A three-layer bacterial cellulose mesh improves haze filtration, formaldehyde adsorption, and antibacterial air cleaning for household filters.
Aligned bacterial cellulose nanofibers create gels and aerogels with adjustable transparency, stiffness, and thermal conductivity while preserving robustness.
A laminated polyimide-Tencel fiber structure improves e-cigarette wick liquid guiding, storage, and locking while resisting high temperatures.
Coating and rapid solidification keep sheet width stable with low-viscosity liquid materials, avoiding neck-in during continuous winding.
Alignment and cross-linking of bacterial cellulose nanomaterials tune gel transparency, flexibility, and thermal resistance for varied uses.
Fabric layers cured with bio-based resin form aircraft structures that maintain structural performance while enabling recycling and reducing landfill waste.
Fabric layers and bio-based resin are cured into aircraft structures, offering a recyclable alternative to fossil-fuel phenolic materials and reducing waste.
Controlled heat-seal thickness and dual-surface asperity help laminated projection glass combine impact resistance with lower-distortion images.
This case replaces synthetic fibers with cellulose ether materials for biodegradable nonwoven fabrics used in filtration and cleaning.
This case combines polymeric aerogel with directly contacting mineral or polymer fibers for flexible, tear-resistant insulation.
A common gantry drive with multiple arms removes settleable and non-settleable particles across successive settling and filtration stages in a single basin.
Carbohydrate and amino-amide binders cure fibrous mats in cellulosic substrates, improving dimensional stability without increasing weight or cost.
A foam base connection member uses a folding portion to join adjacent units while remaining compact during transport.
Laterally colored flexible foam tape recovers shape after compression, maintaining a continuous aesthetic appearance in exterior joints.
A transfer tape with a hinged cover flap protects the adhesive layer from dust and debris during high-speed paper web spooling operations.
A three-layer lignocellulose panel uses a solid core with treated fibers to boost mechanical strength.
Segmented silver layers reduce sheet resistance while maintaining optical transparency, solving the conductivity-transparency trade-off.
A silica gel layer bonded to steel cords via a sol-gel process creates a durable reinforcement structure for rubber articles.
A cellulose ester film uses a controlled calcium to sulfuric acid molar ratio to enhance releasability and heat resistance.
Dextrin strengthens gypsum panel cores by forming a uniform dispersion, eliminating expensive synthetic binders while boosting nail pull resistance.
A biodegradable film bonds to a fibrous substrate via thermoforming and adhesive lamination.
Coupling agent treatment modifies lipophilic cellulosic fiber surfaces to enable binder compatibility.
An embedded reinforcing element in the insulating foam provides structural strength while preventing cold bridging between metal sheets.
Incorporating detectable particles into cellulose film production enables efficient metal or optical detection of packaging materials.
Transparent plastic films adhere to curved surfaces using pressure or temperature bonding, preventing air bubbles and corner separation.
Replacing leather and synthetic polymers, this plant fiber composite eliminates microplastic contamination while sustaining structural integrity.
Preformed pre-bonded thermoplastic sections utilize integral sequential features to ensure precise on-site alignment and strong adhesive bonding.
Plasticized cellulose ester flooring layers incorporate mineral-based water releasing agents to suppress combustion and reduce smoke density.
A polysaccharide adhesive layer bonds resin films to enhance interlaminar adhesion and keystroke durability.