Future robot development is not the kind of large-scale production line robots used for welding and painting. Instead, it is to develop smaller, widely used robots. At the same time, it is suitable for small and medium-sized enterprises with higher cost-effective robots, ie, intelligent robots. According to the actual needs of various fields, the robot can be changed flexibly.
The value of robots was first recognized globally for its popularity in the industrial field. In particular, the installation and use of robots in the automotive and electronic manufacturing industries in major demand areas has led to a significant increase in production efficiency. The development of a new generation of information and communication technologies has spawned innovations and applications such as mobile Internet, big data, cloud computing, and industrial programmable controllers, and has promoted profound changes in manufacturing production methods and development models. The “Industry 4.0†strategy of Germany aims at transforming manufacturing into an intelligent one through in-depth application of information technology and cyber physics systems.
With the advent of the German Industry 4.0 era, on the one hand, industrial robots in the field of manufacturing will become the main force of intelligent manufacturing, because manufacturing is the main application area of ​​robots. Robots are widely used in the automation of production processes. For example, in large-scale mass production technologies in the automotive industry and the electronics manufacturing industry today, a large number of robots are used; on the other hand, Internet companies such as Google are involved in the robotics industry. The robot industry environment has brought drastic changes. These changes will enable robots to begin applying big data for self-discipline, enabling networking among robots, and the Internet of Things era will come true, and robots will continue to be upgraded to intelligent robots.
At present, Japan still enjoys a leading position in the world in terms of robot production, applications, supply of major parts, and research, and it still maintains its status as a "robot power." According to the data, in 2012, Japan’s robotic output value was approximately 340 billion yen, accounting for 50% of the global market share, and the number of installations (stocks) was approximately 300,000 units, accounting for 23% of the global market share. Moreover, the main components of the robot, including robotic precision speed reducers, servo motors, and gravity sensors, account for more than 90% of the global market share.
However, China's industrial robots are mainly used in industries such as automobiles and electronic information, and are mainly industrial robots embedded in large-scale production lines. The robots of the future will be more widely used in the industry of three product industries (food, cosmetics, pharmaceuticals), as well as the wider manufacturing fields, service fields for various application environments, and small and medium-sized enterprises. For this reason, the development of robots in the future is not the kind of large-scale production line robots used for welding and painting, but rather the development of smaller, widely used robots, and at the same time applicable to SMEs with higher cost-effective robots. That is, it is necessary to flexibly change the robot according to actual needs in various fields.
In order to accelerate the popularization and application of robots, the relationship between robot suppliers, system integrators, and users needs to be repositioned. Different from the past, these three can completely form a kind of relationship that can be win-win and can obtain high added value. At that time, they can exert their creativity, form cohesion and competitiveness, take into account the cost structure, and work together to enhance the technological development needed for competitiveness.
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