See how a rotating housing with apertures and a shaping member organizes golf gloves, enables a
See how magnets in a sleep garment maintain supine positioning to reduce SIDS risk while allowi
See how magnets in a sleep garment and surface maintain supine positioning to reduce SIDS risk
See how a sensor-equipped storage box detects humidity and triggers automated ventilation to ma
See how a teabag-like capsule with absorbent layers contains water-soluble dye to decorate fabr
See how a nursing sling with foldable platform and adjustable straps resolves bulkiness and rea
See how dividing ablation planning into thermal energy distribution and probe parameter determi
See how a spacer uses elastically deformable connectors with varying curvature and cross-sectio
See how a ventilation module and humidity sensor automate moisture removal in closed garment bo
See how feeding silkworms structured materials like graphite and TiO2 nanotubes enables scalabl
See how a lobe positioner with slides and spacer blocks flattens and holds elastic material lob
See how polymer film infusion creates hydrophobic microfluidic channels in fabric, enabling sca
See how a sew-and-transfer method embeds conductor wires in elastomer using zigzag patterns to
See how placing sacred elements on hidden interior surfaces of clothing enables private access
See how a bathrobe with fixedly coupled towel assembly reduces misuse and excessive washing, im
See how an electrically conductive core activates thermochromic pigment coating via Joule heati
See how moisture sensors and position tracking automate garment dryness monitoring, eliminating
See how embedding the printed component in an interior layer protects aesthetics from abrasion
See how vertical tong-based shoe storage with nested internal cavities increases capacity while
See how segmented design elements with universal retaining mechanisms enable one garment to dis
See how orthogonal in-plane and out-of-plane pleats create auxetic fabric expansion in two dire
See how dynamic simple and complex arches in a swaddle garment enable hands-free skin-to-skin c
See how orthogonal in-plane and out-of-plane pleats enable fabric to expand in two directions,
See how selective application of high-friction coatings to inner and outer sock surfaces preven
See how an inspection processor reads unique identifiers, automates quality checks, and updates
See how a meshed shell garment with detachable scrubbers enables water flow, privacy coverage,
See how flexible Peltier elements embedded in a layered vest structure enable continuous active
See how a sewing-machine method embeds conductor wire in moldable polymer to achieve 500% stret
See how a flexible substrate enables thermoelectric modules to conform to body contours while p
See how a dual-wheel assembly with spikes and holes simultaneously welds and perforates micro-d
See how an inspection processor reads unique identifiers and updates a centralized tracking sys
See how selective application of high-friction materials to fabric inner and outer surfaces pre
See how hinged wall segmentation and a ledge-supported base enable a container to collapse flat
See how a vacuum-held mold assembly with die, intermediate plate, and lid enables rapid two-pie
See how conductive threads woven into textile form a capacitive touch sensor, enabling flexible
Molten thermoplastic penetrates a plush fabric surface to embed yarns, creating garment support that resists breakage while staying flexible.
Selective non-slip coatings on inner and outer fabric surfaces increase friction with skin and external surfaces to prevent slippage in sports garments.
Woven conductive threads form a capacitive touch surface that cuts rigid sensor cost and enables integration into clothing, bags, and molded parts.
A pocket insert card holds a wicking fabric towel outside the garment, giving golfers quick hand and equipment cleaning without soiling clothing.
Rotary printing applies elastomer precisely into fabric to create seamless elastic regions without adding thickness.
Microwave-sensitive yarn weakens stitched joins on demand, enabling garment disassembly for cleaner textile reuse, recycling, and insignia removal.
A conductive thread grid turns fabric into a capacitive touch sensor that cuts rigid touch pad cost and fits clothing, bags, and molded parts.
Microwave-susceptible textile connectors enable automatic garment disassembly, separating parts for reuse or recycling without fabric damage.
A mandrel nested in a torus support keeps wig strands wrapped in shape, preserving one-directional curls during storage, transport, and display.
Antiphase control keeps simultaneous styler hangers out of phase to cut vibration noise and reduce damage that shortens system life.
A flexible wrapper with a collapsible dispensing channel keeps wipe rolls clean, compact, and touch-free in pockets or purses.
Spiked and holed rotating wheels weld and perforate micro-denier fabrics in one step, avoiding charring, backing paper, and extra waste.
Direct hot-air heating between textile layers activates the thermoadhesive element faster, improving joint quality while protecting delicate materials.
Structured folding creates exposed fabric zones that selectively display insignia, ribbons, badges, or medals from one pocket square.
A compressible closed-cell foam insert holds a shirt taut behind glass, preventing wrinkles while protecting it from damage and deterioration.
A telescoping hanging assembly retracts into a travel container, then extends to hang garments for display or space-saving during transport.
Open-mesh bag with internal clips and a central zipper keeps small garments organized through laundry, drying, storage, and travel.
A rigid gasket and elastic loop create a simple universal ornament attachment for rod-like or string-like parts without deformation.
A removable adapter insert and ridge-grip housing secure multiple floor mats for damage-free transport, storage, and retail display.
Digital image synthesis overlays garments on a mirror-like display, enabling private at-home try-ons with fit assessment and size matching.
A corrugated box and reusable hanger replace polyvinyl bags to improve retail display, product protection, and recyclability.
A locking plug-and-socket connector resists pullout, corrosion, and fouling while maintaining reliable smart garment signals through washing and drying.
Embroidery-based RF-TENG textiles use silanized conductive nanoparticles and porous hydrophobic layers to resist moisture, stay breathable, and self-power wearables.
Electrical stimulation in a smart sleeve changes driver grip on the steering wheel to align hand response with autonomous control and cut reaction delay.
Wireless modules move from rider headgear to the instrument cluster, enabling audio guidance with less bulk, battery weight, and radiation exposure.
A detachable watertight textile connector keeps electrical contacts working through washing and drying while allowing individual components to be replaced.
Elastic inner contacts enable press-fit connection to conductors on either side of a sheet member while improving reliability and EMI resistance.
An elastic sheet connector combines garment tightening and electrical contact in one fit, improving bio-signal measurement accuracy and ease of use.
A channel-shaped receptacle keeps wearable connector contacts accessible for wiping away dirt and fluids without damaging flat-cable conductors.
A slack conductor inside an elastic tube improves waterproof wearable wiring, preserving comfort and fabric stretch while reducing noise.
A protection sheet isolates flexible conductors from heated adhesive, preventing deformation, disconnection, and waterproofing failure.
Flexible textile transmission lines use graphene-based conductive layers and encapsulation to resist bending, stretching, and environmental exposure.
A movable conductor inside an elastic lumen keeps seam tape stretchable and conductive while simplifying textile electrical connection and insulation.
A slack conductor inside an elastic tube improves comfort, reduces motion noise, and keeps wearable biosignal wiring waterproof.
A neck washer in a rivet connector bridges hidden textile conductors to accessible terminals, enabling durable garment power connections.
Device pockets, neutral-axis conductors, and in-draw metallurgical bonding improve embedded fiber reliability under bending and washing.
A slack conductor inside an elastic tube preserves waterproof signal wiring while stretching with body movement to improve wearable comfort.
Porous hydrophobic coatings let textile TENGs resist moisture and bacteria while staying breathable and generating stable wearable power.
A slack conductor inside an elastic tube preserves waterproof stretchability while reducing motion noise and discomfort in wearable wiring.
Discrete fitting protrusions and a punched unit plate secure ornaments under pulling force while keeping the attached product area bendable.
Metallurgical bonding during fiber drawing secures embedded devices and conductors, improving wash- and bend-resistant textile electronics.
Pre-positioned devices and conductors in a drawn fiber create neutral-axis metallurgical bonds that withstand bending, stretching, and washing.
A flexible capacitive sensor uses conductive elements on both substrate sides to distinguish front and back touch without added shielding.
Opposite-side sensing elements on a flexible substrate separate intended and unintended touch inputs without added shielding bulk.