IP Library Granted Patent US 9,555,673
Granted Patent B2
US 9,555,673 · App. 14/710,708 · Granted Jan 31, 2017

Tire air pressure optimization system for improving tread wear

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,555,673
App. No.
14/710,708
Granted
Jan 31, 2017
Kind
B2
Abstract

A system is provided for automatically adjusting the air pressure of a tire based on variations in loading to improve tread wear. For a particular loading of the tire, the system provides for the determination of a preferred air pressure setting designed to minimize tread wear. This preferred air pressure, P p , is determined from an analysis of the longitudinal stresses that occur within the contact patch of the tread.

Claims (36)

1. A method for regulating air pressure of a tire on a vehicle, the tire having shoulders, a tread with a ground contacting portion, and defining lateral and longitudinal directions, the lateral direction being parallel to an axis of rotation of the tire, the longitudinal direction being perpendicular to the axis of rotation of the tire, the method comprising:

ascertaining an actual or anticipated tire load L a on the tire;

selecting, from a correlation of preferred air pressures P p for a range of multiple tire loads L i , on the tire, a preferred air pressure P p for the actual or anticipated load L a on the tire; and

adjusting the air pressure of the tire while on the vehicle to the preferred air pressure P p for the actual or anticipated tire load L a ; and

wherein determination of the correlation of preferred air pressures P p comprises:

dividing the tread of the tire into multiple zones along the lateral direction, the multiple zones including a shoulder zone along each shoulder of the tire and one or more intermediate zones between the shoulder zones;

selecting a range of tire air pressures;

determining, for a load L i , in the range of multiple tire loads L i , the average longitudinal stress σ x in each of the zones over the selected range of tire air pressures;

identifying, from the selected range of tire air pressures, the preferred air pressure P p for the load L i , wherein the preferred air pressure P p is the pressure at which both i) the average longitudinal stress σ x-avg for all of the zones is minimized and ii) the average longitudinal stress σ x-avg for each of the intermediate zones is maintained at or above a predetermined threshold longitudinal stress σ x-th ; and

repeating, over the range of multiple tire loads L i , the determining and identifying so as to provide the correlation of the preferred air pressures P p .

2. The method for regulating air pressure of a tire on a vehicle in claim 1 , wherein adjusting the air pressure of the tire comprises increasing the air pressure, decreasing the air pressure, or both.

3. The method for regulating air pressure of a tire on a vehicle as in claim 1 , wherein ascertaining the actual load comprises measuring a load carried by the vehicle.

4. The method for regulating air pressure of a tire on a vehicle as in claim 1 , wherein the range of multiple tire loads L i is defined as the loads between about a minimum operating load of the tire to about a maximum sidewall load of the tire.

5. The method for regulating air pressure of a tire on a vehicle as in claim 1 , further comprising measuring the air pressure of the tire on the vehicle before the adjusting.

6. The method for regulating air pressure of a tire on a vehicle as in claim 1 , wherein the tire is a non-ribbed tire.

7. The method for regulating air pressure of a tire on a vehicle as in claim 1 , wherein the identifying comprises, for the load L i :

eliminating from the selected range of air pressures all pressures at which the average longitudinal stress σ x-avg for any zone is less than the predetermined threshold longitudinal stress σ x-th and, if there is no pressure at which the average longitudinal stress σ x-avg for any zone is less than the threshold longitudinal stress σ x-th , then eliminating from the selected range of air pressures all pressures at which the average longitudinal stress σ x-avg for either of the shoulder zones is less than the threshold longitudinal stress σ x-th ;

calculating S, the sum of the squares of the average longitudinal stress σ x-avg , of each of the zones, for each of the pressures remaining in the selected range of air pressures after the eliminating; and

selecting, from the pressures remaining in the selected range of air pressures after the eliminating, the preferred air pressure P p as the greater of either a) the air pressure having the smallest value of S or b) the air pressure P min that is the minimum recommended for the load L i .

8. A system for adjustment of tire air pressure on a vehicle, comprising:

equipment for measuring the pressure of at least one tire on the vehicle;

equipment for adjusting the pressure of at least one tire on the vehicle; and

a controller configured for

ascertaining an actual or anticipated tire load L a on the tire;

selecting, from a correlation of preferred air pressures P p for a range of multiple tire loads L i on the tire, a preferred air pressure P p for the actual or anticipated load L a on the tire; and

adjusting the air pressure of the tire while on the vehicle to the preferred air pressure P p for the actual or anticipated tire load L a ;

wherein determination of the correlation of preferred air pressures P p comprises:

dividing the tread of the tire into multiple zones along the lateral direction, the multiple zones including a shoulder zone along each shoulder of the tire and one or more intermediate zones between the shoulder zones;

selecting a range of tire air pressures;

determining, for a load L i in the range of multiple tire loads L i , the average longitudinal stress σ x in each of the zones over the selected range of tire air pressures;

identifying, from the selected range of tire air pressures, the preferred air pressure P p for the load L i , wherein the preferred air pressure P p is the pressure at which both i) the average longitudinal stress σ x-avg for all of the zones is minimized and ii) the average longitudinal stress σ x-avg for each of the intermediate zones is maintained at or above a predetermined threshold longitudinal stress σ x-th ; and

repeating, over the range of multiple tire loads L i , the determining and identifying so as to provide the correlation of the preferred air pressures P p .

9. The system for adjustment of tire air pressure on a vehicle as in claim 8 , wherein the identifying comprises, for the load L i :

eliminating from the selected range of air pressures all pressures at which the average longitudinal stress σ x-avg for any zone is less than the predetermined threshold longitudinal stress σ x-th and, if there is no pressure at which the average longitudinal stress σ x-avg for any zone is less than the threshold longitudinal stress σ x-th , then eliminating from the selected range of air pressures all pressures at which the average longitudinal stress σ x-avg for either of the shoulder zones is less than the threshold longitudinal stress σ x-th ;

calculating S, the sum of the squares of the average longitudinal stress σ x-avg , of each of the zones, for each of the pressures remaining in the selected range of air pressures after the eliminating; and

selecting, from the pressures remaining in the selected range of air pressures after the eliminating, the preferred air pressure P p as the greater of either a) the air pressure having the smallest value of S or b) the air pressure P min that is the minimum recommended for the load L i .

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2023
From: MICHELIN RECHERCHE ET TECHNIQUE S.A.
To: COMPAGNIE GÉNÉRALE DES ETABLISSEMENTS MICHELIN
Reel/Frame 065018/0154 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2015
From: CLAYTON, WILLIAM BENNETT; MCKIBBEN, DAVE MICHAEL; MERRILL, ZACHARY ALEXANDER; WILLIAMSON, LAWRENCE OTIS; YOUNT, WAYNE CARL
To: MICHELIN RECHERCHE ET TECHNIQUE S.A.; SOCIETE DE TECHNOLIGIE MICHELIN
Reel/Frame 035625/0766 →
MERGER Recorded May 13, 2015
From: SOCIETE DE TECHNOLIGIE MICHELIN
To: COMPAGNIE GENERALE DES ETABLISSEMENTS MICHELIN
Reel/Frame 035653/0673 →