Segmented shielding parts allow in-oven geometry adjustments, reducing production time and costs for uniform circuit board tempering.
L-shaped ceramic crossbars engage double-walled profile cavities through a key-lock mechanism, eliminating heavy locking latches and reducing kiln thermal mass.
Vertical substrate loading prevents sagging and reduces chamber volume, enabling efficient mass production of high-quality graphene thin films.
A heat resistant structure uses a layered carbon-carbon composite core inside a metallic shell to maintain mechanical strength at high temperatures.
A sample holder with insulated blocks and electrodes enables electrically assisted annealing.
A segmented kiln tool plate with uneven conformations reduces contact area to improve binder gas discharge during ceramic firing.
A refractory container combines a ceramic fiber mat with metal support structures to handle multiple workpieces.
A non-conductive receiving area prevents eddy currents in the holder, ensuring uniform hardness patterns and reducing energy consumption.