See how a controlled hardwood-softwood fiber blend enables thin, flexible absorbent cores with
See how a composite melamine-urea-phenol-formaldehyde resin reduces toxicity and formaldehyde e
See how TAD lamination with Y-Connected Area control and water-soluble adhesive embossing achie
See how microencapsulated fragrance in suspension releases scent on mechanical contact, avoidin
See how ring-opening polymerization grafts cyclic ester monomers onto cellulose to balance biod
See how cyclic ester grafting onto cellulose and hemicellulose balances biodegradability with t
See how a paper straw uses thermal adhesive coating on the outer layer to eliminate drying, pre
Polymer dispersion built into base paper blocks ink penetration in sublimation transfer media, preserving dye, sharpness, and curl.
See how partial grafting of cellulose with cyclic ester monomers balances thermoplastic process
See how a multi-layer paper straw uses thermal adhesive coating between strips to eliminate dry
See how carbamation pre-treatment and controlled fibrillation resolve fiber aggregation in cell
A coated transfer paper enables hybrid screen and digital textile printing with high tonal fidelity, durable adhesion, and controlled color migration.
A zein coating boosts paper straw wet strength, blocks starch migration, and avoids adhesive taste while staying biodegradable.
See how air-laid pulp with wetting agent and cold-pressing eliminates high water use and therma
See how a chitosan-urea-dicarboxylic acid primer enables stable VpCI fixation on polymer substr
A TAD laminate with embossed plies, tight channel spacing, and water-soluble adhesive boosts strength and absorbency without high MD stretch.
See how controlled softener content (0.1-0.25% mass) and tensile strength ranges (200-400 cN/25
See how fibrillated nanocellulose blended with polymers achieves oil and gas impermeability wit
See how a higher cationic agent proportion immobilizes sublimation ink on transfer paper, reduc
Through-air drying and embossed ply lamination maintain web thickness, absorbency, and softness while limiting MD stretch and energy use.
See how integrating a mill into coffee machines breaks down green composite cartridges into com
See how thermoplastic polyester resin replaces polyurethane in artificial leather to achieve ab
A two-ply laminate uses valley volume and pit density to retain high water absorbency at low basis weight with less web compaction.
A two-ply porous laminate avoids web compaction to deliver high water absorbency at low basis weight for tissue and wipe products.
An acidic cellulose-derivative binder consolidates plant-based nonwovens to improve wet strength while preserving absorbency and flexibility.
See how acid treatment with hydrochloric acid recycling converts lignocellulose to fermentation
See how micro-embossing TAD outer plies during converting adjusts softness without reducing ten
See how a composite polysiloxane composition combines linear and cyclic siloxane compounds to p
See how glycine addition to resol-type phenolic resin controls molecular weight and viscosity,
See how grafting acrylic acid polymers and crosslinking cellulose fibers resolves the wet-colla
See how controlled-viscosity aqueous polyolefin dispersion prevents penetration in low-density
See how liquid resin coating with dehydrating agents and catalysts enables thick, high-conducti
By eliminating web pressing, a two-ply porous laminate keeps valley volume and pit density high for strong absorbency at low basis weight.
See how dual-line stitching with unbalanced tension enables easy sheet removal without perforat
See how amino acid crosslinkers replace formaldehyde-releasing agents in textile coatings, impr
See how an organic acid salt-polyol coating on absorbent substrate controls humidity within 45%
See how starch-based impregnation replaces thick barrier layers in transfer paper, cutting prod
See how blending 3-35% hardwood fibers with softwood creates fluff pulp that retains high SAP c
See how cellulose nanofilaments enable tissue paper to maintain strength with reduced softwood
See how a biodegradable high-amylose starch coating resists oil and grease penetration in water
See how starch and binding agent impregnation controls porosity and water uptake to eliminate t
See how selectively placing long, high-coarseness southern softwood fibers in outer tissue laye
See how HCl gas hydrolysis with solvent extraction recovers 95% of acid, reducing feedstock cos
See how chitosan-polyanion complexes with non-water soluble particles achieve 1.5-month stabili
See how combining linear polysiloxane with cyclic siloxane disperses pitch and prevents readhes
See how a cross-linked surface coating on impregnated carrier fabric eliminates bubble formatio
A dry-formed paper roll tube uses 30-70% starch binder to keep crush resistance while disintegrating in water fast enough to avoid clogs.
Unpredictable combinations of common feature substances and time-stamping deter counterfeiting while keeping product verification simple.
A low-viscosity cellulose ether binder helps non-woven sheets break down in 20 seconds or less while retaining tensile strength.
A dual-phase thermoplastic coating improves laser welding, expansion, and bond strength in high-tenacity fiber composite sheets.
Tri-substituted N-atom polymer modification helps nonwovens disperse in acidic water while retaining useful wet strength after curing.
Acrylonitrile-methacrylonitrile shell composition enables low Tstart expansion while reducing residual monomers, discolouration, and chemical attack.
Balances rapid water disintegration with cardboard-like crush resistance using a starch-fiber sheet for flushable tissue roll cores.
NIR spectroscopy with multivariate analysis measures moisture in thin resin layers on wood panels in real time despite wood interference.
A spirally wound welded belt adds texture and voids during hydroentangling, eliminating separate calendaring while preserving bulk and absorbency.
Independently adjustable pressure zones across the sheet width improve creping control, cut defects, and raise machine capacity.
Lightly crosslinked polysorbate-dimer acid polyesters add softness, lubricity, antistatic behavior, and durable self-wetting to treated surfaces.
Silicon-magnesium amorphous compounds give rayon durable flame resistance without halides or phosphorus, while preserving washability and biodegradability.
Concentric, centrally symmetric embossing creates cavities that improve liquid uptake and tensile strength in multi-ply wiping sheets.
Dual crosslinking turns carboxyalkyl cellulose fibers into biodegradable absorbents that wick liquid and retain it under pressure.
Non-ionic polyether-siloxane softeners keep textiles soft and absorbent while forming stable aqueous finishes without extra emulsifiers.
A z-direction moisture gradient in tissue parent rolls balances wound-in pressure, improving caliper uniformity while cutting drying energy.
A transfer surface applies softeners evenly to high-speed fibrous webs, reducing overspray contamination and spotty tissue coverage.
NIR spectra with multivariate analysis replace slow ashing to measure inorganic solids in resin solutions faster, safer, and with lower cost.
A low-dot, line-emboss tissue pattern preserves quilted appearance and caliper under pressure while maintaining softness and absorbency.
Co-formed polypropylene filaments and wood pulp enable embossed single-ply tissue with controlled modulus and elongation plus softness and absorbency.
Wet-pressed creping, double re-creping, and binder bonding let wipers use 40-80% post-consumer fibers while retaining strength and absorbency.
Densified inert gases dissolve NO2 for more uniform polysaccharide oxidation while avoiding halogenated solvents and improving process control.
Thermochromic pigments in a sol-gel coating provide visual temperature cues for safer handling, overheating prevention, and better food positioning.
Rotating male and female rolls form web perforations without blade-anvil vibration, improving quality and enabling faster pattern changeover.
Specific nonionic copolymers keep aqueous pigment dispersions above 40% concentration low in viscosity, shear stable, and free of alkylphenol concerns.
Surfactant sizing and controlled surface oxygen let chopped carbon fibers stay handleable during cutting while dispersing uniformly in water.
A bonded carbon fiber and conductive particle structure improves conductivity, strength, and flexibility in fuel cell gas diffusion layers.
Carbon fiber and fibrillated fiber paper with cured thermosetting resin improves conductivity, strength, and heat resistance under sliding heat.
Carbon fiber, fibrillated fiber, and thermosetting resin combine to raise conductivity, strength, and heat resistance in conductive paper.
Sulfonated lignin-derived redox species replace costly inorganic electrolytes to improve redox flow battery scalability, cycle life, and toxicity.
Mixed thick and fine aramid fibers improve board smoothness and strength while cutting prepreg thickness, resin use, and papermaking loss.
Sulfonated lignin-derived redox species replace toxic inorganic materials in flow batteries, lowering cost while supporting solubility, cycle life, and scale.
Nanocellulose in phenolic resin strengthens wet friction paper at up to 230°C, cutting process complexity, energy use, and special equipment.
Continuous casting and drying improve hyaluronic acid film productivity while balancing release liner adhesion and easy detachment.
Laser-modified tracks embedded inside polymer substrates create diffractive security features that resist wear, detachment, and counterfeiting.
Laser-modified tracks embedded in polymer substrates create diffractive security features that resist detachment, wear, and counterfeiting.
Ordered laser-modified tracks inside polymer substrates create diffractive security features that resist detachment, wear, and counterfeit transfer.