Machinery precision parts processing refers to the process of changing the external dimensions or properties of the workpiece through various machines. Its meaning has various understandings. Shanghai Piney Technology Industrial Machinery Precision Parts Processing refers to the process of manufacturing products by mechanical means in a broad sense; it refers to the process of making parts with special machinery such as lathes, milling machines, drilling machines, grinders, stamping machines, and die casting machines in a narrow sense. According to the temperature state of the workpiece to be processed, it is divided into cold working and hot working.
Generally, processing that does not cause chemical or phase changes in the workpiece at room temperature is called cold working. Similarly, processing that is higher or lower than normal temperature and will cause chemical or phase changes in the workpiece is called hot working. Cold working can be divided into cutting and pressure processing according to the difference in processing methods.
Heat processing commonly includes heat treatment, forging, casting, and welding.
The machinery required for the processing of precision parts of Shenzhen Machinery consists of digital display milling machines, digital display forming grinders, digital display lathes, EDM machines, universal grinders, machining centers, laser welding, medium wire, fast wire, slow wire, cylindrical grinders, internal grinding machines, precision lathes, etc., which can be used for turning, milling, planing, grinding and other processing of precision parts. Such machinery is good at turning, milling, planing, grinding and other processing of precision parts, and can process various irregular-shaped parts with a machining accuracy of up to 2μm.
The scope of application of Shenzhen machinery precision parts processing:
1. Processing of various metal parts.
2. Sheet metal, box, metal structure;
3. Mechanical processing of titanium alloys, superalloys, and non-metals;
4. Design and manufacture of wind tunnel combustion chamber.
5. Non-standard equipment design and manufacturing.
6. Mold design and manufacturing.
7. Structural welding engineering.


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