Surface engineering technology produced by mold processing and manufacturing manufacturers is a systematic engineering process that involves changing the morphology, chemical composition, and microstructure of solid metal or non-metal surfaces to obtain the desired surface properties.
1. The surface modification technology for bottle blowing mold production adopts plasma, laser, electron beam, high-density solar energy and other methods to achieve surface modification by ion implantation.
2. Surface coating technology refers to the use of various surface engineering methods to prepare various special functional coatings on the surface of products. With a very small amount of material, it can cause a large amount of expensive or difficult to achieve overall material effects, while greatly reducing the manufacturing cost of the parts. The main feature of this technology is its strong applicability, and its methods include thermal spraying, electrical discharge coating, plastic powder coating, vacuum evaporation, sputtering coating, ion plating, chemical vapor deposition, molecular beam epitaxy, ion beam synthesis thin mold technology, etc.
3. Composite surface technology applies two or more surface treatment methods to the treatment of the same workpiece, which can not only leverage the unique characteristics of various surface treatment techniques, but also demonstrate outstanding effects when used in combination. The main applications in the production of blow molding molds include composite surface chemical treatment, composite strengthening treatment of surface heat treatment and surface chemical heat treatment, composite treatment process of heat treatment and surface deformation strengthening, composite treatment process of coating layer and heat treatment, composite treatment process of coating layer and surface metallurgy, ion assisted coating, laser, electron beam composite vapor deposition and composite coating layer, as well as ion implantation and vapor deposition composite surface modification. Firstly, attention should be paid to the surface maintenance of the mold, that is, the appearance maintenance. The appearance of this mold should not be damaged, that is, it should not be corroded. If the appearance is affected, it will also have a great impact on the quality of the product. Therefore, the maintenance of the appearance of the mold is necessary.
Secondly, it is necessary to regularly clean injection molds to ensure their hygiene. For product production, clean and hygienic molds produce better products, and this also prevents mold contamination. Finally, it is necessary to inspect the parts of the mold to see if there are any malfunctions. This is to avoid the impact of mold failures on product production. Therefore, by taking good care of these aspects, injection molds can better carry out product production work.