The present invention relates to a method of producing a pneumatic tire having a hoop-and-loop fastener on the inner surface of the tire, and more particularly, to a method of producing a pneumatic tire capable of improving productivity and avoiding deterioration of uniformity.
In order to reduce the cavity resonance sound of a pneumatic tire, a sound-absorbing member is provided on the inner surface of the tire facing the cavity of the tire. The present applicant has proposed a pneumatic tire having a hoop-and-loop fastener formed of resin such as nylon or polyester on the inner surface of the tire in order to facilitate attaching such a sound-absorbing member to the tire (see a patent document 1, for example).
The sound-absorbing member also has a hoop-and-loop fastener which is engagable with the hoop-and-loop fastener provided on the inner surface of the tire. An advantage is that the sound-absorbing member can be easily attached to the inner surface of the tire by engaging the hoop-and-loop fasteners with each other and can be easily detached therefrom as necessary.
The above-mentioned pneumatic tire having a hoop-and-loop fastener on the inner surface of the tire is generally produced by putting the hoop-and-loop fastener on the inner surface of a green tire which has been built and then vulcanizing the green tire. The steps for producing a pneumatic tire include a step of expanding and deforming into a toroidal shape a cylindrical first formed body formed by sticking an inner liner, a carcass ply and the like on a building drum. The inner peripheral length of the first formed body is greatly elongated in the expanding step. Therefore, if the hoop-and-loop fastener formed of resin such as nylon or polyester is annularly attached to the first formed body before expansion and deformation, the hoop-and-loop fastener drops in the expanding step because the hoop-and-loop fastener can not follow the expansion and deformation of the first formed body. Thus, the hoop-and-loop fastener is attached to a green tire the first formed body of which has been expanded and deformed.
However, since the hoop-and-loop fastener is attached to the inner surface in the cavity of the green tire around the entire circumference, the hoop-and-loop fastener attaching process is cumbersome and attachment processability is deteriorated, which contributes to a decrease in tire productivity. Further, since the hoop-and-loop fastener is attached by hand to the inner surface of the tire in the form of a curved surface, it is difficult to attach the hoop-and-loop fastener in a balanced manner around the entire circumference of the tire, and deterioration of tire uniformity can not be avoided.
Patent Document 1: Japanese Patent Application Kokai Publication 2006-44503
An object of the present invention is to provide a method of producing a pneumatic tire having a hoop-and-loop fastener on the inner surface of the tire in which productivity can be improved and deterioration of uniformity can be avoided.
In order to achieve the above object, the present invention provides a method of producing a pneumatic tire having at least one hoop-and-loop fastener provided along a circumferential direction of the tire on an inner surface of the tire facing a cavity of the tire, comprising the steps of forming on a building drum a cylindrical first formed body with the at least one hoop-and-loop fastener intermittently attached to a radially inner surface thereof along a circumferential direction of the drum, forming a green tire by expanding the first formed body into a toroidal shape to press the first formed body against an inner peripheral side of an annular second formed body, and vulcanizing the green tire.
According to the present invention mentioned above, by intermittently attaching the hoop-and-loop fastener to the radially inner surface of the first formed body, parts of the first formed body where the hoop-and-loop fastener is not attached are elongated during expansion and deformation. Therefore, even when the hoop-and-loop fastener does not follow the expansion and deformation of the first formed body, the hoop-and-loop fastener does not drop from the first formed body.
Thus, the hoop-and-loop fastener can be attached on the building drum. Therefore, the attachment process of the hoop-and-loop fastener is facilitated, and productivity can be enhanced. Further, the hoop-and-loop fastener can easily be attached at predetermined positions on the building drum. Therefore, weight imbalance arising from attachment of the hoop-and-loop fastener is prevented and deterioration of uniformity can be avoided.
Embodiments of the present invention will be described in detail below with reference to the attached drawings.
Referring to
A carcass ply 4 extends between right and left bead portions 3, the carcass ply 4 having a rubber layer and reinforcing cords embedded therein, the reinforcing cords extending in the radial direction of the tire and being arranged at prescribed intervals in the circumferential direction of the tire. The carcass ply 4 has opposite end portions which are each turned up around a bead core 5 embedded in a bead portion 3 from the axially inner side of the tire towards the axially outer side of the tire with a bead filler 6 being sandwiched.
A plurality of belt plies 7 are disposed radially outwardly of the carcass ply 4 in the tread portion 1. A plurality of belt-reinforcing plies 7a are provided radially outwardly of the plurality of belt plies 7. A tread rubber layer 8 is placed radially outwardly of the belt-reinforcing plies 7a. A side rubber layer 9 is disposed outwardly of the carcass ply 4 in each sidewall portion 2. A cushion rubber layer 10 is provided outwardly of the turned-up portion of the carcass ply 4 in each bead portion 3.
An inner liner 11 acting as an air impermeable layer is disposed inwardly of the carcass ply 4. A plurality of hoop-and-loop fasteners 12 are provided inwardly of the inner liner 11 in the tread portion 1, facing the cavity 16 of the tire. The hoop-and-loop fasteners 12 are attached to the inner line 11 via a rubber sheet layer 13. The rubber sheet layer 13 has a radially inner surface 13a, to which the hoop-and-loop fasteners 12 are intermittently attached at prescribed intervals along the longitudinal direction of the rubber sheet (tire circumferential direction) as shown in
Each hoop-and-loop fastener 12 is formed of resin such as nylon or polyester, and includes a substrate 12x formed of a sheet-shaped foundation cloth and hook-shaped engaging elements 12y provided on one face thereof. An appendage (not shown) such as a sound-absorbing member having hoop-and-loop fasteners engageable with the hoop-and-loop fasteners 12 is detachably attached to the hoop-and-loop fasteners 12 exposed on the inner surface 1x of the tire in a center area 1A of the tread portion 1. The engaging elements 12y of the hoop-and-loop fastener 12 are formed into a hook shape. However, there is no limitation thereto. If the engaging elements 12y of the hoop-and-loop fastener 12 can be engaged with the hoop-and-loop fasteners attached to the appendage, any shape such as a loop shape may be employed.
A method of producing a pneumatic tire T having a construction shown in
First, as shown in
For rubber used for the unvulcanized rubber sheet 13′, the same one as rubber used for the inner liner 11 is preferably used in terms of adhesion. Rubber used for the two preferably includes, for example, butyl rubber which has a high air impermeable effect.
In
It is preferable that each hoop-and-loop fastener 12 be as short as possible in length in the longitudinal direction of the rubber sheet if an appendage can be attached. A portion of the unvulcanized rubber sheet 13′ to which the hoop-and-loop fastener 12 is attached is placed under restraint by the hoop-and-loop fastener 12 and does not elongate. Therefore, elongation of a carcass ply inside is restrained during expansion of a first formed body 22 described later. Thus, by shortening the length of each hoop-and-loop fastener 12 to intermittently dispose a lot of hoop-and-loop fasteners 12, occurrence of disarray of reinforcing cord arrangement of the carcass ply can be restrained.
Next, as shown in
After application of the unvulcanized rubber sheet 13′, unvulcanized inner liner 11′, unvulcanized carcass ply 4′, bead cores 5 with an unvulcanized bead filler 6′, unvulcanized cushion rubber layers 10′ and unvulcanized side rubber layers 9′ are sequentially applied to form a first formed body 22 as is conventional (see
After removal of the first formed body 22 from the building drum 21, as shown in
The first formed body 22 expanded and deformed into a toroidal shape is pressed against the inner peripheral side of an annular second formed body 24 disposed radially outwardly of the first formed body 22 to form a green tire (not shown) with the hoop-and-loop fasteners 12 provided along the circumferential direction of the tire on the inner surface of the tire, the second formed body 24 having unvulcanized belt plies 7′, unvulcanized belt-reinforcing plies 7a and an unvulcanized tread rubber layer 8′ stuck to one another. The green tire is set in a tire curing press to vulcanize it. The hoop-and-loop fasteners 12 are bonded by vulcanization to the vulcanized rubber sheet 13, and the pneumatic tire T shown in
According to the present invention as described above, since the hoop-and-loop fasteners 12 are intermittently attached to form the first formed body 22, the rubber portions 13′r of the unvulcanized rubber sheet 13′ where the hoop-and-loop fasteners 12 are not provided follow the deformation of the first formed body 22 and are elongated when the first formed body 22 is expanded and deformed into a toroidal shape. Therefore, dropping of the hoop-and-loop fasteners 12 can be avoided.
Accordingly, the hoop-and-loop fasteners 12 can be attached on the building drum 21. Therefore, the attachment process of the hoop-and-loop fasteners 12 is facilitated, and productivity can be improved. On the other hand, the hoop-and-loop fasteners 12 can easily be attached at predetermined positions on the building drum 21. Therefore, deterioration of uniformity caused by weight imbalance arising from attachment of the hoop-and-loop fasteners 12 can be avoided.
Referring to
Next, the belt-shaped hoop-and-loop fastener 12 is cut at prescribed intervals to divide the belt-shaped hoop-and-loop fastener 12 into a plurality of hoop-and-loop fastener pieces 12A. At this time, the belt-shaped hoop-and-loop fastener 12 is cut at positions away from the attachment positions of the belt-shaped hoop-and-loop fastener 12, preferably in the center between each pair of adjacent attachment positions.
Hereinafter, as in the first embodiment, the unvulcanized rubber sheet 13′ with the belt-shaped hoop-and-loop fastener 12 is applied onto a building drum 21 to form a first formed body 22, and the first formed body 22 is then expanded and deformed into a toroidal shape by a shaping drum 23 to press it against the inner peripheral side of a second formed body 24, forming a green tire. When the first formed body 22 is expanded and deformed into a toroidal shape, each rubber portion 13′r of the unvulcanized rubber sheet 13′ between attachment positions of the belt-shaped hoop-and-loop fastener 12 is elongated following the expansion and deformation (see
Referring to
Hereinafter, as in the first embodiment, the unvulcanized rubber sheet 13′ with the belt-shaped hoop-and-loop fastener 12 is applied onto a building drum 21 to form a first formed body 22, and the first formed body 22 is then expanded and deformed into a toroidal shape by a shaping drum 23 to press it against the inner peripheral side of a second formed body 24, forming a green tire. When the first formed body 22 is expanded and deformed into a toroidal shape, as shown in
Referring to
As shown in
Hereinafter, as in the first embodiment, the unvulcanized rubber sheet 13′ with the belt-shaped hoop-and-loop fastener 12 is applied onto a building drum 21 to form the first formed body 22, and the first formed body 22 is then expanded and deformed into a toroidal shape by the shaping drum 23 to press it against the inner peripheral side of a second formed body 24, forming a green tire. When the first formed body 22 is expanded and deformed into a toroidal shape, each rubber portion 13′r of the unvulcanized rubber sheet 13′ between attachment positions of the belt-shaped hoop-and-loop fastener 12 is elongated following the expansion and deformation, and the slack part 12C deforms following the deformation of the rubber portion 13′r (see
In
Referring to
As shown in
Hereinafter, as in the first embodiment, the unvulcanized rubber sheet 13′ with the belt-shaped hoop-and-loop fastener 12 is applied onto a building drum 21 to form the first formed body 22, and the first formed body 22 is then expanded and deformed into a toroidal shape by a shaping drum 23 to press it against the inner peripheral side of a second formed body 24, forming a green tire. When the first formed body 22 is expanded and deformed into a toroidal shape, each rubber portion 13′r of the unvulcanized rubber sheet 13′ between attachment positions of the belt-shaped hoop-and-loop fastener 12 is elongated following the deformation, and the substrate part 12xa deforms following the deformation of the rubber portion 13′r. Therefore, the belt-shaped hoop-and-loop fastener 12 does not drop from the unvulcanized rubber sheet 13′. The formed green tire is vulcanized, obtaining a pneumatic tire having the belt-shaped hoop-and-loop fastener 12 disposed around the entire circumference along the circumferential direction of the tire on the inner surface of the tire facing the cavity of the tire.
The above embodiments show examples of production of a pneumatic tire having the hoop-and-loop fastener(s) 12 on the inner surface 1x of the tire in the center area 1A of the tread portion 1. However, the present invention is not limited thereto, and may be a method of producing a pneumatic tire having the hoop-and-loop fasteners 12 on the inner surface 1x of the tire in both shoulder areas 1B of the tread portion 1 as shown in
In the present invention, it is preferable in terms of easier production that the first formed body 22 be formed using the unvulcanized rubber sheet 13′ to which the hoop-and-loop fastener(s) 12 has been attached in advance as described in the above embodiments. However, there is no limitation thereto. For example, the hoop-and-loop fastener(s) 12 may be preliminarily attached to the unvulcanized inner liner 11′ located innermost of the tire as in the above.
The present invention having the aforementioned excellent effects is applicable to production of a pneumatic tire having a hoop-and-loop fastener on the inner surface of the tire.
Number | Date | Country | Kind |
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2006-336572 | Dec 2006 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2007/072379 | 11/19/2007 | WO | 00 | 4/28/2009 |