Segmented printing and curing locations eliminate deep resin baths, reducing device complexity while maintaining manufacturing precision.
A resin tank bottom plate uses a micro-hole structure to release oxygen and reduce adhesive forces during layer separation.
A coater reduces powder in edge zones to prevent clumps.
An adaptive build platform moves surface points independently to support cantilevered parts, eliminating sacrificial pillars and reducing material waste.
Local quality principles create textured sections on a 3D printed pick, resolving the trade-off between manufacturing simplicity and grip reliability.
A segmented pressure trough enables simultaneous layer-by-layer production of multiple three-dimensional parts from different radiation-curable compositions.
3D-printed microenvironments use programmable-release capsules to establish controlled chemical gradients, improving drug efficacy prediction accuracy.