Cryogenic treatment reduces residual stresses in additively manufactured metal workpieces while inert gas prevents corrosion during warming.
Jack screws on a C-shaped bracket compensate for weight-induced twisting and bending of recoater rails, maintaining straight level configuration.
Composite sheets replace loose powders to eliminate safety hazards and reduce clean-up time during multi-material additive manufacturing.
An additive fabrication system uses speech recognition to extract build commands, resolving interface complexity while improving ease of operation.
Anisotropic doctor blades reduce stress on treated layers while maintaining thickness consistency in additive manufacturing.
A coordinate measuring machine calculates an error map using known surface normals to align measurement data sets.
A voxel model processing method calculates distance attributes for sparse data to enable accurate surface offsetting.
A sinterable filament combines metal powder with a thermoplastic binder to form coherent green bodies.
A light integrator directs divergent illumination to a spatial light modulator within an optical engine assembly.
Optimized polyol and polyisocyanate concentrations balance crosslinking density to reduce curing shrinkage and warpage during photofabrication.
Custom guides derived from pre-operative scans align acetabular implants accurately, resolving trade-offs between precision and surgical complexity.
A hand orthosis uses a rail and force-introducer to drive finger segments for natural bending.
Organic photoredox catalysts enable controlled radical polymerization for additive manufacturing, resolving viscosity and purity trade-offs.
Applying 20 kHz ultrasonic vibration improves binder penetration and sand density uniformity, resolving flatness defects in frozen 3D printed molds.
Multiple inlet jets atomize resin solutions to reduce water content and energy consumption in polycarbonate production.
Injection molded structural plates enable fine channel structures in liquid cooling modules, overcoming casting thickness limits.
Additive manufacturing produces a scaffold for multi-component energetic systems.
Segmenting additive manufacturing and casting resolves the contradiction between geometric complexity and production volume.
Heated inorganic binder enables precise selective agglomeration of granular sand layers for automated mold production.
An optical beam expansion device widens energy beams before they reach the measuring element in additive manufacturing systems.
A modular support frame uses independent positioning units for precise Z-axis movement in additive manufacturing.
Adjusting slurry pH controls viscosity and coagulation, eliminating binder removal steps that cause warpage and impurities in ceramic manufacturing.
Optimized aluminum alloy composition resolves cracking sensitivity during selective laser melting while maintaining high elastic limit and hardening capacity.
Segmented inserts adapt to irregular cavities and reduce cooling air usage while maintaining component temperature control.
A 3D model adjustment system compensates for thermal contraction by adding material to the digital geometry before printing.
Optical fringe projection measures substrate topography during 3D printing to detect defects early and maintain throughput.
Additive manufacturing creates voids in a single-piece pin shaft and carrier to increase flexibility, resolving uneven load distribution issues.
Layer-by-layer bioprinting with cytokine-infused bioink resolves the contradiction between structural accuracy and fabrication complexity.
Intersecting sheet and point light beams cure resin at their intersection, eliminating stage lowering delays that reduce productivity.
An on-axis optical configuration with achromatic doublet lenses eliminates apertures that cause diffractions, improving image quality.
Three-dimensional printing creates water dispersible aesthetic particles with internal voids and non-linear through holes.
A multi-scale three-dimensional pentamode metamaterial uses biconical rods and lattice-filled nodes to adjust equivalent density and moduli.
Controlled molar mass hydrolysis resolves the trade-off between cellulose reactivity and mechanical strength.
Acylphosphine oxide initiators provide photobleaching to resolve the trade-off between curability and transparency in stereolithography.
A printing method aligns discrete fibre bundles within a polymer matrix to establish precise reinforcement paths.
A data processing apparatus generates process capability data by printing objects with variable parameters in distinct build regions.
A variable density lattice structure confines material to an outer volume within a three-dimensional article shell.
Elongated particles create linear pathways for gas channeling, preventing porosity from binder burn-off and enabling 99% theoretical density.
PEEK-PEoEK copolymers lower melting temperatures to reduce degradation and warpage while maintaining high temperature performance and chemical resistance.
External ultrasound activates acoustic-sensitive materials for deep tissue bioprinting without toxic photoinitiators or thermal damage.
Disposable paper layers bonded by adhesives replace complex powder systems, reducing equipment costs.
A powder-based adhesive-cement binding system enables reliable three-dimensional printing of ceramic components using a nonaqueous jetting fluid.
Segmented deflectors guide cooling air along blade surfaces, resolving insufficient heat exchange and extending component lifespan.
A stripping device moves with a light source to form a projection surface on light-curing plastic during polymerization.
Conical nozzles distribute feedstock uniformly across the plasma periphery, resolving local concentration spikes that cause non-uniform temperature profiles.
A photocrosslinkable hydrogel combines decellularized extracellular matrix with electroconductive nanomaterials to form printable scaffolds.
A dry beam path maintains a defined gas atmosphere with relative humidity below 3% in the optical space of an additive manufacturing device.