Geometric surface lattices reduce light reflection and scattering without hazardous coatings, extending optical device lifetime.
Independent chill and heat units maintain precise temperatures in each binder trap, enabling furnace cleaning without shutdown.
Integral sacrificial caps with fluid conduits absorb tensile stress and remove unsintered material to prevent defects in complex geometries.
Attachment arrangement with fixation points prevents bottom mould insert bending and misalignment during direct injection footwear manufacturing.
Selective layer removal corrects printing errors without discarding entire objects, reducing material waste and maintaining production speed.
A 3D printing apparatus deposits swarf particles in a die cavity to form layered objects without expensive specialized powders.
Digital models replace physical molds to create complex shapes with undercut features, eliminating specialized tooling costs.
Dynamic height adjustment prevents fabrication layer displacement and ensures uniform powder thickness.
A 3D printing method applies electromagnetic fields to metal powder for rapid induction heating and precise shape formation.
A gas flow guide element diverts and refreshes the protective atmosphere across the build area in additive manufacturing devices.
A support structure combines low-density and high-density sintered regions to balance detachment ease with mechanical stability.
A three-dimensional ordered micro-truss structure forms curved surfaces through photopolymerized polymer waveguides.
A rotatable belt with high thermal inertia conducts heat to fuse layers during additive manufacturing.
Interlocking projections collapse variable-density lattices to reduce stationary mass while maintaining federal safety compliance.
Direct metal laser sintering customizes lie angle and weight distribution in golf club heads, eliminating post-processing bending that weakens metal strength.
Reactive additive manufacturing uses electrical energy to initiate chemical reactions between materials, forming dense reaction products layer by layer.
Segmenting the flow distribution component from the thermal core resolves the trade-off between interface flexibility and manufacturing complexity.
Viscosity modifiers adjust hydrocarbon wax rheology to resolve the contradiction between ink-jet dispensability and casting dimensional accuracy.
Formulated fusing agents expand the material range for rapid prototyping while meeting strict food contact regulatory requirements.
This additive manufacturing process applies energy to melt constituent particles below the support portion melting point, eliminating post-processing extraction steps.
Grain refiners induce equiaxed microstructures in maraging steel, resolving columnar grain anisotropy and low fracture toughness.
Acid additives regulate infiltrant cure rates in a 3D printing powder system, resolving handling strength and color accuracy trade-offs.
A frame supports uncured plies during curing to lock final dimensions, eliminating labor-intensive trimming and sealing operations.
Phase-change materials sublimate at low temperatures to remove temporary supports, eliminating stiction and residue from capillary forces.
Internal manifolds eliminate heavy external structures, reducing manifold weight and thermal resistance while maintaining high pressure handling.
Additive manufacturing of Co-Cr-Fe-Ni-Ti-Mo alloy articles with dispersed ultrafine particles.
A 3D shaping method measures laser reflection intensity to detect sintering defects in real time.
A build region limitation unit segments the manufacturing volume using movable and non-movable frames to define a smaller processing area.
A photopolymerization system uses sequential stations to convert liquid into prepolymer material for construction components.
A guide device maintains constant roller distance to compensate for run-out and eliminate ripple effects on printed surfaces.
Mechanical coding on the helmet inner lining prevents incorrect reassembly while allowing easy cleaning through distinct connection types.
A tire mold matrix element integrates injection nozzles and sealing members via powder deposition to form complex tread cavities.
Multiple adjustable powder distributors operate in parallel to ensure even surface quality and reduce build time.
A greedy search algorithm selects optimal component sets for additive manufacturing assemblies.
Continuous mixing merges foam generation with concrete blending to resolve mechanical resistance and pore structure trade-offs.
A customized mask uses a rigid support member shaped from patient facial geometry data to ensure accurate fit.
Segmented collagenous beads form hierarchical pores that enable deep cellular infiltration beyond the 500 μm limit of conventional foams.
Additive manufacturing deposits distinct steel and nickel alloys to form functionally graded drill bit regions, extending lifespan against downhole wear.
A 3D pultruded outer frame holds structural plies during resin infusion, eliminating mold dependency and plate shifting in wind turbine rotor blade production.
An encoder-controlled voice coil adjusts the focus lens position to maintain uniform spot size across varying beam path lengths.
A binder jet printing method deposits a channel support agent to define internal geometries within powder layers before sintering.
Surface oxide nanoparticles on nickel-based alloy powder enhance high-temperature strength while reducing solidification cracking risks.
Time-controlled laser pulses mitigate uneven hotspots on the build surface, ensuring uniform temperature distribution and stronger metal layer adhesion.
A ceramic heat sink bonded to a semiconductor device via a metal layer provides thermal dissipation and electrical insulation.
Converts 3D data to layered 2D color patches, eliminating trial production time.
Tiled unit cells create high surface area for fluid-solid contact while maintaining open pathways that reduce pressure drop in chromatography and heat exchange.