We will reply to your message within an hour.
Often used to create prototype components, these ceramic rods and discs come semi-fired so they can be machined using conventional metalworking tools.
Often used to create prototype components, these ceramic sheets come semi-fired so they can be machined using conventional metalworking tools.
Drill and mill precisely shaped heat sinks and other electronic components that require thermal stability.
Turn and drill intricate components such as heat sinks, fixture parts, and other electronics parts where thermal stability is important.
Machine these rods into nozzles for acids, pins or supports for kilns, and other parts that require extreme hardness when exposed to quick temperature changes and chemicals. This nitride-bonded silicon carbide is better at transferring heat than most ceramics and expands without cracking when temperatures fluctuate.
Made of nearly pure silicon carbide, these sheets resist creep more than other ceramics and are consistently strong throughout, so they won’t sag under heavy loads at high temperatures. Because they withstand extreme temperatures, they’re often used as kiln furniture and machined into structural furnace components.
Used in prototypes, insulators, and machine tooling, these mullite ceramic rods won’t deform or crack when exposed to extreme temperature changes, high heat, or stress.
Also known as Macor, these glass-mica ceramic sheets and bars withstand temperatures up to 1470° F.
Also known as Macor, these glass-mica ceramic rods withstand temperatures up to 1470° F.
Machine complicated shapes and precision parts from these glass-mica ceramic sheets in a fraction of the time it would take using other types of fired ceramic.
Machine complicated shapes and precision parts from these glass-mica ceramic bars in a fraction of the time it would take using other types of fired ceramic.