市场调查报告书
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1403504
到 2030 年单排球迴转轴承市场预测:按类型、应用和地区分類的全球分析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 |
根据 Stratistics MRC 的数据,预测期内单排球迴转轴承的全球市场复合年增长率为 7.2%。
单排球迴转轴承是在各种机械系统中提供旋转支撑和稳定性的关键部件。这种类型的轴承由夹在内圈和外圈之间的单排球组成,有助于平滑和受控的旋转。此轴承专为需要支撑轴向和径向负荷的应用而设计,广泛应用于建筑、采矿和製造等行业。
根据联邦交通管理局KBA统计,2022年欧洲最大经济体的汽车註册量为265万辆,与前一年同期比较成长1.1%。
随着世界各国政府和私人组织着手大规模基础设施开发,对重型机械设备的需求不断增加,单列球轴承正发挥重要作用。这些轴承是施工机械、起重机和其他基础设施相关设备中支援旋转运动的重要部件。此外,基础设施投资(包括桥樑、道路和商业建筑计划)的快速成长与对可靠、高性能迴转轴承不断增长的需求直接相关。
製造这些轴承需要精密工程、先进材料和严格的品管流程,导致製造成本更高。使用高强度合金和特殊涂层来提高性能进一步降低了製造成本。然而,特别是在成本敏感的行业,当存在製造成本较低的替代解决方案时,很难证明在这些轴承上的支出是合理的。
精密工程和材料科学的不断创新促进了性能特性改进的迴转轴承的开发。先进的製造技术使得轴承的生产具有更严格的公差、更高的耐用性以及耐磨性和抗疲劳性。高强度合金和先进涂层等先进材料的使用有助于提高单列球轴承的负载能力并延长其运作。此外,精密加工技术和製造流程自动化确保了这些关键零件生产过程中一致的品质和可靠性。
相容性是一个挑战,因为不同的製造商生产的这些轴承没有标准化的设计或规格。这种缺乏统一性可能会使客户的采购流程复杂化、限制选择并增加采购的复杂性,因为每个製造商可能具有独特的尺寸和配置。然而,缺乏全行业标准也阻碍了安装、维护和性能通用指南的製定,这可能导致最终用户的操作不确定性。
疫情造成的经济放缓导致建筑和基础设施领域的计划延误,直接影响了迴转轴承的需求。由于主要最终用户产业缩减投资并面临物流挑战,市场出现暂时下滑。旅行限制和社交距离措施阻碍了现场安装和维护,进一步影响了市场动态。然而,随着经济适应新常态和工业復苏,特别是建设业和製造业,单排球迴转支承的需求恢復。
外齿轮型由于其多样化的应用和优异的性能特点而占有最大的份额。外齿轮式迴转轴承的外圈上有齿轮机构,可实现高效的动力传输和精确的运动控制。这种设计使其适用于广泛的应用,包括风力发电机、施工机械和物料搬运设备。此外,在可再生能源领域,尤其是在清洁能源世界的推动下,风力发电机的安装量正在迅速增加,这大大增加了对外齿式迴转轴承的需求。
工业机械领域正在实现盈利成长,因为它在提高各种工业应用的性能和可靠性方面发挥着至关重要的作用。单列球迴转轴承广泛应用于製造设备、物料搬运系统和机械臂等工业机械。此外,随着越来越多的行业采用自动化和先进的製造流程,对这些轴承提供的精密旋转支撑的需求正在迅速增加。
由于强劲的工业化、基础设施发展和製造业活动的扩张,亚太地区在预测期内占据了最大份额。中国和印度等国家处于这一成长的最前沿,在建筑、可再生能源和重型机械领域进行了大量投资。都市化进程的不断进步和智慧城市的发展,增加了对施工机械的需求,其中迴转支承发挥重要作用。
由于旨在加强安全标准和促进永续实践的严格法律规范的支持下,基础设施发展措施激增,预计亚太地区将在预测期内保持强劲成长。严格的建筑规范和法规要求在建筑和基础设施计划中使用高品质零件,包括单排球迴转轴承。此外,在政府激励措施和法规的支持下,该地区的可再生能源努力正在导致风力发电机安装量的增加并推动对迴转轴承的需求。
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.