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市場調查報告書
商品編碼
1700112
2032 年軸向馬達市場預測:按類型、馬達類型、功率、應用和地區分類的全球分析Axial Flux Motor Market Forecasts to 2032 - Global Analysis by Type (Air-Cooled Axial Flux Motor and Liquid-Cooled Axial Flux Motor), Motor Type, Power Output, Application and By Geography |
根據 Stratistics MRC 的數據,全球軸向馬達市場預計在 2025 年達到 6.186 億美元,到 2032 年將達到 13.762 億美元,預測期內的複合年成長率為 12.1%。
軸流馬達是一種馬達,其中磁通量平行於轉子軸線流動,與傳統的徑向磁通馬達相反。它採用緊湊的圓盤設計,定子和轉子圓盤軸向對齊,從而具有高功率密度和效率。這些馬達具有出色的扭矩重量比,使其成為電動車、航太和可再生能源系統等應用的理想選擇。短磁路減少了損耗並提高了性能。軸向馬達還能提高冷卻性能、減輕結構重量並節省空間,使其成為下一代電氣化和高性能行業傳統馬達的有希望的替代品。
根據國際能源總署(IEA)的數據,2023年全球電動車銷量將達到近1,400萬輛,較2022年成長35%,佔全球汽車銷量的18%。
高功率密度和效率
軸向馬達的高功率密度和效率可實現緊湊、輕巧和節能的設計,從而徹底改變市場。這些進步推動了對電動車、航太和工業應用的需求,在較小的佔地面積內提供卓越的扭力和性能。提高效率可以減少能源消耗,降低營運成本和環境影響。隨著各行各業都優先考慮永續性和性能,高功率密度軸向馬達正在獲得發展,從而刺激各個領域的技術創新和市場成長。
製造成本高
高昂的製造成本限制了大規模生產並增加了最終用戶的價格,嚴重阻礙了市場成長。複雜的設計、昂貴的原料和先進的製造技術推高了成本,使得這些馬達難以廣泛使用。這種成本障礙阻礙了中小型製造商進入市場,減緩了創新和商業化。因此,高價格會抑制需求並限制市場擴張,尤其是在成本敏感的產業。
材料和製造程序的進步
材料和製造流程的進步顯著提高了效率、功率密度和溫度控管,從而推動了軸向馬達市場的發展。高性能磁性材料和先進冷卻技術的創新使得小型、高扭矩馬達成為電動車和工業應用的理想選擇。包括 3D 列印和自動化生產在內的精密製造正在降低成本並提高可擴展性。這些進步正在推動汽車和航太領域的應用,加速向高性能電力推進系統的轉變。
複雜的設計和可擴展性問題
在軸向馬達市場,複雜的設計和可擴展性問題阻礙了大規模生產和廣泛接受。這些馬達需要先進的材料、精密的工程和專業的製造技術,這增加了生產成本。可擴展性仍然是一個問題,因為製造商難以從原型轉向大規模生產。此外,高昂的初始投資和對專業人力的需求減緩了市場進程,限制了中小企業的進入並推遲了商業化嘗試。
COVID-19的影響
由於供應鏈挑戰、生產停頓和工業活動減少,COVID-19 疫情最初擾亂了軸向馬達市場。然而,隨著對電動車(EV)和節能解決方案的需求激增,市場在疫情後復甦。政府的獎勵策略和對電氣化投資的增加加速了電氣化的採用並推動了成長。這場危機凸顯了彈性供應鏈和馬達技術創新的必要性。
預計風冷軸流馬達市場在預測期內將佔最大佔有率
由於其高功率密度、緊湊的設計和卓越的效率,風冷軸流馬達預計將在預測期內佔據最大的市場佔有率。透過減輕重量和改善溫度控管,這些馬達提高了電動車、工業自動化和航太應用的性能。簡化的冷卻可降低維護成本並提高可靠性,對製造商來說是一個有吸引力的選擇。隨著對輕量化和節能解決方案的需求不斷增加,風冷軸流馬達有望加速市場擴張。
預計航太領域在預測期內將實現最高的複合年成長率。
預計航太領域在預測期內將呈現最高的成長率。隨著航空業向電動和混合動力飛機轉型,軸向馬達提供了更高的效率、更緊湊的設計和更強大的性能。軸流馬達具有出色的扭矩重量比,使其成為下一代飛機和城市空中交通 (UAM) 的理想選擇。航太業是市場擴張和技術發展的主要驅動力,這得益於電動垂直起降 (eVTOL) 飛機和永續航空的投資不斷增加。
在預測期內,由於電動車 (EV)、工業自動化和可再生能源整合的日益普及,預計亞太地區將佔據最大的市場佔有率。這些馬達具有更高的功率密度、效率和緊湊的設計,使其成為電動車、無人機和風力發電機的理想選擇。政府獎勵、研發投入的增加以及永續交通需求的不斷成長正在進一步推動市場的發展。這種轉變正在刺激創新、減少碳排放、提高能源效率,全部區域的產業和經濟產生正面影響。
預計北美地區在預測期內將呈現最高的複合年成長率。這是因為汽車、航太和工業應用對高性能馬達的需求。這些馬達具有出色的功率密度和高效率,使其成為電動車 (EV) 和可再生能源系統的理想選擇。政府推動電氣化和永續性的措施正在進一步推動市場採用。由於材料和製造技術的進步,軸向馬達將徹底改變該地區的交通和能源領域,並推動創新和經濟成長。
According to Stratistics MRC, the Global Axial Flux Motor Market is accounted for $618.6 million in 2025 and is expected to reach $1376.2 million by 2032 growing at a CAGR of 12.1% during the forecast period. An Axial Flux Motor is an electric motor where the magnetic flux flows parallel to the rotor's axis, unlike traditional radial flux motors. It features a compact, disk-like design with stator and rotor disks positioned axially, leading to high power density and efficiency. These motors offer superior torque-to-weight ratios, making them ideal for applications like electric vehicles, aerospace, and renewable energy systems. Their shorter magnetic path reduces losses, enhancing performance. Axial flux motors also enable better cooling, lightweight construction, and space-saving integration, making them a promising alternative to conventional motors in next-generation electrification and high-performance industries.
According to the International Energy Agency (IEA), global electric car sales reached nearly 14 million in 2023, a 35% increase from 2022, representing 18% of all cars sold worldwide.
High Power Density & Efficiency
The high power density and efficiency of axial flux motors are revolutionizing the market by enabling compact, lightweight, and energy-efficient designs. These advancements drive demand in electric vehicles, aerospace, and industrial applications, offering superior torque and performance in a smaller footprint. Enhanced efficiency reduces energy consumption, lowering operational costs and environmental impact. As industries prioritize sustainability and performance, axial flux motors with high power density gain traction, fueling innovation and market growth across diverse sectors.
High Manufacturing Costs
High manufacturing costs significantly hinder the growth of the market by limiting mass production and increasing end-user prices. The complex design, expensive raw materials, and advanced manufacturing techniques drive up costs, making these motors less accessible for widespread adoption. This cost barrier discourages small and mid-sized manufacturers from entering the market, slowing innovation and commercialization. Consequently, high prices reduce demand, particularly in cost-sensitive industries, restricting market expansion.
Advancements in Materials & Manufacturing
Advancements in materials and manufacturing are significantly driving the axial flux motor market by enhancing efficiency, power density, and thermal management. Innovations in high-performance magnetic materials and advanced cooling techniques are enabling compact, high-torque motors ideal for EVs and industrial applications. Precision manufacturing, including 3D printing and automated production, is reducing costs and improving scalability. These advancements boost adoption across automotive and aerospace sectors, accelerating the transition toward high-performance electric propulsion systems.
Complex Design & Scalability Issues
Complex design and scaling problems in the axial flux motor market prevent large manufacture and broad acceptance. Production costs are raised by the need for sophisticated materials, accurate engineering, and specific manufacturing techniques for these motors. As manufacturers find it difficult to move from prototypes to large-scale production, scalability is still an issue. Furthermore, market progress is slowed by the high initial investment and specialized personnel requirements, which restrict accessibility for smaller firms and postpone commercialization attempts.
Covid-19 Impact
The COVID-19 pandemic initially disrupted the Axial Flux Motor Market due to supply chain challenges, production halts, and reduced industrial activity. However, the market rebounded as demand for electric vehicles (EVs) and energy-efficient solutions surged post-pandemic. Government stimulus packages and increased investments in electrification accelerated adoption, driving growth. The crisis highlighted the need for resilient supply chains and innovation in motor technology.
The air-cooled axial flux motor segment is expected to be the largest during the forecast period
The air-cooled axial flux motor segment is expected to account for the largest market share during the forecast period, due to its high power density, compact design, and superior efficiency. These motors enhance performance in electric vehicles, industrial automation, and aerospace applications by reducing weight and improving thermal management. Their simplified cooling mechanism lowers maintenance costs and increases reliability, making them an attractive choice for manufacturers. As demand for lightweight and energy-efficient solutions rises, air-cooled axial flux motors are poised to accelerate market expansion.
The aerospace segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the aerospace segment is predicted to witness the highest growth rate, as the industry transitions to electrification and hybrid-electric aircraft, axial flux motors provide improved efficiency, compact design, and increased performance. They are perfect for next-generation aircraft and urban air mobility (UAM) because to their excellent torque-to-weight ratio. The aerospace industry is a major driver of market expansion and technological developments due to rising investments in electric vertical take-off and landing (eVTOL) aircraft and sustainable aviation.
During the forecast period, the Asia Pacific region is expected to hold the largest market share due to advancements in electric vehicle (EV) adoption, industrial automation, and renewable energy integration. These motors offer higher power density, efficiency, and compact designs, making them ideal for EVs, drones, and wind turbines. Government incentives, increasing R&D investments, and rising demand for sustainable mobility are further propelling the market. This shift is fostering technological innovation, reducing carbon emissions, and enhancing energy efficiency, positively impacting industries and economies across the region.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, due to demand for high-performance electric motors in automotive, aerospace, and industrial applications. These motors offer superior power density and enhanced efficiency, making them ideal for electric vehicles (EVs) and renewable energy systems. Government initiatives promoting electrification and sustainability further boost market adoption. With advancements in materials and manufacturing, axial flux motors are set to revolutionize the region's transportation and energy sectors, fostering innovation and economic growth.
Key players in the market
Some of the key players profiled in the Axial Flux Motor Market include Magnax, YASA, Saietta Group, EMRAX, AVID Technology, Turntide Technologies, Danfoss Editron, DANA TM4, MAVEL, TECO Electric & Machinery, Lucchi R. Elettromeccanica, Celera Motion, Agni Motors, Protean Electric, Elaphe Propulsion Technologies, ePropelled, Tula Technology, Axiomatic Technologies, Nidec Corporation and Mahle.
In October 2024, Ashok Leyland has signed a multipronged partnership agreement with Japan-based global electric motor drives manufacturer Nidec Motor Corporation. This partnership will enable both Ashok Leyland and Nidec to develop novel e-drive motors and systems that cater to the specific needs of India's commercial vehicle industry, ensuring advanced and efficient electric mobility solutions.
In June 2024, Nidec Corporation has developed a new air suspension motor for automobiles. By utilizing its long-nurtured technologies for brake and power steering motors and other drivetrain products, Nidec Motor (Dalian) has developed this latest air suspension motor. Compact, durable, and highly responsive during start-up, this product drives the air compressor, the component that supplies the air tank with compressed air.
In August 2021, Magnax expanded its prototyping and testing capabilities in Kortrijk, Belgium, by establishing a pilot production line. The company states play an important role in accelerating the development, manufacturing and testing of prototypes of yokeless axial flux motors and power electronics.