PNEUMATIC VEHICLE TIRE FOR UTILITY VEHICLES

20230234399 · 2023-07-27

Assignee

Inventors

Cpc classification

International classification

Abstract

The invention relates to a pneumatic utility vehicle tire of a radial type of construction, in particular for trucks, buses, and truck trailers, which has a four-ply or multi-ply belt (4) comprising a barrier ply (5), two working plies (6, 8) and a 0° ply (7), wherein steel cords (10) are arranged in the 0° ply (7), comprising at least two strands (11) each with at least 6 steel filaments (12), and wherein twisting causes each strand to have an identical first twist angle α and the steel cord to have a second twist angle β.

The invention is distinguished in that the steel cord (10) of the 0° ply (7) has the construction 2 to 4×n×d, with n=6 to 8 and with d=0.15 mm to 0.29 mm, wherein this construction means that the steel cord (10) has 2 to 4 twisted-together strands (11), wherein each strand (10) contains 6 to 8 steel filaments (12), in that each steel filament (12) of the steel cord (10) has the same filament diameter (13) and in that the sum of the twist angle α of a strand (11) and the twist angle β of the steel cord lies between 37° and 50°, preferably between 37° and 45°, particularly preferably between 38.5° and 42.5° and most particularly preferably between 39.3° and 41.3°.

Claims

1.-6. (canceled)

7. A pneumatic vehicle tire for utility vehicles, the tire comprising: a radial type of construction having a multi-ply belt (4) comprising a barrier ply (5), two working plies (6, 8) and a 0° ply (7), wherein steel cords (10) are arranged in the 0° ply (7), comprising at least two strands (11) each with at least 6 steel filaments (12), and wherein each strand has an identical first twist angle α and the cord has a second twist angle β, the steel cord (10) of the 0° ply (7) has the construction 2 to 4×n×d, with n=6 to 8 and with d=0.15 mm to 0.29 mm, the steel cord (10) has 2 to 4 twisted-together strands (11), wherein each strand (10) contains 6 to 8 steel filaments (12), in that each steel filament (12) of the steel cord (10) has the same filament diameter (13) and in that the sum of the twist angle α of a strand (11) and the twist angle β of the steel cord lies between 37° and 50°.

8. The pneumatic vehicle tire as claimed in claim 7, wherein the steel cord (10) has the construction 3×7×d with d=0.20 mm to 0.24 mm, and the sum of the twist angle α of a strand and the twist angle β of the cord lies in a range from 39.3° to 41.3° with each strand having a twist angle α in a range from 19° to 20°, and the cord having a twist angle in a range from 20.3° to 21.3°.

9. The pneumatic vehicle tire (10) as claimed in claim 8, the steel cord (10) has the construction 3×7×d, with d=0.22 mm, and in that the sum of the twist angle α of a strand (11) and the twist angle β of the steel cord (10) is 40.3°, each strand (11) having a twist angle α of 19.5° and the steel cord (10) having a twist angle β of 20.8°.

10. The pneumatic vehicle tire (10) of claim 7, each strand (11) and the steel cord (10) are twisted in the same direction in one of the S or in the Z direction.

11. The pneumatic vehicle tire of claim 7, wherein a barrier ply (5), and a first and a second working ply (6, 8) are arranged in a sequence from radially on the inside to radially on the outside, in that the 0° ply (7) is arranged between the first working ply (6) and the second working ply (8).

12. The pneumatic vehicle tire of claim 7, the multi-ply is a 5-ply belt (4), wherein a barrier ply (5), a first and a second working ply (6, 8), and a protective ply (9) are arranged in a sequence from radially on the inside to radially on the outside, the 0° ply (7) is arranged between the first working ply (6) and the second working ply (8).

13. A pneumatic vehicle tire for utility vehicles, the tire comprising: a radial type of construction having a four-ply belt (4) comprising a barrier ply (5), a first working ply (6, 8), a second working ply and a 0° ply (7), wherein steel cords (10) are arranged in the 0° ply (7), comprising at least two strands (11) each with at least 6 steel filaments (12), and wherein each strand has an identical first twist angle α and the cord has a second twist angle β; the steel cord (10) of the 0° ply (7) has the construction 2 to 4×n×d, with n=6 to 8 and with d=0.15 mm to 0.29 mm, the steel cord (10) has 2 to 4 twisted-together strands (11), wherein each strand (10) contains 6 to 8 steel filaments (12), in that each steel filament (12) of the steel cord (10) has the same filament diameter (13) and in that the sum of the twist angle α of a strand (11) and the twist angle θ of the steel cord lies between 39.3° and 41.3° to facilitate fatigue resistance; and the barrier ply (5), and the first working ply and the second working ply are arranged in a sequence from radially on the inside to radially on the outside, in that the 0° ply (7) is arranged between the first working ply (6) and the second working ply (8).

Description

[0021] Further features, advantages and details of the invention will now be described in more detail on the basis of the schematic drawings, which illustrate an exemplary embodiment. In the drawings:

[0022] FIG. 1 shows a partial cross section through a pneumatic utility vehicle tire according to the invention in the region of the belt and tread;

[0023] FIG. 2 shows a cross section through a strength member which is arranged in the 0° ply of the utility vehicle tire of FIG. 1.

[0024] FIG. 1 shows a cross section through the region of the tread and belt of a pneumatic vehicle tire according to the invention for utility vehicles, for example trucks, buses or truck trailers. Of the components that are commonly present in the illustrated region of the pneumatic vehicle tire, a profiled tread 1, an inner ply 2, a carcass insert 3 and a multi-ply belt 4 are shown. The belt padding and the like that is commonly provided between the edge portions of the belt plies, in particular in the region of the belt ply edges, is not shown.

[0025] The belt 4 has five belt plies 5, 6, 7, 8 and 9, wherein the first belt ply is the radially innermost belt ply 5 and is configured as a barrier ply. The second belt ply 6 is a working ply, followed by the 3rd belt ply, which is designed as a 0° ply 7, above which the fourth belt ply 8 is arranged as a working ply. The fourth belt ply 8 is adjoined by the radially outermost belt ply 9, the protective ply. All belt plies 5, 6, 7, 8 and 9 are composed of strength members embedded in a rubber compound, the so-called belt rubber coating, which strength members run parallel to one another in each ply.

[0026] The strength members in the belt plies 5, 6, 7, 8 and 9 are inclined at particular angles relative to the circumferential direction. Proceeding from the radially innermost belt ply 5, the strength members run in accordance with the sequence right-hand pitch—right-hand pitch—0°—left-hand pitch—left-hand pitch. A 0° belt ply 7 is to be understood to mean a belt ply in which the strength members run in a circumferential direction, and deviate by at most ±5° from the exact 0° orientation (=tire circumferential direction). The angle of the strength members in the first belt ply 5 is 45° to 90°, in particular 48° to 57°, the angle of the strength members in the 0° belt ply 7 is 0°±5°, the angles of the strength members in the second and third belt plies (working plies) 6, 8 are in each case 10° to 45°, and the angle of the strength members in the fourth belt ply 9 is likewise 10° to 45°, in each case in relation to the circumferential direction. As already mentioned, the second belt ply 6 and the third belt ply 8 are working plies, and the strength members thereof therefore run at relatively small angles with respect to the circumferential direction, and the plies have oppositely directed pitches.

[0027] The strength member 10 of FIG. 2 is arranged in the 0° belt ply 7 of the belt region of the utility vehicle tire of FIG. 1. The construction is 3×7×0.22 mm, which means that this steel cord 10 has three twisted-together strands 11, each strand 11 containing seven steel filaments 12. The steel filaments 12 are arranged in each strand 11 in such a way that one steel filament 12 is arranged as the core filament and the 6 other steel filaments 12 are arranged in a first ply around said core filament. Another way of writing the construction is 3×(1+6)×0.22 mm. Each steel filament 12 of the steel cord 10 has the same filament diameter 13 of 0.22 mm. Each strand 11 is twisted with the same twist angle α, with α=19.5°, and the steel cord 10 is twisted with a twist angle β, with β=20.8°. The sum of the twist angle α and the twist angle β is between 39.3° and 41.3° and amounts to 40.3° here. The twist angle α is smaller than the twist angle β. Each strand 11 and the steel cord 10 are twisted in the same direction, that is, each strand 11 and the steel cord 10 are twisted in the S or Z direction.

LIST OF REFERENCE SIGNS

[0028] 1 . . . Tread [0029] 2 . . . Inner ply [0030] 3 . . . Carcass insert [0031] 4 . . . Belt [0032] 5 . . . Barrier ply [0033] 6 . . . Working ply [0034] 7 . . . 0° belt ply [0035] 8 . . . Working ply [0036] 9 . . . Protective ply [0037] 10 . . . Steel cord [0038] 11 . . . Strand [0039] 12 . . . Steel filament [0040] 13 . . . Diameter of the steel filament (d)