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The main component of ceramics is quartz, clay, and kaolin. Ceramics are the obvious choice for use in extreme conditions such as severe changes in temperature and pressure, corrosion. Ceramics which are relatively lightweight also known for their excellent electrical insulation and extreme hardness. As they have fewer physical limitations than other materials, packaging industries are preferring for packaging procedures.
Ceramics in Dental Procedures Upend the Scope in Dentistry
There have been tremendous advances in the mechanical properties and methods of fabrication of ceramic materials. For example, advancement in bonding techniques has increased its scope in dentistry. Dental ceramics used in dental prostheses. The dental prostheses replace the missing and damaged dental structures. However, as restorative materials, dental ceramics have disadvantages such as their inability to withstand functional forces but metal-ceramic systems combine both the exceptional esthetic properties of ceramics and the extraordinary mechanical properties of metals.
Innovative Packaging Solutions Creating New Avenues In the Packaging World
Eco-friendly packaging is the key trend in the ceramic packaging industry. For example, SEMPAC, focusing on the development of integrating packaging solutions use materials for manufacturing are RoHS and REACH compliant. The Open-Pak TM is molded with green molding compounds that meet JEDEC outlines.
Application of Ceramic Packaging in the Medical Industry
Ceramic materials such as implants, prosthetics, and devices changed lives. Furthermore, FDA approved some of them like ceramics-on-ceramics in artificial joint systems. Ceramic packaging is an integral part of medical processes and applications. Surgical implants, prosthetics, and various medical tools made of ceramics changed lives. The latest products of medical ceramics are electronic implantable ceramics sensors. Electronic implantable ceramics are a blend of medical processing and modern technology.
Common Composition in Ceramics
Zirconia ceramics applied to devices that typically generate sufficient wear, such as femoral balls in hip replacements. Alumina ceramics are suitable for surgical implants because it is a very tough and hard material, and does not wear easily. The hot isostatic pressure process improves the physical structure and capability of ceramics by extracting impurities from the material via the application of inert gas. Some companies and manufacturers are developing neurostimulator to treat medical symptoms. These are dependent on ceramic compositions.
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