A rubber composition combines terpene resin and alpha-methyl styrene resin to enhance material properties.
Optimized styrene content and carbon black ratios in branched diene copolymers resolve the trade-off between high abrasion resistance and processability.
Alpha-tocopherol from banana peels acts as a bio-based homogenizing agent in curable rubber compositions.
A rubber composition uses a highly saturated diene elastomer modified with silanol or alkoxysilane chain ends to reduce hysteresis.
A silica-filled diene rubber composition uses specific spin-spin relaxation time ratios to manage molecular mobility and stress absorption.
A copolymer incorporates polar groups using a boron mediator, resolving catalyst poisoning while maintaining stereoregularity.
Terminal modification using a cyclic silazane compound eliminates silanol generation, balancing low hysteresis loss and wet grip properties in tire rubber.
A thermally curable resin composition achieves excellent planarization and white light emission through optimized binder resin molecular weight.
Cycloaliphatic diamine isomers form polyimide films with high light transmissibility.
Rice husk ash silica reinforces polybutadiene rubber to balance wet traction and rolling resistance while utilizing agricultural waste.
A hydrocarbon resin with over 95% aliphatic protons modifies very low glass transition temperature diene elastomers for tire applications.
Sulphur-linkable rubber compound with specific carbon black maintains elongation at break while improving abrasion and chip resistance.
A segmented triangulation belt uses fragile bridges to join elementary widths, enabling continuous strip production.
Isoprene rubber composition with controlled crosslinked structure reduces energy loss and improves breaking energy at 25 C.
A rubber composition uses dense metal particles to dampen tire noise while maintaining flexibility.
A tire condition monitoring system displays electric field intensity to locate the optimal receiving antenna position.
A silicon-containing compound acts as a processing aid to enhance mixing and dispersion within polyolefin compositions.
A polysiloxane silane coupling agent balances silica dispersibility and processability in tire tread rubber compositions.
A copolymer of conjugated diene and non-conjugated olefin achieves high cis-1,4 bond content through specialized catalyst systems.
Particle-encapsulating microcapsules absorb high-frequency vibration energy during braking to enhance wet performance.
Applying a sub-100 angstrom metal layer provides electrical conductivity for NEXAFS measurements on insulating tire rubber compositions.
A rubber composition uses a phenol-aldehyde resin to maintain high stiffness at low strains.
Sidewall dimples generate turbulent flow to cool pneumatic tires, resolving heat and weight trade-offs.
Nonacosanediol wax mediates silica-polymer interfaces, resolving the trade-off between wet grip and rolling resistance.
A star-shaped block copolymer rubber integrates styrene, butadiene, and isoprene phases to balance mechanical strength with dynamic performance.
A rubber composition containing graphite filler achieves thermal conductivity of not less than 0.45 W/m·K.
End-group functionalization improves rubber-filler bonding to lower hysteresis and rolling resistance.
Optimized silica dispersion via protected mercaptosilane balances dry grip against rolling resistance in tire treads.
A rubber composition uses a sulfur atom-containing vulcanization accelerator to ensure uniform crosslinking.