Invention Grant
- Patent Title: Tread wear monitoring system and method
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Application No.: US17252015Application Date: 2019-06-11
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Publication No.: US11458776B2Publication Date: 2022-10-04
- Inventor: Vincenzo Ciaravola , Alessandro Boldrini , Lorenzo Alleva , Alfredo Corollaro , Marco Andrea Maggi , Marco Pascucci
- Applicant: Bridgestone Europe NV/SA [BE/BE]
- Applicant Address: BE Zaventem
- Assignee: Bridgestone Europe NV/SA [BE/BE]
- Current Assignee: Bridgestone Europe NV/SA [BE/BE]
- Current Assignee Address: BE Zaventem
- Agency: Patterson Intellectual Property Law, P.C.
- Priority: IT102018000006322 20180614
- International Application: PCT/IB2019/054847 WO 20190611
- International Announcement: WO2019/239305 WO 20191219
- Main IPC: B60C11/24
- IPC: B60C11/24 ; G01M17/02 ; B60C23/04 ; G01S19/24

Abstract:
The invention concerns a tread wear monitoring method comprising a tread wear model calibration step (1) and a tread wear monitoring step (2), wherein the tread wear model calibration step (1) includes determining (13) a calibrated tread wear model based on tread-wear-related quantities and first frictional-energy-related quantities. The tread wear monitoring step (2) includes: acquiring (21), from a vehicle bus (40) of a motor vehicle (4) equipped with two or more wheels fitted, each, with a tire, driving-related quantities related to driving of the motor vehicle (4); computing (22) second frictional-energy-related quantities related to frictional energy experienced, during driving, by a given tire of the motor vehicle (4) by providing a predefined vehicle dynamics model that mathematically relates the acquired driving-related quantities to the second frictional-energy-related quantities, and computing the second frictional-energy-related quantities by inputting the acquired driving-related quantities into the predefined vehicle dynamics model; and performing a tread wear estimation (23) and a remaining tread material prediction (24) based on the second frictional-energy-related quantities computed and the calibrated tread wear model. The tread wear model calibration step (1) further includes: performing (11) tread wear tests on one or more tires; and measuring (12) tread-wear-related quantities indicative of tread depth reductions resulting from the performed tread wear tests, and first frictional-energy-related quantities related to frictional energy which the tested tire(s) is/are subject to during the performed tread wear tests. Determining (13) a calibrated tread wear model includes: providing a predefined reference tread wear model that mathematically relates frictional energy experienced by a tire along a driving route to tread wear caused by said frictional energy through given parameters; computing calibration values of the given parameters by inputting the measured tread-wear-related and first frictional-energy-related quantities into the predefined reference tread wear model; and determining the calibrated tread wear model by applying the computed calibration values in the predefined reference tread wear model.
Public/Granted literature
- US20210245554A1 TREAD WEAR MONITORING SYSTEM AND METHOD Public/Granted day:2021-08-12
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