A conveyor substrate applies and transfers resin layers for high-viscosity, filled, and multi-material parts without large vats.
Pre-formed bases and posts guide 3D pen assembly, enabling rapid, accurate molecular models without repeated kit reconfiguration.
Area-based table rotation reduces waiting time during electron-beam powder modeling.
A meshing, movable sheet structure absorbs ionizing radiation while reducing shielding weight, cost, and maintenance burden.
A contoured mold and programmable CNC deposition produce smooth component surfaces while reducing time, effort, and finishing cost.
A segmented recoating system forms uniform resin layers, captures printed features, and lowers viscosity through blade vibration.
Contoured surfaces direct lower gas flows parallel to build platforms, removing smoke and particulates from additive manufacturing chambers.
A rotating drum with nozzle actuators projects particle material tangentially for additive manufacturing.
A reduction section blocks reflected light beams to prevent nozzle clogging and maintain manufacturing precision in 3D printing.
Adjusts light source intensity based on slicing data to prevent unexpected curing in non-cured hollow layers during 3D object formation.
Notched support pillars and connecting trusses resolve stability versus removal trade-offs in additive manufacturing.
A coater bar with a transparent film and resin sensor manages solid imaging material layers, resolving layer thickness control challenges.
Digital mask projection cures hydrogel on a moving platform, resolving the trade-off between printing resolution and speed while protecting cell viability.
A resin conditioning unit modifies viscosity and humidity of curable resin before deposition.
Tilting the build table enables vertical deposition, eliminating support structures and surface roughness.
A detachable workpiece carrier connects to a traversing system for automated removal from additive manufacturing machines.
Registration features on a removable platen maintain positional accuracy during object transfer, resolving alignment loss and production waste.
A dynamic substrate assembly with adjustable tautness enables precise object alignment during additive manufacturing processes.
Thermal regulation of the build-plate enables precise deposition of biological materials, resolving species-specific limitations in lung disease modeling.
A programmed controller coordinates a conveyor and dispenser to automatically form a uniform base layer, eliminating manual construction time.