Claims
- 1. A method of improving steering performance robustness in a vehicle, comprising:mounting a plurality of tire/wheel assemblies on the vehicle, said plurality of tire/wheel assemblies including a number of front tire/wheel assemblies and a number of rear tire/wbeel assemblies, each tire/wheel assembly comprising a tire mounted on a wheel, and imparting a controlled amount of stiffness non-uniformity to the tire which varies with the rotational angle around the tire in at least one of the tire/wheel assemblies.
- 2. A method of improving steering performance robustness in a vehicle, comprising:mounting a plurality of tire/wheel assemblies on the vehicle, said plurality of tire/wheel assemblies including a number of front tire/wheel assemblies and a number of rear tire/wheel assemblies, each tire/wheel assembly comprising a tire mounted on a wheel; imparting a controlled amount of stiffness non-uniformity to the tire in at least one of the tire/wheel assemblies; and selecting the at least one tire/wheel assemblies from one or more of the front tire/wheel assemblies.
- 3. Method, according to claim 1, characterized by the step of:for the tire having a controlled amount of stiffness non-uniformity, imparting, at least one of a mass non-uniformity in the at least one of the tire/wheel assemblies with a dimensional non-uniformity in the at least one of the tire/wheel assemblies.
- 4. Method, according to claim 1, further characterized by the step of:statically and dynamically balancing all of the plurality of tire/wheel assemblies.
- 5. Method, according to claim 1, characterized by the steps of:imparting the stiffness non-uniformity meridionally symmetrically about the equatorial plane of the tire; and correcting the tire with the stiffness non-uniformity to assure minimum lateral force variation.
- 6. A method of improving steering performance robustness in a vehicle, comprising:mounting a plurality of tire/wheel assemblies on the vehicle, said plurality of tire/wheel assemblies including a number of front tire/wheel assemblies and a number of rear tire/wheel assemblies, each tire/wheel assembly comprising a tire mounted on a wheel; imparting a controlled amount of stiffness non-uniformity to the tire in at least one of the tire/wheel assemblies, wherein the stiffness non-uniformity is imparted to the tire with at least one heavy splice; and increasing the width W of each heavy splice, both to increase a localized excess mass, and to circumferentially lengthen a localized excess stiffness portion of the tire, thereby increasing both mass non-uniformity and stiffness non-uniformity.
- 7. Method, according to claim 6, further characterized by the step of:selecting the fabric width W′ and the fabric material to provide a desired amount of both mass and stiffness non-uniformities.
- 8. Method, according to claim 1, characterized by:imparting the stiffness non-uniformity with at least one sector of a tire component having a different stiffness than the remainder of the tire component.
- 9. Method, according to claim 8, further characterized by:imparting the different stiffness in at least one sector of an apex above each bead, causing stiffness non-uniformity in sidewalls of the tire.
- 10. Method, according to claim 8, further characterized by:imparting the different stiffness in at least one sector of a tire tread having a pattern by varying the tread pattern.
- 11. Method, according to claim 1, characterized by:the stiffness non-uniformity being a tire stiffness characteristic that varies with rotational angle about an axis of rotation of the tire.
- 12. A method of improving steering performance robustness in a vehicle, comprising:mounting a plurality of tire/wheel assemblies on the vehicle, said plurality of tire/wheel assemblies including a number of front tire/wheel assemblies and a number of rear tire/wheel assemblies, each tire/wheel assembly comprising a tire mounted on a wheel; and imparting a controlled amount of stiffness non-uniformity to the tire in at least one of the tire/wheel assemblies, the stiffness non-uniformity, mass non-uniformity, and dimensional non-uniformity, each being a tire/wheel characteristic that varies with rotational angle about an axis of rotation of the tire.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application relates to applications entitled METHOD OF IMPROVING STEERING PERFORMANCE ROBUSTNESS UTILIZING MASS NON-UNIFORMITY IN TIRE/WHEEL, and METHOD OF IMPROVING STEERING PERFORMANCE ROBUSTNESS UTILIZING DIMENSIONAL NON-UNIFORMITY IN TIRE/WHEEL, both having a filing date concurrent with that of the present application.
US Referenced Citations (29)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2765292 |
Dec 1998 |
FR |