IP Library › Granted Patent US 12,174,089
Granted Patent B2
US 12,174,089 · App. 18/385,562 · Granted Dec 24, 2024

Tire testing device

Inventors: Sigeru Matsumoto (Tokyo, JP); Hiroshi Miyashita (Tokyo, JP); Kazuhiro Murauchi (Tokyo, JP); Shuichi Tokita (Kanagawa, JP)
Assignee: KOKUSAI KEISOKUKI KABUSHIKI KAISHA
G01M17/02B60C19/00B60C25/002G01M17/021B60C2019/004
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Quick Facts
Patent No.
US 12,174,089
App. No.
18/385,562
Granted
Dec 24, 2024
Kind
B2
Abstract

A tire testing device includes a carriage configured to rotatably hold a test wheel provided with a test tire and being capable of travelling on a base along a road surface in a state where the test wheel is made to contact the road surface, and a driving system configured to drive the test wheel and the carriage. The driving system includes a carriage driving part configured to drive the carriage with respect to the road surface in a predetermined speed, a test wheel driving part configured to drive the test wheel in a rotating speed corresponding to the predetermined speed, a driving part configured to generate power to be used to drive the carriage and the test wheel, and a power distributing part configured to distribute power generated by the driving part to the carriage driving part and the test wheel driving part.

Claims (47)

1. A tire testing device, comprising:

a road surface part having a road surface;

a carriage configured to rotatably hold a test wheel provided with a test tire and being capable of travelling along the road surface in a state where the test wheel is made to contact the road surface; and

a load detecting part provided on an upper surface of the road surface part, the load detecting part having a detecting surface coplanar with the road surface and extending in a travelling direction of the carriage and an axial direction of the test wheel, and configured to detect distribution of load acting on an area of a tire tread of the test tire in contact with the detecting surface.

2. The tire testing device according to claim 1 ,

wherein the detecting surface forms a part of the road surface and is formed of the same material as the upper surface of the road surface part.

3. The tire testing device according to claim 2 ,

wherein the detecting surface is formed of material identical to that of an actual road surface or of material simulating pavement.

4. The tire testing device according to claim 1 ,

wherein the load detecting part comprises a plurality of load detecting modules disposed at lattice points arranged in the travelling direction of the carriage and the axial direction of the test wheel.

5. The tire testing device according to claim 4 ,

wherein an upper surface of each of the load detecting modules forms a part of the road surface and is formed of the same material as the upper surface of the road surface part.

6. The tire testing device according to claim 5 ,

wherein the upper surface of each of the load detecting modules is formed of material identical to that of an actual road surface or of material simulating pavement.

7. The tire testing device according to claim 4 ,

wherein each of the load detecting modules comprises a three force components sensor.

8. The tire testing device according to claim 7 ,

comprising a measuring part configured to measure the load distribution based on detection result by the load detecting part,

wherein the measuring part is configured to calculate a radial force, a tangential force and a lateral force the tire tread receives based on detection results by the three force components sensor.

9. The tire testing device according to claim 8 ,

comprising a control part configured to calculate relative positions of the load detecting modules with respect to a travelling position of the test wheel,

wherein measured values of the load distribution relating to the relative positions are calculated

wherein detection of the load distribution is performed a plurality of times while causing the carriage to travel,

and measured values of the load distribution are calculated by averaging a plurality of detected results of the load distribution for every relative position.

10. The tire testing device according to claim 9 ,

wherein the measured values of the load distribution are calculated by regression analysis.

11. The tire testing device according to claim 4 ,

comprising a control part configured to calculate relative positions of the load detecting modules with respect to a travelling position of the test wheel,

wherein measured values of the load distribution relating to the relative positions are calculated.

12. The tire testing device according to claim 1 ,

comprising a storing part configured to store the detected load distribution.

13. The tire testing device according to claim 12 ,

comprising a system configured to obtain a travelling position of the test wheel in a travelling direction of the carriage,

wherein the storing part is configured to store the detected load distribution and the travelling position of the test wheel at the time the load distribution is detected while associating the detected load distribution with the travelling position of the test wheel at the time the load distribution is detected.

14. The tire testing device according to claim 12 ,

comprising a system configured to obtain rotational position of the test wheel,

wherein the storing part is configured to store the detected load distribution and the rotational position of the test wheel at the time the load distribution is detected while associating the detected load distribution with the rotational position of the test wheel at the time the load distribution is detected.

15. The tire testing device according to claim 12 ,

comprising a force sensor configured to detect force acting on the test wheel,

wherein the storing part is configured to store the load distribution and the force acting on the test wheel detected at the same timing while associating the load distribution with the force acting on the test wheel detected at the same timing.

16. The tire testing device according to claim 1 ,

wherein one set of measurements by the load detecting part is performed by a travelling of the carriage in one direction, and

wherein the measured values of the load distribution are calculated based on measurement results of a plurality of measurement sets by the load detecting part.

17. The tire testing device according to claim 1 ,

wherein a position of the load detecting part is changeable in an axial direction of the test wheel.

18. The tire testing device according to claim 1 ,

wherein a position of the load detecting part is changeable in the travelling direction.

Priority Claims (2)
JP 2018-081379 · Apr 20, 2018 · national
JP 2018-092607 · May 11, 2018 · national
Continuity (3)
Continuation 17071252 · Oct 15, 2020
Continuation In Part PCTJP2019016890 · Apr 19, 2019
Related Publication 20240060858A1 · Feb 22, 2024