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到 2030 年数控螺纹研磨市场预测:按类型、应用、最终用户和地区分類的全球分析CNC Thread Grinders Market Forecasts to 2030 - Global Analysis By Type (CNC Internal Thread Grinder and CNC External Thread Grinder), Application (Screw Tap, Worm, Ball screw and Other Applications), End User and By Geography |
根据Stratistics MRC的数据,2023年全球数控螺纹研磨市场规模为53.5亿美元,预计到2030年将达到85.9亿美元,预测期内年复合成长率为7.0%。
数控螺纹研磨是一种先进的加工工具,专门用于在螺母、螺栓、螺丝和其他螺纹零件等工件上形成精密、精确的螺纹。为了确保成品的严格公差和高品质,这些机器使用电脑数值控制(CNC) 技术来自动化和精确控制研磨螺纹的过程。 CNC 螺纹研磨旨在为需要大批量螺纹研磨的行业快速有效地工作,有助于提高生产率、缩短交货时间并提高产能。
汽车、航太、医疗设备和电子业都严重依赖精密加工。需要数控螺纹研磨来生产这些行业所需的高精度螺纹零件。透过使用数控螺纹研磨生产高精度、高精度的螺纹零件,达到了所需的标准。对精密加工零件日益增长的需求推动了数控螺纹研磨的使用。
数控螺纹研磨是复杂的设备,因此初期成本较高。购买和设定数控螺纹研磨非常昂贵,包括机器本身、辅助设备、工具和软体。然而,数控螺丝研磨的采用可能会受到高昂的初始支出的阻碍,特别是对于资本资源有限的中小企业(SME)来说,这是市场扩张的障碍。
工业部门的主要趋势是自动化,由于提高生产力、降低人事费用和改善品管的需求,自动化不断扩大。数控螺纹研磨是自动化生产线的重要零件,与其他CNC设备、机器人系统和输送系统协调工作。对自动化製造流程的需求正在推动数控螺纹研磨的采用。
为了获得最佳性能和较长的使用寿命,数控螺纹研磨与任何复杂的机器一样,需要定期维护。例行检查、润滑、工具更换和校准都被视为维护任务。此外,设备故障或技术问题造成的代价高昂的停机可能会影响生产计画并增加延误。与数控螺纹研磨相关的维护成本和停机成本可能会成为一些公司市场成长的障碍,特别是那些管理资源较差或维护程序效率低下的公司。
数控螺丝研磨市场受到COVID-19疫情的显着影响。疫情扰乱了全球供应链,导致数控螺丝研磨及其零件的生产和交付延迟。原料、零件和机械的供应受到贸易限制、工业设施暂时关闭和人员减少的影响。由于这次中断,CNC内螺纹研磨的製造商和用户经历了更长的交货时间和更高的成本。
据估计,数控内螺纹研磨细分市场占最大份额。数控内螺纹研磨是最先进的加工工具,用于在各种工件上精确切削和研磨内螺纹,例如螺母、螺栓、螺丝和其他螺纹零件。该市场涵盖航太、汽车、医疗设备和众多机械工程应用,所有这些都需要高精度和高精度的螺丝製造。而且,数控内螺纹研磨的高精度控制系统保证了螺纹零件的完美配合和最佳性能。
预计航太工业领域在预测期内将出现良好成长。数控螺纹研磨市场的航太工业应用领域重点在于利用创新的数控螺纹研磨技术为飞机、太空船和相关机械提供高精度螺纹零件。该领域是大型航太产业的一个组成部分,因为它有助于确保航太系统的性能、安全性和可靠性。航太应用通常需要复杂且专门的螺纹设计,以满足飞机零件的独特要求。
在估计期间,北美占据了最大的市场占有率。北美地区,包括美国和加拿大,是CNC螺丝研磨市场的重要市场。该地区製造业实力雄厚,特别是航太、汽车和通用机械等领域。世界航太工业的大部分集中在北美,特别是美国。对于紧固件、连接件以及飞机和太空船关键元件等精密零件的生产,该产业主要依赖数控螺纹研磨。航太严格的安全和品质标准推动了该地区对优质螺丝的需求。
预计欧洲在预测期内将出现盈利成长。欧洲,包括德国、法国、英国和义大利等国家,是CNC螺纹研磨市场的重要地区。该地区的特点是製造业历史悠久,注重精密工程和多元化的行业形势。欧洲拥有广泛的製造业,在汽车、航太、机械和电子等领域拥有强大的影响力。对于该地区精密零件、紧固件和螺纹零件的生产,这些产业严重依赖数控螺纹研磨。
According to Stratistics MRC, the Global CNC Thread Grinders Market is accounted for $5.35 billion in 2023 and is expected to reach $8.59 billion by 2030 growing at a CAGR of 7.0% during the forecast period. CNC Thread Grinders are advanced machining tools specifically designed to create precise and accurate threads on work pieces, such as nuts, bolts, screws, and other threaded components. To ensure tight tolerances and high quality in the completed goods, these machines use computer numerical control (CNC) technology to automate and precisely manage the process of grinding threads. CNC thread grinders are designed to operate quickly and effectively for industries with high-volume thread grinding requirements, they help to increase productivity, cut down on lead times, and improve production capacity.
The automobile, aerospace, medical device and electronics industries all depend heavily on precision machining. In order to produce threaded components with the high precision and accuracy required by these industries, CNC thread grinders are required. By creating threaded components with great accuracy and precision with CNC thread grinders, the necessary standards are accomplished. The use of CNC thread grinders is driven by the rising need for precision-machined components.
CNC thread grinders are complex devices that have a high initial cost. It can be expensive to purchase and set up CNC thread grinders, including the machine itself, ancillary gear, tools, and software. However, the adoption of CNC thread grinders may be hampered by the costly initial expenditure, particularly for small and medium-sized firms (SMEs) with limited capital resources, which is a barrier to market expansion.
A major trend in the industrial sector is automation, which has grown as a result of demands for more productivity, lower labor costs, and better quality control. CNC thread grinders serve as vital parts of automated production lines where they can work in harmony with other CNC equipment, robotic systems, and conveyor systems. The requirement for automated manufacturing processes is driving the adoption of CNC thread grinders.
For optimal performance and longevity, CNC thread grinders, like any other complicated machinery, need routine maintenance. Routine checks, lubrication, tool replacement, and calibration are all considered maintenance operations. Furthermore, expensive downtime brought on by equipment failures or technical problems can affect production plans and add to delays. Some businesses, particularly those with few resources or ineffective maintenance procedures, may find the maintenance and downtime expenses associated with CNC thread grinders to be a barrier to market growth.
The CNC thread grinder market has been significantly impacted by the COVID-19 outbreak. The epidemic delayed the manufacturing and delivery of CNC thread grinders and their components by upsetting worldwide supply networks. The supply of raw materials, parts, and machinery was impacted by trade restrictions, temporary closures of industrial facilities, and decreased personnel availability. Manufacturers and users of CNC thread grinders experienced longer lead times and higher costs as a result of these disruptions.
The CNC internal thread grinder segment is estimated to hold the largest share. For the precise cutting and grinding of internal threads on a variety of work pieces, such as nuts, bolts, screws, and other threaded components, CNC internal thread grinders are leading-edge machining tools. This market serves the aerospace, automotive, medical device, and numerous mechanical engineering applications, all of which require high precision and accuracy in thread manufacturing. Additionally, the perfect fit and top performance of threaded components are guaranteed by CNC internal thread grinders' high-precision control systems, which enable the production of threads with incredibly tight tolerances.
The aerospace industry segment is anticipated to have lucrative growth during the forecast period. The CNC Thread Grinders Market's aerospace sector application segment focuses on the utilization of innovative CNC thread grinding technology to provide high-precision threaded components for aircraft, spacecraft, and associated machinery. This sector is an essential part of the larger aerospace manufacturing industry since it helps to ensure the performance, safety, and dependability of aerospace systems. In order to meet the unique requirements of aircraft components, aerospace applications often require complicated and specialized thread designs.
North America commanded the largest market share during the extrapolated period. North America, which includes both the United States and Canada, is an important market in the CNC thread grinder market. The manufacturing sector in this area is strong, especially in fields like aerospace, automobiles, and general machinery. The majority of the world's aerospace industry is based in North America, particularly the United States. For the production of precise components like fasteners, connections, and crucial elements for airplanes and spacecraft, this industry primarily relies on CNC thread grinders. The aerospace industry's demanding safety and quality criteria are driving the demand for premium threads in this region.
Europe is expected to witness profitable growth over the projection period. Europe, comprising nations like Germany, France, the United Kingdom, Italy, and others, is a prominent geographic area in the CNC thread grinder market. This region is distinguished by a long history of manufacturing, with an emphasis on precise engineering and a varied industrial landscape. With a significant presence in sectors including automobiles, aerospace, machinery, and electronics, Europe has a broad manufacturing industry. For the manufacturing of precision parts, fasteners, and parts with threaded connections in this region, these industries significantly rely on CNC thread grinders.
Some of the key players in the CNC Thread Grinders Market include: Holroyd, Phoenix Tool & Thread Grinding, Bestek Industries, Mitsui Seiki, Eastar Machine Tools, Drake Manufacturing, Hyper max Machinery, Jianye GROUP, Qinchuan Machine Tool & Tool, Krasny Borets, Prayosha, RIFA Precision Machinery, Mikromat, Huawin Precision, Shaanxi Hanjiang Machine Tool, Jiangsu Chenguang CNC Machine Tool and Tianjin Lunda Machine.
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