市場調查報告書
商品編碼
1403504
單排球轉盤軸承市場至2030年的預測:按類型、應用和地區分類的全球分析Single Row Ball Slewing Bearing Market Forecasts to 2030 - Global Analysis By Type (Non-Gear Type, Internal Gear Type, External Gear Type, Cross Roller Type, Corrosion-Resistant Type and Other Types), Application and By Geography |
根據 Stratistics MRC 的資料,預測期內單排球轉盤軸承的全球市場年複合成長率為 7.2%。
單排球轉盤軸承是在各種機械系統中提供旋轉支撐和穩定性的關鍵零件。這種類型的軸承由夾在內圈和外圈之間的單排球組成,有助於平滑和受控的旋轉。此軸承專為需要支撐軸向和徑向負荷的應用而設計,廣泛應用於建築、採礦和製造等行業。
根據聯邦交通管理局KBA統計,2022年歐洲最大經濟體的汽車註冊量為265萬輛,與前一年同期比較成長1.1%。
隨著世界各國政府和私人組織著手大規模基礎設施開發,對重型機械設備的需求不斷增加,單列球軸承正發揮重要作用。這些軸承是施工機械、起重機和其他基礎設施相關設備中支援旋轉運動的重要零件。此外,基礎設施投資(包括橋樑、道路和商業建築計劃)的快速成長與對可靠、高性能轉盤軸承不斷成長的需求直接相關。
製造這些軸承需要精密工程、先進材料和嚴格的品管流程,導致製造成本更高。使用高強度合金和特殊塗層來提高性能進一步降低了製造成本。然而,特別是在成本敏感的行業,當存在製造成本較低的替代解決方案時,很難證明在這些軸承上的支出是合理的。
精密工程和材料科學的不斷創新促進了性能特性改進的轉盤軸承的開發。先進的製造技術使得軸承的生產具有更嚴格的公差、更高的耐用性以及耐磨性和抗疲勞性。高強度合金和先進塗層等先進材料的使用有助於提高單列球軸承的負載能力並延長其運作。此外,精密加工技術和製造流程自動化確保了這些關鍵零件生產過程中一致的品質和可靠性。
相容性是一個挑戰,因為不同的製造商生產的這些軸承沒有標準化的設計或規格。這種缺乏統一性可能會使客戶的採購流程複雜化、限制選擇並增加採購的複雜性,因為每個製造商可能具有獨特的尺寸和配置。然而,缺乏全行業標準也阻礙了安裝、維護和性能通用指南的製定,這可能導致最終用戶的操作不確定性。
疫情造成的經濟放緩導致建築和基礎設施領域的計劃延誤,直接影響了轉盤軸承的需求。由於主要最終用戶產業縮減投資並面臨物流挑戰,市場出現暫時下滑。旅行限制和社交距離措施阻礙了現場安裝和維護,進一步影響了市場動態。然而,隨著經濟適應新常態和工業復甦,特別是建設業和製造業,單排球迴轉支承的需求恢復。
外齒輪型由於其多樣化的應用和優異的性能特點而佔有最大的佔有率。外齒輪式轉盤軸承的外圈上有齒輪機構,可實現高效的動力傳輸和精確的運動控制。這種設計使其適用於廣泛的應用,包括風力發電機、施工機械和物料搬運設備。此外,在再生能源領域,尤其是在清潔能源世界的推動下,風力發電機的安裝量迅速增加,這大幅增加了對外齒式轉盤軸承的需求。
工業機械領域實現盈利成長,因為它在提高各種工業應用的性能和可靠性方面發揮著非常重要的作用。單列球轉盤軸承廣泛應用於製造設備、物料搬運系統和機械臂等工業機械。此外,隨著越來越多的行業採用自動化和先進的製造流程,對這些軸承提供的精密旋轉支撐的需求迅速增加。
由於強勁的工業化、基礎設施發展和製造業活動的擴張,亞太地區在預測期內佔據了最大佔有率。中國和印度等國家處於該成長的最前沿,在建築、再生能源和重型機械領域進行了大量投資。都市化進程的不斷進步和智慧城市的發展,增加了對施工機械的需求,其中迴轉支承發揮重要作用。
由於目的是加強安全標準和促進永續實踐的嚴格法律規範的支持下,基礎設施發展措施激增,預計亞太地區將在預測期內保持強勁成長。嚴格的建築規範和法規要求在建築和基礎設施計劃中使用高品質零件,包括單排球轉盤軸承。此外,在政府獎勵措施和法規的支持下,該地區的再生能源努力導致風力發電機安裝量的增加並推動對轉盤軸承的需求。
According to Stratistics MRC, the Global Single Row Ball Slewing Bearing Market is growing at a CAGR of 7.2% during the forecast period. A single-row ball slewing bearing is a crucial component in various mechanical systems, providing rotational support and stability. This type of bearing consists of a single row of balls sandwiched between inner and outer rings, facilitating smooth and controlled rotation. Engineered for applications demanding axial and radial load support, these bearings find extensive use in industries such as construction, mining, and manufacturing.
According to the federal transport authority KBA, a total of 2.65 million vehicles were registered in Europe's largest economy in 2022, indicating a 1.1% increase from the previous year.
As governments and private entities worldwide embark on expansive infrastructure development initiatives, there is a growing demand for heavy machinery and equipment, where single-row ball slewing bearings play a crucial role. These bearings are integral components in construction machinery, cranes, and other infrastructure-related equipment, providing essential support for rotational movements. Moreover, the surge in infrastructure investments, encompassing projects such as bridges, roads, and commercial buildings, directly correlates with the rising need for reliable and high-performance slewing bearings.
The production of these bearings requires precision engineering, advanced materials, and stringent quality control processes, contributing to elevated manufacturing expenses. The use of high-strength alloys and specialized coatings to enhance performance further adds to the production costs. However, industries that are particularly cost-sensitive may find it challenging to justify the expenditure on these bearings, especially when alternative solutions with lower manufacturing costs are available.
Continuous innovation in precision engineering and materials science has led to the development of slewing bearings with enhanced performance characteristics. Advanced manufacturing technologies enable the production of bearings with tighter tolerances, superior durability, and improved resistance to wear and fatigue. The incorporation of cutting-edge materials, such as high-strength alloys and advanced coatings, contributes to increased load-carrying capacity and prolonged operational life of single-row ball slewing bearings. Additionally, precision machining techniques and automation in manufacturing processes ensure consistent quality and reliability in the production of these critical components.
With diverse manufacturers producing these bearings without standardized design and specifications, interchangeability becomes a challenge. This lack of uniformity complicates the sourcing process for customers, as each manufacturer may have unique dimensions and configurations, limiting options and potentially increasing procurement complexities. However, the absence of industry-wide standards also hinders the development of a universal set of guidelines for installation, maintenance, and performance, which can lead to operational uncertainties for end-users.
The pandemic-induced economic slowdown led to project delays in construction and infrastructure sectors, directly affecting the demand for slewing bearings. As major end-user industries scaled back investments and faced logistical challenges, the market experienced a temporary decline. Travel restrictions and social distancing measures hindered on-site installation and maintenance activities, further impacting the market dynamics. However, as economies adapted to new norms and industries recovered, particularly in construction and manufacturing, the demand for single-row ball slewing bearings rebounded.
External Gear Type segment commanded the largest share due to its versatile applications and superior performance characteristics. External gear slewing bearings feature a gear mechanism on the outer ring, enabling efficient power transmission and precise movement control. This design enhances their suitability for a wide range of applications, such as wind turbines, construction machinery, and material handling equipment. Moreover, in the renewable energy sector, the surge in wind turbine installations, particularly in response to the global push for clean energy, has significantly boosted the demand for external gear slewing bearings.
Industrial Machinery segment is witnessing profitable growth due to its integral role in enhancing the performance and reliability of various industrial applications. Single Row Ball Slewing Bearings find extensive use in industrial machinery, including manufacturing equipment, material handling systems, and robotic arms. Moreover, as industries increasingly embrace automation and advanced manufacturing processes, the demand for precise rotational support provided by these bearings has surged.
Asia Pacific region dominated the largest share over the prediction period due to robust industrialization, infrastructure development, and expanding manufacturing activities. Countries like China and India are at the forefront of this growth, with substantial investments in construction, renewable energy, and heavy machinery sectors. The continuous rise in urbanization and the development of smart cities are increasing the demand for construction equipment, where slewing bearings play a critical role.
Asia Pacific region is poised to hold substantial growth over the projection period due to a surge in infrastructure development initiatives, backed by stringent regulatory frameworks aimed at enhancing safety standards and promoting sustainable practices. Stringent building codes and regulations mandate the use of high-quality components, including single-row ball slewing bearings, in construction and infrastructure projects. Furthermore, the region's commitment to renewable energy sources, supported by government incentives and regulations, has led to an increased installation of wind turbines, driving the demand for slewing bearings.
Some of the key players in Single Row Ball Slewing Bearing market include Antex Corporation, Jiangsu Shuangzheng Machinery Co., Ltd, Kaydon Corporation, NTN Corporation, Rothe Erde GmbH, Schaeffler Group, SKF Group, TGB Group Technologies, URB Group, Wanda Slewing Bearing Co., Ltd, Wuxi STBR International Trading CO., LTD., Xuzhou Wanda Slewing Bearing Co., Ltd and ZYS Luoyang Bearing Science and Technology Co., Ltd.
In February 2020, NTN Driveshaft, which first began operations in Anderson in 2017, has announced a $58 million expansion of its local facility. NTN Driveshaft first announced the construction of a new plant in Anderson in 2016 with an initial investment of $84.5 million and the creation of 300 jobs.