市場調查報告書
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1530869
2030 年玻璃纖維市場預測:按產品、應用、最終用戶和地區分類的全球分析Glass Fiber Market Forecasts to 2030 - Global Analysis By Product, Application, End User and By Geography |
根據Stratistics MRC的數據,2024年全球玻璃纖維市場規模為241.5億美元,預計預測期內複合年成長率為7.5%,到2030年將達到372.7億美元。
玻璃纖維又稱為玻璃纖維,是一種由極細玻璃纖維製成的多功能材料。這些纖維通常被編織成墊子或織物,並與樹脂粘合以形成堅固、輕質的複合材料。玻璃纖維因其高拉伸強度、柔韌性、耐熱性、耐腐蝕性等優異的機械性質而被廣泛應用於各行業。
根據美國人口普查局的數據,2024 年 2 月的建築支出比 2023 年 2 月的預測增加了 10.7%。據國際貿易管理局稱,2021年至2025年「十四五」期間,中國將在新基礎設施上支出約27兆美元,預計總金額為4.2兆歐元。
風力發電設備增加
風力發電系統安裝數量的不斷增加正在推動玻璃纖維技術的重大進步。玻璃纖維是風力發電機葉片的關鍵部件,受益於蓬勃發展的可再生能源產業推動的持續研究和開發。這些纖維以其強度、耐用性和輕盈而聞名,對於生產更長、更有效率的渦輪葉片至關重要。隨著風力發電機變得越來越高,並且葉片越來越長,以在更高海拔捕獲更高的風速,對先進玻璃纖維複合材料的需求也在增加。此外,玻璃纖維技術的創新包括成分增強,例如採用更堅固的材料和改進的製造程序,以實現更高的性能和耐用性標準。
原物料價格波動
原料價格波動是玻璃纖維產業面臨的重大挑戰。玻璃纖維由矽砂、石灰石和其他化學品等原料製成,其價格可能會根據全球經濟狀況、供應鏈中斷和地緣政治因素而波動。這些波動直接影響生產成本,使製造商難以預測和穩定成本。然而,玻璃纖維行業的公司面臨更大的營運風險,包括潛在的利潤壓力和財務不穩定。
都市化和基礎設施發展
由於玻璃纖維用途廣泛且耐用,都市化和基礎設施發展正在推動對玻璃纖維的需求。隨著城市的擴張,越來越需要更強、更輕、更有彈性的材料來建造建築物、道路、橋樑和其他關鍵基礎設施。玻璃纖維由細玻璃纖維組成,以其高強度重量比以及耐腐蝕和耐候性而聞名,使其成為增強建築中使用的混凝土、塑膠和複合材料的理想材料。此外,對永續性的日益重視正在加速玻璃纖維的採用,因為它有助於使結構更加節能和環保。玻璃纖維能夠提高建築物和基礎設施的結構完整性,同時降低維護成本,進一步凸顯了其在現代城市發展中的價值。
健康和安全問題
健康和安全問題是玻璃纖維產業的主要障礙。玻璃纖維的製造和處理可能涉及接觸矽塵等有害物質,如果不採取適當的預防措施,可能會導致矽肺等呼吸道疾病。玻璃纖維製造過程通常需要高溫和使用化學品,如果不嚴格遵守安全通訊協定,工人可能面臨燒燙傷和化學品暴露的風險。然而,如果不使用適當的處理技術和防護設備,玻璃纖維的物理特性(例如其精細、鋒利的結構)也會導致皮膚發炎和傷害。
COVID-19大流行對玻璃纖維產業產生了重大影響。最初,供應鏈中斷導致原料和製造流程的交付延遲,導致產量下降。旅行限制和封鎖進一步加劇了這些挑戰,影響了勞動力可用性和營運連續性。疫情期間,全球經濟的不確定性影響了需求模式,影響了玻璃纖維產品的市場動態。然而,疫情也加速了數位轉型,刺激了遠距工作技術和產業內數位化的創新。
高性能玻璃纖維領域預計將在預測期內成為最大的領域
預計高性能玻璃纖維領域將在預測期內成為最大的領域。與主要用作隔熱材料和增強材料的傳統玻璃纖維不同,高性能玻璃纖維旨在滿足更高的強度、耐用性和多功能性標準。該領域專注於透過先進的製造程序和創新材料增強玻璃纖維的機械和性能特性。此外,透過添加特殊的塗層和添加劑,或透過改變纖維本身的成分,製造商可以客製化這些纖維,以滿足現代技術進步所要求的特定性能要求。
光纖產業預計在預測期內複合年成長率最高
預計光纖產業在預測期內複合年成長率最高。光纖最初是為通訊而開發的,其無與倫比的遠距、高速傳輸資料和最小訊號損失的能力現在使其在醫療保健、航太和汽車等各種行業中變得至關重要。這種需求推動了玻璃纖維製造的不斷進步,重點是提高強度、靈活性和傳輸能力。材料科學和製造流程的創新正在生產比以往更薄、更輕、更耐用的光纖,將其用途擴展到傳統應用之外。
在整個估計期間,北美地區佔據了最大的市場佔有率。該地區越來越多的公司正在採用永續的做法,例如使用回收材料和減少生產過程中的能源消耗。這項變化不僅解決了環境問題,也契合了消費者對環保產品日益成長的偏好。此外,永續性的努力正在推動該領域的創新,從而導致更高效的製造技術的開發和生物基材料的引入。
由於永續和節能的建築實踐,歐洲地區預計將在預測期內保持盈利成長,玻璃纖維因其輕質和耐用性而受到讚賞。提高建築安全標準的嚴格監管要求正在推動玻璃纖維材料的採用,與傳統替代品相比,玻璃纖維材料具有卓越的強度和耐火性。此外,歐洲各地旨在實現都市區現代化和擴張的基礎設施計劃投資增加,進一步增加了混凝土加固和隔熱材料等應用中對玻璃纖維複合材料的需求。
According to Stratistics MRC, the Global Glass Fiber Market is accounted for $24.15 billion in 2024 and is expected to reach $37.27 billion by 2030 growing at a CAGR of 7.5% during the forecast period. Glass fiber, also known as fiberglass, is a versatile material composed of extremely fine fibers of glass. These fibers are typically woven into a mat or cloth and bound together with a resin to create a strong and lightweight composite material. Glass fiber finds extensive use in various industries due to its excellent mechanical properties, including high tensile strength, flexibility, and resistance to heat and corrosion.
According to the United States Census Bureau, construction spending in February 2024 grew by 10.7% from February 2023 estimate. According to the International Trade Administration, approximately USD 27 trillion will be spent on new infrastructure in China during the 14th Five-Year Plan between 2021 and 2025, with an estimated value of EUR 4.2 trillion.
Rising wind energy installations
The increasing installations of wind energy systems are driving substantial advancements in glass fiber technology. Glass fiber, a crucial component in wind turbine blades, is benefiting from ongoing research and development spurred by the booming renewable energy sector. These fibers, known for their strength, durability, and light weight, are essential for manufacturing longer and more efficient turbine blades. As wind turbines grow taller and their blades longer to capture higher wind speeds at greater altitudes, the demand for advanced glass fiber composites intensifies. Furthermore, innovations in glass fiber technology include enhancements in composition, such as incorporating stronger materials or refining manufacturing processes to achieve higher performance and durability standards.
Volatility in raw material prices
Volatility in raw material prices poses a significant challenge to the glass fiber industry. Glass fibers are manufactured from raw materials such as silica sand, limestone, and other chemicals, whose prices can fluctuate due to global economic conditions, supply chain disruptions, and geopolitical factors. These fluctuations directly impact production costs, making it difficult for manufacturers to predict and stabilize their expenses. However, businesses in the glass fiber sector face increased operational risks, including potential margin squeezes and financial instability.
Urbanization and infrastructure development
Urbanization and infrastructure development are driving the demand for glass fiber due to its versatile applications and durability. As cities expand, there is a growing need for stronger, lighter, and more resilient materials to construct buildings, roads, bridges, and other critical infrastructure. Glass fiber, composed of fine strands of glass, is renowned for its high strength-to-weight ratio and resistance to corrosion and weathering, making it ideal for reinforcing concrete, plastics, and composites used in construction. Moreover, the increasing emphasis on sustainability is boosting the adoption of glass fiber, as it can contribute to making structures more energy-efficient and environmentally friendly. Its ability to enhance the structural integrity of buildings and infrastructure while reducing maintenance costs further underscores its value in modern urban development.
Health and safety issues
Health and safety issues are significant obstacles hindering the glass fiber industry. The production and handling of glass fibers involve exposure to potentially harmful substances such as silica dust, which can cause respiratory problems like silicosis if adequate precautions are not taken. The process of manufacturing glass fibers often requires high temperatures and the use of chemicals, posing risks of burns and chemical exposures to workers if safety protocols are not strictly followed. However, the physical properties of glass fibers, such as their fine and sharp structure, can also lead to skin irritation and injury if proper handling techniques and protective gear are not used.
The COVID-19 pandemic significantly impacted the glass fiber industry. Initially, disruptions in supply chains caused delays in raw material deliveries and manufacturing processes, leading to reduced production outputs. Travel restrictions and lockdowns further exacerbated these challenges, affecting workforce availability and operational continuity. Fluctuating demand patterns due to global economic uncertainties during the pandemic affected the market dynamics of glass fiber products. However, the pandemic also prompted innovations in remote work technologies and digitalization efforts within the industry, accelerating digital transformation initiatives.
The Performance Glass Fiber segment is expected to be the largest during the forecast period
Performance Glass Fiber segment is expected to be the largest during the forecast period. Unlike traditional glass fibers used primarily for insulation and reinforcement, Performance Glass Fibers are engineered to meet higher standards of strength, durability, and versatility. This segment focuses on enhancing the mechanical properties and performance characteristics of glass fibers through advanced manufacturing processes and innovative materials. Moreover, by incorporating specialized coatings, additives, or altering the fiber composition itself, manufacturers can tailor these fibers to meet specific performance requirements demanded by modern technological advancements.
The Optical Fibers segment is expected to have the highest CAGR during the forecast period
Optical Fibers segment is expected to have the highest CAGR during the forecast period. Originally developed for telecommunications, optical fibers are now indispensable in various industries such as healthcare, aerospace, and automotive due to their unparalleled ability to transmit data over long distances at high speeds with minimal signal loss. This demand has driven continuous advancements in glass fiber manufacturing, focusing on improving strength, flexibility, and transmission capacity. Innovations in material science and manufacturing processes have led to the production of optical fibers that are thinner, lighter, and more durable than ever before, expanding their applications beyond traditional uses.
North America region commanded the largest share of the market throughout the extrapolated period. Companies are increasingly adopting sustainable practices, such as using recycled materials and reducing energy consumption during production processes throughout the region. This shift not only addresses environmental concerns but also aligns with growing consumer preferences for eco-friendly products. Additionally, sustainability initiatives are driving innovation within the sector, leading to the development of more efficient manufacturing techniques and the introduction of bio-based materials.
Europe region is projected to hold profitable growth during the forecasted period due to sustainable and energy-efficient construction practices, where glass fibers are valued for their lightweight and durable properties. Stringent regulatory requirements for enhanced safety standards in construction have bolstered the adoption of glass fiber materials, which offer superior strength and fire resistance compared to traditional alternatives. Moreover, the increasing investments in infrastructure projects across Europe, aimed at modernizing and expanding urban areas, further amplify the demand for glass fiber composites in applications such as reinforcement materials for concrete and insulation.
Key players in the market
Some of the key players in Glass Fiber market include AGY Holding Corporation, Ashland Global Holdings Inc, BGF Industries, Inc, Celanese Corporation, Chomarat Group, Hexcel Corporation, KCC Corporation, Montex Glass Fibre Industries Pvt. Ltd, Nippon Electric Glass Co.,Ltd and PPG Industries.
In October 2023, Ahlstrom (a manufacturer of fiber-based materials) introduced its new glass fiber tissue line for high-performance building materials. As the market shifts toward sustainable, high-performance building materials, Ahlstrom continues expanding its glass fiber tissue businesses and strengthening its manufacturing operations worldwide with the completion of a significant investment at its manufacturing facility in Madisonville, Kentucky, the United States.
In September 2022, SABIC, a leading name in the glass fiber products space, announced the launch of its new glass-fiber reinforced polypropylene compounds for structural applications in the automotive industry.
In August 2022, Owens Corning and Pultron Composites collaborated to manufacture fiberglass rebar. The joint venture between the companies will provide them with more sustainable product solutions. Thus, the companies launched PINKBAR Fiberglas Rebar, used in flatwork and residential applications, and MATEENBAR Fiberglas Rebar, used in heavy-load structural applications in newer markets.