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10.2 G/Cm3 Molybdenum Ion Implantation Parts Injection Molding Application

Categories Molybdenum Products
Brand Name: JINXING
Model Number: Ion Implantation Parts
Certification: ISO 9001
Place of Origin: CHINA
MOQ: 15 kg
Price: Negotiable
Payment Terms: L/C, T/T, D/P, Western Union
Supply Ability: 2000 kg per month
Delivery Time: 15-20 days
Packaging Details: plywood cases
Product Name: Ion Implantation Parts
Type: Mo1
Density: 10.2 g/cm3
Purity: >99.95%
Tensile Strength: >325 MPa
Elongation: <20%
Standard: ASTM B387-01
Application: Injection Molding
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10.2 G/Cm3 Molybdenum Ion Implantation Parts Injection Molding Application

Ion Implantation Parts In Molybdenum For Injection Molding Application

Ion Implantation Parts are an ion beam technology that ionizes an element’s atoms into ions, accelerates them at a voltage of tens to hundreds of kV, and then injects them into the workpiece material placed in the vacuum target chamber after obtaining a high speed. surface.


After ion implantation, the physical, chemical and mechanical properties of the material surface will change significantly. The continuous wear resistance of the metal surface can reach 2 to 3 orders of magnitude of the initial injection depth.


SPECIFICATION & CHEMICAL COMPOSITIONS (NOMINALS)

MaterialTypeChemical Composition (by wt.)
Pure MolyMo1>99.95%min. Mo
Ti-Zr-Mo AlloyTZM0,5 % Ti / 0,08 % Zr / 0,01 - 0,04 % C
Mo-Hf-CMHC1,2 % Hf / 0,05 - 0,12 % C
Moly RheniumMoRe5,0 % Re
Moly TungstenMoW2020,0 % W
Moly TungstenMoW5050,0 % W


APPLICATIONS of Ion Implantation 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;
  • The precision nozzle for extruding synthetic fiber and optical fiber can greatly improve its abrasion resistance and service life;
  • Hot extrusion and injection mold can reduce energy consumption by about 20% and prolong service life by about 10 times;

Future prospects of Ion Implantation Parts technology


Although plasma implantation technology overcomes the direct problem of traditional ion implantation technology, the problem of shallow implantation layer inherent in ion implantation process always exists, which limits its wide use in industry.


Therefore, in order to obtain a thicker modified layer, plasma based ion implantation technology must be combined with other coating technologies such as PVD and CVD, that is, composite implantation and deposition technology. Composite coating technology is an important development trend at home and abroad, and many lithium battery manufacturers are paying attention to it.


This composite coating technology can be carried out in the same vacuum chamber or in different vacuum systems; Injection and deposition can be carried out simultaneously or sequentially.

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