IP Library › Granted Patent US 11,724,545
Granted Patent B2
US 11,724,545 · App. 16/617,924 · Granted Aug 15, 2023

Tire comprising a tread

Inventors: Tomoya Sakurada (Tokyo, JP); Tomotake Uchida (Tokyo, JP)
Assignee: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN
B60C11/0058B60C1/0016B60C11/0008C08L9/06B60C2011/0025C08L2205/025C08L2205/03
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,724,545
App. No.
16/617,924
Granted
Aug 15, 2023
Kind
B2
Abstract

A tire having a tread comprising at least two radially superposed portions which comprise a radially external portion being made of a first rubber composition (FC), and a radially internal portion being made of a second rubber composition (SC); the tread comprising a plurality of tread pattern elements ( 1 ) delimited by cut-outs ( 3, 4 ); the tread pattern elements ( 1 ) respectively comprising at least one lateral face ( 13, 14, 15, 16 ) and a contact surface ( 2 ) intended to come into contact with the ground during rolling; the external portion of the tread pattern elements ( 1 ) being at least partially covered on at least one of the lateral face(s) ( 13, 14, 15, 16 ) with a layer of a third rubber composition (TC).

Claims (38)

1. A tire having a tread comprising at least two radially superposed portions which comprise a radially external portion being made of a first rubber composition, and a radially internal portion being made of a second rubber composition which is different from the first rubber composition,

the tread comprising a plurality of tread pattern elements delimited by cut-outs,

the tread pattern elements respectively comprising at least one lateral face and a contact surface intended to come into contact with the ground during rolling, and

the external portion of the tread pattern elements being at least partially covered on at least one of the lateral face with a layer of a third rubber composition which is different from the first rubber composition and the second rubber composition,

wherein the first rubber composition is based on at least:

an elastomer matrix;

a reinforcing filler; and

a plasticizing agent;

wherein the second rubber composition is based on at least:

an elastomer matrix;

a reinforcing filler; and

a plasticizing agent comprising 5 to 100 phr of a liquid plasticizer exhibiting a glass transition temperature of less than −70° C., wherein the liquid plasticizer is a liquid phosphate plasticizer or the liquid plasticizer is the liquid phosphate plasticizer and at most 50 phr of a liquid plasticizer other than the liquid phosphate plasticizer; and

wherein the third rubber composition is based on at least:

an elastomer matrix;

a reinforcing filler; and

a plasticizing agent comprising 5 to 100 phr of a hydrocarbon resin exhibiting a glass transition temperature of more than 20° C.;

wherein the glass transition temperature of the first rubber composition (FC) on a maximum tan δ when subjected to an alternating maximum stress of 0.70 MPa at a frequency of 10 Hz is higher than that of the second rubber composition (SC) and is lower than that of the third rubber composition (TC).

2. The tire according to claim 1 , wherein the first rubber composition is based on the elastomer matrix comprising more than 50 phr and up to 100 phr of a first diene elastomer selected from the group consisting of natural rubber, synthetic polyisoprenes, polybutadienes, butadiene copolymers, isoprene copolymers and mixtures thereof and comprising from 0 to less than 50 phr of a second diene elastomer, between 50 and 200 phr of the reinforcing filler, and more than 30 phr of the plasticizing agent.

3. The tire according to claim 1 , wherein the elastomer matrix of the second rubber composition comprises more than 50 phr and up to 100 phr of a first diene elastomer exhibiting a glass transition temperature of less than −40° C. and from 0 to less than 50 phr of a second diene elastomer.

4. The tire according to claim 1 , wherein the elastomer matrix of the second rubber composition comprises 20 to 100 phr of a first diene elastomer bearing at least one SiOR function, R being a hydrogen atom or a hydrocarbon radical, and comprises from 0 to at most 80 phr of a second diene elastomer.

5. The tire according to claim 4 , wherein the first diene elastomer of the elastomeric matrix of the second rubber composition exhibits a glass transition temperature of less than −40° C.

6. The tire according to claim 1 , wherein the reinforcing filler of the second rubber composition comprises 20 to 200 phr of an inorganic filler.

7. The tire according to claim 1 , wherein the reinforcing filler of the second rubber composition comprises less than 40 phr of carbon black.

8. The tire according to claim 1 , wherein, in the first rubber composition and the second rubber composition, the reinforcing filler comprises less than 40 phr of carbon black.

9. The tire according to claim 1 , wherein, in the second rubber composition, the plasticizing agent comprises 0 to at most 50 phr of a hydrocarbon resin exhibiting a glass transition temperature of more than 20° C.

10. The tire according to claim 9 , wherein, in the second rubber composition, the plasticizing agent comprises 0 to at most 20 phr of a hydrocarbon resin exhibiting a glass transition temperature of more than 20° C.

11. The tire according to claim 10 , wherein, in the second rubber composition, the plasticizing agent comprises 0 to at most 10 phr of a hydrocarbon resin exhibiting a glass transition temperature of more than 20° C.

12. The tire according to claim 1 , wherein the elastomer matrix of the third rubber composition comprises more than 50 phr and up to 100 phr of a first diene elastomer exhibiting a glass transition temperature of more than −40° C. and comprises 0 to less than 50 phr of a second diene elastomer.

13. The tire according to claim 1 , wherein the reinforcing filler of the third rubber composition comprises more than 60 phr of a reinforcing inorganic filler.

14. The tire according to claim 1 , wherein, in the third rubber composition, the reinforcing filler comprises 0 to less than 40 phr of carbon black.

15. The tire according to claim 1 , wherein, in the third rubber composition, the plasticizing agent comprises 0 to at most 90 phr of a liquid plasticizer exhibiting a glass transition temperature of between −70° C. and −20° C.

16. The tire according to claim 1 , wherein the plasticizing agent of the third rubber composition comprises 10 to 90 phr of the hydrocarbon resin.

17. The tire according to claim 16 , wherein, in the third rubber composition, the plasticizing agent comprises 15 to 80 phr of the hydrocarbon resin.

18. The tire according to claim 17 , wherein, in the third rubber composition, the plasticizing agent comprises 20 to 70 phr of the hydrocarbon resin.

19. The tire according to claim 1 , wherein, in the first rubber composition, the second rubber composition, and the third rubber composition, the elastomer matrix comprises more than 50 phr and up to 100 phr of a first diene elastomer and from 0 to less than 50 phr of a second diene elastomer which is different from the first diene elastomer,

wherein, in the first rubber composition and the second rubber composition, the first diene elastomer exhibits a glass transition temperature of less than −40° C., and

wherein, in the third rubber composition, the first diene elastomer exhibits a glass transition temperature of more than −40° C.

20. The tire according to claim 1 , wherein the tire is a snow tire.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2019
From: SAKURADA, TOMOYA; UCHIDA, TOMOTAKE
To: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN
Reel/Frame 051265/0060 →
Priority Claims (1)
WO PCT/JP2017/020181 · May 31, 2017 · international
Continuity (1)
Related Publication 20200101795A1 · Apr 2, 2020
Cited By (1)
US 12,698,382