFRP Plate System

Prestressed carbon fiber reinforced polymer(CFRP) plate for slab, beam strengthening to increase stiffness, reduce distortion and deflection of members, reduce the cracks, avoid and stop cracking.

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