Carbon Fiber Is The Leader In Structural Strengthening

carbon fiber strengthening reinforcement is the leader in structural strengthening

carbon fiber strengthening tunnel       carbon fiber strengthening beam



The carbon fiber strengthening method originally originated from Western developed countries. With the continuous development of my country's construction technology in recent years, China has also actively integrated Western advanced strengthening technology. At present, the carbon fiber strengthening method is also widely used in many fields in my country. I don’t know if you have ever thought about such a problem, why this strengthening method can be recognized by many construction units and become the preferred strengthening method during strengthening construction?


1. Great social benefits

Compared with other strengthening construction materials, carbon fiber materials are more environmentally friendly construction materials. During the construction process, relatively little construction waste is generated. In addition, the impact on the normal life of citizens around the reinforced construction building is also less. This kind of strengthening technology has a wide range of applications, and is currently widely used in a variety of municipal strengthening projects, which can create more social benefits.


2. High economic benefits

When choosing a strengthening method, the customer and the construction unit will consider the economic and practicality of the strengthening method. The market price of carbon fiber materials is relatively low, and the construction is convenient, which can also save more construction costs. Compared with other kinds of strengthening methods, this strengthening method is also relatively economical.


3. Wide application prospects

Although carbon fiber material is a new type of strengthening material, in recent years, my country has continuously increased research efforts on carbon fiber materials. This material has obvious advantages, a wide range of applications, and relatively good future development prospects. 


carbon fiber strengthening column      carbon fiber strengthening beam and slab


Base Substrates of Carbon Fiber Structural Strengthening

• Concrete substrate

• Steel substrate

• Masonry substrate

• Timber substrate


Structural Elements of Carbon Fiber Strengthening

• Columns strengthening

• Beams strengthening

• Slabs strengthening

• Walls strengthening

• Pipes strengthening 

• Pier caps strengthening


Construction Field of Carbon Fiber Structural Strengthening

• Civil buildings

• Bridges

• Tunnels

• Piers/wharfs

• Airports

• Highways, railways


4. Long service life

According to research data, the service life of carbon fiber materials is more than 50 years, which is unmatched by other strengthening materials. Compared with commonly used steel plate materials, steel plates are prone to rust. Such a problem will never occur in carbon fiber materials.


5. The market has a wide range of sales

When customers choose strengthening materials, they first pay attention to the price, then the quality of the strengthening, and the difficulty of the strengthening construction. Compared with the various strengthening materials sold in the building materials market, only carbon fiber materials can meet all the above three customer requirements. Especially for customers who want to save strengthening costs, carbon fiber materials are the best choice.


Horse Construction Recommended Products

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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-30 Unidirectional Carbon Fiber Fabric

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

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HM-60 Unidirectional Carbon Fiber Sheet

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

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