METHOD OF MAKING A NON-PNEUMATIC TIRE
20210154958 · 2021-05-27
Inventors
- Francesco Sportelli (Bettembourg, LU)
- Md Atiqur Rahman Bhuiyan (Copley, OH, US)
- Jimmy Lee Richards (Rootstown, OH, US)
- Marc Borowczak (Hartville, OH, US)
- Gregory Monroe Bond (Akron, OH, US)
Cpc classification
B29C65/483
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C65/4845
PERFORMING OPERATIONS; TRANSPORTING
B29C65/02
PERFORMING OPERATIONS; TRANSPORTING
B29C66/73751
PERFORMING OPERATIONS; TRANSPORTING
B29C66/73117
PERFORMING OPERATIONS; TRANSPORTING
B29C66/5326
PERFORMING OPERATIONS; TRANSPORTING
B60C7/146
PERFORMING OPERATIONS; TRANSPORTING
B29C66/612
PERFORMING OPERATIONS; TRANSPORTING
B29K2021/00
PERFORMING OPERATIONS; TRANSPORTING
B29K2021/00
PERFORMING OPERATIONS; TRANSPORTING
B60C7/143
PERFORMING OPERATIONS; TRANSPORTING
B29D30/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A method of making a non-pneumatic tire, the non-pneumatic tire comprising a ground contacting annular tread portion comprising a tread rubber composition, a shear band comprising a cord reinforced rubber composition and disposed radially inward of the tread portion, and at least one spoke disk disposed radially inward of the shear band; wherein the spoke disk has an outer ring, and an inner ring, and a first and second spoke extending radially between the outer ring and the inner ring, wherein the first and second spokes are connected at a joint; the method comprising the steps of: applying a curable adhesive as an interface between a radially outermost surface of the spoke disk and a radially innermost surface of the shear band in its uncured state; assembling the tread portion in an uncured state, the shear band in an uncured state, and the at least one spoke disk to form an pre-assembly; and curing the pre-assembly.
Claims
1. A method of making a non-pneumatic tire, the non-pneumatic tire comprising a ground contacting annular tread portion comprising a tread rubber composition, a shear band comprising a cord reinforced rubber composition and disposed radially inward of the tread portion, and at least one spoke disk disposed radially inward of the shear band; wherein the spoke disk has an outer ring, and an inner ring, and a first and second spoke extending radially between the outer ring and the inner ring, wherein the first and second spokes are connected at a joint, the method comprising the steps of: applying a curable adhesive as an interface between a radially outermost surface of the spoke disk and a radially innermost surface of the shear band in its uncured state; assembling the tread portion in an uncured state, the shear band in an uncured state, and the at least one spoke disk to form a pre-assembly; and curing the pre-assembly.
2. The method of claim 1, further comprising the pre-assembly further comprises a rim, wherein the at least one spoke disk is connected to the rim between a radially outermost surface of the rim and a radially innermost surface of the spoke disk.
3. The method of claim 1, wherein the curable adhesive comprises a primer and an elastomer bonding agent, and the step of applying the curable adhesive comprises applying the primer to the radially outermost surface of the spoke disk and subsequently the elastomer bonding agent over the primer.
4. The method of claim 2, wherein the at least one spoke disk is connected to the rim via a second adhesive bond between a radially outermost surface of the rim and a radially innermost surface of the spoke disk.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006] The present invention will be better understood through reference to the following description and the appended drawings, in which:
[0007]
[0008]
[0009]
[0010]
DETAILED DESCRIPTION OF THE INVENTION
[0011] The present invention is directed to a method of making a non-pneumatic tire, the non-pneumatic tire comprising a ground contacting annular tread portion comprising a tread rubber composition, a shear band comprising a cord reinforced rubber composition and disposed radially inward of the tread portion, and at least one spoke disk disposed radially inward of the shear band; wherein the spoke disk has an outer ring, and an inner ring, and a first and second spoke extending radially between the outer ring and the inner ring, wherein the first and second spokes are connected at a joint; the method comprising the steps of: applying a curable adhesive as an interface between a radially outermost surface of the spoke disk and a radially innermost surface of the shear band in its uncured state, assembling the tread portion in an uncured state, the shear band in an uncured state, and the at least one spoke disk to form a pre-assembly, and curing the pre-assembly.
[0012] A first embodiment of a non-pneumatic tire 100 of the present invention is shown in
[0013] The non-pneumatic tire may have different combination of spoke disks in order to tune the non-pneumatic tire with desired characteristics. For example, a first spoke disk 500 may be selected that carries both shear load and tensile load. A second spoke disk may be selected that carries a pure tensile load.
[0014] The tread portion 200 may have no grooves or may have a plurality of longitudinally oriented tread grooves forming essentially longitudinal tread ribs there between. Ribs may be further divided transversely or longitudinally to form a tread pattern adapted to the usage requirements of the particular vehicle application. Tread grooves may have any depth consistent with the intended use of the tire. The tire tread 200 may include elements such as ribs, blocks, lugs, grooves, and sipes as desired to improve the performance of the tire in various conditions.
[0015] The shear band 300 is preferably annular and is shown in
[0016] One embodiment of a non-pneumatic tire is shown in
[0017] The spoke disks are preferably formed of an elastic material, more preferably, a thermoplastic elastomer. The material of the spoke disks is selected based upon one or more of the following material properties. The tensile (Young's) modulus of the disk material is preferably in the range of 45 MPa to 650 MPa, and more preferably in the range of 85 MPa to 300 MPa, using the ISO 527-1/-2 standard test method. The glass transition temperature is less than −25 degree C., and more preferably less than —35 degree C. The yield strain at break is more than 30%, and more preferably more than 40%. The elongation at break is more than or equal to the yield strain, and more preferably, more than 200%. The heat deflection temperature is more than 40 degree C. under 0.45 MPa, and more preferably more than 50 degree C. under 0.45 MPa. No break result for the Izod and Charpy notched test at 23 degree C. using the ISO 179/ISO180 test method. Two suitable materials for the disk is commercially available by DSM Products and sold under the trade name ARNITEL PL 420H, PL461, PM 581, EM 630, and ID2060 HT.
[0018]
[0019] The adhesive bond between the spoke disks 500 and the shear band 300, is accomplished using an appropriate adhesive as an interface between the outermost surface of the spoke disk 590 and the innermost surface of 350 of shear band 300 that bonds effectively between thermoplastic and elastomer. In one embodiment, the adhesive bond between the spoke disks 500 and the shear band 300 is formed by application of a two-part adhesive followed by co-curing of the adhesive with the shear band after assembly of the parts shown in
[0020] The adhesive may be applied in thin layers to radially innermost surface 350 of shear band 300, followed by assembly of the various components. The adhesive may be applied for example manually using a brush, sponge, trowel, spatula or the like.
[0021] Applicants understand that many other variations are apparent to one of ordinary skill in the art from a reading of the above specification. These variations and other variations are within the spirit and scope of the present invention as defined by the following appended claims.