IP Library Granted Patent US 11,933,601
Granted Patent B2
US 11,933,601 · App. 17/296,436 · Granted Mar 19, 2024

Method for measuring geometric deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material

Inventors: Adrien Carlu (Amiens, FR); Alexandre Marlier (Pontoise les Noyon, FR)
Assignee: SAINT-GOBAIN GLASS FRANCE
G01B11/24B25J17/0283
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Quick Facts
Patent No.
US 11,933,601
App. No.
17/296,436
Granted
Mar 19, 2024
Kind
B2
Abstract

An automated method measures geometric curvature deviations between dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material. The method calculates, by computer, at selected points, a difference between the curvature profiles of the dished surface of each material to be assessed and a relief height or curvature profile of the dished surface of the reference material.

Claims (33)

1. An automated method for measuring geometric curvature deviations between dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material, said method comprising the following steps:

(a) measuring, at selected measurement points along a defined trajectory, of a curvature profile of the dished surface of the reference material using an optical contactless detection system, said optical contactless detection system being disposed on an automatic displacement system comprising a movable arm travelling along said trajectory synchronously with the measurement of the height of the relief by the optical contactless detection system;

(b) measuring the curvature profile of the dished surface of each material to be assessed, at a same selected measurement points along the same trajectory, in same conditions of travel along said trajectory by the automatic displacement system and according to a same angle of acquisition by the optical contactless detection system at the same measurement point as for the dished surface of the reference material during step(a);

(c) calculating, by computer, at the selected points, a difference between the curvature profiles of the dished surface of each material to be assessed obtained in step (b) and a relief height or curvature profile of the dished surface of the reference material obtained in step (a).

2. The automated method for measuring geometric deviations of curvature between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , further comprising, after step (c), a step (d) of comparing, at selected measurement points, the values of the differences calculated during step (c) with tolerance values previously defined at each of said points.

3. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , further comprising, before step (a), a step (a′) of calibrating a reproducibility of spatial positionings of an assembly formed by the automatic displacement system and the optical contactless detection system in the space of the trajectory likely to be travelled along in the step (a), said step (a′) comprising the following substeps:

(a′ 1) defining a plurality of points of calibration of known spatial coordinates in a first reference frame of reference in the space of the trajectory likely to be travelled along in the step (a);

(a′2) acquiring an assembly formed by the automatic displacement system and the optical contactless detection system of the spatial coordinates of said calibration points in the reference frame of reference of said assembly formed by the automatic displacement system and the optical contactless detection system;

(a′3) calculating, by computer, a statistical correlation function between the spatial coordinates obtained in step (a′1) and the spatial coordinates obtained in the step (a′2);

(a′4) implementing the statistical correlation function in a device for controlling the movements of said assembly formed by the automatic displacement system and the optical contactless detection system.

4. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 3 , wherein the calculation of statistical correlation function is performed using a least squares regression method.

5. The automated method for measuring geometric relief or curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , wherein steps (b) and (c) are executed successively and continually on the dished surfaces of the materials.

6. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , wherein the trajectory is defined using a digital model of the reference dished surface.

7. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , wherein the dished surfaces of the assessment materials and of the reference material are spatially oriented according to angles of inclination corresponding to those likely to be provided during their use.

8. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , wherein the optical contactless detection system is a chromatic confocal sensor.

9. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 1 , wherein the automatic displacement system is an articulated automaton arm provided with six degrees of freedom.

10. An automated method for measuring geometric curvature deviations between dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material, said method comprising the following steps:

(a) measuring, at selected measurement points along a defined trajectory, of a curvature profile of the dished surface of the reference material using an optical contactless detection system, said optical contactless detection system being disposed on an automatic displacement system comprising a movable arm travelling along said trajectory synchronously with the measurement of the height of the relief by the optical contactless detection system;

(b) measuring the curvature profile of the dished surface of each material to be assessed, at a same selected measurement points along the same trajectory, in same conditions of travel along said trajectory by the automatic displacement system and according to a same angle of acquisition by the optical contactless detection system at the same measurement point as for the dished surface of the reference material during step(a);

(c) calculating, by computer, at the selected points, a difference between the curvature profiles of the dished surface of each material to be assessed obtained in step (b) and a relief height or curvature profile of the dished surface of the reference material obtained in step (a), wherein the reference materials and the assessment material are, respectively, a reference sheet of glass and assessment sheets of glass.

11. The automated method for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 10 , wherein the reference sheet of glass and the assessment sheets of glass are likely to form glass sheets of a reference glazing for a transportation system and assessment glazings for the same transportation system respectively.

12. An automatic system for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material, said system comprising an assembly formed by

at least one automatic displacement system comprising a movable arm adapted to travel along at least one trajectory defined along dished surfaces, and

at least one optical contactless detection system adapted to measure a relief height or curvature of dished surfaces, disposed on the automatic displacement system and synchronized with the movements of said automatic displacement system;

said system being configured to:

measure, at selected measurement points along a defined trajectory, the relief height or curvature profile of the dished surface of the reference material, and

measure the relief height or curvature profile of the dished surface of each material to be assessed, at the same selected measurement points along the same trajectory, in the same conditions of travel along said trajectory by the automatic displacement system and according to a same angle of acquisition by the optical contactless detection system at the same measurement point as for the dished surface of the reference material.

13. The automatic system for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 12 , further comprising a computation unit configured to calculate, at the selected points, a difference between the relief height or curvature profiles of the dished surfaces of each assessment material and the relief height or curvature profile of the dished surface of the reference material.

14. The automatic system for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 12 , wherein the optical contactless detection system is disposed on the automatic displacement system using a fixing system having a thermal conductivity greater than 100 W·K −1 ·m −1 .

15. The automatic system for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 12 , wherein the automatic displacement system is an articulated automaton arm provided with six degrees of freedom.

16. The automatic system for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 12 , wherein the optical contactless detection system is a chromatic confocal sensor.

17. The automatic system for measuring geometric relief or curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 12 , further comprising a support for the assessment materials and for the reference material such that the dished surfaces of the assessment materials and of the reference material are spatially oriented according to angles of inclination corresponding to those likely to be provided during their use.

18. The automatic system for measuring geometric curvature deviations between the dished surfaces of a plurality of materials to be assessed and a dished surface of a reference material as claimed in claim 14 , wherein the thermal conductivity is greater than 200 W·K −1 ·m −1 .

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded May 16, 2025
From: SAINT-GOBAIN GLASS FRANCE
To: SAINT-GOBAIN SEKURIT FRANCE
Reel/Frame 071969/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2021
From: CARLU, ADRIEN; MARLIER, ALEXANDRE
To: SAINT-GOBAIN GLASS FRANCE
Reel/Frame 056331/0578 →
Priority Claims (1)
FR 1872770 · Dec 12, 2018 · national
Continuity (1)
Related Publication 20220018653A1 · Jan 20, 2022