US20030191225A1

Rubber composition for a tire comprising a multifunctional polyorganosiloxane as coupling agent

Claim Score by NHIP

Read claim 1, the broadest

Abstract

The present invention relates to a sulfur-cross-linkable elastomeric composition that is useful for the manufacture of tires. This elastomeric composition is based on at least one isoprene elastomer (in particular natural rubber), a reinforcing inorganic filler (in particular, silica), and an (inorganic filler/isoprene elastomer) coupling agent. The coupling agent is a multifunctional polyorganosiloxane (POS), which comprises functions denoted as "Y" and "X", wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent. This POS is, in particular, a POS having an imide, acid or ester function, the ethylene double bond of which is activated by at least one adjacent carbonyl group (-C=O). The present invention further relates to a tire comprising the composition described above as well as semi-finished products for tires, in particular, treads, where the tires comprise a rubber composition according to the present invention.

US20030191225A1, drawing sheet 1
Sheet 1 of 46

Term

Term ended

Projected expiry passed 13 June 2021, 5.3 years ago.

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93 claims: 4 independent, 89 dependent

  1. 1
    Broadest claimClaim Score 69, broad(NHIP)An elastomeric composition useful for the manufacture of tires, based on a diene elastomer, a reinforcing filler comprising a reinforcing inorganic filler, and an (inorganic filler/diene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent.
  2. 32
    A process for preparing a sulfur-vulcanizable rubber composition useful for the manufacture of tires, comprising:incorporating into at least one isoprene elastomer, at least a reinforcing filler comprising a reinforcing inorganic filler and an (inorganic filler/isoprene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent;and kneading the entire mixture thermomechanically, in one or more stages, until a maximum temperature of between 100° C. and 190° C. is reached.
  3. 46
    A tire comprising an elastomeric composition based on a diene elastomer, a reinforcing filler comprising a reinforcing inorganic filler, and an (inorganic filler/diene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond and is grafted to the silicon atoms of the coupling agent.
  4. 71
    A tire tread comprising an elastomeric composition based on a diene elastomer, a reinforcing filler comprising a reinforcing inorganic filler, and an (inorganic filler/diene elastomer) coupling agent, wherein the coupling agent is a multifunctional polyorganosiloxane comprising functions denoted as “Y” and “X”, wherein the Y function is at least one hydroxyl or hydrolyzable function grafted to the silicon atoms of the coupling agent and the X function is a group bearing at least one activated ethylene double bond(and is grafted to the silicon atoms of the coupling agent.