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Parts processing of water outlet devices in machining centers: key technologies to improve production efficiency

Parts processing of water outlet devices in machining centers: key technologies to improve production efficiency

2025-01-23

The accuracy of the parts of the water outlet device in the machining center is extremely high to ensure the normal operation and efficient performance of the equipment. The dimensional tolerance of the parts must be strictly controlled, usually within ±0.01mm, in order to avoid poor water flow or leakage caused by dimensional deviations. Surface roughness is also a key indicator. An Ra value of less than 0.8 microns is usually required to ensure the smoothness of the surface of the part, reduce water flow resistance and prevent impurities from attaching. The geometric shape and positional tolerances of the parts also need to be precisely controlled, such as flatness, roundness and coaxiality, to ensure the sealing and stability of the outlet device. The choice of materials and the heat treatment process are also crucial. It is necessary to ensure that the parts have sufficient strength and corrosion resistance to meet the various challenges in long-term operation.

Parts processing of water outlet devices in machining centers: key technologies to improve production efficiency

Parts processing of water outlet devices in machining centers: key technologies to improve production efficiency

2024-12-29

The accuracy of the parts of the water outlet device in the machining center is extremely high to ensure the normal operation and efficient performance of the equipment. The dimensional tolerance of the parts must be strictly controlled, usually within ±0.01mm, in order to avoid poor water flow or leakage caused by dimensional deviations. Surface roughness is also a key indicator. An Ra value of less than 0.8 microns is usually required to ensure the smoothness of the surface of the part, reduce water flow resistance and prevent impurities from attaching. The geometric shape and positional tolerances of the parts also need to be precisely controlled, such as flatness, roundness and coaxiality, to ensure the sealing and stability of the outlet device. The choice of materials and the heat treatment process are also crucial. It is necessary to ensure that the parts have sufficient strength and corrosion resistance to meet the various challenges in long-term operation.

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