CNC Machining Technology Applied to Aerospace and Industrial Production


CNC machining refers to the processing that the control system issues commands to make the tool perform various movements that meet the requirements, and express the shape and size of the workpiece in the form of numbers and letters. CNC machining generally refers to the process of machining parts on CNC machine tools.


1. Application of CNC machining technology in aerospace


Aerospace technology is an important symbol of the development of science and technology and an important manifestation of the improvement of comprehensive national strength. Aerospace technology needs to pay more attention to precision. In aerospace equipment, a variety of lightweight materials are generally used, such as titanium alloys, aluminum alloys, etc., If the traditional method is used to cut titanium alloys and aluminum alloys, it is easy to cause deformation of parts, which will have a great negative impact on the machining accuracy and overall quality. However, in the process of aerospace equipment manufacturing by using CNC machining technology combined with high-speed mechanical technology, it not only produces less heat, but also has fast cutting speed and high quality. In addition, CNC machining technology, fuzzy control technology, artificial neural network technology, etc. are integrated with each other, which can realize dynamic machining, promote the overall improvement of machining accuracy, and meet the needs of aerospace equipment.


2. Application of CNC machining technology in industrial production


In the process of industrial production, the application of CNC machining technology can be strengthened. The typical application of CNC machining technology is industrial robots. Industrial robots can quickly accept human instructions and can work according to the set procedures. Industrial robots are generally used in welding, industrial handling, machining, spraying assembly and many other production links, by using industrial robots to replace humans, it is possible to work in harmful, toxic and high temperature environments, thus avoiding the danger of working in these harsh environments between workers.


In addition, industrial robots include many key technologies, such as high-speed performance controllers, high-performance servo motors and precision reducers. Industrial robots are mainly controlled by computer technology, and the control panel drives to complete the operation, which effectively guarantees Production safety and reliability, while also improving product production quality and production efficiency.

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