A titanium-based alloy composition optimized for additive manufacturing processes.
Concentric color zones in a single dental blank eliminate time-intensive fabrication while producing polychromatic restorations that match natural dentition.
Over-extruding material at seams seals gaps between deposited filaments, achieving leak resistance and enhanced mechanical stability.
A thermoplastic polyester composition enables selective laser sintering of durable objects.
Triangular recesses in a test specimen evaluate downskin and upskin conditions, reducing time required for additive manufacturing parameter validation.
Screen printing merges green bodies with release layers to form a three-dimensional structure, eliminating logistical complexity of handling individual sheets.
Combining additive and subtractive techniques with high-energy beams resolves low-resolution trade-offs in ceramic 4D printing.
Copper nanoprecipitates in austenitic stainless steel provide bactericidal activity against Staphylococcus aureus while maintaining corrosion resistance.
Binder jetting creates self-supporting lattice structures for golf club components, eliminating warping and overhang constraints inherent in laser sintering.
Segmented degradable scaffolds with standardized connectors fill variable bone gaps while minimizing stress shielding and inflammatory responses.
Photocurable printing compositions stabilize polishing pads across wide temperature ranges, reducing substrate scratches and improving local planarization.
A titanium-zirconium-niobium alloy achieves super-elastic behavior and low modulus.
Gyroid partition walls in heat exchangers boost efficiency by increasing contact area and promoting turbulence, addressing limited fluid interaction.
Predicts component properties before construction by analyzing segment scanning direction distributions, reducing rejects and material consumption.
A porous fireproofing article applies local quality differentiation to resolve the contradiction between structural strength and fire resistance.
Prismatic guide elements constrain vertical translation of the build plate, eliminating piston jamming and reducing actuation stress.
A hybrid formulation combines UV and heat curing to produce rubber-like 3D structures with enhanced resilience.
Segmenting the chamber isolates excess material, reducing actuator load and maintaining precision for larger parts.
DMREF-Co alloy resists high temperature creep and oxidation by stabilizing gamma prime phase and forming protective alumina layer.
Ultrasonic waves sink gas bubbles in molten metal within a compression chamber to enable precise drop formation.
Thermal binding of a specialized conductive agent eliminates salt pretreat agents, ensuring stable resistivity across varying humidity levels.
A connecting element combines a solid structure for static stress resistance with a lattice structure to absorb dynamic energy.
Evacuating the container before hot isostatic pressing prevents microporosity and leaks, enabling thinner walls without compromising integrity.
A thermoplastic resin with hydrophilic groups and organic salt compound dissolves support structures in neutral water.
Replacing toxic halogen precursors with organometallic tin reduces reaction time and oxygen content in niobium-tin superconducting wire production.
PVA and PE fiber reinforcement in ultra-ductile cementitious mixes eliminates cold joint voids while maintaining extrudability.
Liquid spraying eliminates wiping forces during layer formation while optical measurement compensates for surface unflatness to ensure precise solidification.
Embedding reinforcing rods in plastic foam resolves brittleness and high tool costs while improving crash performance and noise absorption.
A 3D printing method uses targeted heating and mechanical deformation to reshape printed structures into complex geometries.
Additive manufacturing builds a unitary refractory metal airfoil core with tapered cooling passages and uniform material properties.
Variable printing agent density creates thermal bleed to reduce stair stepping without increasing computation costs.
Intersecting two distinct light wavelengths in a curable resin enables volumetric 3D printing, eliminating layer-by-layer indexing and improving part fidelity.
Periodic laser pulses prevent thermal distortion and maintain geometric accuracy while sustaining high processing speeds.
Dual-axis MOEMS mirrors replace bulky galvanometric assemblies, reducing optical unit complexity while maintaining beam speed.
A tool body uses a solid outer jacket encasing a three-dimensional open lattice structure filled with a solid phase material.
Internal magnetic heating resolves non-uniform curing and shape distortion in ceramic 3D printing, ensuring structural integrity.
A cast throttle body main section accepts variant-specific aluminum spigots produced via additive manufacturing and welded to the assembly.
A tetraphenyldiamine-based fusing agent absorbs near-infrared radiation to fuse polymeric build materials in Multi Jet Fusion processes.
A laser beam positioning assembly uses focusing and reflective elements to direct radiation toward a workpiece.
Print silicone optical elements via heated droplet ejection to withstand 250°C without melting.
A hot riveting device uses a separate ceramic forming element on the punch to deform thermoplastic connecting elements.
Seamless polymer segments with distinct porosity and conductivity resolve the trade-off between robustness and softness in skin surface electrodes.
A 3D printed optics carrier fixes optical components in precise alignment using a positioning device.
Composite TPE blends using SIBS and PSt resolve dimensional instability in 3D printing while maintaining required flexibility.
Additive manufacturing positions composite sheets, cures resin matrices, and cuts layers to build three-dimensional components.