市場調查報告書
商品編碼
1383461
到 2030 年全球超導性製冷機市場預測:按類型、應用和地區分類的全球分析Cryocooler for Superconductor Market Forecasts to 2030 - Global Analysis By Type, Application and by Geography |
根據 Stratistics MRC 的數據,全球超導性冷凍機市場在預測期內將以 8.7% 的年複合成長率成長。
超導材料通常使用稱為低溫冷卻器的關鍵冷卻裝置保持在極低的溫度下,低於它們表現出零電阻的溫度。此外,這些微型設備使用各種技術(包括斯特林設備和吉福德-麥克馬洪循環)有效地去除熱量並冷卻超導性。這使得核磁共振造影系統、粒子加速器和量子運算等設備中的超導性能夠以穩定的能源效率運作。
根據 Proof Point 報告,內部威脅的平均成本為 1,538 萬美元,年度影響 34% 的企業。惡意相關人員通常具有優勢,因為他們熟悉組織的系統和流程,這使他們更容易繞過安全措施而不被發現。
透過持續的研究和開發工作,超導材料正在尋找新的實際應用,包括發現新的高溫超導體。科學研究、能源儲存、發電和運輸都使用這些材料。此外,這些應用的有效功能是透過低溫冷卻器實現的,這對於將超導體保持在臨界溫度至關重要。
採購、安裝和維護製冷機,尤其是用於超導應用的製冷機,可能涉及大量的初期成本。這可能會讓一些潛在用戶望而卻步,尤其是那些預算緊張的用戶。此外,低溫冷卻系統的採用可能會受到此類初期成本的限制。
與量子計算和量子通訊相關的技術不僅在不斷發展,而且也變得更容易被企業和學術機構所利用。這些量子技術的核心—超導性量子位元,具有很高的冷卻需求。這種擴張使製冷機製造商有機會滿足這些需求。此外,隨著量子應用從實驗階段發展到商業化階段,低溫冷卻器階段需要長時間保持超低溫,從而帶來重大的長期市場機會。
許多替代冷卻技術,包括機械冷凍和熱電冷卻,正在不斷開發以與低溫冷卻器競爭。此外,這些替代技術可能提供更實惠或更節能的解決方案,特別是在某些應用中,因此需要持續創新和差異化,對冷凍機造成競爭威脅。
COVID-19大流行對超導應用冷凍機市場產生了各種影響。供應鏈暫時中斷,計劃被推遲,一些公司經歷了財務不確定性,但低溫冷卻器在醫療保健等關鍵行業(低溫研究和核磁共振造影系統需要低溫冷卻器)的重要性也凸顯出來。這場大流行加速了遠端維護和監控系統的採用,使低溫冷卻器能夠在封鎖期間繼續運作。此外,由於超導性材料的研發仍在繼續,這表明未來市場成長的潛力。
吉福德-麥克馬洪製冷機領域通常佔據最大的市場佔有率。超導性材料通常使用吉福德-麥克馬洪製冷機進行冷卻,特別是在核磁共振造影系統和科學研究等應用中。這些低溫冷卻器以其可靠性、有效性和在超導性零件低溫維護中的廣泛應用而聞名。此外,它還採用閉迴路冷凍循環運作。它們的成本效益和高性能使其成為許多行業的熱門選擇,從而佔據了主導市場佔有率。
在冷凍機市場,量子計算預計將以超導性應用中最高的年複合成長率成長。超導性量子位元需要極低的溫度才能發揮作用,對於量子計算至關重要。隨著量子計算迅速從研究轉向現實應用,對低溫冷卻器保持極低溫度的需求可能會顯著增加。此外,市場對尖端低溫冷卻解決方案的需求正在推動量子技術的可及性和商業性可行性的提高,該領域具有巨大的成長潛力。
包括美國和加拿大在內的北美地區預計將佔據全球超導性應用冷凍機市場的最大佔有率。其主要原因是對核磁共振造影系統和其他醫學成像技術的大量投資,以及該地區在量子計算研究和開發方面的領先地位。此外,北美的航太和國防工業率先在各種應用中使用低溫冷卻器,進一步鞏固了其在市場上的主導地位。
據預測,全球超導性冷凍機市場年複合成長率最高的是亞太地區。這是由於該地區不斷增加的研發支出、快速的技術進步以及超導材料在電子、能源和醫療保健等各個領域的廣泛使用。此外,隨著亞太地區在太空探索、量子計算和醫學影像處理等領域的不斷增加,對將超導零件維持在極低溫下的製冷機的需求預計將激增。預計這將推動市場高速成長。
According to Stratistics MRC, the Global Cryocooler for Superconductor Market is growing at a CAGR of 8.7% during the forecast period. Superconducting materials are typically kept at extremely low temperatures, below the temperature at which they exhibit zero electrical resistance, using vital cooling devices called cryocooler. Moreover, these tiny devices efficiently remove heat and cool superconductors using a range of techniques, such as Stirling devices and Gifford-McMahon cycles. This enables the superconductors in devices such as MRI machines, particle accelerators, and quantum computing to function steadily and energy-efficiently.
According to a report by Proof point, insider threats accounted for $15.38 million in average costs, affecting 34% of businesses annually. Malicious insiders often have an advantage as they are familiar with the organization's systems and processes, making it easier for them to navigate through security measures undetected.
Superconducting materials are finding new practical applications due to ongoing research and development efforts, which include the discovery of new high-temperature superconductors. Scientific research, energy storage, power generation, and transportation all use these materials. Additionally, the effective functioning of these applications is made possible by cryocooler, which are essential for keeping superconductors at their critical low temperatures.
Significant upfront costs may be incurred for the purchase, installation, and upkeep of cryocoolers, particularly those utilized in superconducting applications. For some prospective users, especially in sectors with tight budgets, this may be a turnoff. Moreover, the adoption of cryogenic cooling systems may be constrained by the initial cost involved.
Technologies related to quantum computing and communication are not only developing but also getting easier for companies and academic institutions to use. As the core of these quantum technologies, superconducting qubits have higher cooling requirements. This expansion gives cryocooler manufacturers the chance to meet those demands. Furthermore, cryocooler will be needed to maintain ultra-low temperatures for extended periods of time as quantum applications advance from the experimental stage into commercial viability, resulting in a large and long-lasting market opportunity.
Numerous alternative cooling technologies, including mechanical refrigeration and thermoelectric cooling, are constantly developing and competing with cryocoolers. Moreover, a competitive threat to cryocoolers arises from the possibility that these alternatives, especially in certain applications, will offer more affordable or energy-efficient solutions, so continuous innovation and differentiation will be required.
The COVID-19 pandemic affected the cryocooler market in superconducting applications in a variety of ways. Supply chains were momentarily disrupted, projects were delayed, and some businesses experienced financial uncertainty, but it also highlighted the significance of cryocoolers in vital industries like healthcare, where they are necessary for cryogenic research and MRI machines. The pandemic hastened the adoption of remote maintenance and monitoring systems, allowing cryocoolers to continue operating during lockdowns. Additionally, during the pandemic, research and development efforts into superconducting materials continued due to potential applications in quantum computing and medicine, indicating potential growth for the market in the future.
The Gifford-McMahon Cryocoolers segment typically holds the largest market share. Superconducting materials are frequently cooled using Gifford-McMahon cryocoolers, particularly in applications like MRI machines and scientific research. These cryocoolers are renowned for their dependability, effectiveness, and wide range of applications in preserving cryogenic temperatures for superconducting components. Furthermore, they run on a closed-loop refrigeration cycle. They are a popular option in many industries due to their cost-effectiveness and performance, which helps explain their dominant market share.
In the cryocooler market, quantum computing is anticipated to grow at the highest CAGR for superconducting applications. Superconducting qubits, which need extremely low temperatures to function, are crucial to quantum computing. With quantum computing moving quickly from research to real-world applications, there will be a significant increase in the need for cryocoolers to maintain these very low temperatures. Furthermore, the demand for cutting-edge cryogenic cooling solutions on the market is driving quantum technologies' increasing accessibility and commercial viability, which presents this segment with significant growth potential.
In the global cryocooler market for superconducting applications, North America, which includes the United States and Canada, is projected to hold the largest share. This is mostly because of large investments in MRI machines and other medical imaging technologies, as well as the region's leadership in quantum computing research and development. Furthermore, supporting its leading position in the market is the fact that North America's aerospace and defense industries have spearheaded the use of cryocoolers for a variety of applications.
According to projections, the global cryocooler market for superconducting applications will grow at the highest CAGR in the Asia-Pacific region. This is explained by the region's growing R&D spending, quick technological progress, and expanding use of superconducting materials in a range of sectors, such as electronics, energy, and healthcare. Moreover, the demand for cryocoolers to maintain cryogenic temperatures for superconducting components is expected to surge as Asia-Pacific continues to expand its presence in space exploration, quantum computing, and medical imaging. This is expected to propel the market at a high growth rate.
Some of the key players in Cryocooler for Superconductor market include: CSIC Pride, Fuji Electric, Lihan Thermoacoustics, Advanced Research Systems, Lake Shore Cryotronics, Cryomech, Sumitomo Heavy Industries, Sunpower (AMETEK), AIM Infrarot-Module GmbH, ULVAC Cryogenics and Thales cryogenics.
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