Fine metal particle paste enables high-rate additive manufacturing by reducing processing energy and equipment costs while maintaining mechanical strength.
Additive manufacturing forms hard-phase inserts positioned within a mold cavity and infiltrated with molten metal to create drill bit bodies.
A hybrid 3D printing procedure uses a removable negative mold and sintered thermoplastic powder to build objects.
Surrogate slurries enable protocol development for complex nuclear reactor components while photoactivated dyes facilitate in-situ volumetric defect detection.
Segmenting the outer wall into distinct resolution zones reduces additional printing time while maintaining enhanced surface finish quality.
A semi-crystalline polymer blend controls crystallization kinetics to reduce residual stresses and prevent curling during additive manufacturing.
A radiation curable resin composition combines epoxy, polyester, and polyamide components to achieve high tensile modulus and impact resistance.
Reactive particulate materials enable rapid additive manufacturing through light polymerization of single-cure resins.
A build inclination angle directs diffracted rays outside the retina's useful vision zones in additively manufactured ophthalmic devices.
A three-dimensional deposition device uses a powder supply unit and light irradiation unit to form layers on a base unit.
Additive manufacturing creates anatomically accurate osteochondral molds, enabling stem cell-seeded implants that restore trapeziometacarpal joint function.
Composite polyvinyl acetals with mixed acetal groups raise the glass transition temperature to 50-150°C, reducing warping in warm environments.
A 3D printing apparatus extrudes conductive and non-conductive materials to fabricate electronic devices without printed circuit boards.
Polar aprotic solvent swelling followed by protic extraction removes residual liquid from 3D printed TPU, reducing porosity and improving wear resistance.
A porous bone insert augments sclerotic bone fixation by blocking cement flow into the stem, creating a composite structure that resists cyclic loading.
Controlled rotary mixing increases PAEK tapped density by 60% without compromising flowability or particle size uniformity.
A 3D printed nasal scaffold with open pores supports cell ingrowth, reducing surgical time and donor cartilage needs.
A method generates energy density maps from job files and operation parameters to control energy application in additive manufacturing.
A printer controller monitors ejected drop volume and switches print modes to maintain quality.
An optical sensor measures object feature heights during printing to identify inaccuracies in real time.
Integrating the tube and flange via additive manufacturing eliminates welding operations that cause warping in traditional headers.
Shaping a laminated body directly on a base plate eliminates precise mounting surface processing, reducing complexity and improving cutting accuracy.
Inkjet emulsion deposition creates screen stencils directly on mesh, eliminating labor-intensive chemical processing steps.
Decellularized extracellular matrix particles mixed with elastomers form porous scaffolds without crosslinking, resolving mechanical robustness trade-offs.
Additive manufacturing using printable resin precursors resolves non-uniform polishing caused by conventional machining limitations.
A sensor detects polymerized build material on a support tray to halt the 3D printing process and prevent equipment damage.
A predictive defect model uses computational fluid dynamics to map laser plume interactions, resolving reliability issues from simultaneous operations.
Segmented coaxial collection tubes map radial particle distribution to reduce wall collisions and gas backpressure during additive manufacturing testing.
A 3D dot-grid system generates drawings directly on a monitor.
Multilens projector array couples wide-angle LED emission into optical systems to reduce transmission losses and improve production speed.
Fabricates 3D porous electrode scaffolds using lattice and solid templates to optimize ion diffusion pathways.
An irradiation control model determines optimal settings for additive manufacturing energy beams.
A user-molded thermoplastic intra-oral appliance integrates an actuatable transducer to transmit sound vibrations via bone conduction.
Granulate pyrolysis creates porous preforms for isotropic fiber distribution in metal matrix composites.
Digital printing creates resin bonded abrasive articles directly, eliminating expensive mold wear and labor costs.
Zinc or lithium neutralized ionomer filaments eliminate macroscopic bubbles in humid environments.
Additive manufacturing creates dies with optimized channel-formers, enabling rapid production of complex geometries without traditional machining limits.
A heating and twisting device aligns thermoplastic molecules above the glass transition temperature to reduce torsional stresses in fiber-reinforced filament.
Encoding apparatus prioritizes prediction sections aligned with the modeling direction, reducing code amounts while maintaining voxel value accuracy.
A 3D printed structure with graded liquid infill creates customizable viscoelastic damping properties.
Build characteristic contribution profiles evaluate element strain loads to determine localized build parameters for additive manufacturing components.
Merging valves and sensors into the dome structure reduces part count, leak risks, and assembly time.
Segmented jigs enable root-only milling, resolving precision and speed trade-offs.
Direct deposition of composite rib members onto outer skins eliminates adhesives, reducing weight and manufacturing costs.
Metal salt coordination with unsaturated acid monomers creates ion cross-linked structures that increase breaking stress and elongation ratio.
A 3D ink jet printing method uses distinct raster resolutions for droplet ejection and radiation curing to form precise structures.
A thermoplastic resin composition containing dispersed elastomer particles enables high-strength three-dimensional objects.
A blasting medium mixes coating agent with abrasive grains to deposit uniform layers on three-dimensional objects.
Angling parting sheets during additive manufacturing reduces surface roughness and defects while minimizing pressure drop through smoother flow paths.