The working principle of Milling Cutter PVD Magnetron Sputtering Metallizing Machine is based on physical vapor deposition (PVD) technology and magnetron sputtering technology. During the coating process, the tool is placed in a high vacuum coating chamber. Then, a high-energy electric field or ion beam is used to bombard the metal target, causing atoms or molecules on its surface to be sputtered out. These sputtered atoms or molecules fly freely in the vacuum environment and are eventually deposited on the surface of the tool to form a uniform and dense metal film. Magnetron sputtering technology controls the trajectory of sputtered particles by introducing a magnetic field, making the film more uniform and dense.
Significant advantages:
Improve tool performance: PVD coating machine can form a hard, wear-resistant metal film on the surface of the tool, significantly improving the hardness, wear resistance and corrosion resistance of the tool, helping to extend the service life of the tool and reduce production costs.
Environmentally friendly and pollution-free: Compared with traditional chemical coating technology, PVD coating machines perform coating in a vacuum environment without the use of chemical solutions, avoiding environmental pollution and human hazards.
Precise control: PVD coating machines can accurately control the composition, thickness and uniformity of the film to ensure the consistency and stability of coating quality, which is particularly important in the field of high-precision processing.
High degree of automation: PVD coating machine is highly automated and intelligent, easy to operate and easy to maintain. This reduces production costs and improves production efficiency.