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Concrete Reinforcing Fiber Market Overview
“The global Concrete Reinforcing Fiber Market is expected to grow rapidly at a 7.45% CAGR consequently, it will grow from its existing size of from $3.20 billion in 2023 to $6.25 billion by 2030.”
What is fiber-reinforced concrete?
Fiber-reinforced concrete is a mix of cement, mortar, and short fibers, including synthetic or natural fibers and glass fibers, that are uniformly distributed throughout the composite material.
Fibers in concrete enhance energy absorption and structural integrity, but they don't replace stainless steel-reinforced concrete as they don't improve flexural strength, preventing concrete from bending without breaking.
Types of Fiber Reinforced Concrete
Steel Fiber Reinforced Concrete
Steel fiber reinforced concrete is a common type of FRC, with even small amounts of reinforcing steel fibers significantly improving the concrete's properties.
Steel fiber reinforced concrete is commonly used in heavy-duty concrete applications like bridges, floors, tunnels, mining, and precasts.
PFRC (Polypropylene Fiber Reinforced Concrete)
Polypropylene, a material similar to polythene, offers superior toughness, flexural strength, and heat resistance.
This fiber is highly resistant to acids and organic solvents, and it shares similar properties with concrete.
Glass Fiber Reinforced Concrete (GFRC)
Glass Fiber Reinforced Concrete (GFRC) is a type of reinforced concrete with microscopic glass particles, which are used to strengthen the concrete.
Glass fiber, despite being fragile, offers exceptional structural strength and is a cost-effective ingredient in concrete mix, making it less expensive than steel fiber reinforced concrete alternatives.
What are the benefits of using fiber-reinforced concrete?
Fiber-reinforced concrete offers several advantages over conventional concrete or steel rebar in construction projects.
Fibers in concrete prevent early cracking by minimizing shrinkage cracking due to moisture content variations and water evaporated water, significantly reducing early cracking.
Fiber addition enhances concrete's durability, reduces corrosion, cavitation damage, and enhances tensile strength compared to unreinforced concrete.
Fiber-reinforced concrete, when combined with microfibers, offers increased ductility, making it less susceptible to high tensile stress and enhancing the weight a structure can support.
Fibers can be used as a non-rebar alternative to steel rebar or added to steel-reinforced concrete, reducing the required steel and potentially lowering project costs.
Demand Outlook
Benefits of increasing urbanization and improving construction methods to boost market growth
Concrete reinforcing fiber is a fibrous substance used to enhance concrete's mechanical strength, reduce cracks caused by plastic shrinkage and moisture loss during hardening, and offer high stability, structural endurance, and temperature resistance compared to non-fiber reinforced concrete.
Urbanization and improved construction technology are driving increased demand for concrete reinforcing fiber, with macroeconomic factors like infrastructure development positively influencing consumption, especially in emerging countries.
Carbon fibers significantly reduce construction project time, and with increasing investments in infrastructure development, asphalt concrete demand is on the rise, leading to the growth of polyethylene fiber reinforced concrete.
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Market Dynamics
Growth Drivers
The preference for sustainable solutions is on the rise due to environmental regulations.
Environmental regulations are influencing the demand for concrete reinforcing fiber, as end-use industries shift to fiber-based solutions due to their environmental friendliness and high strength and durability properties, making it an ideal choice for sustainable production in various industries.
Environmental concerns are expected to boost future sales of concrete reinforcing fibers, prompting manufacturers to increase capacity expansion to meet market demand.
Challenges
Fluctuating prices of raw materials and the existence of various alternatives.
Polypropylene and polyester are used in concrete reinforcing fiber for building purposes, with prices rising due to unpredictable crude oil prices.
The demand for reinforced concrete is significantly impacted by price volatility in raw materials and the availability of substitutes.
Concrete Reinforcing Fiber Market Segment Analysis
Which type of concrete reinforcing fiber generates the most revenue?
“The utilization of steel fiber in concrete is increasing due to its low cost”
Synthetic fiber, a cost-effective and user-friendly option, accounts for 26.9% of the global concrete reinforcing fiber market due to its affordability and ease of use. Other types include steel, glass, natural, and basalt fibers.
Synthetic fibers, made from polymer-based polymers like nylon, polyester, polyethylene, and polypropylene, are man-made materials that can withstand the alkaline state of concrete for extended periods, preventing cracks and ensuring the durability of concrete structures.
Which end-use industry is most likely to drive demand for concrete reinforcing fiber?
“Widespread use of concrete reinforcement fiber in the development of transport infrastructure”
Concrete reinforcing fibers are utilized in various sectors, with transportation accounting for 29% of the market, including building, construction, mining, and industrial flooring.
Concrete reinforcing fiber is utilized in the transportation sector due to its durability, impact resistance, and mechanical strength, and its increasing infrastructure investment is driving its demand.
The global transportation infrastructure development is expected to be significantly bolstered by increased government initiatives and policies.
Impact of COVID-19 on Concrete Reinforcing Fiber Sales
The COVID-19 pandemic severely impacted the concrete fiber market, causing delays in construction projects and reduced purchasing power of suppliers. This led to supply chain disruptions, shutdowns, and job cancellations, causing significant disruptions and disruptions in the construction sector.
Concrete reinforcing fiber makers are collaborating with alternative suppliers to maintain secure supply chains and develop balanced relationships with distributors and ecosystem partners, which are expected to aid in the recovery of the concrete fiber business in the future.
Competitive Landscape of the Concrete Reinforcing Fiber Market
Recent Developments in Concrete Reinforcing Fiber Market
November 04, 2022, IIT Hyderabad scientists develop affordable Ultra-High Performance Fiber Reinforced Concrete
In 2020, GCP Applied Technologies Inc. released Version 2.0 of the STRUX 90/40 macro synthetic fibers mobile app solution, which can be used in a variety of concrete applications.
In August 2021, the MBCC Group agreed to purchase Fabpro Polymers, a leading creator and manufacturer of synthetic fibers for reinforced concrete and other uses in North America. The MBCC Group has agreed to purchase Fabpro Polymers, a leading creator and manufacturer of synthetic fibers for reinforced concrete and other uses in North America.
In August 2019, Master Builders Solutions launched a new MasterFiber website. MasterFiber portfolio is a lightweight and durable concrete reinforcement portfolio for sustainable construction.
In November 2018, Sika purchased Propex Holding, LLC's global Concrete Fibers business, which comprises a U.S. plant that manufactures synthetic fibers for use in concrete reinforcement, sales operations across Sika's three geographic zones, and a strong brand. Sika's concrete systems for high-value-added solutions required in the construction of high-rise structures and challenging infrastructure projects will benefit greatly from the acquisition.
BASF and Smart Engineering renew their collaboration in the field of fiber-reinforced concrete
Regional Insights
“The increase in construction projects is reportedly driving market revenue in North America”
North America dominates the global market for concrete reinforcing fiber, accounting for 33.3% due to the increasing number of construction projects and marine constructions like tunnels and bridges.
North America's rising GDP is expected to significantly boost the industrial sector, leading to a surge in demand for concrete reinforcing fiber.
The Chinese market for concrete reinforcing fiber is projected to grow at an 8.6% CAGR due to factors such as population growth, urbanization, and household expansion.
China's concrete reinforcing fiber industry is expected to grow due to government investment in affordable housing for low-income families and continued focus on residential building construction.
The growth of the concrete reinforcing fiber market in China is expected to be accelerated by increased infrastructure spending on non-residential projects, which will remain higher than residential spending.
Segments Covered in the Concrete Reinforcing Fiber Market
Frequently Asked Questions:
Which latest trends are driving demand for concrete reinforcing fiber?
Flourishing residential construction sector and increasing transport infrastructure projects are driving market growth.
Which end use of concrete reinforcing fiber drives highest sales?
Transport infrastructure accounts for 29.4% share of the global concrete reinforcing fiber market.
Which are the top 5 countries driving most demand for concrete reinforcing fiber?
he U.S., Germany, Mexico, China, and Japan account for the highest demand for concrete reinforcing fiber.
Who are the prominent suppliers of concrete reinforcing fiber?
Nycon Corporation, Owens Corning, FORTA Corporation, The Euclid Chemical Company, and BASF SE are key manufacturers of concrete reinforcing fiber.
1.1. Global Market Outlook
1.2. Demand Side Trends
1.3. Supply Side Trends
1.4. Analysis and Recommendations
2.1. Market Coverage / Taxonomy
2.2. Market Definition / Scope / Limitations
2.3. Inclusions/Exclusions
3.1. Key Trends Impacting the Market
3.2. Type modifications /Innovation
4.1. Strategic Developments
4.2. Key regulations
4.3. Type USPs /Technology
4.4. List of Manufacturers and Providers
5.1. Macro-Economic Factors
5.1.1. Global GDP outlook
5.1.2. Increasing R&D Expenditure
5.2. Forecast Factors - Relevance & Impact
5.2.1. New Type launches
5.2.2. Cost of Types
5.3. Market Dynamics
5.3.1. Drivers
5.3.2. Restraints
5.3.3. Opportunity Analysis
6.1.1. Current COVID19 Statistics and Probable Future Impact
6.1.2. Current GDP Projection and Probable Impact
6.1.3. Current Economic Projection as Compared to 2008 Economic analysis
6.1.4. COVID19 and Impact Analysis
6.1.4.1. Revenue By Type
6.1.4.2. Revenue By End-use Industry
6.1.4.3. Revenue By Country
6.1.5. 2021 Market Scenario
6.1.6. Quarter by Quarter Forecast
6.1.7. Projected Recovery Quarter
7.1. Historical Market Volume (Units) Analysis, 2018-2022
7.2. Current and Future Market Volume (Units) Projections, 2023-2030
7.2.1. Y-o-Y Growth Trend Analysis
8.1. Regional Pricing Analysis By Type
8.2. Pricing Break-up
8.2.1. Manufacturer Level Pricing
8.2.2. Distributor Level Pricing
8.3. Global Average Pricing Analysis Benchmark
9.1. Historical Market Value (US$ Mn) Analysis, 2018-2022
9.2. Current and Future Market Value (US$ Mn) Projections, 2023-2030
9.2.1. Y-o-Y Growth Trend Analysis
9.2.2. Absolute $ Opportunity Analysis
10.1. Introduction / Key Findings
10.2. Historical Market Size (US$ Mn) Analysis By Types & Services, 2018-2022
10.3. Current and Future Market Size (US$ Mn) Analysis and Forecast By Type, 2023-2030
10.3.1. Synthetic Fiber
10.3.2. Steel Fiber
10.3.3. Glass Fiber
10.3.4. Natural Fiber
10.3.5. Basalt Fiber
10.4. Market Attractiveness Analysis By Type
11.1. Introduction / Key Findings
11.2. Historical Market Size (US$ Mn) Analysis By End-use Industry , 2018-2022
11.3. Current and Future Market Size (US$ Mn) Analysis and Forecast By End-use Industry, 2023-2030
11.3.1. Transport Infrastructure
11.3.2. Building & Construction
11.3.3. Mining & Tunnel
11.3.4. Industrial Flooring
11.3.5. Other End-use Industries
11.4. Market Attractiveness Analysis By End-use Industry
12.1. Introduction
12.2. Historical Market Size (US$ Mn) Analysis By Region, 2018-2022
12.3. Current Market Size (US$ Mn) Analysis and Forecast By Region, 2023-2030
12.3.1. North America
12.3.2. Latin America
12.3.3. Europe
12.3.4. East Asia
12.3.5. South Asia
12.3.6. Oceania
12.3.7. Middle East and Africa (MEA)
12.4. Market Attractiveness Analysis By Region
13.1. Introduction
13.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
13.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
13.3.1. By Country
13.3.1.1. U.S.
13.3.1.2. Canada
13.3.2. By Type
13.3.3. By End-use Industry
13.4. Market Attractiveness Analysis
13.5. Key Market Participants - Intensity Mapping
13.6. Drivers and Restraints - Impact Analysis
14.1. Introduction
14.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
14.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
14.3.1. By Country
14.3.1.1. Brazil
14.3.1.2. Mexico
14.3.1.3. Argentina
14.3.1.4. Rest of Latin America
14.3.2. By Type
14.3.3. By End-use Industry
14.4. Market Attractiveness Analysis
14.5. Key Market Participants - Intensity Mapping
14.6. Drivers and Restraints - Impact Analysis
15.1. Introduction
15.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
15.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
15.3.1. By Country
15.3.1.1. Germany
15.3.1.2. Italy
15.3.1.3. France
15.3.1.4. U.K.
15.3.1.5. Spain
15.3.1.6. Russia
15.3.1.7. Rest of Europe
15.3.2. By Type
15.3.3. By End-use Industry
15.4. Market Attractiveness Analysis
15.5. Key Market Participants - Intensity Mapping
15.6. Drivers and Restraints - Impact Analysis
16.1. Introduction
16.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
16.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
16.3.1. By Country
16.3.1.1. India
16.3.1.2. Thailand
16.3.1.3. Indonesia
16.3.1.4. Malaysia
16.3.1.5. Rest of South Asia
16.3.2. By Type
16.3.3. By End-use Industry
16.4. Market Attractiveness Analysis
16.5. Key Market Participants - Intensity Mapping
16.6. Drivers and Restraints - Impact Analysis
17.1. Introduction
17.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
17.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
17.3.1. By Country
17.3.1.1. China
17.3.1.2. Japan
17.3.1.3. South Korea
17.3.1.4. Rest of East Asia
17.3.2. By Type
17.3.3. By End-use Industry
17.4. Market Attractiveness Analysis
17.5. Key Market Participants - Intensity Mapping
17.6. Drivers and Restraints - Impact Analysis
18.1. Introduction
18.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
18.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
18.3.1. By Country
18.3.1.1. Australia
18.3.1.2. New Zealand
18.3.2. By Type
18.3.3. By End-use Industry
18.4. Market Attractiveness Analysis
18.5. Key Market Participants - Intensity Mapping
18.6. Drivers and Restraints - Impact Analysis
19.1. Introduction
19.2. Historical Market Size (US$ Mn) Trend Analysis By Market Taxonomy, 2018-2022
19.3. Market Size (US$ Mn) Forecast By Market Taxonomy, 2023-2030
19.3.1. By Country
19.3.1.1. GCC Countries
19.3.1.2. South Africa
19.3.1.3. Rest of Middle East and Africa
19.3.2. By Type
19.3.3. By End-use Industry
19.4. Market Attractiveness Analysis
19.5. Drivers and Restraints - Impact Analysis
20.1. Introduction
20.1.1. Market Value Proportion Analysis, By Key Countries
20.1.2. Global Vs. Country Growth Comparison
20.2. U.S. Concrete Reinforcing Fiber Market Analysis
20.2.1. By Type
20.2.2. By End-use Industry
20.3. Canada Concrete Reinforcing Fiber Market Analysis
20.3.1. By Type
20.3.2. By End-use Industry
20.4. Mexico Concrete Reinforcing Fiber Market Analysis
20.4.1. By Type
20.4.2. By End-use Industry
20.5. Brazil Concrete Reinforcing Fiber Market Analysis
20.5.1. By Type
20.5.2. By End-use Industry
20.6. U.K. Concrete Reinforcing Fiber Market Analysis
20.6.1. By Type
20.6.2. By End-use Industry
20.7. Germany Concrete Reinforcing Fiber Market Analysis
20.7.1. By Type
20.7.2. By End-use Industry
20.8. France Concrete Reinforcing Fiber Market Analysis
20.8.1. By Type
20.8.2. By End-use Industry
20.9. Italy Concrete Reinforcing Fiber Market Analysis
20.9.1. By Type
20.9.2. By End-use Industry
20.10. Spain Concrete Reinforcing Fiber Market Analysis
20.10.1. By Type
20.10.2. By End-use Industry
20.11. BENELUX Concrete Reinforcing Fiber Market Analysis
20.11.1. By Type
20.11.2. By End-use Industry
20.12. Russia Concrete Reinforcing Fiber Market Analysis
20.12.1. By Type
20.12.2. By End-use Industry
20.13. China Concrete Reinforcing Fiber Market Analysis
20.13.1. By Type
20.13.2. By End-use Industry
20.14. Japan Concrete Reinforcing Fiber Market Analysis
20.14.1. By Type
20.14.2. By End-use Industry
20.15. South Korea Concrete Reinforcing Fiber Market Analysis
20.15.1. By Type
20.15.2. By End-use Industry
20.16. India Concrete Reinforcing Fiber Market Analysis
20.16.1. By Type
20.16.2. By End-use Industry
20.17. ASEAN Concrete Reinforcing Fiber Market Analysis
20.17.1. By Type
20.17.2. By End-use Industry
20.18. Australia Concrete Reinforcing Fiber Market Analysis
20.18.1. By Type
20.18.2. By End-use Industry
20.19. New Zealand Concrete Reinforcing Fiber Market Analysis
20.19.1. By Type
20.19.2. By End-use Industry
20.20. GCC Countries Concrete Reinforcing Fiber Market Analysis
20.20.1. By Type
20.20.2. By End-use Industry
20.21. Turkey Concrete Reinforcing Fiber Market Analysis
20.21.1. By Type
20.21.2. By End-use Industry
20.22. South Africa Concrete Reinforcing Fiber Market Analysis
20.22.1. By Type
20.22.2. By End-use Industry
21.1. Market Analysis by Tier of Companies
21.2. Market Concentration
21.3. Market Share Analysis of Top Players
21.4. Market Presence Analysis
21.4.1. By Regional footprint of Players
21.4.2. Type foot print by Players
21.4.3. Channel Foot Print by Players
22.1. Competition Dashboard
22.2. Competition Benchmarking
22.3. Competition Deep dive
22.3.1. Nycon Corporation
22.3.1.1. Overview
22.3.1.2. Type Portfolio
22.3.1.3. Profitability by Market Segments (Type/Channel/Region)
22.3.1.4. Sales Footprint
22.3.1.5. Strategy Overview
22.3.2. Owens Corning
22.3.2.1. Overview
22.3.2.2. Type Portfolio
22.3.2.3. Profitability by Market Segments (Type/Channel/Region)
22.3.2.4. Sales Footprint
22.3.2.5. Strategy Overview
22.3.3. FORTA Corporation
22.3.3.1. Overview
22.3.3.2. Type Portfolio
22.3.3.3. Profitability by Market Segments (Type/Channel/Region)
22.3.3.4. Sales Footprint
22.3.3.5. Strategy Overview
22.3.4. The Euclid Chemical Company
22.3.4.1. Overview
22.3.4.2. Type Portfolio
22.3.4.3. Profitability by Market Segments (Type/Channel/Region)
22.3.4.4. Sales Footprint
22.3.4.5. Strategy Overview
22.3.5. BASF SE
22.3.5.1. Overview
22.3.5.2. Type Portfolio
22.3.5.3. Profitability by Market Segments (Type/Channel/Region)
22.3.5.4. Sales Footprint
22.3.5.5. Strategy Overview
22.3.6. Bekaert
22.3.6.1. Overview
22.3.6.2. Type Portfolio
22.3.6.3. Profitability by Market Segments (Type/Channel/Region)
22.3.6.4. Sales Footprint
22.3.6.5. Strategy Overview
22.3.7. CEMEX
22.3.7.1. Overview
22.3.7.2. Type Portfolio
22.3.7.3. Profitability by Market Segments (Type/Channel/Region)
22.3.7.4. Sales Footprint
22.3.7.5. Strategy Overview
Segments Covered in the Concrete Reinforcing Fiber Market
Research Methodology
Base Year:
Historical Data:2018-2022
No of Pages:123
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