Advanced Structural Ceramics Laboratory

■ Advanced Structural Ceramic Forming Technologies
  ▶ Ceramic Injection Molding: Formulation design adjusts material flowability, enabling a wider
     processing window and including debinding–sintering technology.
  ▶ CNC Precision Machining: Capable of machining alumina, zirconia, quartz, and sapphire for
     customized ceramic and semiconductor components.
  ▶ Dry Pressing Technology: Powder grinding, dispersion, and spray-granulation produce
     compressible spherical powders; controlled pressing ensures mass-production consistency.
 
Advanced Structural Ceramic Forming Technologies
 
■ Multi-Component Oxide Powder Synthesis Technology
  ▶ Chemical Synthesis: Soft-chemical and sol-gel methods synthesize multi-oxide nanopowders
     for sputtering targets.
  ▶ Solid-State Synthesis: Low-cost, simple processing; micron powders can be refined and used
     in glass-ceramics & injection feedstock.
 
 
■ Application
  ▶ Suitable for sportswear, innerwear and outdoor apparel.
 
Application
 
■ Cosmetic Formulation Design Technology
  ▶ Formulation Design: Raw-material selection, compatibility, pH/water-activity evaluation, packaging
     compatibility, preservative & allergen risk control.
  ▶ Microbial Testing: Preservative-efficacy testing per ISO11930/USP5(five challenge microorganisms)
  ▶ Toxicology Assessment: MIC defines minimum preservative level; MBC added for bactericidal
      verification.
 
Cosmetic Formulation Design Technology
 
 
 
 
■ Contact Us 
Material and Chemical Research Laboratories
Dept. of Advanced Ceramic Materials Research Laboratory(X100)
 
Chao-Jen Ho
Tel:03-5916925
E-mail:MaxwellHo@itri.org.tw