TIRE WITH AN ENCAPSULATED SEALANT STRIP LAYER
20200198272 ยท 2020-06-25
Inventors
- Hongbing Chen (Broadview Heights, OH, US)
- Christopher David Dyrlund (Canton, OH, US)
- Adam Mark Baldan (Akron, OH, US)
Cpc classification
B29D2030/0698
PERFORMING OPERATIONS; TRANSPORTING
B29D30/0685
PERFORMING OPERATIONS; TRANSPORTING
B29C73/20
PERFORMING OPERATIONS; TRANSPORTING
B29D2030/0694
PERFORMING OPERATIONS; TRANSPORTING
B60C19/122
PERFORMING OPERATIONS; TRANSPORTING
B60C19/12
PERFORMING OPERATIONS; TRANSPORTING
B29D2030/069
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29D30/06
PERFORMING OPERATIONS; TRANSPORTING
B29C73/16
PERFORMING OPERATIONS; TRANSPORTING
B29C73/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
One or more embodiments of the present invention provide a tire and method of forming a continuous encapsulated strip of sealant layer inside the tire. The strip of sealant layer has a varied mixture ratio of the sealant compound to the skin compound.
Claims
1. A pneumatic tire comprising a carcass layer, an inner liner located radially inward of the carcass layer, and a sealant layer, wherein the sealant layer is formed by spirally winding a strip of encapsulated sealant.
2. The pneumatic tire of claim 1 wherein the sealant layer is formed from a single layer of strips.
3. The pneumatic tire of claim 1 wherein the strips are overlapped with each other.
4. The pneumatic tire of claim 1 wherein the ratio of sealant to gum rubber is varied in the sealant layer.
5. The pneumatic tire of claim 1 wherein the strips at the lateral edges contain no sealant.
6. The pneumatic tire of claim 1 wherein the one or more strips at the lateral edges are in the range of 70% to 100% gum rubber.
7. The pneumatic tire of claim 1 wherein the one or more strips inside the lateral edges are in the range of 70% to 100% sealant.
8. The pneumatic tire of claim 1 wherein the cross-sectional shape of the strip is rectangular.
9. The pneumatic tire of claim 1 wherein the sealant layer is located radially inward of the inner liner.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The invention will be described by way of example and with reference to the accompanying drawings in which:
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DETAILED DESCRIPTION OF THE INVENTION
[0040]
Formation of the Encapsulated Strip of Sealant
[0041]
[0042] The dual compound strip forming apparatus 10 is mounted upon a translatable support bar 16 that is slidable fore and aft on parallel rails 17 of a support frame 18 so that the dual compound strip forming apparatus 10 can translate fore and aft in relation to a tire building machine (not shown).
[0043] As shown in
[0044] The first extruder inlet 32 receives a first compound A, examples of which are described in more detail, below. The first extruder 30 functions to warm up a first compound A to the temperature in the range of about 80 C. to about 150 C., preferably about 90 C. to about 120 C., and to masticate the rubber composition as needed. The output end 34 of the first extruder 30 is connected to an inlet end 43 of a first gear pump 42. Compound A is thus first extruded by the first extruder 30 and then pumped by the first gear pump 42 into a nozzle 80. The first gear pump 42 functions as a metering device and a pump and may have gears such as planetary gears, bevel gears or other gears.
[0045] The second extruder inlet 62 receives a second compound B, examples of which are described in more detail, below. The second extruder 60 functions to warm up the second compound B to the temperature in the range of about 80 C. to about 150 C., preferably about 90 C. to about 120 C., and to masticate the rubber composition as needed. The output end 64 of the second extruder 60 is connected to an inlet end 45 of a second gear pump 44 as shown in
[0046] The first and second gear pumps 42,44 may be housed in a single housing 40 and are placed in close proximity to each other so that the outlet channels 46,48 of the first and second gear pumps are also in close proximity, as shown in
[0047] The first and second nozzle channels 84,86 remain separated from each other so that the two rubber flow streams do not merge until the exit of the nozzle. At the entrance to the flow die 102, the compound B flow stream flows around the compound A stream so that a continuous strip of compound A is encapsulated by a thin skin of compound B. Thus, the flow streams of compound A and B do not mix together to form a mixed compound.
[0048] Thus, the apparatus of the invention produces an encapsulated continuous strip of compound A that is encapsulated by skin of compound B. An example strip is shown in
[0049] The volume ratio of compound A to compound B may be altered, as shown in
[0050] In one embodiment, the sealant material suitable for use is described in U.S. Pat. No. 4,359,078, or U.S. Pat. No. 6,837,287 in in US application Ser. No. 10/917,620, which is hereby incorporated by reference. The outer skin material is selected to bond readily to the inner liner or other layers of the tire. Preferably, the skin material has the same composition as one of the tire components to which the sealant strip is bonded to.
[0051] A method for forming a continuous strip of compound of a sealant encapsulated by a gum rubber comprises the steps of: extruding the sealant compound through a first extruder and then pumping the sealant through a first gear pump and into a first passageway of a nozzle, while at the same time extruding a gum rubber through a second extruder and then pumping the gum rubber through a second gear pump and into a second passageway of a nozzle, wherein the first and second passageways are joined together at the inlet of the die outlet of a nozzle. Preferably, the first and second compound exit the die outlet of the nozzle wherein the sealant is encapsulated by the gum rubber. The nozzle preferably has a removable insert which divides the nozzle into a separated first and second passageway, wherein the removable insert has a distal end for positioning adjacent a die outlet of the nozzle, wherein the distal end has an elongated flat portion. Preferably there are slits located on each end of the elongated flat portion to facilitate encapsulation of the flow. More preferably, the ratio of the volume of the encapsulated rubber to the volume of the skin is varied by changing the ratio of the speed of the first gear pump to the second gear pump.
Formation of the Sealant Layer in a Green Tire
[0052] A first embodiment of a method of forming a sealant layer is shown in
[0053] After the strips are spirally wound on the drum, the strips are cut, pulled off the drum, and then the ends are spliced together and manually inserted in the tire.
[0054] Variations in the present inventions are possible in light of the description of it provided herein. While certain representative embodiments and details have been shown for the purpose of illustrating the subject invention, it will be apparent to those skilled in this art that various changes and modifications can be made therein without departing from the scope of the subject invention. It is, therefore, to be understood that changes can be made in the particular embodiments described which will be within the full intended scope of the invention as defined by the following appended claims.