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    • 3. 发明专利
    • DE69917959T2
    • 2005-06-30
    • DE69917959
    • 1999-03-10
    • GOODYEAR TIRE & RUBBER
    • COLVIN HOWARD ALLENSENYEK MICHAEL LESLIE
    • B60C1/00C08F2/00C08F2/22C08F212/08C08F236/10C08L9/06
    • This invention discloses an emulsion styrene-butadiene rubber (SBR) that can be employed in manufacturing tire tread formulations that have rolling resistance and treadwear characteristics that are similar to those made with solution SBR but with improved traction characteristics. Thus, the emulsion SBR of this invention is superior in many respects for use in tire tread compounds to conventional solution SBR and conventional emulsion SBR. This invention more specifically discloses a styrene-butadiene rubber composition which is comprised of repeat units which are derived from styrene and 1,3-butadiene, wherein the styrene-butadiene rubber composition has a number average molecular weight as determined by thermal field flow fractionation which is within the range of about 50,000 to 150,000, and wherein the styrene-butadiene rubber has a light scattering to refractive index ratio which is within the range of 1.8 to 3.9. The subject invention further reveals a styrene-butadiene rubber composition which is comprised of repeat units which are derived from styrene and 1,3-butadiene, wherein a plot of log frequency versus storage modulus of the styrene-butadiene rubber composition crosses over a plot of log frequency versus loss modulus of the styrene-butadiene rubber composition at a log frequency within the range of 0.001 radians per second to 100 radians per second when conducted at 120 DEG C using parallel plate geometry in the dynamic oscillation frequency sweep of the styrene-butadiene rubber.
    • 4. 发明专利
    • DE69917959D1
    • 2004-07-22
    • DE69917959
    • 1999-03-10
    • GOODYEAR TIRE & RUBBER
    • COLVIN HOWARD ALLENSENYEK MICHAEL LESLIE
    • B60C1/00C08F2/00C08F2/22C08F212/08C08F236/10C08L9/06
    • This invention discloses an emulsion styrene-butadiene rubber (SBR) that can be employed in manufacturing tire tread formulations that have rolling resistance and treadwear characteristics that are similar to those made with solution SBR but with improved traction characteristics. Thus, the emulsion SBR of this invention is superior in many respects for use in tire tread compounds to conventional solution SBR and conventional emulsion SBR. This invention more specifically discloses a styrene-butadiene rubber composition which is comprised of repeat units which are derived from styrene and 1,3-butadiene, wherein the styrene-butadiene rubber composition has a number average molecular weight as determined by thermal field flow fractionation which is within the range of about 50,000 to 150,000, and wherein the styrene-butadiene rubber has a light scattering to refractive index ratio which is within the range of 1.8 to 3.9. The subject invention further reveals a styrene-butadiene rubber composition which is comprised of repeat units which are derived from styrene and 1,3-butadiene, wherein a plot of log frequency versus storage modulus of the styrene-butadiene rubber composition crosses over a plot of log frequency versus loss modulus of the styrene-butadiene rubber composition at a log frequency within the range of 0.001 radians per second to 100 radians per second when conducted at 120 DEG C using parallel plate geometry in the dynamic oscillation frequency sweep of the styrene-butadiene rubber.
    • 5. 发明专利
    • Modification of asphalt cement
    • GB2370575B
    • 2004-06-02
    • GB0127259
    • 2001-11-13
    • GOODYEAR TIRE & RUBBER
    • COLVIN HOWARD ALLENMOORE EDWIN GRESHAM
    • C08J11/22C08L9/00C08L95/00E01C7/26C04B26/26
    • This invention is based upon the discovery that a polydiene rubber that is comprised of repeat units that are derived from a conjugated diene monomer and sulfur can be used to improved the force ductility, elastic recovery, toughness and tenacity of asphalt cement. The polydiene rubber that is comprised of repeat units that are derived from a conjugated diene monomer and sulfur also exhibits excellent compatibility with asphalt. The repeat units in the polydiene rubber that are derived from sulfur are in the backbone of the polymer. These repeat units that are derived from sulfur typically contain from 2 to 8 sulfur atoms (-Sn-). The subject invention more specifically relates to a modified asphalt cement which is comprised of (i) from about 90 weight percent to about 99 weight percent asphalt; (ii) from about 1 weight percent to about 10 weight percent of a polydiene rubber that is comprised of repeat units that are derived from a conjugated diene monomer and sulfur. The present invention also reveals an asphalt concrete which is comprised of (A) from about 90 weight percent to about 99 weight percent of an aggregate and (B) from about 1 weight percent to about 10 weight percent of a modified asphalt cement which is comprised of (i) from about 90 weight percent to about 99 weight percent asphalt; (ii) from about 1 weight percent to about 10 weight percent of a polydiene rubber that is comprised of repeat units that are derived from a conjugated diene monomer and sulfur. The present invention also discloses a process for preparing a modified asphalt cement which comprises (1) blending from about 1 to about 10 parts by weight of a polydiene rubber that is comprised of repeat units that are derived from a conjugated diene monomer and sulfur into from about 90 to about 99 parts by weight of asphalt at a temperature which is within the range of about 130° to about 230° C. to produce a polymer-asphalt blend; and (2) mixing from about 0.1 to about 3 parts by weight of sulfur into the polymer-asphalt blend to produce the modified asphalt cement.
    • 8. 发明专利
    • BR9900563A
    • 2000-02-01
    • BR9900563
    • 1999-02-09
    • GOODYEAR TIRE & RUBBER
    • STEININGER CLITES JEANCOLVIN HOWARD ALLENFIEDLER RONALD DAVID
    • C08F2/06C08F297/04C08L95/00C08L35/00
    • This invention discloses a process for synthesizing a styrene-butadiene polymer which comprises the steps of: (1) continuously charging 1,3-butadiene monomer, an organolithium compound, a polar modifier and an organic solvent into a first polymerization zone, (2) allowing the 1,3-butadiene monomer to polymerize in said first polymerization zone to a conversion of at least 90 percent to produce a living polymer solution, (3) continuously withdrawing said living polymer solution from said first polymerization zone, (4) continuously charging divinyl benzene and the living polymer solution being withdrawn from the first polymerization zone into a second polymerization zone, (5) allowing the divinyl benzene monomer to react with the living polybutadiene chains in said second polymerization zone to produce a solution of living divinylbenzene modified butadiene polymer, (6) continuously withdrawing the solution of said divinylbenzene modified butadiene polymer from the second polymerization zone, (7) continuously charging styrene and the living divinylbenzene modified butadiene polymer being withdrawn from the second polymerization zone into a third polymerization zone, (8) allowing the styrene to polymerize in the third polymerization zone to produce a solution of styrene-butadiene polymer having a number average molecular weight which is within the range of 30,000 to 85,000 and (9) continuously withdrawing the solution of styrene-butadiene polymer from the third polymerization zone.
    • 9. 发明专利
    • FR2774992A1
    • 1999-08-20
    • FR9901571
    • 1999-02-10
    • GOODYEAR TIRE & RUBBER
    • STEININGER CLITES JEANCOLVIN HOWARD ALLENFIEDLER RONALD DAVID
    • C08F2/06C08F297/04C08L95/00C08F236/06C04B26/26
    • This invention discloses a process for synthesizing a styrene-butadiene polymer which comprises the steps of: (1) continuously charging 1,3-butadiene monomer, an organolithium compound, a polar modifier and an organic solvent into a first polymerization zone, (2) allowing the 1,3-butadiene monomer to polymerize in said first polymerization zone to a conversion of at least 90 percent to produce a living polymer solution, (3) continuously withdrawing said living polymer solution from said first polymerization zone, (4) continuously charging divinyl benzene and the living polymer solution being withdrawn from the first polymerization zone into a second polymerization zone, (5) allowing the divinyl benzene monomer to react with the living polybutadiene chains in said second polymerization zone to produce a solution of living divinylbenzene modified butadiene polymer, (6) continuously withdrawing the solution of said divinylbenzene modified butadiene polymer from the second polymerization zone, (7) continuously charging styrene and the living divinylbenzene modified butadiene polymer being withdrawn from the second polymerization zone into a third polymerization zone, (8) allowing the styrene to polymerize in the third polymerization zone to produce a solution of styrene-butadiene polymer having a number average molecular weight which is within the range of 30,000 to 85,000 and (9) continuously withdrawing the solution of styrene-butadiene polymer from the third polymerization zone.