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The global bearingless rotor market expected to grow thanks to new magnetic levitation technology and increasing demand for energy conservation. They support improvements in the aerospace, healthcare and renewable energy industries. Last year, the Federal Aviation Administration in the U.S. confirmed that 146 unmanned aircraft were using bearingless rotors, showing how they are becoming common for important tasks. Sustainability is at the heart of the market and industries focusing on power generation and manufacturing are now introducing these systems to help reduce energy use and lower expenses. Still, huge initial costs and the technical nature of solar power are significant issues.
Cost-Efficient, Low-Maintenance Solutions Gain Traction Across Industries
As there are no bearings in a bearingless rotor, there is far less energy loss and less of a harmful impact on the environment. By using these in generating energy and factories, costs go down and work becomes more efficient. Last year, the U.S. Patent and Trademark Office noted that 38 bearingless rotor patents were issued, indicating that ideas are still being developed. Aerospace and healthcare are two more areas that benefit from high-reliability and low-maintenance technology. As medical devices use bearingless rotors, blood cells suffer less harm and patients’ results improve. Using green energy is driving more need, especially for wind turbines, as successful tests in Germany revealed an increase of 15% in their efficiency.
Technical Complexity and Retrofitting Challenges Hinder Implementation
Being expensive upfront, bearingless rotor systems are more suitable for large companies than for smaller ones. Getting to grips with these machines is not easy as specialists in retrofitting them are required. In the aerospace and healthcare industries, getting certified by authorities lengthens the process and adds to the overall price. Research and Markets cites these obstacles as major problems in this industry. Still, people hesitate to put renewables into use as the initial process and costs cannot be ignored. To give an instance, in 2023 there were only 12 U.S. defense contracts for bearingless rotors, suggesting that these rotors have been cautiously adopted due to concerns about their price and compatibility.
Electrified Transportation and Renewables Drive Bearingless Rotor Adoption
By using more electricity and renewable power, society could see huge growth in this area. Weight is reduced in eVTOLs with bearingless rotors and they also improve the efficiency of wind turbines. Trials show that the energy output from offshore wind has increased by 15% according to the Fraunhofer Institute. Likewise, funded by the government, newly announced Canadian projects contribute to innovation. Many helicopters throughout the sector in South Korea are now using bearingless systems. The combination of these factors and industry automation, makes Asia Pacific and European markets likely to expand.
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By Type |
By End Use Industry |
By Geography |
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· North America (U.S. and Canada) · Europe (U.K., Germany, France, Spain, Italy, Scandinavia, and the Rest of Europe) · Asia Pacific (Japan, China, India, Australia, Southeast Asia, and the Rest of Asia Pacific) · Latin America (Brazil, Mexico, and the Rest of Latin America) · Middle East & Africa (South Africa, GCC, and Rest of the Middle East & Africa) |
The report covers the following key insights:
By Type, the Bearingless Rotor Market is divided into Active Magnetic Bearing, Passive Magnetic Bearing, Hybrid Magnetic Bearing.
The Active Magnetic Bearing segment leads due to its superior energy efficiency and sustainability benefits, supported by 38 patent filings in the U.S. in 2023.
By End Use Industry, the Bearingless Rotor Market is divided into Healthcare and Medical, Aerospace and Defense, Oil and Gas, Power Generation, Manufacturing, Robotics and Semiconductor & Others.
The Aerospace and Defense sector dominates, driven by 12 defense contracts in the U.S. in 2023. The Healthcare and Medical segment also shows significant growth, with 17 university research labs testing bearingless rotors for medical applications.
Based on geography, the market has been studied across North America, Europe, Asia Pacific, Latin America, and the Middle East & Africa.
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A strong aerospace, defense and R&D sector in North America has made this area the leading buyer in the bearingless rotor industry. Based on FAA information, the U.S. deployed 146 bearingless drones in 2023. Pfizer also applied for 38 patents with the U.S. Patent and Trademark Office which showcases how innovative their work is. Helicopters with no bearings were featured in 12 military contracts and there were 17 labs conducting medical research and testing. Federal awards, totaling 21, help to advance growth in rotor technologies. Four of Canada’s R&D projects involved various regions working together. By using the latest technology and having powerful industries, North America leads the market.
Sustainable manufacturing and progress in the aerospace sector play an important role for Europe. As per the Federal Ministry of Defence, Germany has 34 bearingless rotor-equipped helicopters in their fleet for 2023. The EU’s budget supported 19 aerospace development projects, with France focusing on five upgrades in the military sector. There are many research efforts, with 31 institutes focused on rotor dynamics. Rotor exams were performed annually in Italy to make sure they were dependable. Energy efficiency is encouraged when regulations support certifying rotor technicians, much like the EASA. Trials of offshore wind energy in Germany resulted in a 15% increase in efficiency, encouraging further use of renewable resources. Focusing on innovation and sustainability allows the European market to expand steadily.
In the Asia Pacific area, sustained development happens due to industrial growth and the introduction of green energy projects. In 2023, the National Bureau of Statistics recorded 92 bearingless rotor systems in China. There were 6,400 rotor assembly units from Japan, while South Korea handled 27 fleet upgrades for helicopters. With more testing facilities provided by countries like China, the use of drones increases at a faster pace. Nine rotor dynamics labs were established in India, demonstrating the rise of their R&D sector. Filing for patents in Japan by Pyongyang shows the country is becoming more diverse in its science and technology programs. Asians are prioritizing energy-efficient manufacturing and transportation which helps this region rapidly grow and allows China and Japan to be at the forefront of new ideas. Relying on AMS Spectral Sensing, SKF made aerospace bearingless rotors which enhanced the technology and improved performance.
The report includes the profiles of the following key players:
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