Relief inserts create a hooked interface between injected colors, while laser ablation forms seamless bezel decoration despite sintering shrinkage.
Ultrashort-pulse laser ablation engraves and textures enamel while preserving surface finish and color, enabling durable decorative parts.
Controlled forging distortion and tailored heat treatment make watch part grain structure uniform, enabling more consistent mirror polishing.
Ultrashort-pulse laser ablation engraves thick enamel decorations without surface damage or color shift, enabling durable mass production.
Solid regions fill hollow alloy parts by shape complementarity, enabling binder-free joining with fewer micropores, microcracks, and distortion.
Controlling forging distortion and heat treatment makes watch part grain size uniform and crystal orientation isotropic for consistent mirror polishing.
Broken timepiece pieces are patterned and fused with amorphous metal infill to avoid decoration leakage, cut manual work, and form complex shapes.
A deformable split ring adapts watch display discs to movement tolerances, enabling precise assembly and reducing part wastage.
Laser ablation and recessed finishing give timepiece dials controlled uneven patterns, distinct reflectance, and stable decorative quality.
Rotary dials and a wireless activation input let electronic faucets dispense selected water volumes with precise, user-friendly control.
Direct brazing joins zirconia ceramic to titanium alloy with recessed solder pockets, creating durable watch casing assemblies without adhesives.
Laser filamentation followed by alkaline etching forms precise watch glass or sapphire openings with lower scrap and stronger impact resistance.
Groove-filled metallic joining connects differently colored ceramic elements to create clear demarcation and stronger portable-device casing parts.
Laser ablation of an opaque base layer on sapphire or glass forms precise diffraction gratings with repeatable tolerances and dynamic color effects.
Laser treatment changes LaBx coating stoichiometry to create multicolor watch-dial surfaces with strong corrosion and abrasion resistance.
A deformable split ring adapts watch display elements to movement tolerances, enabling precise assembly while reducing part discard.
Laser-textured display regions on a translucent timepiece surface create complex patterns and textures, then a color layer enhances visual depth.
Sequential laser irradiation adds curved, randomly spaced grooves to watch components, creating a finer hand-crafted decorative texture.
A deposited masking layer forms precise cavities on a mechanical part, preventing leaks and smears while anchoring decoration elements.
A two-step femtosecond and nanosecond laser process preserves fine pattern definition while reducing roughness and adding gloss to timepiece surfaces.
Shallow, spaced recesses scatter incident light to raise watch dial brightness more uniformly across wide viewing angles.
Varying laser scan counts creates shallow and deep dial grooves, producing richer lightness and color gradients with less processing effort.
Wireless dial input lets an electronic faucet dispense selected water volumes accurately, avoiding imprecise sensor-only flow control.
Laser ablation and layered metallic coatings create tone-on-tone ceramic watch decoration with precise relief, holographic effects, and anti-counterfeiting value.
Etched shallow cavities filled with deposited material create legible decorative markings on timepiece components without impairing geometry or function.
Laser blanks pointed hollows and thin grooves, while stamping completes the outline to cut watch dial appliques faster and at lower cost.
A conformal photoresin mask and bonding layers prevent leakage and burrs while electroforming precise, firmly anchored decorative elements.
Alternating pulse-laser scans in two directions cut metal surface patterning time while suppressing reflection on watch components.
A curved deformable zone lets a clock movement spring store more energy with lower stress, compact size, and manufacturable force adjustment.
Laser ablation of an opaque base layer forms diffraction gratings on sapphire or glass parts with tighter tolerances and better repeatability.
Wireless dial input and valve control let a pot filler dispense exact water volumes without manual adjustment or crude sensing.
Laser treatment shifts lanthanum boride coating stoichiometry to create multicolor decorative surfaces with strong corrosion and abrasion resistance.
Laser modulation in segmented length portions forms thin circular watch hands with high precision while avoiding vibration-driven geometric defects.
Delayed first and last laser pulses reduce edge hollows and create curved engraving junctions on high-end timepiece components.