Apparatus and method for manufacturing rubber sheet containing steel cord
11110677 · 2021-09-07
Assignee
Inventors
Cpc classification
B29C70/687
PERFORMING OPERATIONS; TRANSPORTING
B60C2009/2032
PERFORMING OPERATIONS; TRANSPORTING
Y10S156/907
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B29D30/38
PERFORMING OPERATIONS; TRANSPORTING
B29C66/72141
PERFORMING OPERATIONS; TRANSPORTING
B29C70/16
PERFORMING OPERATIONS; TRANSPORTING
B60C9/20
PERFORMING OPERATIONS; TRANSPORTING
B60C9/263
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29D30/38
PERFORMING OPERATIONS; TRANSPORTING
B60C9/00
PERFORMING OPERATIONS; TRANSPORTING
B60C9/20
PERFORMING OPERATIONS; TRANSPORTING
B29C70/16
PERFORMING OPERATIONS; TRANSPORTING
B29C70/68
PERFORMING OPERATIONS; TRANSPORTING
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A manufacturing apparatus of a rubber sheet containing a steel cord, including a feeding device which feeds the steel cord while keeping a specified tension; a forming device which winds the steel cord being fed by the feeding device around engagement parts spaced from each other with a predetermined width; and a placement device which places on a rubber sheet member, the steel cord wound around the engagement parts with the predetermined width. The forming device includes forming parts which press bent portions of the steel cord wound around the engagement parts to form a bending shape of the bent portions, and the placement device includes a plurality of retaining parts disposed in two rows spaced apart from each other with the predetermined width to retain the bent portions in a state in which the steel cord having the bending shape is placed on the rubber sheet member.
Claims
1. A manufacturing apparatus of a rubber sheet containing a steel cord, the manufacturing apparatus comprising: a feeding device which feeds the steel cord while keeping a specified tension; a forming device which winds the steel cord being fed by the feeding device around engagement parts and engages the steel cord with the engagement parts, the engagement parts being disposed to be spaced from each other with a predetermined width; and a placement device which places the steel cord wound around the engagement parts with the predetermined width by the forming device on a rubber sheet member, wherein the forming device includes forming parts which press bent portions of the steel cord wound around the engagement parts to form a bending shape of the bent portions, and wherein the placement device includes a plurality of retaining parts disposed in two rows to be spaced apart from each other with the predetermined width to retain the bent portions in a state in which the steel cord having the bending shape formed by the forming device is placed on the rubber sheet member.
2. The manufacturing apparatus of the rubber sheet containing the steel cord, according to claim 1, wherein the engagement parts include engagement pins, respectively which engage the steel cord, wherein the retaining parts include retaining pins protruding upwardly from the rubber sheet member toward the engagement parts, wherein the engagement pins and the retaining pins are configured to come close to each other and away from each other, and wherein in a state in which the engagement pins and the retaining pins are close to each other, the bent portions are transferred from the engagement pins to the retaining pins and retained by the retaining pins.
3. The manufacturing apparatus of the rubber sheet containing the steel cord, according to claim 2, wherein after the bending shape of the bent portions of the steel cord is formed, the bent portions are transferred from the engagement pins to the retaining pins in turn, and the steel cord is retained on the rubber sheet member.
4. The manufacturing apparatus of the rubber sheet containing the steel cord, according to claim 2, wherein the retaining pins penetrate the rubber sheet member and protrude toward the engagement pins, and wherein the placement device is configured to remove the retaining pins when the steel cord placed on the rubber sheet member is sandwiched between the rubber sheet member and another rubber sheet member to form the rubber sheet.
5. The manufacturing apparatus of the rubber sheet containing the steel cord, according to claim 1, further comprising: a stranding device which is disposed upstream of the feeding device, and strands a plurality of wires, a plurality of strand cords, or a wire and a strand cord in opposite directions at an interval of the predetermined width, to form the steel cord, wherein the feeding device includes a feeding unit which feeds the steel cord to the forming device so that unstranded portions between portions having been stranded in the opposite directions by the stranding device are wound around the engagement parts.
6. A manufacturing method of a rubber sheet containing a steel cord, the manufacturing method comprising: feeding the steel cord at a predetermined interval while keeping a specified tension; winding the steel cord around engagement parts and engaging the steel cord with the engagement parts, in turn, the engagement parts being disposed to be spaced apart from each other with a predetermined width; forming a bending shape of bent portions of the steel cord wound around the engagement parts; and placing the steel cord including the bent portions having the bending shape formed at the engagement parts, on a rubber sheet member, and retaining the steel cord on the rubber sheet member by using a plurality of retaining parts disposed in two rows to be spaced apart from each other with the predetermined width to retain the bent portions in a state in which the steel cord having the bending shape is placed on the rubber sheet member.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
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DESCRIPTION OF EMBODIMENTS
(18) Hereinafter, the embodiment of the present invention will be described with reference to the drawings. Hereinafter, an upstream side in the feeding direction of a rubber sheet member 2 will be referred to as a near side and a downstream side in the feeding direction of the rubber sheet member 2 will be referred to as a far side. In the drawings, a steel cord, engagement pins, retaining pins and the like are illustrated as enlarged. In the description and claims, the directions of upward (upper), downward (lower), rightward (right) and leftward (left) correspond to the directions from the perspective of a person who sees a manufacturing apparatus 10 in a state of
(19) (Configuration of Rubber Sheet Containing Steel Cord)
(20)
(21) As an example of the rubber sheet 1, the rubber sheet 1 containing the steel cord 5 of an automobile tire has a width W which is about 100 mm to 400 mm, and a length L which is about 1000 mm to 3000 mm, is manufactured. Note that the size of the rubber sheet 1 may be suitably chosen depending on the use.
(22) (Example of Steel Cord)
(23)
(24) As examples of the steel cord 5, there are a steel cord formed by stranding (twisting) the wires 6 together, a steel cord formed by stranding strand cords each including stranded (twisted) wires, together, and a steel cord formed by stranding (twisting) the wire and the strand cord together.
(25) (Configuration of Rubber Sheet Manufacturing Apparatus)
(26)
(27) The feeding device 20 is configured to feed the steel cord 5 from above toward the forming device 30. The feeding device 20 includes a first roller 21 which feeds the steel cord 5 in a downward direction on a center line C between the engagement pins 32L, 32R disposed to be spaced apart from each other with the predetermined width W in the forming device 30. The first roller 21 is disposed at a fixed position. The feeding device 20 is configured to feed the steel cord 5 while keeping a specified tension.
(28) The feeding device 20 is configured to feed the steel cord 5 stranded (twisted) as shown in
(29) In the forming device 30, the engagement pins 32L, 32R are disposed so that the steel cord 5 is wound around the engagement pins 32L, 32R with the predetermined width V. The predetermined width V between the left engagement pin 32L and the right engagement pin 32R is set according to the width of the rubber sheet member 2. The predetermined width V is set to a dimension with which the steel cord 5 wound around the engagement pins 32L, 32R does not protrude outward in the width direction from the widthwise end portions of the rubber sheet member 2 in a state in which the steel cord 5 is placed on the rubber sheet member 2. The engagement pins 32L, 32R are provided at jack parts 33L, 33R, respectively. As will be described later, the jack parts 33L, 33R allow the engagement pins 32L, 32R to be independently advanced toward the retaining pins 52L, 52R, respectively, and to be independently retractable from the retaining pins 52L, 52R, respectively. A left horizontal movement cylinder 35L provided at a frame 34 of the forming device 30 allows the left jack part 33L to be horizontally movable. A right horizontal movement cylinder 35R provided at the frame 34 of the forming device 30 allows the right jack part 33R to be horizontally movable.
(30) The forming device 30 further includes a roller unit 36 which feeds the steel cord 5 being fed in the downward direction by the first roller 21 of the feeding device 20, to a predetermined position of the forming device 30. The roller unit 36 includes a second roller 37 which feeds the steel cord 5 being fed by the first roller 21 in an oblique direction to a location that is lateral of the forming device 30, a third roller 38 which feeds the steel cord 5 in the downward direction at a location that is lateral of the engagement pins 32L, 32R, and a fourth roller 39 which feeds the steel cord 5 in a horizontal direction at a height of the engagement pins 32L, 32R. The placement of the roller unit 36 can be changed, by rotating the second roller 37, the third roller 38, and the fourth roller 39 together around the center line C in a clockwise or counterclockwise direction to the right or the left (
(31) The forming device 30 further includes forming parts 40L, 40R which press the bent portions 9L, 9R of the steel cord 5 wound around the left and right engagement pins 32L, 32R, respectively, and form the bending shape of the bent portions 9L, 9R. The forming parts 40L, 40R include forming cylinders 41L, 41R, respectively, which horizontally advance chucks 42L, 42R toward the engagement pins 32L, 32R, respectively, and horizontally retract the chucks 42L, 42R from the engagement pins 32L, 32R, respectively. The chucks 42L, 42R are configured to press the steel cord 5 wound around the engagement pins 32L, 32R to form the bending shape of the steel cord 5. The chucks 42L, 42R with U-shaped groove shape may be used.
(32) The forming device 30 further includes pushing parts 43L, 43R which transfer the steel cord 5 having been wound around the engagement pins 32L, 32R and having the bending shape, toward the retaining pins 52L, 52R of the placement device 50. It is sufficient that the pushing parts 43L, 43R are members which push the bent portions 9 of the steel cord 5 wound around the engagement pins 32L, 32R, toward the retaining pins 52L, 52R, respectively.
(33) As shown in
(34) In the placement device 50, the plurality of retaining pins 52L, 52R are arranged in two rows and spaced from each other with the predetermined width V, to retain the bent portions 9 of the steel cord 5 having been wound around the engagement pins 32L, 32R of the forming device 30 and having the bending shape, in a state in which the steel cord 5 is placed on the rubber sheet member 2. In the present embodiment, as will be described later, the bent portions 9 of the steel cord 5 are transferred straightly from the engagement pins 32L, 32R toward the retaining pins 52L, 52R. Therefore, the engagement pins 32L, 32R are arranged in two rows and spaced from each other with the predetermined width V, and the retaining pins 52L, 52R are arranged in two rows with the predetermined width V. In the present embodiment, the retaining pins 52L, 52R of the placement device 50 upwardly penetrate the rubber sheet member 2 from below and protrude toward the engagement pins 32L, 32R.
(35) Each of the engagement pins 32L, 32R and the retaining pins 52L, 52R may have a tapered shape with a diameter reduced toward the tip end. With this shape, the steel cord 5 can be transferred more smoothly. Alternatively, the lower ends of the engagement pins 32L, 32R may be inclined inwardly. In this case, the upper ends of the retaining pins 52L, 52R may be disposed to be spaced from each other with the predetermined width equal to that of the lower ends of the engagement pins 32L, 32R. It is sufficient that the engagement pins 32L, 32R are disposed to be spaced apart from each other with a predetermined width and the retaining pins 52L, 52R are disposed to be spaced from each other with a predetermined width so that the bent portions 9L, 9R are transferred from the engagement pins 32L, 32R to the retaining pins 52L, 52R.
(36) As described above, in the present embodiment, the engagement pins 32L, 32R are configured to become close to or away from the retaining pins 52L, 52R, respectively. In a state in which the engagement pins 32L, 32R and the retaining pins 52L, 52R are close to each other (each of the engagement pins 32L, 32R and corresponding one of the retaining pins 52L, 52R are close to each other), the bent portions 9 of the steel cord 5 are pushed by the pushing parts 43L, 43L, transferred from the engagement pins 32L, 32R toward the retaining pins 52L, 52R, and retained by the retaining pins 52L, 52R, respectively. The state in which the engagement pins 32L, 32R and the retaining pins 52L, 52R are close to each other (each of the engagement pins 32L, 32R and corresponding one of the retaining pins 52L, 52R are close to each other) includes a state in which the engagement pins 32L, 32R and the retaining pins 52L, 52R are close to each other, with a small clearance, (each of the engagement pins 32L, 32R and corresponding one of the retaining pins 52L, 52R are close to each other, with a clearance,) and a state in which the engagement pins 32L, 32R and the retaining pins 52L, 52R are in contact with each other (each of the engagement pins 32L, 32R and corresponding one of the retaining pins 52L, 52R are in contact with each other). Alternatively, the retaining pins 52L, 52R may be configured to become close to or away from the engagement pins 32L, 32R, respectively.
(37) In accordance with the manufacturing apparatus 10 of the rubber sheet 1, the steel cord 5 being fed by the feeding device 20 while keeping a specified tension is wound around the engagement pins 32L, 32R of the forming device 30. The forming parts 40L, 40R form the bending shape of the bent portions 9 of the steel cord 5 wound around the engagement pins 32L, 32R. Then, the bent portions 9 of the steel cord 5 are transferred from the engagement pins 32L, 32R to the retaining pins 52L, 52R, respectively.
(38) In the above-described manner, the steel cord 5 is properly placed and retained on the rubber sheet member 2 in a state in which the steel cord 5 is properly bent with the predetermined width V while keeping a specified tension. This makes it possible to stably manufacture the rubber sheet 1 containing the steel cord 5 with a constant length at proper position.
(39) (Manufacturing Method of Rubber Sheet)
(40) Hereinafter, the operation of the manufacturing apparatus 10 and the manufacturing method of the rubber sheet 1 will be described in detail with reference to
(41) The state of
(42) Then, as shown in
(43) Then, as shown in
(44) Then, as shown in
(45) Then, as shown in
(46) Then, as shown in
(47) Then, as shown in
(48) Then, as shown in
(49) Then, as shown in
(50) Then, as shown in
(51) Then, as shown in
(52) Then, as shown in
(53) Then, as shown in
(54) Thereafter, the operations of
(55)
(56) Then, in the present embodiment, the rubber sheet 1 is separated from the placement device 50, and the retaining pins 52L, 52R are drawn (pulled) out and removed from the rubber sheet 1. In the above-described manner, the steel cord 5 placed on the lower rubber sheet member 2 is sandwiched between the lower rubber sheet member 2 and the upper rubber sheet member 3 in a state in which the steel cord 5 is retained by the retaining pins 52L, 52R. Therefore, the steel cord 5 can be contained in the rubber sheet 1 by the upper rubber sheet member 3 in a state in which the steel cord 5 is retained by the lower rubber sheet member 2.
(57) In accordance with the above-described manufacturing apparatus 10, it becomes possible to stably manufacture the rubber sheet 1 containing the steel cord 5 different in width and length by varying the predetermined width V depending on the condition of the rubber sheet 1 containing the steel cord 5 for use with automobile tires or other uses, and by repeating the operations of
SUMMARY
(58) As described above, in accordance with the above-described manufacturing apparatus 10 of the rubber sheet 1, the steel cord 5 can be bent with the predetermined width V and the bending shape of the bent portions 9 is formed, while keeping a specified tension of the steel cord 5, and in this state, the steel cord 5 can be properly placed on the rubber sheet member 2. Therefore, by use of the steel cord 5 placed on the rubber sheet member 2, it becomes possible to manufacture the rubber sheet 1 containing the steel cord 5 which includes the bent portions 9 which are stable in bending shape, bending shape forming position and length, and has a uniform state.
(59) Since the steel cord 5 is properly bent and contained in the rubber sheet 1, it becomes possible to manufacture the rubber sheet 1 in which the brass-plated steel cord 5 with the predetermined width V kept is properly in contact with and is bonded to the rubber sheet members 2, 3.
(60) Further, the steel cord 5 can be easily changed. By properly setting the positions of the engagement pins (engagement parts 31) 32L, 32R and the positions of the retaining pins (retaining parts 51) 52L, 52R, the embedding angle θ and the embedding pitch P can be changed. This makes it possible to easily manufacture a rubber sheet 1 containing a different steel cord 5 and a rubber sheet 1 different in width or thickness. As a result, it becomes possible to achieve manufacturing of the rubber sheet 1 with more kinds and less quantities.
(61) Although in the above-described embodiment, the steel cord 5 is placed on the rubber sheet member 2 horizontally placed and fed, the rubber sheet member 2 may be fed in an inclined state or may be vertically fed. The configuration of the manufacturing apparatus 10 is not limited to the above-described embodiment.
(62) The above-described rubber sheet 1 can be manufactured by a manufacturing method in which the steel cord 5 is fed at predetermined intervals while keeping a specified tension, is wound around and engaged with the engagement parts 31 in turn, the engagement parts 31 being disposed to be spaced from each other with the predetermined width V, the bending shape of the bent portions 9 of the steel cord 5 wound around the engagement parts 31 is formed, and then the steel cord 5 is placed and retained on the rubber sheet member 2. The configuration of the manufacturing apparatus 10 is not limited to the above-described embodiment.
(63) The above-described embodiment is merely exemplary, and the present invention can be varied without departing from the spirit of the invention. The present invention is not limited to the above-described embodiment.
REFERENCE SIGNS LIST
(64) 1 rubber sheet 2 rubber sheet member 3 rubber sheet member 5 steel cord 6 wire 7 chucking portion 8 intermediate portion 9 bent portion 9L left bent portion 9R right bent portion 10 manufacturing apparatus 20 feeding device 30 forming device 31 engagement part 32L left engagement pin (engagement part 31) 32R right engagement pin (engagement part 31) 33L left jack part 33R right jack part 35L left horizontal movement cylinder 35R right horizontal movement cylinder 36 roller unit 40L left forming part 40R right forming part 41L left forming cylinder 41R right forming cylinder 42L left chuck 42R right chuck 43L left pushing part 43R right pushing part 50 placement device 51 retaining part 52L left retaining pin (retaining part) 52R right retaining pin (retaining part) C center line V predetermined width θ embedding angle P embedding pitch