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Mechanical processing cannot be separated from gantry milling
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Nowadays, large-scale CNC gantry milling processing occupies half of the territory in mechanical processing and cannot be ignored. But at the same time, there is also a voice: the future is an era of efficient and intelligent processing. So will the future gantry milling still be as strong and important as it is now? How will it develop in the future?

 

1. Performance Development

At present, mechanical processing is mainly evaluated based on efficiency, speed, and accuracy, while large-scale CNC gantry milling uses high-speed CPU chips, multi CPU control systems, and AC digital servo systems, greatly improving its processing efficiency and accuracy. With the development of future technology, CPU chips will bring greater improvements to the performance of mechanical processing with a faster appearance.

 

2. Functional development

At present, the CNC system of gantry milling sets a high threshold for operators. To lower this threshold, it is necessary to make significant modifications to the existing interface, but this workload is too large and has become a major bottleneck in the current computer software development process. In the future, with the upgrading of CNC systems, we can optimize user interfaces more efficiently and provide better user experience. The processing function of gantry milling will also be further developed.

 

3. Structural development

At present, large-scale CNC gantry milling mainly uses highly integrated CPU/RISC chips, large-scale programmable integrated circuits FPGA/EPLD/CPLD, and specialized integrated circuit ASIC chips, which have the advantages of light weight, small size, low power consumption, and portability. The mainstream of display technology in the 21st century, the application of advanced packaging and interconnection technology, the integration of semiconductor and surface mount technology, reduces product prices, improves performance, reduces component size, and improves system performance and reliability by increasing the density of integrated circuits, reducing the length and quantity of interconnections. With the further development of intelligent technology, the size of chips and integrated circuits will be further miniaturized, and the structure of gantry milling equipment will also be further improved.

 

With the continuous development of technology, the demand for production by humans is also expanding. From the current perspective, the future large-scale CNC gantry milling processing will achieve unprecedented development, and in the intelligent world, this intelligence will bring more efficiency and labor-saving to the mechanical industry.

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