APPARATUS FOR PRODUCING LAMINATED FABRIC PLY STRIPS
20180169925 ยท 2018-06-21
Inventors
Cpc classification
B29C48/304
PERFORMING OPERATIONS; TRANSPORTING
B29C48/154
PERFORMING OPERATIONS; TRANSPORTING
B29C48/2883
PERFORMING OPERATIONS; TRANSPORTING
B29L2007/007
PERFORMING OPERATIONS; TRANSPORTING
B29C48/21
PERFORMING OPERATIONS; TRANSPORTING
B29C48/268
PERFORMING OPERATIONS; TRANSPORTING
B29C48/12
PERFORMING OPERATIONS; TRANSPORTING
B29C48/34
PERFORMING OPERATIONS; TRANSPORTING
B29D30/38
PERFORMING OPERATIONS; TRANSPORTING
B29C48/156
PERFORMING OPERATIONS; TRANSPORTING
B29C48/16
PERFORMING OPERATIONS; TRANSPORTING
B29D2030/381
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An apparatus is provided for making reinforced ply is described. The apparatus includes a cross-head die assembly for use with an extruder, the cross-head die assembly having: an inlet section having an inlet for receiving flow from the extruder; an upper support block removably connected to a first side of the interior section; and a lower block removably connected to a second side of the interior section. A first flow passage is located between the upper support block and the interior section and is in fluid communication with the inlet. A second flow passage is located between the interior section and the lower support block and is in fluid communication with the inlet. The cross-head die assembly further includes a removably mounted die located at an outlet end of the assembly. The first and second flow passage is in fluid communication with an inlet of the die; each flow passage has a raised center rib and an area that decreases from the inlet to the outlet.
Claims
1. A cross-head die assembly for use with an extruder, the cross-head die assembly comprising: an inlet section having an inlet for receiving flow from the extruder; an upper support block removably connected to a first side of the interior section; and a lower block removably connected to a second side of the interior section; a first flow passage being located between the upper support block and the interior section and being in fluid communication with the inlet; a second flow passage being located between the interior section and the lower support block and being in fluid communication with the inlet; said cross-head die assembly further comprising a removably mounted die located at an outlet end of the assembly, said first and second flow passage being in fluid communication with an inlet of the die; said interior section further comprising an interior slot which extends from a first side of the assembly to the inlet of the die; wherein the first and second flow passage each have an inlet end and a raised center rib positioned at the inlet end.
2. The cross-head die assembly of claim 1 wherein the inlet area of each flow passage is greater than the outlet area of each flow passage.
3. The cross-head die assembly of claim 1 wherein a depth of each flow passage decreases from the inlet end to the outlet end.
4. The cross-head die assembly of claim 1 wherein each flow channel has an interior edge having a bulbous protrusion.
5. The cross-head die assembly of claim 1 wherein the area ratio of the exit to the inlet is in the range of 0.8 to 0.98.
6. The cross-head die assembly of claim 1 wherein the area ratio of the exit to the inlet is in the range of 0.9 to 0.96.
7. The cross-head die assembly of claim 1 wherein the width of the flow channel increases from the inlet to the outlet.
8. The cross-head die assembly of claim 1 further comprising a removable cassette positioned in the interior slot.
9. The cross-head die assembly of claim 1 wherein the upper support block has a removable flow insert.
10. The cross-head die assembly of claim 1 wherein the lower support block has a removable flow insert.
11. The cross-head die assembly of claim 1 wherein the first side of the interior section has a removable flow insert.
12. The cross-head die assembly of claim 1 wherein the second side of the interior section has a removable flow insert.
13. The cross-head die assembly of claim 1 wherein the cassette has a plurality of holes for receiving a ply cord.
14. The cross-head die assembly of claim 13 wherein each hole has an alignment groove which extends though said hole.
15. The cross-head die assembly of claim 1 wherein the slot has upper and lower sidewalls and lateral sidewalls.
16. The cross-head die assembly of claim 1 wherein the slot has an outlet end, wherein a nose of the cassette seals the outlet of the slot from flow, so that the slot is isolated from the flow.
17. The cross-head die assembly of claim 1 wherein the die has a removable insert.
18. The cross-head die assembly of claim 12 wherein the removable insert has a sealing edge positioned against the die outlet hole.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0021] In the accompanying drawings:
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DESCRIPTION OF THE PREFERRED EMBODIMENT(S)
[0032]
[0033] The cross-head die assembly 100 has an upper support block 130, a lower support block 140 and an interior section 150. An inlet section 160 is located on one end of the cross-head die assembly and is connected to the upper support block 130, the lower support block 140 and the interior section 150. The upper support block 130, lower support block 140 and the interior section are all removably connected to the assembly 100.
[0034] A cross-section of the cross-head die assembly 100 is shown in
[0035] As shown in
[0036] As shown in
[0037] The inner edge 312 of each flow channel has a bulbous extension 316 that has a large radius R in the range of 20 to 50 inches, more preferably 25 to 35 inches. The bulbous extension 316 helps to direct the rubber flow more towards the outside edge 314 then the inside edge 312, as well as to increase the velocity of the flow. As shown in
[0038] As shown in
[0039] Preferably, the lower insert plate 174 and the upper insert plate 182 have a tapered outlet end 173, 183 (
[0040] As shown in
[0041] The nose 460 of the cassette is positioned adjacent the die assembly 200. The die assembly 200 further includes an insert 500 which is pressed into the die assembly, and is not held in place by any fasteners. It includes threaded holes to allow jack bolts for removal. The insert has flanged ends 502 which are positioned in the slot ends 506. The insert 500 has a front sealing edge 510 that is positioned in the insert slot 504. The insert 500 functions to seal the die edges to prevent leakage, particularly near the edges of the die. As pressure increases in the die assembly, the insert is pushed further into the die, resulting in the insert sealing edge 510 forming a seal with the die.
[0042] The nose 460 of the cassette has an upper and lower outer contoured surface 461, 465. The upper contoured surface 461 of the nose is positioned adjacent the angled passageway 204. As the elastomer flows from the upper and lower channel, it is squeezed through the angled passageway 204 and along the outer contoured surface 461,465 of the nose 460. The elastomer flows down the upper outer surface of the nose, and then meets the cords at the lip 471 and encapsulates the reinforcement cords 110 along the lip 471. The alignment grooves 464 of the lip 471 maintain stability by retaining the cord spacing and alignment while the elastomer flows onto the cords. The flow from the bottom channel flows along the bottom surface of the nose and meets the cord after the upper portion of the cords have already been coated with rubber. The elastomer and cords then pass through the angled passageway 204 and then through the die outlet hole 202.
[0043] The die 200 is removable to allow for easier cord threading. If a cord breaks or the cords need to be changed out, the cassette can be easily removed from the assembly. The die 200 and insert 500 can also be removed for cord change. If a cord is broken, it can be rethreaded into the guide 450 and the outlet hole 462 of the cassette. A broken cord can be replaced without rethreading the remaining cords. When the cassette is removed, the rubber or elastomer remains isolated in the flow channels. A complete change out of the cord package may occur within 5 minutes. The flow channel inserts may also be changed out.
[0044] As shown in
[0045] In summary, the improved cross-head die assembly provides for individually fed cord strands captured with through hole guide, with no sharp edges to break the cords. The assembly allows for easy change out of a cord package in minutes while the elastomer remains isolated in the flow channels. A broken cord can be replaced without the need to rethread all of the remaining cords. The assembly further provides for an integrated screen filter and replaceable flow channel inserts which allow the flow balance of the system to be modified.
[0046] While the present invention has been described with respect to certain specific examples, it will be apparent that many modifications and variations are possible without departing from the scope of the following claims.