
World’s Top 40 Companies in Robotics in Shipbuilding 2025 Watchlist: Statistical Report (2024-2035)
RELEASE DATE: Aug 2025 Author: Spherical InsightsRequest Free Sample Speak to Analyst
Description
According to a research report published by Spherical Insights & Consulting, The Global Robotics in Shipbuilding Market Size is Projected To Grow from USD 2.64 Billion in 2024 to USD 3.29 Billion by 2035, at a CAGR of 2.02% during the forecast period 2025-2035. The market for Robotics in Shipbuilding is growing demand by factors like increasing labor costs, the need for enhanced efficiency and precision, and stricter safety regulations.
Introduction
The use of robotics in shipbuilding has been a game changer in the maritime industry, bringing revolution in many elements of shipbuilding and maintenance. Robots are being used rapidly in the shipyard to automate various types of processes including welding, painting, blasting, material handling and inspection. Automation not only increases productivity, but it also improves security by reducing the need of human workers in dangerous areas. Drone and underwater robot prepared with cameras and sensors are used to inspect the hulls, pipelines and other important components of the ship. These robots can identify defects, corrosion and other irregularities, which allow for early maintenance and repair works. Shipbuilding is predicted for robots in the market in the coming years, due to the increasing demand for efficient and cost -effective manufacturing processes. Research and development for sewn solutions for robotics in shipbuilding, construction of hardware components, shipyard infrastructure, integration for personal, end management of life. This includes a collaborative effort among robotics manufacturers, shipyard engineers and project managers to ensure spontaneous integration, operational efficiency, quality control and safety during the life cycle of robotic systems, eventually innovation, cost reduction and price construction within the maritime industry.
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Robotics in Shipbuilding Market Size & Statistics
- The Market Size for Robotics in Shipbuilding Was Estimated to be worth USD 2.64 Billion in 2024.
- The Market Size is going to Expand at a CAGR of 2.02% between 2025 and 2035.
- The Global Robotics in Shipbuilding Market Size is anticipated to reach USD 3.29 Billion by 2035.
- North America is expected to generate the highest demand during the forecast period in the Robotics in Shipbuilding Market
- Asia Pacific is expected to grow the fastest during the forecast period in the Robotics in Shipbuilding Market.
Regional growth and demand
Asia Pacific is expected to grow the fastest during the forecast period in the robotics in shipbuilding market. Asia-Pacific is a major shipbuilding hub, with China, South Korea, and Japan dominating the industry. The region accounts for a sizable share of worldwide shipbuilding output, resulting in a high need for robotics solutions to improve efficiency and competitiveness in shipyard operations. Rapid urbanisation and infrastructural development in Asia-Pacific countries are increasing demand for a wide range of vessels, including commercial ships, offshore platforms, and navy vessels. Robotics technology can assist satisfy this increasing need by allowing for faster and more effective ship production, repair, and maintenance. The Asia-Pacific region's shipbuilding sector is highly competitive, with both established and rising enterprises vying for market dominance. Robotics manufacturers in the region are investing in R&D to create innovative solutions.
North America is expected to generate the highest demand during the forecast period in the robotics in shipbuilding market. Labour expenses in North America are often greater than in other locations, making automation an appealing alternative for shipyards seeking to enhance efficiency and cut production costs. Robotics can help to reduce labour shortages and boost productivity in shipbuilding processes. The demand for ships, including commercial vessels, navy ships, and offshore structures, is driving investment in shipbuilding robotics solutions. North America's substantial marine sector, which includes shipyards, port facilities, and offshore energy production, presents chances for robotics businesses to provide novel ship construction and maintenance solutions. The presence of established shipbuilding and robotics firms, as well as rising startups, helps to create a competitive market environment in North America. Competition promotes innovation and the creation of cost-effective robotics solutions adapted to specific issues.
Top 10 Trends in the Robotics in Shipbuilding Market
- Increased Adoption of Collaborative Robots (Cobots)
- AI-Powered Design and Maintenance
- Robotic Welding and Assembly
- Underwater Inspection Robots
- Digital Twins
- Additive Manufacturing (3D Printing)
- Smart Shipyards and Digital Transformation
- Advanced Materials
- Alternative Fuels and Green Shipbuilding
- Cybersecurity
1. Increased Adoption of Collaborative Robots (Cobots)
Cobots are designed to work alongside humans, offering flexibility and ease of use in various shipbuilding tasks. This trend is fueled by the need for adaptable automation solutions in complex shipbuilding processes.
2. AI-Powered Design and Maintenance
Artificial intelligence is being used to optimize ship designs, predict potential maintenance issues, and improve overall operational efficiency. AI algorithms can analyze vast amounts of data to identify areas for improvement in both design and maintenance strategies.
3. Robotic Welding and Assembly
Robots are increasingly taking over welding and assembly tasks, particularly in areas requiring high precision and consistency. This reduces reliance on manual labor and improves the speed and quality of shipbuilding processes.
4. Underwater Inspection Robots
Autonomous underwater vehicles (AUVs) equipped with cameras and sensors are being used to inspect ship hulls and underwater structures, identifying potential damage or corrosion. This minimizes the need for divers and improves the efficiency of hull maintenance.
5. Digital Twins
Digital twins are virtual replicas of physical assets, allowing engineers to simulate ship behavior, optimize performance, and predict potential issues before they occur. This technology is being used for design validation, predictive maintenance, and operational efficiency improvements.
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Stay informed with the latest industry insights and market trends to identify new opportunities and drive growth in the Robotics in Shipbuilding market. To explore more in-depth trends, insights, and forecasts, please refer to our detailed report.
Top 10 Companies Leading the Robotics in Shipbuilding Market
- ABB
- FANUC
- KUKA
- Yaskawa
- Kawasaki Robotics
- Comau
- Staubli
- Universal Robots
- Epson
- Sarcos
- Others
1. ABB
Headquarters: Switzerland
ABB is a significant player in the robotics market for shipbuilding, providing automation solutions that enhance efficiency, accuracy, and safety in ship construction and maintenance. Their robotics technology is applied in various shipbuilding processes, including welding, cutting, assembly, painting, inspection, and material handling, transforming the industry by boosting productivity and reducing production time.
2. FANUC
Headquarters: U.S.
FANUC is a significant player in the robotics market for shipbuilding, offering a range of robots and automation solutions to enhance efficiency and productivity in shipyards. Their robots are used in various shipbuilding processes, including welding, cutting, assembly, and inspection. The global robotics in shipbuilding market is experiencing growth, driven by the industry's push for automation to improve efficiency, accuracy, and safety while reducing costs.
3. KUKA
Headquarters: Germany
KUKA is a significant player in the robotics market for shipbuilding, particularly in areas like 3D printing of boats and robot-assisted operations. They offer a range of industrial robots and also delve into mobile robotics for intralogistics and production within the shipbuilding industry.
4. Yaskawa
Headquarters: Japan
Yaskawa, a leading robotics and automation company, is actively involved in the shipbuilding market through its industrial robots and automation solutions. They offer a range of robots and technologies applicable to various shipbuilding processes, including welding, painting, material handling, and more, contributing to increased efficiency and productivity in shipyards.
5. Kawasaki Robotics
Headquarters: U.S.A
Kawasaki Robotics is a significant player in the global robotics in shipbuilding market, leveraging its experience as a comprehensive heavy industry manufacturer to develop and implement robotic solutions for shipbuilding processes. Their expertise includes large-scale thick plate arc welding and arc welding systems for hull blocks, contributing to automation in a traditionally manually intensive industry.
Are you ready to discover more about the robotics in shipbuilding market?
The report provides an in-depth analysis of the leading companies operating in the global robotics in shipbuilding market. It includes a comparative assessment based on their product portfolios, business overviews, geographical footprint, strategic initiatives, market segment share, and SWOT analysis. Each company is profiled using a standardized format that includes:
Company Profiles
- ABB
- Business Overview
- Company Snapshot
- Products Overview
- Company Market Share Analysis
- Company Coverage Portfolio
- Financial Analysis
- Recent Developments
- Merger and Acquisitions
- SWOT Analysis
- FANUC
- KUKA
- Yaskawa
- Kawasaki Robotics
- Comau
- Stäubli
- Universal Robots
- Epson
- Sarcos
- Others
Conclusion
The research report provided shows that robotics in the shipbuilding market are undergoing a significant change. The industry is adopting robotics to rapidly resolve major challenges such as high labor costs, greater efficiency and accuracy, and strict safety rules. From welding and painting to material handling and inspection, robots are being integrated in different stages of shipbuilding, which not only enhances productivity, but also improves security by reducing human risk for a dangerous environment. The market is also benefiting from advanced technologies such as collaborative robots, AI-operated design, and use of digital twins for imitation and adaptation of operations. Geographically, while North America is expected to generate the highest demand, is inspired by the need to reduce high labor costs and a strong maritime sector, the Asia-Pacific region is estimated to experience the fastest growth due to its position as a major global ship-making hub. Competitive landscape is shaped by installed companies that are moving in developing and implementing these innovative robotic solutions. Overall, the shipbuilding industry is moving towards a more automatic, efficient and technically advanced future, in which robotics are playing an important role in this development.
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