A. Field of Invention
This invention pertains to the art of methods and apparatuses regarding tire construction, and more particularly to methods and apparatuses regarding high extensible cut-resistant barriers for tires.
B. Description of the Related Art
It is known in the art to try to provide tires with resistance to damage by road debris. This can be accomplished in many different ways.
Current tire sidewall reinforcement configurations provide a low level of cut resistance for tires. A need has evolved to significantly improve the cut resistance of tires, as well as provide overall climbing ability while minimizing any appreciable structural damage.
According to one embodiment of this invention, a unidirectional fabric for use in an associated vehicle tire includes an aramid/polyamide 6,6 merge cord, wherein the fabric is at an angle to a ply angle in the associated tire.
According to another embodiment of this invention, a tire includes a carcass, a crown portion, shoulders, sidewalls, a bead region, two beads, the beads being within the bead region, and at least one cord, the cord being at least two of the group comprising aramid fibers, polyamide fibers, liquid crystalline aromatic polyesters, carbon fibers, fiberglass, and metallic fibers.
According to another embodiment of this invention, the cord is chosen from the group comprising a merge cord, a hybrid, and a core insertion.
According to another embodiment of this invention, the cord is chosen from the group comprising unidirectional, bidirectional, multidirectional, film, weave, and knit.
According to another embodiment of this invention, the cord is a merge cord.
According to another embodiment of this invention, the cord is aramid fibers and polyamide fibers.
According to another embodiment of this invention, the cord is a core insertion.
According to another embodiment of this invention, the cord has a cord density of approximately 5 to approximately 40 epi, approximately zero to 10 twist multiplier, and a cord mass of approximately 440 dtex to approximately 10,000 dtex.
According to another embodiment of this invention, the cord is at an angle with respect to a ply angle, wherein the cord is at an angle of between approximately 135° and approximately 45°.
According to another embodiment of this invention, the tire is chosen from the group comprising bias, radial, OTR (off the road), aircraft, racing, farm, ATV (all terrain vehicle), MT (medium truck), LT (light truck), and passenger.
According to another embodiment of this invention, the cord is at an angle with respect to a ply angle, wherein the cord is at an angle of between approximately 55° and approximately 45°.
According to another embodiment of this invention, a tire includes a carcass, a crown portion, shoulders, sidewalls, a bead region, two beads, the beads being within the bead region, and at least one cord, the cord comprising aramid fibers and polyamide fibers, wherein the cord is chosen from the group comprising a merge cord, a hybrid, and a core insertion, wherein the cord is at an angle with respect to a ply angle, wherein the cord is at an angle of between approximately 135° and approximately 45°.
One advantage of this invention is improved sidewall cut resistance for tires.
Another advantage of this invention is improved overall climbing ability while minimizing any appreciable structural damage.
Still other benefits and advantages of the invention will become apparent to those skilled in the art to which it pertains upon a reading and understanding of the following detailed specification.
The invention may take physical form in certain parts and arrangement of parts, embodiments of which will be described in detail in this specification and illustrated in the accompanying drawings which form a part hereof and wherein:
The following terms may be used throughout the descriptions presented herein and should generally be given the following meaning unless contradicted or elaborated upon by other descriptions set forth herein.
“Axial” and “axially” are used herein to refer to lines or directions that are parallel to the axis of rotation of the tire.
“Bead” means that part of the tire comprising an annular tensile member wrapped by ply cords and shaped, with or without other reinforcement elements such as flippers, chippers, apexes, toe guards and chafers, to fit the design rim.
“Belt” refers to a band formed at least in part from one or more flexible materials.
“Belt structure” means at least two annular layers or plies of parallel cords, woven or unwoven, underlying the tread, unanchored to the bead, and having cords inclined respect to the equatorial plane of the tire. The belt structure may also include plies of parallel cords inclined at relatively low angles, acting as restricting layers.
“Bias tire” (cross ply) means a tire in which the reinforcing cords in the carcass ply extend diagonally across the tire from bead to bead at about a 25°-65° angle with respect to equatorial plane of the tire. If multiple plies are present, the ply cords run at opposite angles in alternating layers.
“Carcass” means the tire structure apart from the belt structure, tread, undertread, and sidewall rubber over the plies, but including the beads.
“Cord” means one of the reinforcement strands of which the plies of the tire are comprised.
“Cord angle” means the acute angle, left or right in a plan view of the tire, formed by a cord with respect to the equatorial plane. The “cord angle” is measured in a cured but uninflated tire.
“dtex” means decitex, which is 1 gram per 10,000 meters.
“EPI” means ends per inch.
“Equatorial plane (EP)” means the plane perpendicular to the tire's axis of rotation and passing through the center of its tread.
“Fabric” means a network of extending cords, which may be twisted, and which in turn are composed of a plurality of a multiplicity of filaments (which may also be twisted) of a high modulus material.
“Fiber” is a unit of matter, either natural or man-made that forms the basic element of filaments. Characterized by having a length at least 100 times its diameter or width.
“Floater” is defined as a ply component that is not wrapped around the bead.
“Merge” refers to a physical combination of two or more dissimilar fiber bundles.
“Ply” means a continuous layer of rubber-coated parallel cords in the context of a tire and also means a twisted yarn in a context of a yarn or a cord as used herein the meaning is dependant on the context.
“Radial” and “radially” are used to mean directions radially toward or away from the axis of rotation of the tire.
“Radial-ply tire” means a belted or circumferentially-restricted pneumatic tire in which the ply cords which extend from bead to bead are laid at cord angles between 65° and 90° with respect to the equatorial plane of the tire.
“Sidewall” means that portion of a tire between the tread and the bead.
“Tread” means a molded rubber component which, when bonded to a tire casing, includes that portion of the tire that comes into contact with the road when the tire is normally inflated and under normal load.
“Twisted” means the number of turns about its axis per unit of length of a yarn, turns per inch being TPI.
“Twist multiplier” is a unit which helps to decide the twist per unit length for different counts from the same material. This is the angle of inclination of the helical disposition of the fiber in the material.
“Yarn” occurs in the following forms: 1) a number of fibers twisted together; 2) a number of filaments laid together without twist; 3) a number of filaments laid together with a degree of twist: 4) a single filament with or without twist (monofilament); 5) a narrow strip of material with or without twist.
Referring now to the drawings wherein the showings are for purposes of illustrating embodiments of the invention only and not for purposes of limiting the same,
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1. 6Z5550—Wrangler MT/R (maximum traction/reinforced)—K171H, (2) 1500/2+(1) 1000/2 at 85°
2. 6Z6091—BF Goodrich® Mud Terrain T/A KM
3. Three-ply 7Z5021A—“E” mold—K171H, (2) 2000/2+split 1000/2 at 45° (one embodiment of the present invention)
4. 7Z5021D—“E” mold—K171H, (2) 2000/3+split Merged Cord 28 EPI at 45° (another embodiment of the present invention)
5. 7Z5021E—“E” mold—K171H, (2) 1500/2+(1) 1000/2@85°+split 1000/2 at 45° (another embodiment of the present invention). The test conditions were as follows: Rim: 8.5×17; Inflation: 35 psi and 15 psi; Chisel: ½″; Fixture Weight: 126 lbs; RFP Target (Sidewall Impact Resistance, Tier 4): 130% vs BF Goodrich® Mud Terrain T/A KM. The test results are shown in
With reference now to
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Various embodiments have been described, hereinabove. It will be apparent to those skilled in the art that the above methods and apparatuses may incorporate changes and modifications without departing from the general scope of this invention. It is intended to include all such modifications and alterations in so far as they come within the scope of the appended claims or the equivalents thereof.
Other than in the operating examples, or where otherwise indicated, all numbers expressing quantities of ingredients, reaction conditions, and so forth used in the specification and claims are to be understood as being modified in all instances by the term “about” or “approximately.” Accordingly, unless indicated to the contrary, the numerical parameters set forth in the following specification and attached claims are approximations that may vary depending upon the desired properties sought to be obtained by the present invention. At the very least, and not as an attempt to limit the application of the doctrine of equivalents to the scope of the claims, each numerical parameter should at least be construed in light of the number of reported significant digits and by applying ordinary rounding techniques.
Notwithstanding that the numerical ranges and parameters setting forth the broad scope of the invention are approximations, the numerical values set forth in the specific examples are reported as precisely as possible. Any numerical value, however, inherently contain certain errors necessarily resulting from the standard deviation found in their respective testing measurements.