99.95% Mo1 Molybdenum Products Ion Implanted Parts Metal Processing
99.95% Mo1 Moly Ion Implanted Parts For Metal Processing Application
Moly Ion Implanted 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, the traditional ion implanter based on the needs of semiconductor ion implantation 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 (Norminals)
| Material | Grade | Chemical Compositions (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 |
Advantages of Moly Ion Implanted Parts Technology:
Ion implantation means that when an ion beam is emitted into a solid material in vacuum, the ion beam knocks the atoms or molecules of the solid material out of the surface of the solid material. This phenomenon is called sputtering;
When the ion beam hits the solid material, it bounces back from the surface of the solid material or passes through the solid material. These phenomena are called scattering;
Another phenomenon is that after the ion beam is shot into the solid material, it is slowly reduced by the resistance of the solid material, and finally stays in the solid material. This phenomenon is called ion implantation.
APPLICATIONS of Moly Ion Implanted Parts
The superiority, practicability and broad market prospects of surface treatment technology have been recognized by more and more departments and units, and have been widely used. According to years of research and development, metal ion implantation is particularly suitable for the surface treatment of the following types of tools, molds and parts:
- Precision molds in semiconductor industry, stamping and stamping molds in can industry can significantly improve the working life of these valuable and precision molds;
- Hot extrusion and injection mold can reduce energy consumption by about 20% and prolong service life by about 10 times;
- Metal cutting tools (including various drilling, milling, turning, grinding and other tools and cemented carbide tools used in precision machining and NC Machining) can generally increase the service life by 3-10 times;
- Moly Ion Implanted Parts Picture:
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