Acicular or platy functional particulates reinforce powder bed compositions, increasing flexural modulus and eliminating costly post-formation strengthening.
A curable liquid composition with hydrogen-bonding monomers and solvents enables precise three-dimensional object formation.
Custom insulation layer geometry replicates thermal profiles in additively manufactured test specimens.
A PBF-AM control unit adjusts beam irradiation using backscattered electron signals from preceding layers.
A hybrid scanner fabricator uses coarse and fine deposition heads within a single housing to build three-dimensional objects rapidly.
Replacing thermal stress with mechanical friction, this method infiltrates graphene oxide into 3D printed titanium alloys to improve tribological performance.
Superimposing shifted structured light beams improves measurement resolution, enabling accurate monitoring of topography and powder flatness in 3D printing.
Core-shell filaments resolve thermal conductivity limits in FDM printing by embedding metal cores within thermoplastic shells.
Binder jet printed titanium substrate features retention features that mechanically interlock ceramic plasma spray coatings.
A dental template uses ultraviolet light-blocking material to guide orthodontic bracket placement and manage adhesive flash.
Imaging-based solvent evaporation monitoring stabilizes fluid material layers, preventing horizontal spreading and deformation caused by upper layer weight.
Segmented polypropylene housing protects inkjet nozzles from corrosion and mechanical shock in powder-substrate environments.
Shaped film cooling holes improve thermal protection on gas turbine nozzle pressure sides despite adverse pressure gradients diverting coolant flow.
Segmented secondary elements reduce powder consumption while maintaining mechanical integrity during selective melting.
A microfluidic device creates concentration gradients in a hydrogel matrix to culture cells in three dimensions.
A nitrided complex concentrated alloy uses dispersed precipitates to enhance mechanical properties through additive manufacturing.
This method eliminates multi-step reference frame deviations by depositing lens body and technical marks in one operation, ensuring precise registration accuracy.
Selective irradiation of flowable radiation-polymerizable material builds customized optical power on a lens substrate.
Additively manufactured tubular array heat exchanger merges manifolds and tubes to eliminate joint leaks while reducing assembly time.
Forms a composite filament with a controlled transition zone to eliminate interface gaps and maintain sharp edges during multi-material printing.
Touchscreen interface detects applied force to verify adult supervision before enabling 3D printer operation.
Segmented screens with isolation borders eliminate exposure contamination, enabling high-resolution parallel printing without resolution loss.
Optical structures applied perpendicular to the radial direction enable light collimation and beam shaping while maintaining flexibility.
Local heating fuses the support member and mould body, resolving connection strength issues without mechanical fasteners.
Fluted counter rotating rollers increase shear force to boost recoating speed from 5 mm/sec to 125 mm/sec.
Polymer shell models decompose into graphite interfaces, eliminating post-processing porosity and enabling full densification of complex mechanical shapes.
Low solid solution copper alloy powder resolves strength-conductivity trade-offs in lamination shaped products.
A flute head joint uses a beak-shaped mouthpiece and curved neck to simplify embouchure formation for beginners.
Penetrating liquid functional material absorbs electromagnetic radiation to fuse build layers.
An image processing apparatus determines color and shape control information using bidirectional reflectance distribution function data to form optical anisotropy.
A Mo-Cr dendritic and Ni-Al interdendritic alloy structure enhances hardness for die casting applications.
Climbing robots construct towers by extruding uncured material, eliminating hazardous crane operations and complex transportation logistics.
A pump cover with a thermosensitive element changes color to indicate water temperature, preventing burn injuries during maintenance.
A fiber-free polymer resin member with embedded mesh mimics ultrasonic scattering for composite inspection.
A 3D marker construction method creates structural features from 2D representations to enable accurate pose determination.
Leaching glycerol and polyvinyl pyrrolidone from cured silicone creates porous matrices that balance extrudability with shape retention.
A sintering system uses a movable floor and pneumatic assembly to extract unused powder from the build chamber.
Segmented additive manufacturing reduces machining complexity while maintaining precision for customized burner designs.
A continuous stereolithography method solidifies photopolymerizable material using dynamic platform speed and pixel intensity control.
Thermal joining of cut fiber ends suppresses meandering and maintains rigidity in three-dimensional object forming apparatuses.
Axially extending hopper recesses guide granular thermoplastics to an extruder screw, preventing bridging and ensuring uniform extrusion patterns.
An autonomous mixing and feeding system for 3D printed buildings reduces onsite waste and energy usage by precisely controlling material composition.
Targeted placement of compensation droplets in boundary areas eliminates post-processing steps, reducing manufacturing time and costs.
Sinusoidal wave infill structures orient normal to boundary walls to tune mechanical characteristics in additive manufactured parts.
Additive manufacturing replaces UV-curing masks to produce uniform cantilevered protuberances, increasing fibrous structure surface area and absorbency.
Pulverulent thermoplastic polyurethane blends form microphase-separated structures to enhance mechanical flexibility and thermal stability.
Voxel replacement in porous bodies reduces permeation resistance while maintaining high permeability for improved filtration efficiency.
Segmented gas flows atomize melt streams to produce spherical powder with narrow size distribution while reducing operating costs.
A hatch system guides components beyond build chamber dimensions during additive manufacturing.
A collagen ink disperses native fibers in an acidic medium to enable stable 3D printing.