METHOD FOR FORMING A TREAD
20170001399 ยท 2017-01-05
Inventors
- Christopher David Dyrlund (Canton, OH, US)
- Gary Robert Burg (Pawleys Island, SC, US)
- Hongbing Chen (Broadview Heights, OH, US)
Cpc classification
B29D30/62
PERFORMING OPERATIONS; TRANSPORTING
B60C11/0058
PERFORMING OPERATIONS; TRANSPORTING
B29C48/49
PERFORMING OPERATIONS; TRANSPORTING
B29D2030/526
PERFORMING OPERATIONS; TRANSPORTING
B29C48/154
PERFORMING OPERATIONS; TRANSPORTING
B29K2021/00
PERFORMING OPERATIONS; TRANSPORTING
B29C48/387
PERFORMING OPERATIONS; TRANSPORTING
B29C48/21
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
One or more embodiments of the present invention provide a method for forming a tread on a green carcass comprising the steps of providing a tire building drum having a carcass thereon, applying a strip of a base compound continuously over one half of the carcass forming a first layer of base compound from the centerline of the carcass to a first lateral edge, applying a first tread cap compound over the base compound, applying a strip of a base compound continuously over the second half of the carcass forming a second layer of base compound from the centerline of the carcass to a second lateral edge, forming a chimney along an edge of the first tread cap compound, and applying a first tread cap compound over the second layer of the base compound.
Claims
1. A method for forming a tread on a green carcass comprising the steps of: providing a tire building drum having a carcass thereon; applying a strip of a base compound continuously over one half of the carcass forming a first layer of base compound from the centerline of the carcass to a first lateral edge; applying a first tread cap compound over the base compound; applying a strip of a base compound continuously over the second half of the carcass forming a second layer of base compound from the centerline of the carcass to a second lateral edge; forming a chimney along an edge of the first tread cap compound; and applying a first tread cap compound over the second layer of the base compound.
2. A method for forming a tread on a green carcass comprising the steps of: providing a tire building drum having a green carcass mounted thereon; providing an apparatus comprising a first extruder connected to a first gear pump and a second extruder connected to a second gear pump, wherein the apparatus further comprises a nozzle having an inlet connected to an outlet of the first gear pump and an outlet of the second gear pump; rotating the tire building drum; applying a strip of a base compound with the nozzle over a first half of the carcass forming a first layer of base compound; applying a first tread cap compound over the base compound; applying a strip of a base compound continuously over the second half of the carcass forming a second layer of base compound from the centerline of the carcass to a second lateral edge; forming a chimney along an edge of the first tread cap compound; and applying a first tread cap compound over the second layer of the base compound.
3. The method of claim 2 wherein the first and second gear pump are mounted in a single housing.
4. The method of claim 2 wherein the apparatus further comprises a nozzle having a first and second internal channel, wherein the first channel is connected to an outlet of the first gear pump, and the second channel is connected to an outlet of the second gear pump.
5. A method for forming a tread on a green carcass comprising the steps of: providing a tire building drum having a green carcass mounted thereon; providing an apparatus comprising a first extruder connected to a first gear pump and a second extruder connected to a second gear pump, wherein the apparatus further comprises a nozzle having an inlet connected to an outlet of the first gear pump and an outlet of the second gear pump; rotating the tire building drum; extruding a base compound through the first extruder and gear pump and into the nozzle and then applying a strip of a base compound with the nozzle over a portion of the carcass forming a first layer of base compound; and extruding a first tread cap compound through the second extruder and second gear pump, and then applying the first tread cap compound with the nozzle.
6. The method of claim 1 further comprising the steps of forming a chimney on the tread with the base compound.
7. A method for forming a multicap tread on a green carcass comprising the steps of: providing a tire building drum having a green carcass mounted thereon; providing an apparatus comprising a first extruder connected to a first gear pump and a second extruder connected to a second gear pump, wherein the apparatus further comprises a nozzle having an inlet connected to an outlet of the first gear pump and an outlet of the second gear pump; rotating the tire building drum; extruding a first compound through the first extruder and then pumping the first compound through the first gear pump and nozzle, and then applying a strip of a first compound with the nozzle over a portion of the carcass forming a first layer of the first compound; and extruding a second compound through a second extruder and then pumping the second compound through the second gear pump and nozzle, and then applying a strip of the second compound with the nozzle over a portion of the carcass forming a layer of the second compound.
8. The method of claim 7 wherein the a strip is continuously applied to the tire building drum as the compound being applied from the nozzle is switched from the first compound to the second compound.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The invention will be described by way of example and with reference to the accompanying drawings in which:
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF THE INVENTION
[0027]
[0028] The compound switching apparatus 10 is mounted upon a support frame 15. A translatable support bar 16 is mounted to the upper end of the support frame. Preferably, the compound switching apparatus 10 is mounted upon a translatable support bar 16, that can translate fore and aft in relation to a tire building machine 18.
[0029] As shown in
[0030] 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.
[0031] 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. Compound B is thus extruded by the second extruder 60 and then pumped by the second gear pump 44, which functions as a metering device and a pump and may have gears such as planetary gears, bevel gears or other gears.
[0032] The first and second gear pumps 42,44 are 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
[0033] A rotatable stitcher roller 90 is mounted adjacent the nozzle outlet 85 of the nozzle assembly 80. The stitcher roller 90 is pivotally mounted upon a support stand 92. An actuator 94 connected to the stitcher roller 90 pivots or rotates the support stand 92 about its end 93 when actuated.
[0034]
Method Steps for Forming a Dual Tread
[0035] In a first embodiment, the following method steps are utilized in order to make a dual compound tread profile, wherein the steps described are for forming the tread directly onto a carcass mounted on a tire building drum. In this embodiment, the dual compound applicator apparatus 10 is translated on frame 15 by the translatable support bar 16 to move the nozzle 80 into engagement with the outer surface 19 of the tire building drum 18 as shown in
[0036] Next, the base compound is applied over the carcass from the centerline to the second lateral end of the tire carcass forming a base layer 108 as shown in
Method Steps for Forming a Multiple Compound Tread with Base
[0037] In a second embodiment, the following method steps are utilized in order to make a dual compound tread profile, wherein the steps described are for forming the tread directly onto a carcass mounted on a tire building drum. In this embodiment, there are two dual compound applicator apparati 10 used to form the multi compound tread. The first dual compound applicator 10 is used to apply the base compound and first cap compound. A second dual compound applicator 10 is used to apply the second cap compound and third cap compound. The nozzle 80 of the first compound applicator 10 is translated on frame 15 by the translatable support bar 16 to move the nozzle 80 into engagement with the outer surface 19 of the tire building drum 18. Next, a tread base compound is extruded through the second extruder 60 and second gear pump 44 located in the housing 40, and out the passageway 82 of nozzle 80. As the tire building drum is rotated, the tread base compound is applied directly onto the carcass mounted on the tire building drum via nozzle 80. The tread base compound is applied in thin strips in a continuous manner so that the strips are wound onto the carcass in a helical manner. Preferably, the strip is in initiated at the carcass centerline and helically wrapped to a first lateral end of the tire carcass as shown in
[0038]
[0039] 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.