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Moly Implanting Ion Parts are more effective and widely used in the research and application of ion implantation surface modification of non semiconductor materials. Many nitrogen ion implantation can not be realized, and metal ion implantation can be well realized. However, for the traditional ion implanter based on the needs of semiconductor ion implantation, it is difficult to obtain a relatively strong metal ion beam, and the cost of ion implantation surface modification of non semiconductor materials is also relatively expensive.
SPECIFICATIONS & CHEMICAL COMPOSITIONS (NOMINALS)
Material | Type | Chemical Composition (by wt.) |
Pure Moly | Mo1 | >99.95%min. Mo |
Ti-Zr-Mo Alloy | TZM | 0,5 % Ti / 0,08 % Zr / 0,01 - 0,04 % C |
Mo-Hf-C | MHC | 1,2 % Hf / 0,05 - 0,12 % C |
Moly Rhenium | MoRe | 5,0 % Re |
Moly Tungsten | MoW20 | 20,0 % W |
Moly Tungsten | MoW505 | 0,0 % W |
The application of ion implantation in the modification of metal materials is to inject a certain dose and energy of ions into the metal material surface after heat treatment or surface coating process, so as to change the chemical composition, physical structure and phase state of the material surface, so as to change the mechanical, chemical and physical properties of the material.
Specifically, ion implantation can change the acoustic, optical and superconducting properties of materials, improve the working hardness, wear resistance, corrosion resistance and oxidation resistance of materials, and finally prolong the working life of materials.