Retention nubs and an elastomer spoke ring lock a non-pneumatic tire to the rim while maintaining load support, comfort, and longer tread life.
A shield plate and Faraday cup separate measurement and melting modes to keep electron beam diameter and position adjustment accurate.
Near-IR and near-UV optical sensing tracks heat-source photons during additive manufacturing to verify part quality without destructive testing.
Combining selective laser melting, pulse-laser etching, and laser packaging forms clean, high-finish microchannels with precise overhangs.
Integrated liquid and gas channels fix outlet geometry and reduce assembly variation, improving nebulised spray reproducibility.
Localized insulation points between fused magnetic particles interrupt eddy currents, lowering iron losses while preserving density and strength.
Acrylate-based dielectric elastomers raise permittivity for low-field actuation without pre-stretching while preserving flexibility and dielectric strength.
A three-size copper particle blend forms sintered copper pillars with fewer voids, cracks, and interface peeling for more reliable bonded bodies.
A shaft-connector hinge uses friction to hold a utility meter lid in position while allowing rotation, reducing detachment, noise, and extra fasteners.
Blockers and deflectors redirect coolant within a compact plenum to improve flow uniformity and heat transfer across the active volume.
Transparent low-pressure fluid cools an optically addressed light valve, limiting thermal buildup without compressing the liquid crystal gap.
Indirect additive manufacturing forms complex high-silicon bonded soft magnets without cracking, using debinding and sintering for dense magnetic parts.
Alternating 3D-printed insulation and conductor placement simplifies wire harness production and enables automated spatial 3D layouts.
Pre-coated iron-rich metal powders block moisture from aqueous binders, limiting rust and preserving hardness and tensile strength in 3D printed parts.
Two parallel Helmholtz resonator cavities broaden wheel air chamber sound absorption and simplify mounting for lower cabin noise.
Controlled Cu alloy composition, particle size, and sphericity reduce laser reflectance to produce dense, low-void parts with high conductivity.
An insulating housing embeds the water block to limit ambient heat loss, improve cooling transfer, and reduce fluid leak risk.
A 3D beam-based rebuild restores worn plasma edge rings from surface-state data, extending component life and cutting replacement downtime.
Additive manufacturing varies local material properties in electrical insulators to balance field grading, mechanical strength, and gas-tight support.