See how oxygen-pulped softwood kraft fibers and cationic softeners achieve rapid water disinteg
See how a polyhydric alcohol blend with sucrose fatty acid ester and ionic surfactant at contro
See how controlled polyol content and basis weight balance moisture, smoothness, and tensile st
See how Lyocell fibers with high fibrillation coefficient enable foam-formed nonwovens to achie
See how a controlled blend of kraft pulps and fatty acid compounds resolves the softness-streng
Foam-forming Lyocell fibers with long-fiber pulp help retain bulk and low density while improving tensile strength in nonwoven webs.
See how controlled fatty acid ester and amide addition to kraft pulp blends resolves the softne
Silicon-based impregnation boosts wet paper strength while reducing toxicity, water uptake, and recycling barriers from conventional agents.
Laminated extruded polymeric netting and woven layers simplify belt production while improving tissue softness, bulk, and absorbency.
Laser-engraved polymer belts create airflow channels for efficient papermaking and tissue with high softness and absorbency.
Coating paper with a slippery varnish reduces microbial adhesion, preventing antimicrobial-resistant bacteria without using harmful biocides.
Three-dimensional foam-laid nonwoven liner with projection elements absorbs runny bowel movements to prevent leakage and diaper rash.
Post-drying debonder surfactant application maintains Mullen strength while lowering fiberization energy, preventing sheet breaking during processing.
Reducing foam air content in wetlaying nonwoven production simplifies pump scalability and lowers energy consumption during fiber suspension.
Applying low molecular weight polymer powder directly into the process stream eliminates pre-dissolution steps and reduces transportation costs.