Abstract:
The present invention relates to a rubber composition capable of sustaining improved on-ice performance of a tire over a long period of time. Specifically, the present invention provides a rubber composition having a rubber component (A) and a composite fiber (B), wherein the composite fiber (B) comprises: a fiber (B1) made of a hydrophilic resin; a covering layer (B2) made of a resin having an affinity for a rubber component and provided to cover at least a portion of the fiber; and a bonding layer (B3) present at least in a portion of an interface between the fiber (B1) and the covering layer (B2) and having affinities for both the hydrophilic resin and the resin having an affinity for the rubber component.
Abstract:
The present invention provides a vulcanized rubber capable of improving ice performance of the tire, in particular a vulcanized rubber which is made by vulcanizing a rubber component and has cells with an aspect ratio of 1-30 of which at least a part of a wall surface is hydrophilic.
Abstract:
The present invention relates to a rubber composition capable of sustaining improved on-ice performance of a tire over a long period of time. Specifically, the present invention provides a rubber composition having a rubber component (A) and a composite fiber (B), wherein the composite fiber (B) comprises: a fiber (B1) made of a hydrophilic resin; a covering layer (B2) made of a resin having an affinity for a rubber component and provided to cover at least a portion of the fiber; and a bonding layer (B3) present at least in a portion of an interface between the fiber (B1) and the covering layer (B2) and having affinities for both the hydrophilic resin and the resin having an affinity for the rubber component.
Abstract:
The present invention provides a vulcanized rubber capable of improving ice performance of the tire, in particular a vulcanized rubber which is made by vulcanizing a rubber component and has cells with an aspect ratio of 1-30 of which at least a part of a wall surface is hydrophilic.
Abstract:
In general the present invention provides a functionalized polymer prepared by a process comprising the steps of preparing a pseudo-living polymer by polymerizing conjugated monomer with a lanthanide-based catalyst, and reacting the pseudo-living polymer with a functionalizing agent defined by the formula (I) A-R1—Z (I) where R1 is a divalent bond or divalent organic group comprising from 0 to about 20 carbon atoms, A is a substituent that will undergo an addition reaction with a pseudo-living polymer, and Z is a substituent that will react or interact with silica or carbon black reinforcing fillers, with the proviso that A, R1, and Z are substituents that will not protonate a pseudo-living polymer.
Abstract:
In general the present invention provides a functionalized polymer prepared by a process comprising the steps of preparing a pseudo-living polymer by polymerizing conjugated monomer with a lanthanide-based catalyst, and reacting the pseudo-living polymer with a functionalizing agent defined by the formula (I) A-R1—Z (I) where R1 is a divalent bond or divalent organic group comprising from 0 to about 20 carbon atoms, A is a substituent that will undergo an addition reaction with a pseudo-living polymer, and Z is a substituent that will react or interact with silica or carbon black reinforcing fillers, with the proviso that A, R1, and Z are substituents that will not protonate a pseudo-living polymer.