Material Overview Advanced architectural porcelains, as a result of their special crystal structure and chemical bond features, show performance benefits that metals and polymer products can not match in extreme environments. Alumina (Al Two O TWO), zirconium oxide (ZrO TWO), silicon carbide (SiC) and silicon nitride (Si four N â‚„) are the four major mainstream […]
Product Summary Advanced architectural porcelains, because of their unique crystal structure and chemical bond attributes, reveal efficiency benefits that metals and polymer materials can not match in severe settings. Alumina (Al Two O TWO), zirconium oxide (ZrO TWO), silicon carbide (SiC) and silicon nitride (Si two N FOUR) are the 4 significant mainstream engineering ceramics, […]
Material Overview Advanced structural ceramics, as a result of their special crystal structure and chemical bond features, show efficiency advantages that metals and polymer materials can not match in extreme settings. Alumina (Al â‚‚ O FOUR), zirconium oxide (ZrO TWO), silicon carbide (SiC) and silicon nitride (Si five N â‚„) are the four significant mainstream […]
Material Review Advanced structural porcelains, as a result of their unique crystal framework and chemical bond attributes, reveal performance advantages that steels and polymer products can not match in extreme settings. Alumina (Al Two O FIVE), zirconium oxide (ZrO TWO), silicon carbide (SiC) and silicon nitride (Si six N FOUR) are the four major mainstream […]
Material Summary Advanced structural porcelains, as a result of their special crystal structure and chemical bond qualities, reveal performance advantages that steels and polymer products can not match in extreme atmospheres. Alumina (Al Two O THREE), zirconium oxide (ZrO TWO), silicon carbide (SiC) and silicon nitride (Si ₃ N â‚„) are the 4 significant mainstream […]