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Focusing on precision metal parts manufacturing

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Current status of machining development

by:Foxron     2021-11-20
With the rapid development of modern machining and machining technology, many advanced machining technology methods have slowly emerged, such as micro machining technology, rapid prototyping technology, and precision ultra-precision machining technology.


Micro machining technology


Following the development of Micro/Nano Science and Technology (Micro/Nano Science and Technology), micro-machines, which are characterized by their own small shape and size or extremely small operating standards, have become a high-tech technology that people know and transform the micro world. Because of its ability to operate in a small space without disrupting the working environment and goals, micromachines have broad application potential in the fields of aerospace, precision instruments, and biomedicine, and have become an important method for nanotechnology research. Therefore, it is highly valued and listed as the first of the key technologies in the 21st century.


Rapid Prototyping Machining Technology


Rapid prototyping technology was developed in the 20th century, and prototypes or parts can be quickly manufactured based on CAD models. It is a method of data accumulation processing, that is, three-dimensional forming is completed through the orderly accumulation of data. Rapid prototyping technology integrates modern scientific and technological achievements such as CNC technology, data technology, laser technology and CAD technology, and is an important part of modern excellent machining technology.


Precision and ultra-precision machining technology


Precise and ultra-precision machining is an important part of modern machining and manufacturing technology, and it is one of the important goals to measure the level of a high-tech manufacturing industry. Since the 1960s, following the development of computer and information technology, higher requirements have been placed on manufacturing technology, not only requiring extremely high dimensions and shape and position accuracy, but also requiring extremely high surface quality. It is precisely under such market demand that ultra-precision processing technology has been rapidly expanded, and various processes and new methods have continued to appear.
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