Global Construction Repair Composites Market Trends and Insights
Increasing Demand for Rehabilitation and Strengthening of Aging Civil Infrastructure
Aging civil assets are increasing the need for repair approaches that preserve structures rather than replace them. As of 2025, 45% of U.S. bridges had exceeded their planned design lives, and 6.8% were rated in poor condition. The construction repair composites market benefits when externally bonded systems are considered for fair-condition structures that still have usable capacity. The American Road and Transportation Builders Association placed the cost of identified U.S. bridge repairs at USD 467 billion in 2025. Bridge Formula Program allocations and related state reviews can create a pipeline that extends beyond a single budget cycle. India also has a substantial repair need, as more than 30% of its bridges are over 50 years old, providing a broader base for structural strengthening work.Rising Preference for Corrosion-Resistant Composite Materials in Harsh Service Environments
Corrosion in steel reinforcement remains a central cause of deterioration in bridges, tunnels, marine structures, and industrial concrete assets. Fiber Reinforced Polymer (FRP) systems can avoid this failure mechanism rather than only slowing it, which supports their use in chloride, alkali, and sulfate exposure conditions. Research published in 2025 found that externally bonded FRP reinforcement has strong long-term chemical stability, although premature debonding remains a technical concern. This supports the construction repair composites market in coastal infrastructure, where moisture and salts can shorten the life of conventional reinforcement. Röchling introduced Durostone FRP Rebar for tunnels, harbor structures, and parking garages where corrosive exposure is a material-selection concern. Longer repair cycles may reduce repeat material demand at an individual site, but they increase the importance of engineering, installation qualification, and long-term asset services.Limited Standardization of Design Codes and Engineering Specifications Across Applications
Differences in fiber-reinforced polymer (FRP) codes across jurisdictions can delay project approvals and increase validation costs. ACI CODE-440.13-24 is a key U.S. reference for structural concrete strengthening, while the American Association of State Highway and Transportation Officials (AASHTO) maintains guidance for glass fiber-reinforced polymer (GFRP)-reinforced concrete applications. Adoption is not uniform across U.S. states, and several regions still rely on project-specific approvals. The Federal Highway Administration and the National Institute of Standards and Technology continue to provide technical information on composite design and reliability. This gap is more pronounced outside established bridge applications, including industrial repair and residential seismic retrofits. Harmonization by ACI, AASHTO, ISO, and fib may reduce this constraint over time, but current approval processes continue to limit faster uptake.Other drivers and restraints analyzed in the detailed report include:
- Faster Installation and Reduced Downtime Compared to Conventional Repair Methods
- Growing Use of Digital Structural Health Monitoring and Inspection Technologies to Support Targeted Repairs
- Higher Initial Material Costs Compared to Conventional Repair Materials
Segment Analysis
Glass fiber held 64.72% of the construction repair composites market share in 2025, reflecting a cost-to-performance balance that suits concrete wrapping, column jacketing, and standard strengthening projects. Glass Fiber-Reinforced Polymer (GFRP) bars and fabrics are compatible with wet layup, pultrusion, and filament-winding systems familiar to contractor networks. Their low weight simplifies transport and handling at remote or restricted sites, and their nonmagnetic and nonconductive properties support repairs near electrical infrastructure and rail corridors. ACI CODE-440.11-22, referenced in the 2024 International Building Code, provides a code basis for structural concrete reinforced with GFRP bars, strengthening the use of glass fiber in established repair and reinforcement designs.Carbon fiber is forecast to be the fastest-growing fiber type at a 6.82% CAGR through 2031. Its strength-to-weight performance supports seismic retrofits and high-load bridge repair, where thinner or lighter strengthening systems are required. A 2025 study found that bonded Carbon Fiber-Reinforced Polymer (CFRP) laminates improved the flexural capacity of reinforced concrete beams by 57%-72.5% in the assessed systems, which can justify the higher cost in major structural rehabilitation contracts. Basalt fiber, aramid, and natural-fiber hybrid products remain smaller categories, receiving attention where specifiers seek alternatives with different cost, durability, or embodied-carbon characteristics. Carbon fiber use may also be shaped by future revisions to durability factors for marine and alkaline service conditions.
Epoxy held 53.14% of the construction repair composites market in 2025 and is forecast to grow at a 6.57% CAGR through 2031. Its use in structural repair is supported by strong adhesion to concrete, low shrinkage during curing, and formulation options suited to different field conditions. Epoxy is used in wet layup systems and in bonded plate or laminate systems, and it is specified where cold-weather curing, elevated-temperature service, or lower volatile organic compound (VOC) levels are required. BASF and Sika introduced Baxxodur EC 151 in March 2025 as an amine curing agent for epoxy resins.
Vinyl ester is the second-ranked resin type and remains important for high-chemical-resistance environments. Industrial facilities exposed to concentrated acids or solvents can benefit from its barrier performance, which is superior to that of standard epoxy systems. Polyester and emerging bio-based matrix systems form a smaller segment but remain relevant where lower-carbon material specifications are developing. Resin selection must match the substrate, exposure condition, installation method, and required cure profile. Upstream epoxy supply is concentrated among large chemical producers, which can affect the price of finished composite repair systems. Suppliers are therefore pursuing hardener innovation and specialized formulations to differentiate their offerings without building large resin-manufacturing operations. Construction chemical standards and VOC requirements are also encouraging the adoption of lower-emission resin systems.
Complete Report Scope:
- By Fiber Type
- Glass Fiber
- Carbon Fiber
- Other Fiber Types
- By Resin Type
- Vinyl Ester
- Epoxy
- Other Resin Types
- By Product Type
- Fabric/Textile
- Laminates/Plates
- Rebars
- Mesh
- Rods and Tendons
- Other Product Types
- By Application
- Residential Buildings
- Commercial Buildings
- Industrial Facilities
- Infrastructure
- By Geography
- Asia-Pacific
- China
- India
- Japan
- South Korea
- Rest of Asia-Pacific
- North America
- United States
- Canada
- Mexico
- Europe
- Germany
- United Kingdom
- France
- Italy
- Russia
- Rest of Europe
- South America
- Brazil
- Argentina
- Rest of South America
- Middle-East and Africa
- Saudi Arabia
- South Africa
- Rest of Middle-East and Africa
- Asia-Pacific
Geography Analysis
Asia-Pacific held 39.61% of the construction repair composites market in 2025 and is forecast to grow at a 6.84% CAGR through 2031. China is a major source of regional demand, as many highway bridges built between 1960 and 1990 are approaching or exceeding their intended service life. The region also has extensive new construction in coastal and seismic areas where FRP can be specified at the design stage. India's National Infrastructure Pipeline provides a broad framework for transport and infrastructure investment. Japan represents a more advanced model for coastal applications, where long-term exposure conditions have increased attention to corrosion-resistant reinforcement. These factors support continued demand for repair, strengthening, and preventive reinforcement across the region.North America and Europe rely on bridge repair programs, seismic retrofits, and stricter building and infrastructure requirements. The United States has USD 40 billion in combined Bridge Formula and Bridge Investment Program funding, and states had committed USD 11.7 billion in Bridge Formula funds by mid-2025. The Congressional Research Service reported average annual Bridge Formula Program spending of USD 12 billion for the Infrastructure Investment and Jobs Act (IIJA) period, as of April 2026. These programs support an active pipeline for inspection, design, and repair work. In Europe, the absence of a unified national GFRP code in some applications can delay approvals. However, ongoing work by the European Committee for Standardization (CEN), fib, and ISO may reduce cross-border validation barriers as guidance becomes more aligned.
South America, the Middle-East, Africa, and other smaller geographies are at earlier stages of composite adoption. Brazil's road and water infrastructure needs support a case for targeted resilience investments. The International Finance Corporation identified infrastructure adaptation and resilience as an investment opportunity in 2026. Gulf Cooperation Council port, hospitality, and coastal development projects face marine exposure conditions that support the use of corrosion-resistant materials. Saudi Arabia's Vision 2030 developments also create potential applications for structural and architectural composites. Africa has longer-term potential, but contractor certification gaps and resin import costs can delay wider adoption. Development bank programs that include resilient infrastructure requirements can help move composites from a premium option to a specified material choice.
List of Companies Covered in this Report:
- BASF
- Chomarat
- Creative Composites Group
- Dextra Group
- Dow
- Henkel Corporation
- MAPEI
- Mateenbar Limited
- Owens Corning
- Pultron Composites
- Rockwool
- Saint-Gobain
- Sika AG
- Simpson Strong-Tie Company, Inc.
- SIREG GEOTECH S.r.l.
Additional Benefits:
- The market estimate (ME) sheet in Excel format
- 3 months of analyst support
Table of Contents
Companies Mentioned (Partial List)
A selection of companies mentioned in this report includes, but is not limited to:
- BASF
- Chomarat
- Creative Composites Group
- Dextra Group
- Dow
- Henkel Corporation
- MAPEI
- Mateenbar Limited
- Owens Corning
- Pultron Composites
- Rockwool
- Saint-Gobain
- Sika AG
- Simpson Strong-Tie Company, Inc.
- SIREG GEOTECH S.r.l.

