市场调查报告书
商品编码
1617085
到 2030 年自动折弯机市场预测:按类型、折弯能力、技术、应用、最终用户和地区进行的全球分析Automated Bending Machine Market Forecasts to 2030 - Global Analysis By Type, Bending Capacity (Light Duty, Medium Duty and Heavy Duty ), Technology, Application, End User and By Geography |
根据Stratistics MRC预测,2024年全球自动折弯机市场规模将达25亿美元,预计2030年将达到35亿美元,预测期内复合年增长率为5.7%。
自动弯曲系统是专为钢板、管材精密弯曲而设计的CNC(电脑数值控制)设备。使用预编程命令控制您的弯曲技术,以获得准确且可重复的结果。这些机器可以处理复杂的几何形状,并配备感测器和机器人手掌以实现自动化。透过减少人为干预来提高表现、减少错误并提高生产力。
高精度、高效率
与手动系统相比,自动折弯机具有卓越的精度和效率,这使得它们对于需要高品质和一致结果的行业非常有吸引力。复杂的几何形状可以在最少的人工干预下製造,从而提高生产率、减少错误并提高产品品质。这种精度对于汽车、航太和建筑等行业至关重要,推动了对能够始终满足严格公差并简化製造流程的自动化系统的需求,从而促进市场成长。
维运复杂度
操作和维护自动折弯机的复杂性可能是采用自动折弯机的主要障碍,特别是对于中小型企业而言。这些系统需要专门的知识和技能才能有效运行,从而增加了对经过培训的人员的需求并增加了人事费用。此外,此类先进机械的维护成本高且耗时,导致停机并降低生产率,这可能会阻止潜在用户投资自动折弯机。
不断增长的工业需求
汽车、金属加工和建筑等行业需求的不断增长为自动折弯机市场创造了巨大的机会。随着製造过程变得更加自动化,对精确、可靠和高效的弯曲解决方案的需求不断增加。这些行业需要大量、高品质的生产,以满足大规模生产和自订设计的需求。随着工业领域的扩张和发展,对先进弯曲技术的需求将继续飙升,进一步推动市场成长。
原物料价格不稳定
原物料价格的波动可能会对自动折弯机市场产生负面影响。金属和其他材料的价格波动会导致製造成本上升,进而提高自动折弯机的价格。这可能会限制市场准入,特别是对于预算有限的中小企业而言。此外,材料价格的不确定性可能导致製造成本不可预测,使公司难以有效地进行预算和规划。
COVID-19 大流行对全球供应链造成了严重破坏,影响了製造自动折弯机所需的原材料和零件的供应。封锁期间工业活动放缓导致需求暂时下降。然而,随着行业復苏并适应新的製造趋势,在自动化努力提高效率和减少对体力劳动的依赖的支持下,市场预计将反弹。
自动化产业预计将在预测期内成为最大的产业
由于自动化领域能够提供高效率、高精度并降低营运成本,预计在预测期内将主导市场占有率。自动化系统可最大限度地减少人为错误并减少劳动力需求,这对那些希望在不牺牲品质的情况下扩大生产规模的行业具有吸引力。由于其在汽车和航太等各种应用中的多功能性,自动化领域被定位为市场成长的最大贡献者。
预计电力领域在预测期内复合年增长率最高
由于越来越多地转向节能和永续技术,预计电力领域将在预测期内实现最高成长率。电动折弯机比液压折弯机具有优势,包括消费量更低、碳排放更低、维护量更少。随着环境法规的收紧以及人们对降低营运成本的关注,电力产业将在未来几年大幅扩张。
预计亚太地区在预测期内将主导市场占有率。该地区(尤其是中国、日本和印度等国家)强大的製造基础正在推动自动折弯机的需求。汽车、航太和建筑等行业的快速工业化和自动化技术的日益采用进一步巩固了亚太地区的市场领导地位。
预计亚太地区在预测期内的复合年增长率最高。中国和印度等国家製造能力的提高、工业现代化程度的提高以及对自动化解决方案的需求不断增加是推动该地区强劲成长的关键因素。此外,该地区建筑和汽车行业的扩张极大地促进了自弯曲技术的采用。
According to Stratistics MRC, the Global Automated Bending Machine Market is accounted for $2.5 billion in 2024 and is expected to reach $3.5 billion by 2030 growing at a CAGR of 5.7% during the forecast period. An automatic bending system is a CNC (Computer Numerical Control) device designed for precision bending of steel sheets and tubes. It makes use of pre-programmed commands to govern the bending technique, making sure of correct and repeatable results. These machines can take care of complicated geometries and are prepared with sensors and robot palms for automation. By lowering human intervention, they enhance performance, lessen mistakes, and grow productivity, making them vital in industries like automotive, aerospace, and creation.
High precision and efficiency
Automated bending machines offer superior precision and efficiency compared to manual systems, making them highly attractive for industries that require high-quality, consistent results. The ability to produce complex shapes with minimal human intervention enhances productivity, reduces errors, and improves product quality. This precision is crucial in sectors like automotive, aerospace, and construction, driving demand for automated systems that can consistently meet tight tolerances and streamline manufacturing processes, contributing to market growth.
Complexity in operation and maintenance
The complexity involved in operating and maintaining automated bending machines can be a significant barrier for adoption, especially for small and medium-sized enterprises. These systems require specialized knowledge and skills to operate effectively, increasing the need for trained personnel and raising labor costs. Additionally, the maintenance of such advanced machinery can be expensive and time-consuming, leading to downtime and reduced productivity, which may deter potential users from investing in automated bending machines.
Growing industrial demand
The growing demand across industries such as automotive, metalworking, and construction presents a significant opportunity for the automated bending machine market. As manufacturing processes become more automated, the need for precise, reliable, and efficient bending solutions rises. These industries require high-volume, high-quality production that can meet the demands of both mass production and custom designs. As industrial sectors expand and evolve, the demand for advanced bending technologies will continue to surge, further driving market growth.
Volatile raw material prices
The volatility of raw material prices can negatively impact the automated bending machine market. Fluctuating costs of metals and other materials can lead to higher manufacturing costs, which may, in turn, raise the prices of automated bending machines. This could restrict market access, especially for smaller players with limited budgets. Additionally, the uncertainty around material prices may lead to unpredictable manufacturing costs, making it challenging for companies to budget and plan effectively.
The Covid-19 pandemic caused significant disruptions in global supply chains, affecting the availability of raw materials and components needed for manufacturing automated bending machines. The slowdown in industrial activities during lockdowns led to a temporary decline in demand. However, as industries recover and adapt to new manufacturing trends, the market is expected to bounce back, supported by increased automation efforts to improve efficiency and reduce reliance on manual labour.
The automatic segment is expected to be the largest during the forecast period
The automatic segment is anticipated to dominate the market share during the forecast period, driven by its ability to provide high efficiency, precision, and reduced operational costs. Automated systems minimize human error and require less labor, making them more attractive for industries looking to scale production without sacrificing quality. Their versatility across various applications, including automotive and aerospace, positions the automatic segment as the largest contributor to market growth.
The electric segment is expected to have the highest CAGR during the forecast period
The electric segment is predicted to witness the highest growth rate during the forecast period due to the increasing shift toward energy-efficient and sustainable technologies. Electric-powered bending machines offer advantages such as lower energy consumption, reduced carbon emissions, and less maintenance compared to hydraulic systems. With growing environmental regulations and a focus on reducing operational costs, the electric segment is poised for significant expansion in the coming years.
During the estimation period, the Asia Pacific region is anticipated to dominate the market share. The region's strong manufacturing base, particularly in countries like China, Japan, and India, drives the demand for automated bending machines. The rapid industrialization and the increasing adoption of automation technologies across industries such as automotive, aerospace, and construction further contribute to Asia Pacific's market leadership.
The Asia Pacific region is also expected to register the highest CAGR during the forecast period. The growing manufacturing capabilities, the push for industrial modernization, and rising demand for automation solutions in countries like China and India are key factors fueling the region's robust growth. Additionally, the expanding construction and automotive sectors in this region contribute significantly to the adoption of automated bending technologies.
Key players in the market
Some of the key players in Automated Bending Machine Market include TRUMPF, AMADA HOLDINGS, HACO BV, Prima Industries, DANOBAT GROUP, WAFIOS, BLM Group, AMOB, Euromac, Pines Engineering, SOCO Machinery, Jaypee Group, Gensco Equipment, Eurobend, MEP Group, Progress Maschinen & Automation, and Henan Sinch Machinery.
In November 2024, BLM GROUP, a leader in tube processing, with an offer of cutting-edge technologies in the laser and tube bending systems sector, has signed an agreement with Hypertherm Associates, a leader firm in plasma and waterjet technologies. The agreement will see Hypertherm Associates acquire a minority stake in BLM GROUP, bringing with it commercial synergies and expansion into new markets, which will initially focus on Europe and North America.
In September 2024, Siemens, the global technology company leader in industrial automation and digitalization, and Prima Power, the world-class manufacturer of sheet metal working machinery and 3D laser cutting technology, are proud to announce the result of an intensified collaboration that is redefining standards in the automotive manufacturing industry. This collaboration has led to the integration of Siemens' leading numerical control system, SINUMERIK ONE, into the latest model of Prima Power's flagship 3D laser cutting machine, Laser Next.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.