A break-away frame, gripping tabs, and adhesive attachments make solid-waste removal from existing diapers easier before toilet flushing.
An integrated module detects bodily fluids in pet garments and alerts the animal and caretaker while supporting hygiene and housetraining.
Two SAP types are distributed around a high-loft central layer to balance absorption capacity, fast acquisition, and low rewet.
See how integrated fastening and receiving components secure an absorbent insert to its outer cover while reducing added material and preserving fit after loading.
Irregular fiber distribution and hydrophilic treatment help the absorbent core limit reverse osmosis, fluid buildup, and surface seepage.
A removable first absorbent body and reusable chassis preserve leg-opening containment and comfort while reducing material waste across diaper changes.
An integrated transfer unit cuts, stretches, and applies elastic tape segments with pre-applied glue to reduce positioning errors.
An integrated transfer unit stretches, glues, cuts, and applies elastic tape segments without separate-unit transfer errors.
Replacing silicone elastomers, a polyisobutene–triblock matrix delivers repositionable skin adhesion and cohesion without tackifying resin.
Segmented standup gather parts and positioned elastic members help retain a deep, wide reservoir space and prevent leakage from backward waste migration.
A movable waterproof pocket redirects excess fluid from the absorbent pad to contain spills before they reach workers or the floor.
A rotary ultrasonic bonding apparatus entraps elastic strands in nonwoven layers, reducing adhesive bleed-through and stiffening.
Small control panels can obscure machinery data; a windshield display combines numbers and images to show parameter differences clearly.
Cellulose-based gauze can shed fibers during surgery; this case uses biocompatible foam to absorb fluids while minimizing particle contamination.
Visual cues and landing zones help caregivers align absorbent articles on supine wearers while reducing panel and fastener tearing.
Concentrating 70–100% of retention capacity centrally helps limit material use while supporting liquid handling in adult incontinence products.
High SAP content can create a gritty feel; a multi-layer cushion uses varied widths and partial bonding to add softness and flexibility.
Reduced-elasticity zones at absorbent-core overlaps limit stiffening while preserving fit, comfort, and leakage protection.
Ultrasonic bonding secures leg and cuff elastic threads between web layers without adhesives, reducing manufacturing costs and separation issues.
Varying elastic force factors across waist, front, and back zones balance fit while reducing tension discomfort during wear.
A diaper pouch receives fecal matter through an anus-positioned opening, reducing spillage onto bedding during changing.
Silver, zinc, and EDTA in a mesh coating target wound biofilms while the non-adherent layer supports atraumatic removal and moist healing.
An orthogonal release paper and adhesive layer hold a folded absorbent article, replacing plastic wrappers while preserving protection and reducing plastic waste.
Prolonged hydrogel wear can irritate skin and raise impedance; iodine-coated conductive gel supports adhesion and TTFields power delivery.
Sebacic acid crosslinking strengthens PGS absorbent dressings, limits shrinkage, and supports diffusion-based release of active substances.
Self-cross-linking polysaccharides form SAPs with strong liquid absorption while reducing persistent cross-linking agents and preserving biodegradability.
A higher-stress waist guard elastic portion forms a pocket that contains low-viscosity exudates while preserving stretchability, comfort, and breathability.
Silicone-coated release paper holds a folded absorbent article, replacing petroleum-derived plastic wrappers while preserving contaminant protection.
Capacitive coupling between disposable and reusable indicators detects exudates while avoiding complex disposable sensor hardware.
Predefined reference values and capacitive moisture signals identify liquid in absorbent articles while reducing manual checks and false positives.
Elastic strands bonded to nonwoven material form pockets that retain liquids and solids without enlarging the absorbent article.
Grooved anvil-roll surfaces guide elastic members during welding, preventing breakage, protrusion, and detachment in stretchable sheets.
Applying ultrasonic energy on only one anvil travel path prevents weld-trace misalignment and stabilizes welding strength and appearance.
Waist-to-side silhouette sizing matches product dimensions to body shapes, improving fit and gasketing across adult absorbent article sizes.
An asymmetric, multilayer absorbent core concentrates polymer and channels liquid to reduce nighttime leakage and maintain topsheet dryness.
Regional glycerin application on a diaper top sheet supports skin care while near-infrared imaging confirms coverage during manufacturing.
Laser welding forms narrow thermoplastic side seams that stay strong in use, look discreet, and tear for removal.
Angled particle introduction creates a non-random size gradient in absorbent structures, reducing gel blocking and improving fluid uptake.
Flat slope conveyors use suction to hold absorbent powder on air-permeable sheets, preventing scattering during layer formation and stacking.