EUROPE ROBOTIC WELDING MARKET 2022-2028

Automation | Robotics

EUROPE ROBOTIC WELDING MARKET 2022-2028

Market by Payload Capacity, Welding Type, Industry Vertical, and Country Outlook | Forecast 2022-2028

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The report by Triton on the robotic welding market in Europe shows that it would develop with a CAGR of 8.50% in the forecast duration from 2022 to 2028.


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The countries evaluated in this market include:

         Romania

         Germany

         Italy

         The United Kingdom

         Hungary

         France

         Slovakia

         Rest of Europe

France is expected to witness the fastest growth in the regional market in the assessed period. A number of leading OEMs and automotive suppliers, including Porsche, Mercedes-Benz, Dacia, Audi, Jaguar Land Rover (JLR), Skoda, Hyundai, Kia, Volkswagen, and BMW, are present in the region. Central and Eastern Europe offer a highly developed environment for the automotive industry, which opens up growth prospects for the welding robotics market.

The federal government of France is considering the introduction of new policies to aid the development of the automobile industry in the country. The government aims to help not only the local automotive companies, but also the foreign players to invest in the country. This is expected to increase the production of commercial and passenger vehicles in France, which would drive the adoption of robotic welding systems in France.

Slovakia has the highest number of cars produced per capita in the world, producing over 1 million cars per year. It is also the 20th largest car manufacturer in the world and the 6th largest in the European Union. Also, several leading producers, such as Volkswagen, Kia, and PSA Peugeot Citroën, have their manufacturing facilities in the country. The expansion of the automotive industry in the country is expected to boost the adoption of welding robots to enhance productivity. This will drive the studied market’s growth in the years to come.

Robotic plasma arc welding constricts ionized gas via a copper nozzle. It is similar to TIG welding. In fact, plasma welding commonly utilizes the same non-consumable tungsten used for TIG arc welding. Robots used for plasma welding allow greater flexibility that can be easily adjusted to the temperature and velocity at which the weld is formed.

TIG welding-like robotic plasma arc welding (PAW) constricts ionized gas through a copper nozzle. Higher temperatures and velocities are produced as a result, which results in a smaller cross-section of the weld. The same non-consumable tungsten is typically used for plasma welding. Robotic plasma welding offers greater flexibility by making it simple to change the welding temperature and speed. An electric arc is created during plasma welding between the material and a tungsten electrode.

Triton’s report assesses the market based on welding type, industry vertical, and payload capacity. Here, the welding type segment comprises plasma, spot, arc, laser, and other welding types.

The acclaimed companies in the robotic welding market include Yaskawa Electric Corp, Kuka AG, Denso Corporation, Miller Electric Mfg LLC, Nachi-Fujikoshi Corp, ABB Ltd, Panasonic Corporation, and Daihen Corporation.

KUKA AG is engaged in designing and manufacturing industrial robots and offers several tailor-made automation solutions to industrial end-users. It supplies welding robots, palletizing robots, shelf-mounted robots, press-to-press robots, and high-accuracy robots. These include consumer goods, food, logistics, medical, plastics, aerospace, automotive, and pharmaceutical. KUKA AG was founded in 1898, and is headquartered in Augsburg, Germany.

 

Key deliverables of the report: 

·        Market CAGR during the forecasting years 2022-2028

·        Detailed data highlighting key insights, industry components, and market strategies


·        Comprehensive information and estimation of the robotic welding market revenue growth in Europe and its influence on the parent market 


·        In-depth study of forthcoming trends in consumer behavioral patterns 


·        A meticulous analysis of the competitive landscape, vendor scorecard, and Porter’s Five Forces Model


·        A wide-ranging study of factors that will challenge the Europe robotic welding market’s growth during the upcoming years

Want to get specific insights? Our team of analysts can customize this report based on your preferences. Connect with us here

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Table of Content

1. EUROPE ROBOTIC WELDING MARKET – SUMMARY

2. INDUSTRY OUTLOOK

2.1. IMPACT OF COVID-19 ON THE ROBOTIC WELDING MARKET

2.2. EVOLUTION & TRANSITION OF ROBOTIC WELDING

2.3. KEY INSIGHTS

2.3.1. AMALGAMATION OF SOFTWARE & HARDWARE IN ROBOTIC WELDING

2.3.2. DEMAND FOR COLLABORATIVE ROBOTS

2.4. PORTER’S FIVE FORCES ANALYSIS

2.4.1. THREAT OF NEW ENTRANTS

2.4.2. THREAT OF SUBSTITUTES

2.4.3. BARGAINING POWER OF BUYERS

2.4.4. BARGAINING POWER OF SUPPLIERS

2.4.5. THREAT OF COMPETITIVE RIVALRY

2.5. KEY BUYING IMPACT ANALYSIS

2.5.1. DELIVERY COST

2.5.2. SAFETY

2.5.3. EFFICIENCY

2.5.4. ACCURACY

2.6. MARKET ATTRACTIVENESS INDEX

2.7. VENDOR SCORECARD

2.8. INDUSTRY COMPONENTS

2.9. KEY MARKET STRATEGIES

2.9.1. PRODUCT LAUNCHES

2.9.2. PARTNERSHIPS

2.9.3. BUSINESS EXPANSIONS

2.10. MARKET DRIVERS

2.10.1. IMPLEMENTATION OF INDUSTRY 4.0

2.10.2. PREFERENCE FOR ROBOTIC SYSTEMS DUE TO THEIR HIGH EFFICIENCY

2.11. MARKET CHALLENGE

2.11.1. HIGHER INITIAL COST FOR THE INSTALLATION OF WELDING ROBOTS

2.12. MARKET OPPORTUNITIES

2.12.1. R&D FOR THE DEVELOPMENT OF MIND-CONTROLLED WELDING ROBOTS

2.12.2. GROWTH IN THE TRANSPORTATION & AUTOMOTIVE SECTORS

3. EUROPE ROBOTIC WELDING MARKET OUTLOOK – BY PAYLOAD CAPACITY

3.1. LESS THAN 50 KG

3.2. 50 KG TO 150 KG

3.3. MORE THAN 150 KG

4. EUROPE ROBOTIC WELDING MARKET OUTLOOK – BY WELDING TYPE

4.1. SPOT

4.2. ARC

4.2.1. MIG

4.2.2. TIG

4.3. LASER

4.4. PLASMA

4.5. OTHER WELDING TYPES

5. EUROPE ROBOTIC WELDING MARKET OUTLOOK – BY INDUSTRY VERTICAL

5.1. METALS & MACHINERY

5.2. ELECTRICAL & ELECTRONICS

5.3. AUTOMOTIVE & TRANSPORTATION

5.4. OTHER INDUSTRY VERTICALS

6. EUROPE ROBOTIC WELDING MARKET – COUNTRY OUTLOOK

6.1. GERMANY

6.2. FRANCE

6.3. ITALY

6.4. UNITED KINGDOM

6.5. ROMANIA

6.6. SLOVAKIA

6.7. HUNGARY

6.8. REST OF EUROPE

7. COMPETITIVE LANDSCAPE

7.1. ABB LTD

7.2. FANUC CORPORATION

7.3. YASKAWA ELECTRIC CORP

7.4. KUKA AG

7.5. DAIHEN CORPORATION

7.6. DENSO CORPORATION

7.7. NACHI-FUJIKOSHI CORP

7.8. PANASONIC CORPORATION

7.9. HYUNDAI MOTOR

7.10. SIASUN ROBOT & AUTOMATION CO LTD

7.11. KEMPPI OY

7.12. IGM ROBOTERSYSTEME AG

7.13. LINCOLN ELECTRIC HOLDINGS INC

7.14. MILLER ELECTRIC MFG LLC

7.15. KAWASAKI HEAVY INDUSTRIES LTD

8. RESEARCH METHODOLOGY & SCOPE

8.1. RESEARCH SCOPE & DELIVERABLES

8.2. SOURCES OF DATA

8.3. RESEARCH METHODOLOGY

List of Tables

TABLE 1: EUROPE ROBOTIC WELDING MARKET, BY COUNTRY OUTLOOK, 2022-2028 (IN $ MILLION)

TABLE 2: VENDOR SCORECARD

TABLE 3: LIST OF PRODUCT LAUNCHES

TABLE 4: LIST OF PARTNERSHIPS

TABLE 5: LIST OF BUSINESS EXPANSIONS

TABLE 6: EUROPE ROBOTIC WELDING MARKET, BY PAYLOAD CAPACITY, 2022-2028 (IN $ MILLION)

TABLE 7: EUROPE ROBOTIC WELDING MARKET, BY WELDING TYPE, 2022-2028 (IN $ MILLION)

TABLE 8: EUROPE ROBOTIC WELDING MARKET, BY ARC, 2022-2028 (IN $ MILLION)

TABLE 9: EUROPE ROBOTIC WELDING MARKET, BY INDUSTRY VERTICAL, 2022-2028 (IN $ MILLION)

TABLE 10: EUROPE ROBOTIC WELDING MARKET, COUNTRY OUTLOOK, 2022-2028 (IN $ MILLION)

List of Figures

FIGURE 1: KEY BUYING IMPACT ANALYSIS

FIGURE 2: MARKET ATTRACTIVENESS INDEX

FIGURE 3: INDUSTRY COMPONENTS

FIGURE 4: EUROPE ROBOTIC WELDING MARKET, BY PAYLOAD CAPACITY, 2021 & 2028 (IN %)

FIGURE 5: EUROPE ROBOTIC WELDING MARKET, BY LESS THAN 50 KG, 2022-2028 (IN $ MILLION)

FIGURE 6: EUROPE ROBOTIC WELDING MARKET, BY 50 KG TO 150 KG, 2022-2028 (IN $ MILLION)

FIGURE 7: EUROPE ROBOTIC WELDING MARKET, BY MORE THAN 150 KG, 2022-2028 (IN $ MILLION)

FIGURE 8: EUROPE ROBOTIC WELDING MARKET, BY WELDING TYPE, 2021 & 2028 (IN %)

FIGURE 9: EUROPE ROBOTIC WELDING MARKET, BY SPOT, 2022-2028 (IN $ MILLION)

FIGURE 10: EUROPE ROBOTIC WELDING MARKET, BY ARC, 2022-2028 (IN $ MILLION)

FIGURE 11: EUROPE ROBOTIC WELDING MARKET, BY ARC, 2021 & 2028 (IN %)

FIGURE 12: MECHANISM OF MIG TECHNOLOGY IN ROBOTIC WELDING

FIGURE 13: EUROPE ROBOTIC WELDING MARKET, BY MIG, 2022-2028 (IN $ MILLION)

FIGURE 14: MECHANISM OF TIG TECHNOLOGY IN ROBOTIC WELDING

FIGURE 15: EUROPE ROBOTIC WELDING MARKET, BY TIG, 2022-2028 (IN $ MILLION)

FIGURE 16: EUROPE ROBOTIC WELDING MARKET, BY LASER, 2022-2028 (IN $ MILLION)

FIGURE 17: EUROPE ROBOTIC WELDING MARKET, BY PLASMA, 2022-2028 (IN $ MILLION)

FIGURE 18: EUROPE ROBOTIC WELDING MARKET, BY OTHER WELDING TYPES, 2022-2028 (IN $ MILLION)

FIGURE 19: EUROPE ROBOTIC WELDING MARKET, BY INDUSTRY VERTICAL, 2021 & 2028 (IN %)

FIGURE 20: EUROPE ROBOTIC WELDING MARKET, BY METALS & MACHINERY, 2022-2028 (IN $ MILLION)

FIGURE 21: EUROPE ROBOTIC WELDING MARKET, BY ELECTRICAL & ELECTRONICS, 2022-2028 (IN $ MILLION)

FIGURE 22: EUROPE ROBOTIC WELDING MARKET, BY AUTOMOTIVE & TRANSPORTATION, 2022-2028 (IN $ MILLION)

FIGURE 23: EUROPE ROBOTIC WELDING MARKET, BY OTHER INDUSTRY VERTICALS, 2022-2028 (IN $ MILLION)

FIGURE 24: EUROPE ROBOTIC WELDING MARKET, COUNTRY OUTLOOK, 2021 & 2028 (IN %)

FIGURE 25: GERMANY ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 26: FRANCE ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 27: ITALY ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 28: UNITED KINGDOM ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 29: ROMANIA ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 30: SLOVAKIA ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 31: HUNGARY ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

FIGURE 32: REST OF EUROPE ROBOTIC WELDING MARKET 2022-2028 (IN $ MILLION)

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