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    CNC linkage processing

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  • Category:
    CNC Machining
  • Browse number:
    268
  • Release time:
    2023-12-15 14:58:49
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CNC Machining is the 1 advanced form of CNC machining, it is through the coordination between multiple CNC Machine Tools, to complete the processing of complex parts. The following will be from the definition of CNC machining, advantages, applications and future development and other aspects to detail.


First of all, CNC machining can be understood as the collaborative work between a variety of machine tools. Under normal circumstances, the CNC linkage processing system consists of a host machine and multiple slave machines. The host is usually the most advanced control system, the most comprehensive functions of the machine, and from the machine is responsible for assisting the host to carry out a variety of processing operations. The communication and coordination between the host and the slave is carried out through the CNC control system to realize the task allocation and scheduling.


CNC machining has many advantages over traditional single CNC machine tools. First of all, through linkage processing, the characteristics and functions of each machine tool can be fully utilized to improve production efficiency and processing accuracy. For example, when a plurality of machining steps need to be performed at the same time, the linked machining can allocate different steps to different machine tools for processing, thereby reducing the machining time. Secondly, linkage processing can also reduce the idle time in the processing process and improve the utilization rate of the production line. Through linkage processing, automatic loading and unloading of workpieces can be realized between machine tools, reducing manual intervention and improving production efficiency. In addition, linkage processing can also reduce the investment in equipment and human resources and improve the competitiveness of enterprises.


CNC machining is widely used in many fields. First of all, it can be applied to the processing of complex parts. For those complex parts that require multiple processing steps to complete, linkage processing can assign these steps to different machine tools, thereby improving the efficiency and accuracy of processing. Secondly, linkage processing can also be applied to mass production. When a large number of parts need to be processed, the linkage processing can realize automatic production, reduce manual intervention and improve production efficiency. In addition, linkage processing can also be applied to high-precision processing and large parts processing and other fields.


In the future, CNC linkage machining still has a lot of room for development. First of all, with the further development of robot technology, the linkage between robot and CNC machine tools will become an important part of CNC linkage processing. The robot can achieve more precise positioning and operation, improve production efficiency and processing accuracy. Secondly, with the continuous progress of artificial intelligence technology, CNC linkage processing will be more intelligent. Through intelligent control systems and algorithms, machine tools can achieve more accurate coordination and scheduling, improve production efficiency and processing quality. In addition, CNC machining can also be combined with other advanced technologies, such as big data, cloud computing and the Internet of Things, to achieve more efficient and intelligent production.


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