IP Library Granted Patent US 9,333,802
Granted Patent B2
US 9,333,802 · App. 12/921,540 · Granted May 10, 2016

Diene rubber composition for tire including a silica as a reinforcing filler

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Quick Facts
Patent No.
US 9,333,802
App. No.
12/921,540
Granted
May 10, 2016
Kind
B2
Abstract

A diene rubber composition for tires based on at least (i) one diene elastomer, (ii) one reinforcing inorganic filler and (iii) one coupling agent which provides the bonding between the inorganic filler and the elastomer. The inorganic filler comprises at least one silica capable of being obtained by the preparation process of the type comprising the reaction of a silicate with an acidifying agent, whereby a silica suspension is obtained, followed by the separation and the drying of this suspension. The reaction of the silicate with the acidifying agent is carried out according to the following successive stages: (i) an aqueous suspension of precipitated silica, exhibiting a pH of between 2.5 and 5.3, is brought into contact (mixing) with acidifying agent and silicate, in such a way that the pH of the reaction medium is maintained between 2.5 and 5.3, (ii) silicate is added to the reaction medium obtained, so as to increase the pH of the reaction medium up to a value of between 4.7 and 6.3.

Claims (26)

1. A diene rubber composition for tires based on at least (i) one diene elastomer, (ii) one reinforcing inorganic filler and (iii) one coupling agent which provides the bonding between the reinforcing filler and the elastomer, wherein the inorganic filler comprises at least one silica formed of aggregates of primary particles (A) of silica, at the surface of which occur primary particles (B) of silica with a size smaller than that of the primary particles (A), and wherein the at least one silica has:

a CTAB specific surface (S CTAB ) and a BET specific surface Area (S BET ) such that S CTAB /S BET ratio is between 1.1 and 1.4, wherein the S CTAB is between 60 and 400 m 2 /g,

a d50 median size of aggregates, measured by XDC particle sizing after ultrasonic deagglomeration, such that:

d 50 (nm)>(6214 /S CTAB (m 2 /g))+23,

a pore volume distribution such that:

V ( d 5-d50)/ V ( d 5-d100)>0.906−(0.0013 ×S CTAB (m 2 /g )),

a pore size distribution such that:

Mode (nm)>(4166 /S CTAB (m 2 /g))−9.2, and

the silica exhibits a parameter C, measured by small angle X-ray scattering, such that: C/S CTAB (m 2 /g)>0.001.

2. The composition according to claim 1 , wherein the silica is formed of aggregates of large silica primary particles, at the surface of which occur small silica primary particles, the number median diameter of the large primary particles being at least 12 nm and the number median diameter of the small primary particles being between 2 and 8 nm.

3. The composition according to claim 1 , wherein the pore volume distribution of the silica is such that V (d5-d50) I/V (d5-d100) >0.71.

4. The composition according to claim 1 , wherein the silica has a CTAB specific surface area of between 80 and 300 m 2 /g.

5. The composition according to claim 1 , wherein the silica has a BET specific surface area of between 60 and 500 m 2 /g.

6. The composition according to claim 1 , wherein the silica exhibits a median diameter, after ultrasonic deagglomeration, of less than 6.0 μm.

7. The composition according to claim 1 , comprising another reinforcing inorganic filler.

8. The composition according to claim 1 , comprising a reinforcing organic filler.

9. The composition according to claim 7 , wherein the level of silica represents from 1 to 99% by weight of the total reinforcing filler.

10. The composition according to claim 9 , wherein the level of silica is greater than or equal to 20% by weight of the total reinforcing filler.

11. The composition according to claim 10 , wherein the level of silica is greater than or equal to 50% by weight of the total reinforcing filler.

12. The composition according to claim 1 , wherein the S BET /S CTAB ratio is between 1.15 and 1.35.

13. The composition according to claim 6 , wherein the silica exhibits a median diameter, after ultrasonic deagglomeration, of less than 4.0 μm.

14. The composition according to claim 11 , wherein the level of silica is greater than or equal to 80% by weight of the total reinforcing filler.

15. The composition according to claim 4 , wherein the silica has a CTAB specific surface area of between 100 and 250 m 2 /g.

16. The composition according to claim 15 , wherein the silica has a CTAB specific surface area of between 130 and 230 m 2 /g.

17. The composition according to claim 5 , wherein the silica has a BET specific surface area of between 90 and 380 m 2 /g.

18. The composition according to claim 17 , wherein the silica has a BET specific surface area of between 130 and 300 m 2 /g.

Assignments (3)
MERGER Recorded Sep 21, 2012
From: SOCIETE DE TECHNOLOGIE MICHELIN
To: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN
Reel/Frame 029000/0025 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE FROM OSRAM OPTO SEMICONDUCTORS GMBH TO SOCIETE DE TECHNOLOGIE MICHELIN AND MICHELIN RECHERCHE ET TECHNIQUE S.A. PREVIOUSLY RECORDED ON REEL 025908 FRAME 0200. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 22, 2011
From: THOMASSON, DAMIEN; ALLAIN, EMMANUELLE; HERNANDEZ, JULIEN
To: MICHELIN RECHERCHE ET TECHNIQUE S.A.; SOCIETE DE TECHNOLOGIE MICHELIN
Reel/Frame 025999/0243 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2011
From: THOMASSON, DAMIEN; ALLAIN, EMMANUELLE; HERNANDEZ, JULIEN
To: OSRAM OPTO SEMICONDUCTORS GMBH
Reel/Frame 025908/0200 →