![]() |
市場調查報告書
商品編碼
1734892
2032 年空間框架市場預測:按材料類型、結構類型、形狀、連接類型、管道類型、尺寸、應用和地區進行的全球分析Space Frame Market Forecasts to 2032 - Global Analysis By Material Type (Steel, Aluminium and Metal Alloys), Structure Type (Single Layer, Double Layer and Triple Layer), Shape, Connection Type, Tube Type, Size, Application and By Geography |
根據 Stratistics MRC 的數據,2025 年全球空間框架市場價值為 11.2912 億美元,預計到 2032 年將達到 25.9124 億美元,預測期內複合年成長率為 12.6%。
空間框架,也稱為空間結構,是由相互連接的柱子組成的3D結構框架,這些柱子以幾何圖案排列,用於均勻分佈載荷。與傳統的2D桁架系統不同,空間框架只需少量內部支撐即可跨越大面積區域,使其成為體育場、機場航站大樓、展覽中心和屋頂等現代建築和工程應用的理想選擇。空間框架通常由鋼或鋁製成,具有優異的強度重量比、剛度和視覺適應性。
根據國際能源總署(IEA)的數據,建築營運佔全球能源相關排放的26%,整個建築業約佔能源系統總排放的三分之一。
對廣域結構的需求日益增加
空間框架徹底改變了工業建築和公共基礎設施的設計,因為它們可以跨越很長的距離,而無需中間支撐。傳統的樑柱系統通常需要額外的支撐,從而減少了內部的可用空間。另一方面,空間框架可以在100公尺或更長的距離上創造清晰的內部空間,使其成為體育場館、火車站、禮堂、飛機庫等場所的理想選擇。此外,隨著多功能商業空間和公共區域的日益流行,建築師和工程師也開始採用空間框架,因為它們具有結構效率高、開放性強的特徵。
初始成本高,投資障礙多
儘管空間框架結構具有長期的結構和營運優勢,但其初始成本明顯高於傳統框架系統。計劃初期需要進行專門的設計、工程分析和預製,這需要大量資金。此外,空間框架結構中常用的鋁和高強度鋼等材料的價格會隨著全球大宗商品市場波動,這加大了財務預測和預算的難度。
航空航太領域的需求不斷成長
機場基礎設施的快速發展,尤其是在中東、印尼和印度等開發中國家,推動了對空間框架結構的需求。對於機場航站大樓、機庫、控制塔和候機大廳等經常需要大跨度空間的建築,空間框架在技術和經濟上都是理想的選擇。此外,國際民航組織(ICAO)所倡導的永續機場設計以及國際航空運輸協會(IATA)預測到2040年航空旅客數量將翻倍等國際舉措,可能會活性化新建設和維修。
替代技術與傳統系統之間的競爭
儘管空間框架結構擁有許多優勢,但它仍與其他大跨距結構體系(例如鋼筋混凝土殼體、鋼骨桁架和預製建築(PEB))競爭激烈。這些替代方案的通用特點是工程要求更簡單、承包商更容易取得以及初始成本更低。此外,斜拉屋頂和張拉壓結構等混合體系的發展,為建築師提供了更多輕量化建築的選擇。如果這些流行或流行的體係無法成功推廣或持續創新,它們將面臨超越空間框架結構的風險。
新冠疫情對空間框架市場造成了重大衝擊,導致建築施工停頓、基礎設施計劃延期以及全球供應鏈中斷,尤其是在鋼鐵和鋁等原料的採購方面。封鎖和勞動力短缺使現場組裝和安裝更加困難,而預算緊張和不確定的經濟狀況導致許多大型計劃被推遲或取消,尤其是在商業房地產、體育和航空等行業。然而,隨著獎勵策略推動的基礎設施投資以及對模組化、易於安裝系統的重新關注,洪災後的恢復使人們對用於建造堅固高效建築的空間框架重新燃起了興趣。
預計鋼鐵業將成為預測期內最大的產業
預計在預測期內,鋼材板塊將佔據最大的市場佔有率。鋼結構空間框架因其卓越的承重能力和較長的使用壽命,是體育場、機場航站大樓和工業建築等大跨距結構的理想選擇。其易得性、可回收性和易於加工的特性進一步鞏固了其市場主導地位。鋼材還具有快速組裝和精確設計的優勢,從而降低了人事費用並縮短了施工時間。此外,鋼材仍然是公共和私人機構資助的大型基礎設施和商業計劃的首選材料,這進一步鞏固了其在空間框架市場的主導地位。
預計在預測期內,圓頂屋頂部分將見證最高的複合年成長率。
預計在預測期內,穹頂屋頂市場將實現最高成長率。由於其卓越的結構完整性和視覺吸引力,穹頂屋頂是體育場、展覽中心和機場航站大樓等大跨度結構的理想選擇。它們廣泛應用於公共和商業基礎設施計劃,因為它們在提供大型無柱空間的同時,也保持了強度和穩定性。建築材料和技術的進步也帶來了更經濟、更有效率的穹頂屋頂設計,也推動了市場需求的成長。
預計亞太地區將在預測期內佔據最大的市場佔有率。中國、印度和東南亞等國家的大規模基礎建設和快速都市化是市場擴張的促進因素。體育場、購物中心和機場等大型建築計劃正在推動市場擴張,因為空間框架結構提供了一種輕盈、耐用且美觀的解決方案。此外,政府項目和不斷增加的基礎設施支出進一步支持了該地區對空間框架建築的需求。
預計中東和非洲地區在預測期內的複合年成長率最高。這一成長主要得益於基礎建設投資的增加,尤其是在沙烏地阿拉伯和阿拉伯聯合大公國等國家。該地區對體育場、展覽中心和交通樞紐等大型建築計劃的重視,推動了對空間框架結構的需求。此外,該地區對永續建築技術和現代建築解決方案的關注也推動了空間框架結構在該地區的應用日益成長。
According to Stratistics MRC, the Global Space Frame Market is accounted for $1129.12 million in 2025 and is expected to reach $2591.24 million by 2032 growing at a CAGR of 12.6% during the forecast period. A space frame, sometimes referred to as a space structure, is a three-dimensional structural framework made up of interconnected struts arranged in a geometric pattern to distribute loads evenly. Space frames are perfect for modern architectural and engineering applications like stadiums, airport terminals, exhibition halls, and roofs because they can span large areas with little internal support, unlike traditional two-dimensional truss systems. Space frames, which are mostly made of steel or aluminum, provide excellent strength-to-weight ratios, stiffness, and visual adaptability.
According to the International Energy Agency (IEA), building operations account for 26% of global energy-related emissions, while the entire buildings sector represents around one-third of total energy system emissions.
Growing need for wide-spread structures
The design of industrial buildings and public infrastructure has been completely transformed by space frames' capacity to span great distances without the need for intermediary supports. Conventional beam and column systems frequently call for extra supports, which reduces the amount of interior usable space. On the other hand, space frames can produce clear interior spaces over distances greater than 100 meters, making them perfect for places like sports arenas, train stations, auditoriums, and airplane hangars. Furthermore, architects and engineers are increasingly requesting space frames for their structural efficiency and openness as a result of the growing trend toward multi-use commercial spaces and public areas.
High start-up costs and obstacles to investment
The initial costs of space frames are substantially higher than those of conventional framing systems, despite the fact that they provide long-term structural and operational benefits. Early in a project, a significant amount of capital is required due to the specific design, engineering analysis, and prefabrication requirements. Moreover, the price of materials like aluminum or high-strength steel, which are frequently used in space frame construction, varies according to global commodity markets, making financial forecasting and budgeting even more difficult.
Growing need in the aviation and aerospace sector
The need for space frame structures is being driven by the quick development of airport infrastructure, particularly in developing nations like the Middle East, Indonesia, and India. Space frames are both technically and financially ideal for the large clear-span areas that are frequently needed for airport terminals, hangars, control towers, and concourses. Additionally, there will be a lot of new construction and renovation activity due to international initiatives like the ICAO's push for sustainable airport design and IATA's prediction that air travel will double by 2040.
Alternative technologies and traditional systems' competition
Despite their benefits, space frames are fiercely rivaled by other long-span structural systems such as reinforced concrete shells, steel trusses, and pre-engineered buildings (PEBs). Simpler engineering requirements, more contractor availability, and lower initial costs are common features of these alternatives. Furthermore, architects now have more options for lightweight construction owing to the development of hybrid systems like cable-supported roofs and tension-compression structures. These more popular or trendier systems run the risk of surpassing space frames if they are not successfully promoted or continuously innovated.
The COVID-19 pandemic caused major disruptions to the space frame market by stopping construction, postponing infrastructure projects, and disrupting global supply chains, especially when it came to sourcing raw materials like steel and aluminium. Lockdowns and a lack of workers made on-site assembly and installation even more difficult, and tight budgets and uncertain economic conditions caused many large-scale projects, particularly in industries like commercial real estate, sports, and aviation, to be postponed or cancelled. However, the post-pandemic recovery has rekindled interest in space frames for robust and effective construction, owing to stimulus-backed infrastructure investments and a renewed focus on modular, easily installable systems.
The steel segment is expected to be the largest during the forecast period
The steel segment is expected to account for the largest market share during the forecast period. Steel space frames are perfect for long-span structures like stadiums, airport terminals, and industrial buildings because of their exceptional load-bearing capacity and longevity. Its market dominance is further strengthened by its availability, recyclability, and ease of fabrication. Steel also enables quick assembly and accurate engineering, which cuts down on labor expenses and construction time. Moreover, steel's dominance in the space frame market is further supported by the fact that it continues to be the material of choice for major infrastructure and commercial projects funded by both public and private organizations.
The dome roofs segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the dome roofs segment is predicted to witness the highest growth rate. Dome roofs are perfect for large-span structures like stadiums, exhibition halls, and airport terminals because of their remarkable structural integrity and visual appeal. Their extensive use in public and commercial infrastructure projects is a result of their capacity to provide large, column-free areas while retaining strength and stability. Improvements in building materials and technologies, which makes it possible to create dome roof designs that are more economical and effective, are also driving this demand.
During the forecast period, the Asia Pacific region is expected to hold the largest market share. driven by major infrastructure development and fast urbanization in nations like China, India, and Southeast Asia. Large-scale construction projects like stadiums, commercial complexes, and airports, where space frames provide lightweight, long-lasting, and aesthetically beautiful solutions, are driving this expansion. Additionally, the need for space frame buildings in the area is further supported by government programs and higher infrastructure expenditures.
Over the forecast period, the Middle East & Africa region is anticipated to exhibit the highest CAGR. This growth is being propelled by rising infrastructure development investments, especially in nations like Saudi Arabia and the United Arab Emirates. Space frame structures are in high demand due to the region's emphasis on large-scale construction projects like stadiums, exhibition centers, and transportation hubs. Furthermore, supporting the expanding use of space frames in the area is the MEA's focus on sustainable building techniques and contemporary architectural solutions.
Key players in the market
Some of the key players in Space Frame Market include Hindustan Alcox Limited, Gossamer Space Frames, LLC, Pillow Space Frame Ltd., Delta Structures, Inc., MERO-TSK International GmbH & Co., KG, CST Industries, Inc., Lindner Group, Octamec Inc, DSI Spaceframes Inc, Triocon Space Frame Technologies Pvt. Ltd, Xuzhou LF Engineering & Construction Co., Levstal Group and Prisma Metal Industry L.L.C.
In November 2024, DSI Aerospace and Frontgrade Technologies signed an agreement at Space Tech Expo to develop Frontgrade's SpaceStor(TM) 2TB Mass Memory Unit. After DSI completes design of the MMU, Frontgrade will assemble and test at its Colorado, U.S. facility, and serve as the exclusive storefront for SpaceStor in North America.
In September 2024, Lindner Prater firms shrink losses. The two companies that form envelope specialist Lindner Prater have narrowed their pre-tax losses to a combined £3.1m. Lindner Prater Ltd, whose 2023 projects included Everton FC's new stadium, the Co-op Live arena (pictured) and Gatwick Airport railway station, posted a pre-tax loss of £3m for the period, which was down from £8.8m in the year before.
In November 2023, Cell Signaling Technology and Amoy Diagnostics Co., Ltd. announced the expansion of their ongoing partnership for companion diagnostic (CDx) development in China. As the use of precision oncology therapeutics continues to advance in China, the partnership will provide AmoyDx with access to additional, highly validated CST(R) antibodies against critical CDx targets that will support the development of diagnostic assays used to identify patients for targeted therapeutics.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.