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Tungsten Crucible

Tungsten Crucible
Introduction

As a professional tungsten crucible manufacturer, we provide comprehensive customization services to meet the specific needs of customers in different application fields. Whether it is special size, shape or material composition, we can tailor it according to customer requirements.In the design stage, you can submit detailed drawings and specifications. Our team of engineers will design based on this information to ensure that the product meets specific requirements. In terms of materials, we use high-purity tungsten and tungsten alloys to ensure the stability and durability of the crucible in high temperature and corrosive environments. In terms of production technology, we use advanced processes such as high-temperature melting and vacuum forming to ensure the quality and performance of the product. Finally, each production link is strictly monitored, including raw material inspection, production process tracking and final product testing to ensure compliance with industry standards.

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Tungsten Crucible
Tungsten Crucible supplier
Product Details
  Tungsten crucibles are widely used in many fields due to their excellent physical and chemical properties. The following are some of the main applications:
  
 1. Metal melting
  
  High melting point metals: Used for melting and casting high melting point metals such as titanium, zirconium and nickel based alloys, suitable for aerospace and automotive industries.
  
 2. Materials science research
  
  Alloy Preparation: Used in the laboratory for synthesizing and studying the physicochemical properties of new alloys and metallic materials.
  
  High-temperature experiments: Used to conduct tests on material properties at high temperatures, such as thermal expansion, electrical conductivity and corrosion resistance.
  
  3. Chemical reaction
  
  Chemical synthesis: used to hold and heat various chemical substances in chemical reactions, suitable for high temperature and high pressure reactions.
  
  Catalyst research: It can be used to study the reaction characteristics and reaction mechanism of catalysts.
  
 4. Semiconductor industry
  
  Crystal growth: Used in semiconductor manufacturing for crystal growth and melting of materials such as silicon to ensure purity and quality.
  
  Vacuum Coating: Thin film deposition in a vacuum environment is used in the manufacture of electronic components and optoelectronic devices.
  
 5. Optical applications
  
  Optical Coating: Used in the manufacture of coatings for high performance optical materials to ensure stability and reliability of optical properties.
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