See how hydrophobic-hydrophilic region segmentation with gradient wettability enables direction
See how electrocaloric fibers with nested electrodes replace vapor-compression loops, reducing
See how openwork knit faces and calibrated barb trapping enable prosthetic mesh to roll through
See how a composite scaffold combines high-porosity interior with flexible support to resist co
See how integrated weighted regions and silicone grip locations in fabric enable strategic ante
Movable cam groups and knock-over bit cams vary needle-bed gap size, enabling flat knitting of 3D fabric with changing thickness.
See how a single-step warp-knit method produces H-shaped hernia prostheses with discrete connec
See how a tricot knitted fabric with cord, denbigh, and inlay stitches plus a resin layer compr
See how core/sheath polyester fibers with low-melting co-PET achieve surface smoothness, low ba
See how a coated strap with straight-tensioned warp yarns secures side-curtain trailers, preven
See how heat-set yarns impart bias to a braided sleeve, enabling stable expanded and contracted
See how a 3D spacer fabric filter reduces dryer energy loss and clogging, extending cleaning in
See how combining synthetic and carbon fibers in composite fabric enables high-speed weaving on
See how a three-layer gusset with hydrophilic/hydrophobic yarns, split-fiber absorption, and im
See how conjugate fibers with controlled polymer gravity center variation generate independent
See how a textile-based converter element with background illumination adapts to contours, resi
See how woven geotextile with engineered 10-100 micrometer pores resists soil intrusion and mai
See how socks with out-of-registration internal and external gripping surfaces create shearing
See how floating weft threads over multiple warp threads guide effect thread needles to precise
See how a reusable protective garment uses hydrophilic-hydrophobic double-knit wicking and sink
See how thermoplastic non-woven textiles use heat-bonding and fused regions to reduce cutting w
See how elongate reflective yarn loops exposed on knit fabric surfaces maintain light reflectio
See how a warp knitted towel fabric with synthetic front yarns and cotton back yarns enables in
A four-layer knitted fabric hides the conductive layer to prevent skin burns while maintaining soft heating and USB battery compatibility.
See how heat-fusible monofilament barbs and a specific warp-knit pattern enable hernia mesh to
Fine-scale embossing creates dense binding points in looped fabric to resist abrasion and edge fraying without sacrificing softness.
See how acrylic resin fixes napped fibers while retaining voids to achieve natural nubuck leath
Interlinked stitch-yarn pairs create a 0.2-0.5 mm roofing membrane fabric that avoids calendaring while reducing elongation and cost.
See how a continuous lace threaded through closed loops secures wrappable sleeves in a single a
See how a double-face woven fabric with elastic yarns and adhesive bonding mimics neoprene's lo
See how a nested scaffold combines a flexible support matrix with a porous inner hydrogel to ma
See how a composite scaffold combines bioresorbable support with high-porosity core to enable c
See how conductive yarns and metal wires with gaps create circuit segments that guide current d
See how a tubular composite scaffold combines internal porous material with external mechanical
See how thermal fusion and hot melt adhesive replace latex in carpet backing to improve water r
See how a magnetic coating on textile scrim enables self-positioning in molds, reducing placeme
See how a magnetic particle coating enables scrims to self-position in molds using magnetic att
See how hollow yarns with 30-60% hollow ratio maintain honeycomb weave structure while improvin
See how a four-layer knit structure hides the conductive heating yarn beneath non-conductive la
See how extracting water-soluble fibres creates air chambers in flame-resistant textiles, reduc
See how a floating weft thread acts as an intermediary to decouple needle insertion from final
See how a multilayer circular-knit fabric with cellulose and hydrophobic fibers absorbs sweat,
See how regularly distributed through-holes in textile backing enable dust removal without comp
A zoned auxetic knit expands perpendicular to stretch, reducing wearer pressure while improving ventilation and energy absorption.
Microzoned 3D nonwoven structure preserves softness and surface shape after compression while improving absorbency and leakage resistance.
Differentiated warp-knitted layers and porous openings raise tensile strength while limiting stretch and preserving airflow.
Sinker-loop-linked ridges replace slipping insertion threads in double Raschel fabric, improving seam strength and ridge stability.
Overlapped stretch and regular weft yarns create 3D shoe-upper patterns during weaving, eliminating separate sewing and lowering cost.
A multilayer helmet head pad uses PCM cooling, spacer ventilation, and sweat absorption to ease heat buildup and improve wearing comfort.
Layered guide bar weaving creates richer jacquard textures while improving shoe upper strength, breathability, and weaving stability.
Functional threads are anchored on the fabric back side so stitching stays hidden from the front while preserving conductivity and appearance.
Alternating absorbable and slower-absorbing loop rows let this medical warp-knit keep support first, then expand uniformly as organs grow.
An asymmetric loop shape, fine filaments, and low-hysteresis elastic yarn help interlock knits gain more balanced stretch in both directions.
Unique loop shapes, fine filaments, and low-hysteresis elastic yarns help interlock textiles gain more balanced stretch in length and width.
Staple fibers are bound inside filaments to prevent fiber loss while improving yarn evenness, strength, processability, and fabric appearance.
A reverse-wound water-soluble yarn tightens the core while keeping sheath fibers loose, improving towel strength, softness, absorbency, and fluff control.
A single-pass knitted upper integrates side panels and an underfoot portion to remove seams, simplify assembly, and improve comfort and durability.
Offset thread guidance and pillar stitches help spacer fabric resist hook-and-loop pull-out while preserving elasticity and breathability.
A multilayer leno-jacquard weave builds 3D shoe upper patterns directly into the fabric, avoiding separate sewing steps and added cost.
Through-thickness interlocking weft tows create 3D woven composite preforms that raise interlaminar strength and cut layup labor in turbine parts.
Bicomponent fibers change loft with perspiration-driven humidity, helping garments switch between insulation and cooling for better comfort.
Multifilaments wrapped around monofilaments give braided sleeves a matte surface, better vibration damping, and easy assembly.
Through-thickness multi-layer weft tows create a 3D woven fabric that improves interlaminar strength while reducing layup and assembly complexity.
A layered knit with interlaced plies and stuffer yarns preserves insulation while reducing fiber shedding and microfiber pollution.
Tough fiber tows are woven into impact-prone regions to raise interlaminar strength, reduce brittle fracture, and cut composite assembly labor.
Tough fiber tows are woven into impact-prone regions of 3D composite fabric to raise interlaminar strength and simplify hand layup.
Woven conductive threads and a sensing circuit enable flexible fabric to detect touch location, force, and near-touch input.
Longitudinal stripe protrusions and opening regions speed fluid intake, keep the surface drier, and limit side leakage in absorbent products.
Copper oxide nanocrystallites let black paper and non-wovens stay dark in visible light while reflecting near-IR and LiDAR wavelengths for detection.
A plastically deformable woven face and uniform stays let the panel fit irregular surfaces while holding fill spacing for easier installation.
By floating front weft inlaid yarns between offset knit courses, this case enables direction changes, asymmetric patterns, and zonal strength.
An auxetic knit zone beside a conventional knit reduces lateral contraction during stretch, improving comfort, pressure distribution, and breathability.
3D woven hoop, pi-joint, and strut preforms cut gas turbine composite assembly complexity while improving interlaminar strength.
3D woven preforms with resin transfer molding replace 2D layup to raise interlaminar strength and cut labor in gas turbine components.