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The robotic cutting, deburring, and finishing market size is forecast to increase by USD 4.47 billion at a CAGR of 9.72% between 2023 and 2028.
The robotic cutting, deburring, and finishing industry research report provides comprehensive data (region-wise segment analysis), with forecasts and estimates in "USD billion" for the period 2024-2028, as well as historical data from 2018-2022 for the following segments.
The automotive industry segment is estimated to witness significant growth during the forecast period.
Industrial robots are increasingly being adopted in the automotive industry to streamline manufacturing processes, boost production, enhance quality, minimize scrap, and improve worker safety and energy efficiency. Robotic cutting, deburring, and finishing processes are essential for optimizing operations in this sector. Robotic cutting systems, which utilize technologies like waterjet cutting and plasma cutting, are widely used for precise metal component cutting, such as car bodies and chassis elements. Deburring robots, equipped with advanced deburring tools and machine vision systems, ensure consistent edge finishing and surface quality. Smart manufacturing, machine learning, and edge computing enable real-time process integration, data acquisition, and predictive maintenance, further enhancing the efficiency of these processes.
Collaborative robots and industrial robots, integrated with human-robot collaboration features, enable safer and more efficient workflows. Robotic welding, finishing systems, and material handling solutions are also crucial components of the automotive manufacturing ecosystem. Robotic cells, powered by artificial intelligence and deep learning algorithms, facilitate process optimization and quality control through offline programming, process monitoring, and cycle time reduction. Overall, the integration of these advanced technologies in the automotive manufacturing sector is driving the market towards increased automation, improved productivity, and reduced costs.
The Automotive industry segment was valued at USD 2.96 billion in 2018 and showed a gradual increase during the forecast period.
APAC is estimated to contribute 43% to the growth of the global market during the forecast period.Technavio's analysts have elaborately explained the regional trends and drivers that shape the market during the forecast period.
The market is witnessing significant growth in APAC, particularly in countries like China, Japan, South Korea, Taiwan, and India. This region is a major contributor to market revenue, with a strong presence of leading foreign manufacturers and system integrators. The automotive, F & B, metals, textiles, chemicals, and pharmaceuticals industries are driving demand in this region. Advancements in internet and remote systems technology are also fueling market growth, enabling services such as remote monitoring, virtual commissioning, and offline programming. In addition, the adoption of smart manufacturing, machine learning, and artificial intelligence in industrial manufacturing processes is increasing the demand for robotic automation in deburring and finishing applications.
Local system integrators and industrial robot manufacturers are expected to emerge in APAC, challenging international companies. Plastic processing, laser cutting, and plasma cutting are other sectors that are benefiting from the adoption of robotic technologies for cutting, deburring, and finishing processes. The integration of data analytics, process optimization, and predictive maintenance systems is further enhancing the efficiency and productivity of these processes. Robot programming, quality control, and safety systems are essential components of these applications, ensuring precision and consistency in the final product. The use of collaborative robots and industrial robots, along with finishing tools and end effectors, is enabling human-robot collaboration and improving surface finishing processes.
Cloud computing and system integration are also facilitating the seamless integration of various manufacturing processes, reducing cycle time and improving overall process efficiency.
Our researchers analyzed the data with 2023 as the base year, along with the key drivers, trends, and challenges. A holistic analysis of drivers will help companies refine their marketing strategies to gain a competitive advantage.
The Global Robotic Cutting, Deburring, and Finishing Market grows with robotic cutting for automotive and deburring robots for metal fabrication. Robotic finishing market trends highlight 6-axis robotic cutting systems and AI-driven deburring robots. Robotic finishing for aerospace and robotic cutting for electronics drive demand, per robotic cutting market forecast. Laser cutting robots for precision leverage robotic finishing with automation, while robotic deburring for consumer goods ensures quality. Robotic cutting for heavy industry and robotic finishing for semiconductors enhance efficiency. Robotic deburring for medical devices, sustainable robotic cutting solutions, and robotic finishing for smart manufacturing optimize performance. Robotic cutting for industrial automation, advanced robotic deburring technologies, robotic finishing supply chain, robotic cutting for high-volume production, robotic deburring for safety compliance, and robotic finishing for global markets.
The robotic cutting, deburring, and finishing market forecasting report includes the adoption lifecycle of the market, covering from the innovator's stage to the laggard's stage. It focuses on adoption rates in different regions based on penetration. Furthermore, the robotic cutting, deburring, and finishing market report also includes key purchase criteria and drivers of price sensitivity to help companies evaluate and develop their market growth analysis strategies.
Customer Landscape
Companies are implementing various strategies, such as strategic alliances, robotic cutting, deburring, and finishing market forecast, partnerships, mergers and acquisitions, geographical expansion, and product/service launches, to enhance their presence in the industry.
ABB - This company specializes in robotic solutions for casting processing, encompassing cutting, deburring, and finishing techniques. Our offerings include cast cleaning and machining services, enhancing production efficiency and product quality. By leveraging advanced robotics technology, we deliver precise and consistent results, reducing manual labor and associated errors. Our commitment to innovation and excellence sets US apart in the industry, ensuring optimal value for clients.
The industry research and growth report includes detailed analyses of the competitive landscape of the market and information about key companies, including:
Qualitative and quantitative analysis of companies has been conducted to help clients understand the wider business environment as well as the strengths and weaknesses of key industry players. Data is qualitatively analyzed to categorize companies as pure play, category-focused, industry-focused, and diversified; it is quantitatively analyzed to categorize companies as dominant, leading, strong, tentative, and weak.
The market is experiencing significant growth as industries seek to enhance material removal processes and improve surface treatment for part quality. Robotic grinding and automated inspection are key technologies driving this trend, enabling process efficiency and defect detection. Modular robots and advanced robotics are revolutionizing manufacturing, allowing for flexible automation and dimensional accuracy. Autonomous systems and predictive analytics are also transforming the market, enabling real-time process validation and quality assurance. Three-dimensional printing (3D printer) and additive manufacturing are further expanding the market's reach, offering new possibilities for surface integrity and cost savings. Burr removal and edge preparation are essential aspects of the robotic workforce, ensuring part quality and tolerance control.
Shot peening and laser ablation are additional surface treatment techniques that offer cost savings and lead time reduction. Reconfigurable systems enable remote monitoring and enable manufacturers to adapt to changing production demands. Overall, the market for robotic cutting, deburring, and finishing is dynamic and innovative, with a focus on improving process efficiency, enhancing surface treatment, and ensuring part quality. The integration of advanced technologies, such as autonomous systems and predictive analytics, is leading to new possibilities and cost savings.
Dive into Technavio's robust research methodology, blending expert interviews, extensive data synthesis, and validated models for unparalleled Robotic Cutting, Deburring, and Finishing Market insights. See full methodology.
Market Scope |
|
Report Coverage |
Details |
Page number |
159 |
Base year |
2023 |
Historic period |
2018-2022 |
Forecast period |
2024-2028 |
Growth momentum & CAGR |
Accelerate at a CAGR of 9.72% |
Market growth 2024-2028 |
USD 4.47 billion |
Market structure |
Concentrated |
YoY growth 2023-2024(%) |
9.22 |
Key countries |
US, China, Germany, Japan, UK, Australia, India, France, Brazil, UAE, Rest of World (ROW), Saudi Arabia, France, South Korea, Mexico, Italy, and Spain |
Competitive landscape |
Leading Companies, Market Positioning of Companies, Competitive Strategies, and Industry Risks |
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1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation by End-user
7 Market Segmentation by Product
8 Market Segmentation by End-User
9 Market Segmentation by Technology Specificity
8 Customer Landscape
9 Geographic Landscape
10 Drivers, Challenges, and Trends
11 Vendor Landscape
14 Competitive Analysis
13 Appendix
Research Framework
Technavio presents a detailed picture of the market by way of study, synthesis, and summation of data from multiple sources. The analysts have presented the various facets of the market with a particular focus on identifying the key industry influencers. The data thus presented is comprehensive, reliable, and the result of extensive research, both primary and secondary.
INFORMATION SOURCES
Primary sources
Secondary sources
DATA ANALYSIS
Data Synthesis
Data Validation
REPORT WRITING
Qualitative
Quantitative
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