Disposable film graphics on wearables prevent ink rub-off while maintaining breathable belt structures.
Nanoscale hydrocolloid particles provide high water absorption capacity without increasing adhesive hardness, maintaining skin comfort and dryness.
An inclined excreta inducing seat guides feces into a dedicated bag, preventing direct skin contact and reducing irritation.
Target strips and visual indicators guide fastener placement to prevent sagging, ensuring a secure fit that reduces leakage and improves wearer comfort.
A diaper sensor device uses humidity and temperature data to classify waste contents for caregivers.
Segmented thermoplastic strands connected at bridging regions reduce material usage while maintaining fastening security and breathability.
Absorbent articles integrate aldehyde-based chemical neutralizers with menthol sensory blockers to reduce malodor perception.
A disposable absorbent article belt features a frangible pathway engineered with varying tensile strengths to facilitate controlled tearing during removal.
A rotary means rotates discrete absorbent segments while adjusting spacing between them.
Uniform color scheme with information tag reduces manufacturing costs and color contamination while improving discretion for disposable pant articles.
Thermally bonded fibers form a porous web that maintains caliper under compression while enhancing fluid distribution.
Rotating repitching members stretch elastic members uniformly, preventing wrinkling and distortion in hygienic laminate manufacturing.
Continuous water-absorbent resin production separates and mixes batches based on laser diffraction measurements to resolve property dispersion between lots.
Width-direction slits with concave elastic members let the waist-side absorber deform independently, reducing leakage from crotch contraction forces.
Moving a single sensor head via drive current eliminates multiple switches, preventing interference with absorbent sheets during size changes.
Graded vertical stiffness across three zones prevents sagging and folding of the front elastic belt region while ensuring wearer comfort.
Automated optical inspection detects elastic material defects and triggers re-threading to maintain continuous web processing.
Electrospun donepezil nanofibers form a transdermal patch that bypasses gastrointestinal side effects while maintaining consistent drug release.
Offsetting the absorbent core and applying a high-print-area backsheet reduces bulk in the waist region without causing see-through opacity issues.
A hook fastener segment uses precise dimensional control and color matching to blend with nonwoven fabric.
A two-layer absorbent core structure uses open-cell foam pieces to enhance fluid acquisition rate while maintaining a thin flexible form.
A defibrating station generates fresh fibers while a recycling duct conveys recovered fluff to the forming unit.
Cutting mark control aligns sensing strips with data readers, eliminating manual positioning bottlenecks.
A folded closure tape tab design with a distal end portion covering the inner surface to prevent adhesive contact between layers.
An asymmetric elastic region in a diaper waist prevents absorbent body displacement when pulling the back waist to fasten the front.
Segmented web guiding units compensate for uneven elastic member contraction, maintaining precise alignment during continuous manufacturing.
Segmented vacuum chambers apply differential pressure to move particulate material onto a moving endless substrate surface.
A forming drum uses a masking layer to separate adhesive application from channel zones during absorbent pad manufacturing.
A wound dressing uses pH-sensitive particles containing fluorescent dye to detect alkaline shifts in chronic wounds.
Polygonal charging stations activate power via contact with open clip elements, reducing electronic waste by enabling reusable sensor hardware.
Weak bonded portions peel off under swelling pressure, enabling adjacent cells to coalesce and increase volume while preventing particle leakage.
Polyurethane foam dressing integrates oxidoreductase enzyme to generate hydrogen peroxide for sustained antimicrobial activity.
A disposable diaper uses a layered sheet with a hydrophobic skin-facing surface and a hydrophilic inner layer to absorb sweat.
Three-dimensional topsheet materials with pigmented fibers create visual depth and tactile softness in absorbent articles.
Neutralized aluminum salt coating on superabsorbent polymer particles enhances centrifuge retention capacity and permeability stability.
Transporting pulverized nonwoven fabric fragments into an accumulating depression and pressing the accumulation to eliminate gaps between particles.
A panty pouch system provides direct cooling to the labia majora using removable thermal packs.
Surface crosslinked super absorbent polymers with specific Hansen solubility parameters rapidly diffuse urine, resolving rewet and leakage trade-offs.
Conductive sheets in the receiving space detect stool presence by closing an electrical circuit, enabling immediate caregiver notification via the receiver.
A dibutyrylchitin and polylactide polymer foam provides enhanced absorbency for medical applications.
Polymer-free organo-modified clay films create continuous diffusion paths, resolving permeation barriers in antimicrobial wound dressings.
Pneumatic conveying moves polymer particles between grinding and classification, reducing mechanical stress to maintain centrifuge retention capacity.
Prints graphics on the main body instead of the belt to eliminate ink rub-off costs while maintaining visual integrity.
Integrating elastic side flaps into the absorbent assembly eliminates discrete cuff parts, reducing manufacturing costs while maintaining leakage protection.
Segmented elastic materials in absorbent articles provide close body fit while preventing bulkiness from bunching material.
Segmented lanes and nested patterns eliminate material waste during high-speed diaper manufacturing while maintaining operational efficiency.
Radial adjustment of welding units varies spacing without altering motion ratios.
A wetness sensor processes electrical variables to estimate bodily output volume in absorbent articles.
Reversed-phase suspension polymerization using specific sorbitan fatty acid esters controls water-absorbent resin particle dimensions.