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The industrial robots market share in the automotive industry is expected to increase by USD 3.97 billion from 2020 to 2025, and the market's growth momentum will accelerate at a CAGR of 7%.
This industrial robots market in the automotive industry research report provides valuable insights on the post COVID-19 impact on the market, which will help companies evaluate their business approaches. Furthermore, this report extensively covers industrial robots market segmentation in the automotive industry by application (material handling, assembly line, welding, painting and dispensing, and others) and geography (APAC, Europe, North America, South America, and MEA). The industrial robots market in the automotive industry report also offers information on several market vendors, including ABB Ltd., Comau Spa, DENSO Corp., FANUC Corp., Midea Group Co. Ltd., Seiko Epson Corp., Mitsubishi Electric Corp., Kawasaki Heavy Industries Ltd., Universal Robots AS, and Yaskawa Electric Corp. among others.
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Based on our research output, there has been a neutral impact on the market growth during and post COVID-19 era. The increasing adoption of lean and flexible manufacturing is notably driving the industrial robots market growth in the automotive industry, although factors such as high cost associated with robots may impede the market growth. Our research analysts have studied the historical data and deduced the key market drivers and the COVID-19 pandemic impact on the industrial robots industry in the automotive industry. The holistic analysis of the drivers will help in deducing end goals and refining marketing strategies to gain a competitive edge.
Key Industrial Robots Market Driver in the Automotive Industry
One of the key factors driving growth in the industrial robots market in the automotive industry is the Increasing adoption of lean and flexible manufacturing. The automotive industry is highly competitive in which the players compete on reliability, quality, cost, and delivery. In the current scenario, with the demand for vehicles increasing substantially, the competition among players has become more intense; thus, cost reduction has become a primary concern for them. To achieve this objective, automotive industry players are focusing on producing the required products in the first attempt and thereby eliminating additional costs in the future by adopting lean manufacturing. Lean manufacturing refers to the method that reduces waste generated during the manufacturing process without compromising on productivity. It also considers several other wastes, such as waste generated through overburden or unevenness of workloads.
Key Industrial Robots Market Challenge in the Automotive Industry
The high cost associated with robots will be a major challenge for the industrial robots market in the automotive industry during the forecast period. Industrial robots have high-tech hardware components such as smart sensors, controllers, motor, and software. These components increase their associated cost considerably. A typical industrial robot will cost around $80,000, and that may increase if end-users require any customization to meet their operational requirement. Moreover, automotive industry players do not install a single robot; rather, they prefer to automate the entire factory with robots that can perform different applications. For big automotive players, the high cost associated with robots is not a major issue, and they can make a considerable investment in robots to enhance their production. But the robotics market faces a huge challenge due to the minimal adoption of the technology by SMEs. Although a robot offers significant savings in labor costs and a very quick return on investment, there is no widespread awareness among end-users about the cost reductions on account of the use of robots.
This industrial robots market in the automotive industry analysis report also provides detailed information on other upcoming trends and challenges that will have a far-reaching effect on the market growth. The actionable insights on the trends and challenges will help companies evaluate and develop growth strategies for 2021-2025.
The report analyzes the market's competitive landscape and offers information on several market vendors, including:
This statistical study of the industrial robots market in the automotive industry encompasses successful business strategies deployed by the key vendors. The industrial robots market in the automotive industry is fragmented and the vendors are deploying growth strategies such as pricing and marketing strategies to compete in the market.
To make the most of the opportunities and recover from post COVID-19 impact, market vendors should focus more on the growth prospects in the fast-growing segments, while maintaining their positions in the slow-growing segments.
The industrial robots market in the automotive industry forecast report offers in-depth insights into key vendor profiles. The profiles include information on the production, sustainability, and prospects of the leading companies.
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67% of the market's growth will originate from APAC during the forecast period. China, Japan, and South Korea (Republic of Korea) are the key markets for industrial robots in the automotive industry in APAC. Market growth in this region will be faster than the growth of the market in other regions.
The staggering economic growth, rising middle-class income, and aspirations of a high standard of living among people have a positive influence on the demand for commercial and passenger vehicles in this region, especially in India, China, and Malaysia. This will facilitate the industrial robots market growth in the automotive industry in APAC over the forecast period. This market research report entails detailed information on the competitive intelligence, marketing gaps, and regional opportunities in store for vendors, which will assist in creating efficient business plans.
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The industrial robots market share growth in the automotive industry by the material handling segment will be significant during the forecast period. The main advantages of material handling robots are as follows: Work under harsh and hot conditions, delicate handling of materials without damage, work on multiple processes Improve process efficiency, material handling robots are deployed in automobile manufacturing facilities to improve production efficiency and to use human labor in value-added jobs such as quality control, process control, and R&D. This will drive the adoption of industrial robots for material handling applications.
This report provides an accurate prediction of the contribution of all the segments to the growth of the industrial robots market size in the automotive industry and actionable market insights on post COVID-19 impact on each segment.
Industrial Robots Market Scope in the Automotive Industry |
|
Report Coverage |
Details |
Page number |
120 |
Base year |
2020 |
Forecast period |
2021-2025 |
Growth momentum & CAGR |
Accelerate at a CAGR of 7% |
Market growth 2021-2025 |
$ 3.97 billion |
Market structure |
Fragmented |
YoY growth (%) |
3.23 |
Regional analysis |
APAC, Europe, North America, South America, and MEA |
Performing market contribution |
APAC at 67% |
Key consumer countries |
China, US, Japan, Germany, and South Korea (Republic of Korea) |
Competitive landscape |
Leading companies, Competitive strategies, Consumer engagement scope |
Key companies profiled |
ABB Ltd., Comau Spa, DENSO Corp., FANUC Corp., Midea Group Co. Ltd., Seiko Epson Corp., Mitsubishi Electric Corp., Kawasaki Heavy Industries Ltd., Universal Robots AS, and Yaskawa Electric Corp. |
Market dynamics |
Parent market analysis, Market growth inducers and obstacles, Fast-growing and slow-growing segment analysis, COVID 19 impact and recovery analysis and future consumer dynamics, Market condition analysis for the forecast period |
Customization purview |
If our report has not included the data that you are looking for, you can reach out to our analysts and get segments customized. |
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Executive Summary
Market Landscape
Market Sizing
Five Forces Analysis
Market Segmentation by Application
Market Segmentation by Solution
Customer landscape
Geographic Landscape
Vendor Landscape
Vendor Analysis
Appendix
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