IP Library Granted Patent US 10,661,485
Granted Patent B2
US 10,661,485 · App. 15/511,474 · Granted May 26, 2020

Vulcanization device for a tire and vulcanization method

Inventors: Stéphane Deschaux (Clermont-Ferrand, FR); Stéphane Herault (Clermont-Ferrand, FR)
Assignee: Compagnie Generale des Etablissements Michelin
B29C35/049B29D30/0662B29D2030/067B29D2030/0673
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Quick Facts
Patent No.
US 10,661,485
App. No.
15/511,474
Granted
May 26, 2020
Kind
B2
Abstract

A vulcanizing device for a tire includes a mold, a central part, a curing bladder, and an injector. The central part is positioned inside the mold and supports the curing bladder, which is arranged to press firmly against an internal part of a tire. An internal part of the curing bladder defines a vulcanizing chamber, which holds a pressurized heat-transfer fluid. The heat-transfer fluid, which is a mixture of steam and pressurized gas, circulates in the vulcanizing chamber and between an inlet pipe leading into the vulcanizing chamber and an outlet pipe leading out of the vulcanizing chamber. The injector is arranged outside the vulcanizing chamber and is connected to the inlet pipe, the outlet pipe, and a supply pipe for supplying steam or pressurized gas. The injector is structured to mix steam or pressurized gas coming from the supply pipe with the heat-transfer fluid leaving the vulcanizing chamber.

Claims (38)

1. A vulcanizing device for a tire, the device comprising:

a mold;

a curing bladder having an internal part that defines a vulcanizing chamber;

a central part positioned inside the mold, the central part being structured to support the curing bladder so that the curing bladder presses against an internal part of a tire during vulcanization of the tire;

an inlet pipe through which fluid enters the vulcanizing chamber;

an outlet pipe through which fluid leaves the vulcanizing chamber; and

an injector,

wherein the vulcanizing chamber is configured to hold a pressurized heat-transfer fluid such that the pressurized heat-transfer fluid circulates in the vulcanizing chamber and between the inlet pipe and the outlet pipe,

wherein the injector is arranged outside of the vulcanizing chamber, is connected to the inlet pipe and the outlet pipe, and comprises a fluid inlet opening through which steam or pressurized gas is supplied to the injector,

wherein the injector receives, via the outlet pipe, the pressurized heat-transfer fluid that has left the vulcanizing chamber, and

wherein the injector is configured to (1) mix (a) the steam or the pressurized gas supplied to the injector via the fluid inlet opening with (b) the pressurized heat-transfer fluid that was received from the vulcanizing chamber via the outlet pipe, to obtain a mix, and (2) provide the mix to the vulcanizing chamber via the inlet pipe.

2. The device according to claim 1 , wherein the injector includes a Venturi-effect tube connected to the inlet pipe and the outlet pipe.

3. The device according to claim 2 , wherein the Venturi-effect tube includes an outlet opening that connects the Venturi-effect tube to a condensate drain and collection pipe.

4. The device according to claim 2 , wherein the Venturi-effect tube includes a convergent ejection cone in communication with a convergent mixing cone that mixes the steam or the pressurized gas with the pressurized heat-transfer fluid that has left the vulcanizing chamber via the outlet pipe, the mixing cone being in communication with the inlet pipe via a divergent injection cone.

5. The device according to claim 1 , wherein the pressurized gas is one of or is any combination of: nitrogen, hydrogen, and compressed air.

6. A vulcanizing device for a tire, the device comprising:

a mold;

a curing bladder having an internal part that defines a vulcanizing chamber;

a central part positioned inside the mold, the central part being structured to support the curing bladder so that the curing bladder presses against an internal part of a tire during vulcanization of the tire;

an inlet pipe through which fluid enters the vulcanizing chamber;

an outlet pipe through which fluid leaves the vulcanizing chamber; and

an injector,

wherein the vulcanizing chamber is structured to hold a pressurized heat-transfer fluid such that the pressurized heat-transfer fluid circulates in the vulcanizing chamber and between the inlet pipe and the outlet pipe,

wherein the injector is arranged outside of the vulcanizing chamber, is connected to the inlet pipe and the outlet pipe, and comprises a fluid inlet opening through which steam or pressurized gas is supplied to the injector,

wherein the injector is structured to enable the steam or the pressurized gas supplied via the supply pipe to mix with the pressurized heat-transfer fluid leaving the vulcanizing chamber via the outlet pipe,

wherein the injector includes a Venturi-effect tube connected to the inlet pipe, the outlet pipe, and the supply pipe, and

wherein the Venturi-effect tube includes an outlet opening that connects the Venturi-effect tube to a condensate drain and collection pipe.

7. A method of vulcanizing a tire, the method comprising steps of:

installing a green tire in a vulcanizing device, the vulcanizing device including: (a) a mold, (b) a curing bladder having an internal part that defines a vulcanizing chamber, (c) a central part positioned inside the mold, the central part being structured to support the curing bladder so that the curing bladder presses against an internal part of the tire during vulcanization of the tire, (d) an inlet pipe through which fluid enters the vulcanizing chamber, (e) an outlet pipe through which fluid leaves the vulcanizing chamber, and (f) an injector arranged outside of the vulcanizing chamber, wherein the injector is connected to the inlet pipe and the outlet pipe, and wherein the injector comprises a fluid inlet opening through which steam or pressurized gas is supplied to the injector;

circulating a pressurized heat-transfer fluid in the vulcanizing chamber and between the inlet pipe and the outlet pipe, wherein the injector receives, via the outlet pipe, the pressurized heat-transfer fluid that has left the vulcanizing chamber;

mixing, at the injector, (a) the steam or the pressurized gas supplied to the injector via the fluid inlet opening with (b) the pressurized heat-transfer fluid that was received from the vulcanizing chamber via the outlet pipe; and

providing the mix to the vulcanizing chamber via the inlet pipe.

8. The method according to claim 7 , wherein, in the mixing step, the injector is supplied with the steam after the pressurized gas has been introduced into the vulcanizing chamber.

9. The method according to claim 7 , further comprising a step of supplying the injector with the steam or the pressurized gas when a curing pressure has been regulated to a value between two thresholds (p min , p max ).

10. The method according to claim 7 , further comprising steps of:

heating a mixture forming the pressurized heat-transfer fluid to a temperature between 150° C. and 205° C.; and

establishing, for the mixture, a pressure between 14 bar and 18 bar,

wherein, for at least a portion of a vulcanization cycle, the temperature of the mixture is between 150° C. and 205° C. and the pressure of the mixture is between 14 bar and 18 bar.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 29, 2017
From: MICHELIN RECHERCHE ET TECHNIQUE S.A.
To: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN
Reel/Frame 044250/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2017
From: DESCHAUX, STÉPHANE; HERAULT, STÉPHANE
To: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN; MICHELIN RECHERCHE ET TECHNIQUE S.A.
Reel/Frame 043835/0609 →
Priority Claims (1)
FR 14 59018 · Sep 24, 2014 · national
Continuity (1)
Related Publication 20170291329A1 · Oct 12, 2017