A stiffened membrane and controlled pressure gap smooth corrugated ceramic fiber preforms during slip infiltration, avoiding post-machining.
Matching compression-fluid density to the impregnation fluid keeps membrane pressure uniform, improving thickness and fiber volume control.
Granular filtration in a fibrous mold retains matrix particles while draining liquid, cutting cost and fitting complex composite shapes.
A granular filter layer retains matrix particles in a fibrous mold, forming composite parts and a surface layer without rigid porous tooling.
Pressure casting uses an impermeable cavity and porous substrate to reduce drying time, surface tackiness, and cracking during ejection.
A grooved membrane improves compression-fluid drainage during aspiration, reducing residue and manual cleaning in composite manufacturing.
A flexible membrane and near-matched fluid densities control pressure differences during composite part impregnation.
A rotating casting cell orients a mould to control ceramic slip drainage through gravity.
Segmented foot slabs and temporary seals protect the noise chamber from liquid interference while maintaining bead movement.
Dual-direction vacuum casting reduces processing time for nano-sized zirconia while maintaining uniform buildup across larger dimensions.
Integrated dewatering channels eliminate complex hose connections, allowing free movement of mold parts and reducing production time for ceramic castings.