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市場調查報告書
商品編碼
1964180
玻璃鋼管市場-全球產業規模、佔有率、趨勢、機會、預測:按類型、纖維類型、應用、地區和競爭格局分類,2021-2031年Fiberglass Pipes Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented, By Type, By Fibre Type, By Application, By Region & Competition, 2021-2031F |
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全球玻璃纖維管道市場預計將從 2025 年的 55.1 億美元快速成長到 2031 年的 100.1 億美元,複合年成長率為 10.46%。
這些管道在技術上被定義為玻璃纖維增強塑膠 (GRP) 或玻璃纖維增強環氧樹脂 (GRE),其製造過程是將高抗張強度玻璃纖維嵌入熱固性樹脂基體中。市場擴張的主要驅動力是該材料卓越的耐腐蝕性,即使在惡劣的海洋和化學環境中,其使用壽命也比傳統金屬管道更長。此外,這些管道優異的強度重量比顯著降低了安裝和運輸成本,為大型能源和水分配計劃提供了重要的經濟獎勵。
| 市場概覽 | |
|---|---|
| 預測期 | 2027-2031 |
| 市場規模:2025年 | 55.1億美元 |
| 市場規模:2031年 | 100.1億美元 |
| 複合年成長率:2026-2031年 | 10.46% |
| 成長最快的細分市場 | 玻璃鋼管 |
| 最大的市場 | 北美洲 |
儘管玻璃纖維具有這些優勢,但市場仍面臨許多障礙,例如與混凝土和PVC等常用材料相比,其較高的初始資本支出可能會阻礙成本敏感型計劃採用玻璃鋼。近期區域製造業統計也印證了這項資金限制。根據工業技術產業協會(AVK)預測,到2024年,歐洲玻璃鋼管和儲槽市場的總產量將達到10.4總合。
市場成長的主要驅動力是用水和污水基礎設施的建設,這需要解決老舊公共管網更新和滿足不斷成長的城市人口需求的迫切需求。各國政府正優先考慮長期水資源安全,大力投資建造大規模輸水管道,並優先使用玻璃纖維增強塑膠(FRP),因為FRP具有水力發電效率高和耐土壤腐蝕等優點。這一發展勢頭已在多個區域性大型計劃中得到體現。例如,根據沙烏地阿拉伯水務合作公司2025年10月發布的公告《沙烏地阿拉伯數十億裡亞爾輸水管道計劃完成融資》,一條總投資85億沙幣(約22.6億美元)的關鍵管道專案已完成融資。同樣,根據《能源與公用事業》雜誌報道,沙烏地阿拉伯國家水務局於2024年宣布了一系列總投資超過116億沙烏地里亞爾(約32億美元)的供水和衛生計劃,凸顯了巨額投資對耐用複合複合材料管道的需求。
第二個主要驅動力是石油和天然氣探勘及運輸領域日益成長的需求。營運商正尋求降低在惡劣開採環境中因金屬腐蝕而產生的成本。玻璃纖維增強環氧樹脂(GRE)管道因其能夠承受高壓環境和腐蝕性化學品,且無需昂貴的陰極防蝕,正逐漸取代碳鋼,成為越來越受歡迎的選擇。能源產業近期的採購決策清晰地反映了這一轉變。根據Future Pipe Industries公司2025年1月發布的題為“Wavistrong GRE管道訂單杜拜新計畫訂單”的新聞稿,該公司成功獲得一份為520口油井供應特殊複合材料管道的契約,成功地將客戶的規格從傳統的碳鋼轉向了先進的GRE解決方案。此類策略性轉變凸顯了該材料在提高能源基礎設施可靠性和使用壽命方面的營運優勢。
全球玻璃鋼管市場的主要障礙在於其高昂的初始資本投入,遠高於混凝土和PVC等傳統材料。儘管玻璃鋼管道具有卓越的耐久性和長期維護成本優勢,但其高昂的初始成本對於預算有限的計劃而言構成了重大的准入門檻。這種價格差異往往迫使工業基礎設施、污水處理和供水事業等領域的決策者優先考慮即時經濟效益,而非長期生命週期效益。因此,籌資策略常常回歸到更便宜的傳統材料,這限制了玻璃鋼產品的市場滲透率和銷售量成長,尤其是在經濟低度開發地區。
這些經濟限制正對製造業產出產生實際的負面影響,因為在基礎建設投資停滯不前的時期,市場僅靠初始成本難以競爭。近期行業指標清楚地顯示了高成本與市場活躍度下降之間的關聯。根據德國增強塑膠協會(AVK)的數據顯示,2024年歐洲玻璃鋼管和儲槽市場的產量較前一年下降了6.3%。這一萎縮凸顯了價格競爭壓力和融資壁壘正直接阻礙產量擴張和整體市場發展的現實。
在非開挖基礎設施維修中,紫外線固化玻璃鋼襯裡正逐漸成為修復老舊公共設施網路的主要方法,避免了傳統開挖作業帶來的干擾。這項技術使公用設施營運商能夠將結構襯裡插入現有受損管道,並利用紫外線快速固化樹脂轉注的玻璃纖維布,從而顯著縮短計劃並減少對當地社區的影響。由於其高效的運作性能,製造商正在積極提升本地生產能力,以滿足區域需求。 2025年2月,SAERTEX multiCom宣布任命中國區新任首席執行官,並任命一位新的負責人統籌其位於平湖市的生產基地。該執行官將負責監督SAERTEX襯裡的生產,特別是面向中東和亞太地區不斷成長的市場。
同時,複合材料管道克服金屬管道技術缺陷的能力正推動其進入氫能輸送網路市場。與易受氫脆和氫滲透影響的碳鋼不同,先進複合材料管道具有化學惰性,使其成為安全輸送高壓氫氣和碳捕獲應用的關鍵材料。這種向綠色能源基礎設施的轉型正吸引著尋求擴大複合材料管道技術應用的創業投資的廣泛關注。根據2024年9月TechTour的報導《氫能管線製造商Strohm BV融資3,000萬歐元加速資金籌措轉型》,Strohm已籌集3,000萬歐元擴大其熱塑性複合材料管線(TCP)技術。此舉旨在支持新興的氫能和碳捕獲、利用與封存(CCUS)領域。
The Global Fiberglass Pipes Market is projected to surge from USD 5.51 Billion in 2025 to USD 10.01 Billion by 2031, expanding at a CAGR of 10.46%. These pipes, technically characterized as Glass Reinforced Plastics (GRP) or Glass Reinforced Epoxy (GRE), are created by embedding high-tensile glass fibers within a thermosetting resin matrix. Market expansion is chiefly underpinned by the material's exceptional resistance to corrosion, which ensures a longer service life in harsh marine and chemical settings compared to conventional metal infrastructure. Additionally, the superior strength-to-weight ratio of these conduits drastically reduces installation and transportation costs, acting as a key economic incentive for major energy and water distribution initiatives.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 5.51 Billion |
| Market Size 2031 | USD 10.01 Billion |
| CAGR 2026-2031 | 10.46% |
| Fastest Growing Segment | GRP Pipes |
| Largest Market | North America |
Despite these advantages, the market encounters significant hurdles due to higher initial capital outlays compared to commodity materials like concrete or PVC, which can discourage adoption in cost-sensitive projects. This financial constraint is evident in recent regional manufacturing statistics. According to the 'Industrievereinigung Verstarkte Kunststoffe (AVK)', in '2024', the production volume for the GRP pipes and tanks market segment in Europe totaled 104,000 tonnes.
Market Driver
A primary engine for market growth is the development of municipal water and wastewater infrastructure, necessitated by the urgent requirement to replace deteriorating utility networks and accommodate expanding urban populations. Governments are prioritizing long-term water security by allocating significant capital for large-scale transmission pipelines, favoring fiberglass for its hydraulic efficiency and resistance to soil corrosion. This momentum is illustrated by major regional projects; for instance, according to the Saudi Water Partnership Company, October 2025, in the 'Financial Close reached for multibillion Water Transmission Pipeline Project in Saudi Arabia' announcement, financial close was achieved on a critical pipeline with a total investment of SAR 8.5 billion ($2.26 billion). Similarly, according to Energy & Utilities, in 2024, Saudi Arabia's National Water Company revealed a package of water and sanitation projects worth over SAR 11.6 billion ($3.2 billion), highlighting the massive financial commitment driving demand for durable composite piping.
The second major driver is the escalating demand within oil and gas exploration and transportation, where operators aim to reduce costs linked to metallic corrosion in harsh extraction settings. Glass Reinforced Epoxy (GRE) pipes are increasingly preferred over carbon steel because they withstand high-pressure environments and aggressive chemicals without needing costly cathodic protection. This transition is highlighted by recent procurement decisions in the energy sector. According to Future Pipe Industries, January 2025, in the 'New Project Awarded for supplying Wavistrong GRE pipelines in Dubai' press release, the firm won a contract to provide specialized composite pipelines for 520 wells, successfully shifting the client's specifications from traditional carbon steel to advanced GRE solutions. Such strategic shifts confirm the material's operational benefits in boosting the reliability and lifespan of energy infrastructure.
Market Challenge
The primary obstacle restraining the Global Fiberglass Pipes Market is the elevated initial capital expenditure required compared to standard materials like concrete and PVC. Although fiberglass pipes provide superior durability and reduced maintenance costs over time, their higher upfront price poses a significant entry barrier for projects with tight budgets. This price gap often compels decision-makers in industrial infrastructure, sewage, and municipal water sectors to prioritize immediate fiscal savings rather than long-term lifecycle advantages. As a result, procurement strategies frequently revert to less expensive legacy materials, limiting the market penetration and volume growth of fiberglass options, especially in economically constrained regions.
This economic limitation has a tangible negative effect on manufacturing output, as the market finds it difficult to compete based solely on initial costs during infrastructure slowdowns. The link between high costs and diminished market activity is clear in recent industry metrics. According to the 'Industrievereinigung Verstarkte Kunststoffe (AVK)', in '2024', the market segment for GRP pipes and tanks in Europe experienced a production decline of 6.3% compared to the previous year. This contraction highlights how competitive pricing pressures and financial barriers directly impede production volumes and overall market expansion.
Market Trends
The utilization of UV-cured GRP liners for trenchless infrastructure rehabilitation is emerging as a leading method for repairing aging municipal utility networks without the disruption caused by traditional excavation. This technology enables utilities to insert structural liners into existing damaged conduits and cure the resin-impregnated glass fiber fabric rapidly using ultraviolet light, thereby drastically cutting project timelines and community disturbance. This operational efficiency is prompting manufacturers to bolster local production capacities to satisfy regional needs. According to SAERTEX multiCom, February 2025, in the 'New Managing Director in China introduced' announcement, the company named a new executive to lead its production facility in Pinghu, specifically to oversee the manufacturing of SAERTEX LINERS for the expanding markets in the Middle East and Asia-Pacific.
Simultaneously, the market is branching into hydrogen energy transport networks, motivated by the material's capacity to overcome technical flaws found in metallic pipelines. Unlike carbon steel, which is prone to hydrogen embrittlement and permeation, advanced composite pipes provide a chemically inert solution crucial for the safe transmission of high-pressure hydrogen and carbon capture applications. This pivot toward green energy infrastructure is drawing significant venture capital aimed at scaling composite pipe technologies. According to TechTour, September 2024, in the 'Hydrogen Pipeline Maker Strohm B.V. Raises €30M to Accelerate Growth for Energy Transition' article, Strohm obtained €30 million in funding to expand its Thermoplastic Composite Pipe (TCP) technology specifically to support the emerging hydrogen and Carbon Capture, Utilization, and Storage (CCUS) sectors.
Report Scope
In this report, the Global Fiberglass Pipes Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Fiberglass Pipes Market.
Global Fiberglass Pipes Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: