市場調查報告書
商品編碼
1476335
到 2030 年混凝土增強纖維市場預測:按纖維類型、混凝土類型、應用、最終用戶和地區進行的全球分析Concrete Reinforcing Fiber Market Forecasts to 2030 - Global Analysis By Fiber Type (Steel Fiber, Glass Fiber, Carbon Fiber, Polypropylene Fiber, Polyester Fiber, Basalt Fiber and Other Fiber Types), Concrete Type, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2023 年全球混凝土增強纖維市場規模為 24.6 億美元,預計到 2030 年將達到 41.8 億美元,預測期內複合年成長率為 6.8%。
混凝土增強纖維是由鋼纖維、合成纖維、玻璃纖維、天然纖維等纖維組成的複合材料,添加到混凝土中以提高其機械性能。這些纖維提高了水泥建築物的拉伸強度、抗裂性、抗衝擊性和耐久性。它的使用為鋼筋混凝土建築提供了一種經濟高效的解決方案,同時有助於發展更具彈性和永續的基礎設施。
根據美國人口普查局的數據,2022 年住宅批准量的成長從 2021 年 6 月到 2022 年 6 月加速了 1.4%。
永續建築意識不斷增強
與傳統的加固方法相比,CRF 有助於減少建築中的碳排放和能源消費量。 CRF 的使用提高了水泥建築物的耐用性和使用壽命,並減少了頻繁維修和更換的需要,從而實現了永續性目標。隨著永續性成為世界各地開發商、承包商和政府的首要任務,對 CRF 的需求預計將增加並推動混凝土增強纖維市場的成長。
相容性問題
混凝土增強纖維的相容性問題源於在不同混凝土混合物中實現最佳分散的挑戰,特別是具有特定添加劑和要求的混凝土混合物。這些問題阻礙了纖維的均勻分佈,並影響混凝土的整體性能和結構完整性。這導致了人們對鋼筋混凝土結構的可靠性和一致性的擔憂,阻礙了它們在建設產業的普及。
加大基礎建設力度
全球基礎設施的持續發展正在推動對混凝土增強纖維的需求,因為它可以有效提高水泥建築物的耐久性和強度。道路、橋樑、隧道和建築等計劃的投資不斷增加,需要能夠承受惡劣使用和惡劣環境的材料。與鋼筋等傳統加強方法相比,CRF具有優越的抗裂性、抗衝擊性和耐久性,使其成為現代基礎設施計劃的合適選擇。
品管挑戰
確保纖維在混凝土基體內適當分散和分佈的品管挑戰可能會損害鋼筋混凝土結構的可靠性和性能。分散不均勻或配方設計不當可能會損害結構完整性並導致耐用性和安全性問題。這削弱了人們對混凝土增強纖維有效性的信心,並可能限制其在建築計劃中的採用。
COVID-19 的影響
由於建設活動暫停和供應鏈中斷,COVID-19 大流行最初擾亂了混凝土增強纖維市場。封鎖措施和經濟不確定性導致計劃延誤和取消,影響了建築材料的需求。然而,隨著經濟逐步重新開放以及各國政府推出基礎設施獎勵策略以恢復經濟成長,市場開始復甦。此外,疫情後對永續和彈性建築實踐的日益關注進一步推動了 CRF 在基礎設施計劃中的採用。
預計預混合細分市場在預測期內將是最大的
預混料市場預計將出現良好的成長。預混混凝土增強纖維解決方案為增強水泥建築物的性能提供了便捷有效的方法。透過將纖維均勻分佈在整個混凝土基體中,預混解決方案可提高抗裂性、抗衝擊性和整體耐久性。它廣泛應用於各個領域,為承包商和工程師提供了最佳化混凝土性能同時簡化施工過程的可靠方法。
預計交通基礎設施產業在預測期內的複合年成長率最高。
預計交通基礎設施產業在預測期內複合年成長率最高。在交通基礎設施中,混凝土增強纖維在提高關鍵結構的耐用性和壽命方面發揮著重要作用。這些纖維可提高拉伸強度,減少開裂,並增強對交通繁忙和環境因素造成的磨損的抵抗力。透過增強運輸計劃中的混凝土,這些纖維有助於提高基礎設施的整體安全性和使用壽命,減少維護需求,並確保運輸網路更加順暢和更有彈性。
由於快速的都市化、工業化和基礎設施發展努力,預計亞太地區在預測期內將佔據最大的市場佔有率。中國、印度和東南亞國家等國家的建設活動激增,推動了對鋼筋混凝土材料的需求。此外,促進永續建築實踐和採用高性能材料的嚴格法規進一步推動了市場成長。
預計北美在預測期內的複合年成長率最高。該地區老化的基礎設施需要維修和更換計劃,從而推動了對鋼筋混凝土材料的需求。此外,強調使用耐用和永續建築材料的嚴格建築規範和法規也促進了市場的成長。此外,先進建築技術和材料的日益採用以及基礎設施計劃投資的增加進一步推動了對混凝土增強纖維的需求。
According to Stratistics MRC, the Global Concrete Reinforcing Fiber Market is accounted for $2.46 billion in 2023 and is expected to reach $4.18 billion by 2030 growing at a CAGR of 6.8% during the forecast period. Concrete reinforcing fiber is a composite material consisting of fibers such as steel, synthetic fibers, glass, or natural fibers, added to concrete to enhance its mechanical properties. These fibers improve tensile strength, crack resistance, impact resistance, and durability of concrete structures. Its usage contributes to the development of more resilient and sustainable infrastructure while offering cost-effective solutions for reinforced concrete construction.
According to the U.S. Census Bureau, in 2022, rise in authorization for the construction of homes accelerated via 1.4 % from June 2021 to June 2022.
Growing awareness about sustainable construction
CRF helps reduce the carbon footprint and energy consumption in construction compared to traditional reinforcement methods. Its use aligns with sustainability goals by enhancing the durability and longevity of concrete structures, reducing the need for frequent repairs or replacements. As sustainability becomes a priority for developers, contractors, and governments worldwide, the demand for CRF is expected to rise, propelling the growth of the concrete reinforcing fiber market.
Compatibility issues
Compatibility issues in concrete reinforcing fiber arise from challenges in achieving optimal dispersion within different concrete mixes, particularly those with specific additives or requirements. These issues hinder uniform distribution of fibers, affecting the overall performance and structural integrity of the concrete. Consequently, it leads to concerns about the reliability and consistency of reinforced concrete structures, deterring widespread adoption in the construction industry.
Increasing infrastructure development
Increasing infrastructure development worldwide drives the demand for Concrete Reinforcing Fiber due to its efficacy in enhancing the durability and strength of concrete structures. With rising investments in projects like roads, bridges, tunnels, and buildings, there is a corresponding need for materials that can withstand the rigors of heavy usage and adverse environmental conditions. CRF offers superior crack resistance, impact resistance, and durability compared to traditional reinforcement methods like steel rebar, making it a preferred choice for modern infrastructure projects.
Quality control challenges
Quality control challenges in ensuring proper dispersion and distribution of fibers within the concrete matrix can undermine the reliability and performance of reinforced concrete structures. Inconsistent dispersion or inadequate mix design can compromise the structural integrity, leading to concerns about durability and safety. This undermines confidence in the effectiveness of concrete reinforcing fibers, potentially limiting their adoption in construction projects.
Covid-19 Impact
The covid-19 pandemic initially caused disruptions in the concrete reinforcing fiber market due to halted construction activities and supply chain interruptions. Lockdown measures and economic uncertainties led to project delays and cancellations, impacting the demand for construction materials. However, as economies gradually reopened and governments initiated infrastructure stimulus packages to revive economic growth, the market witnessed a rebound. Moreover, the increased focus on sustainable and resilient construction practices post-pandemic has further boosted the adoption of CRF in infrastructure projects.
The pre-blended segment is expected to be the largest during the forecast period
The pre-blended segment is estimated to have a lucrative growth. Pre-blended concrete reinforcing fiber solutions offer a convenient and efficient way to enhance the performance of concrete structures. By evenly dispersing fibers throughout the concrete matrix, pre-blended solutions improve crack resistance, impact resistance, and overall durability. They are widely used across various sectors, offering contractors and engineers a reliable method to optimize concrete performance while streamlining construction processes.
The transportation infrastructure segment is expected to have the highest CAGR during the forecast period
The transportation infrastructure segment is anticipated to witness the highest CAGR growth during the forecast period. In transportation infrastructure, concrete reinforcing fibers play a vital role in enhancing the durability and longevity key structures. These fibers improve tensile strength, reduce cracking, and enhance resistance to wear and tear caused by heavy traffic and environmental factors. By reinforcing concrete in transportation projects, such fibers contribute to the overall safety and longevity of infrastructure, reducing maintenance needs and ensuring smoother and more resilient transportation networks.
Asia Pacific is projected to hold the largest market share during the forecast period due to rapid urbanization, industrialization, and infrastructure development initiatives. Countries like China, India, and Southeast Asian nations are witnessing a surge in construction activities, driving the demand for reinforced concrete materials. Additionally, stringent regulations promoting sustainable construction practices and the adoption of high-performance materials further propel market growth.
North America is projected to have the highest CAGR over the forecast period. The region's aging infrastructure necessitates renovation and replacement projects, driving demand for reinforced concrete materials. Additionally, stringent building codes and regulations emphasizing the use of durable and sustainable construction materials contribute to market growth. Moreover, the increasing adoption of advanced construction technologies and materials, coupled with growing investments in infrastructure projects, further boost the demand for concrete reinforcing fibers.
Key players in the market
Some of the key players profiled in the Concrete Reinforcing Fiber Market include BASF SE, Sika AG, Bekaert, Owens Corning, Fibercon International Inc., Propex Operating Company LLC, ABC Polymer Industries LLC, Nycon Corporation, GCP Applied Technologies Inc., Jogani Reinforcement, Euclid Chemical Company, Helix Steel and Forta Corporation.
In May 2022, Sika, a major producer of concrete, opened a new 42,600 square foot facility in Stafford, Virginia to produce concrete admixtures. The facility has two mixers that can each hold over 6,000 gallons, and can produce 50,000 tons of concrete annually. The new facility is the second-largest Sika concrete admixtures manufacturing plant in the United States.
In October 2021, Jogani Reinforcement launched polyfiber 3S new generation concrete and construction fiber for durable and crack free infrastructure in India. These microscopic reinforcement poly-fibre 3S are incomparable as it adds tensile reinforcement and offers better ductility of the mortar or concrete.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.