See how a two-sided wipe merges wet cleaning and dry layers with an impermeable barrier to redu
See how independent nozzle support bodies moving on a closed-loop path with adjustable position
See how independently movable nozzle support bodies maintain constant cavity distance to enable
See how frangible boundaries enable dryer sheets to separate into portions, solving underdosing
See how layered elastomeric lamellar rings replace hard plastic granules to transfer scent unif
See how a solid carrier-fragrance mixture releases scent at dryer temperatures without flowing
Cuboid detergent bodies are oriented end-face down in a recyclable resealable carton to improve storage stability while cutting packaging material.
High-fill folding box packaging aligns cuboidal detergent tablets to improve transport stability, reduce air volume, and cut material use.
Arched narrow sealing webs keep three-compartment detergent capsules leak-resistant and easy to handle while dissolving quickly with two film layers.
Tablet orientation parallel to the carton base enables high-fill detergent packing with better transport stability and less non-recyclable material.
An amphiphilic polymer coating shields PVOH films from reactive chemicals, preventing crosslinking while preserving solubility, elasticity, and clarity.
Blending two PVOH homopolymers speeds soluble film dissolution, limits gelling with detergent, and reduces cleaning residues.
A blended PVOH film uses anionic copolymer units to limit gelling, dissolve quickly in cold washes, and avoid residue on fabrics.
A two-PVOH homopolymer blend strengthens unit dose films in storage while dissolving quickly in cold water without gel residue.
A blended PVOH film speeds dissolution and limits gelling residue in water-soluble unit dose articles, even in short or cold wash cycles.
Sequentially dissolving perfume layers change scent over time in toilet additives, reducing uniform fragrance and user habituation.
A second passage and air vents equalize pressure during detergent sachet filling, improving flow, reliability, and utilities use.
Solid soap and disinfectant embedded in a porous sponge reduce separate resources, while a color indicator signals its service limit.
Transparent package walls reveal perfume particles, while bottom holes release scent without sacrificing package integrity.
A rotating discretizing element varies speed to synchronize detergent dosing with cavity passage and sustain production rate.
Filaments with inverted composition release active agents via diffusion, overcoming slow release rates and structural instability.
A water dispersible polymer film uses a copolymer barrier layer on a polyvinyl alcohol substrate to enhance mechanical integrity.
Segmenting polyvinyl alcohol base layers from adhesive polymer layers resolves the trade-off between water solubility and adhesion strength.
High fill-level cardboard packaging with biodegradable hydrophobic coatings prevents moisture ingress while reducing material waste.
Adding an acid surfactant precursor to alkaline slurry increases spray-drying capacity without requiring additional equipment or complex formulation aids.
Hydrophilic perfume ingredients resist absorption into polyethylene containers, preserving fragrance integrity and extending scent life.
Filaments integrate active agents within the polymer matrix to enable efficient delivery under specific conditions.
Resilient link controls central rod movement to eliminate density heterogeneities in multi-layer tablets.
A polyvinyl alcohol resin blend prevents softening and residue formation in liquid detergent pouches while ensuring complete dissolution.
Nesting inner compartments within a water-disintegrable outer shell resolves mechanical stability issues while maintaining production cost efficiency.
A cuboid outer packaging stabilizes detergent tablets through layered arrangement within a one-piece folding box design.
Gel-breaker additives in polyvinyl alcohol fibres enable complete dissolution of the unit dose article in washing machine drawers, preventing residue formation.
Water-permeable disposable containers prevent overdosing and skin irritation by ensuring accurate dosing through controlled pore size.
Paper-based interior surfaces protect unit dose articles from structural failure while locking mechanisms prevent accidental opening during transport.
A white carbon black formulation cleans glass and plastic surfaces without leaving residues.
A detergent container uses a tab and receptor mechanism for direct product contact.