Industrial robot application examples
Industrial robots, known as the "pearl in the crown of manufacturing", are automatic positioning control, reprogrammable, multi-function, multi-degree of freedom of the operator, its application examples are widely distributed in various manufacturing industries, the following are some typical application examples:
1. Automobile and auto parts manufacturing
Welding robot: mainly used in various types of auto parts welding production, including melting electrode welding operation and non-melting electrode welding operation two types. Welding robot requires fast and stable movement and high positioning accuracy.
Handling robots: In the automobile production line, handling robots can efficiently complete the handling and assembly tasks of parts and improve production efficiency.
Spraying robot: widely used in automobile body spraying operations, with fast action, explosion-proof performance and other characteristics, can be taught by hand or point to point to show the number to achieve teaching.
2. Machining industry
Grinding and polishing robot: mainly used in aviation, Marine, nuclear power blade grinding and polishing, using robot sand belt grinding and polishing on the surface of the blade, using flexible contact, visual positioning to reduce the grinding and polishing defects. Compared with manual grinding and polishing, it has the characteristics of short processing time, high profile accuracy, small surface roughness and good processing consistency. Can adapt to heavy load, harsh working environment.
Laser processing robot: The application of robot technology in laser processing, through high-precision industrial robots to achieve more flexible laser processing operations. Can be used for workpiece laser surface treatment, drilling, welding and mold repair, high precision requirements.
Third, electronic and electrical industry
Assembly robot: In the electronic product production line, the assembly robot can complete the installation, welding, testing and other operations of electronic components, and improve the production efficiency and product quality of electronic products.
Vacuum robot: mainly used in the semiconductor industry to achieve wafer transmission in the vacuum chamber. Vacuum manipulator is difficult to import, limited, large amount, and strong versatility, which has become a key component that restricts the research and development progress of semiconductor equipment and the competitiveness of the whole machine product, and has high precision requirements.
4. Other industries
Food industry: Industrial robots can complete food packaging, palletizing, handling and other operations to improve the level of automation and production efficiency of food production. Industrial robots can also realize the health and safety of the food production process through intelligent control, and ensure the quality and safety of food.
Wood and furniture manufacturing: In the process of wood processing and furniture manufacturing, industrial robots can complete the cutting, grinding, assembly and other tasks of wood to improve production efficiency and product quality.
Logistics industry: In the warehouse, industrial robots can complete the handling of goods, classification, storage and other operations to improve the storage capacity and efficiency of the warehouse. In the distribution center, industrial robots can realize the automatic sorting and loading of express parcels, improving the efficiency and accuracy of distribution.
Medical field: The application of humanoid robots in the medical field is gradually expanding, especially in patient care, rehabilitation assistance, etc., they are becoming an important helper in the medical care field. In addition, there are AI surgical robots that assist doctors to complete minimally invasive surgery by analyzing patient data in real time, greatly improving the accuracy and safety of surgery.
5. Innovative application cases
Embodied Intelligent Industrial Robot (EIIR) : The embodied intelligent industrial robot unveiled at the Expo, with complex environment perception, strong task understanding, real-time dynamic planning, high-speed accurate control and other sensory drive integrated characteristics, combined with industrial field data and vertical large model, can better understand the complex industrial environment and quickly adjust the dynamic changes of the task. Compared with humanoid robots, it has higher industrial adaptability and lower production and research costs, and can be widely used in multiple application scenarios such as quality inspection, grinding, grabbing, assembly and welding.
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