IP Library › Granted Patent US 11,472,340
Granted Patent B2
US 11,472,340 · App. 15/929,324 · Granted Oct 18, 2022

Method of making a mirror substrate for a vehicular rearview mirror assembly

Inventors: Darryl P. De Wind (West Olive, MI); Michael J. Baur (Kentwood, MI); Timothy G. Perkins (Ada, MI)
Assignee: MAGNA MIRRORS OF AMERICA, INC.
B60R1/04B24B9/02B24B9/08B24B13/00B24B49/00B60R1/086B60R1/088B60R1/12C03C17/06G02B7/182G02F1/153G02F1/157B24B51/00B60R1/1207C03C2217/25C03C2218/31G02B5/08G02F1/161
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Quick Facts
Patent No.
US 11,472,340
App. No.
15/929,324
Granted
Oct 18, 2022
Kind
B2
Abstract

A method of making a mirror substrate for a vehicular rearview mirror assembly includes providing a glass substrate having a planar front surface, a planar rear surface and a circumferential perimeter edge. The glass substrate is positioned at a fixture and the front perimeter edge portion of the glass substrate is ground by moving a grinding wheel around the periphery of the glass substrate to establish a rounded surface about and around the periphery of the glass substrate and between the planar front surface and a rear portion of the perimeter edge of the glass substrate. The rounded surface has a radius of curvature of at least 2.5 mm. The rounded surface provides a curved transition between the planar front surface of the glass substrate and the rear portion of the perimeter edge of the glass substrate. The planar rear surface of the glass substrate is coated with a coating.

Claims (42)

1. A method of making a mirror substrate for a vehicular rearview mirror assembly, the method comprising:

providing a glass substrate having a planar front surface, a planar rear surface and a circumferential perimeter edge about a periphery of the glass substrate and extending between the planar front surface and the planar rear surface, wherein the planar front surface and the perimeter edge meet at a front perimeter edge portion of the glass substrate that circumscribes the glass substrate;

positioning the glass substrate at a fixture to support the glass substrate;

grinding the front perimeter edge portion of the glass substrate by moving a grinding wheel around the periphery of the glass substrate while rotating the grinding wheel about a grinding wheel axis to establish a rounded surface about and around the periphery of the glass substrate and between the planar front surface and a rear portion of the perimeter edge of the glass substrate;

wherein the rounded surface has a radius of curvature of at least 2.5 mm;

wherein the rounded surface provides a curved transition between the planar front surface of the glass substrate and the rear portion of the perimeter edge of the glass substrate; and

coating the planar rear surface of the glass substrate with a coating.

2. The method of claim 1 , comprising, after grinding the front perimeter edge portion of the glass substrate to establish the rounded surface, moving a polishing wheel around the periphery of the glass substrate while rotating the polishing wheel about a polishing wheel axis to polish the rounded surface about and around the periphery of the glass substrate.

3. The method of claim 2 , wherein the grinding wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate, and wherein the polishing wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate.

4. The method of claim 2 , wherein at least one selected from the group consisting of (i) the grinding wheel is pivotable to adjust the grinding wheel axis relative to the planar front surface of the glass substrate and (ii) the polishing wheel is pivotable to adjust the polishing wheel axis relative to the planar front surface of the glass substrate.

5. The method of claim 1 , wherein the grinding wheel is attached to a movable head that is movable under computer control around the periphery of the glass substrate.

6. The method of claim 5 , wherein the computer control comprises computer numerical control.

7. The method of claim 5 , wherein the movable head is robotically controlled.

8. The method of claim 5 , wherein the grinding wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate.

9. The method of claim 5 , wherein the grinding wheel is pivotable to adjust the grinding wheel axis relative to the planar front surface of the glass substrate.

10. The method of claim 1 , wherein the planar front surface is angled relative to the planar rear surface, and wherein the step of coating the planar rear surface of the glass substrate comprises coating the planar rear surface of the glass substrate with a mirror reflector coating to make a prismatic mirror substrate for a vehicular prismatic interior rearview mirror assembly.

11. The method of claim 1 , wherein the planar front surface is parallel to the planar rear surface, and wherein the step of coating the planar rear surface of the glass substrate comprises coating the planar rear surface of the glass substrate with a transparent electrically conductive coating to make a front mirror substrate for an electro-optic rearview mirror assembly.

12. The method of claim 1 , wherein the glass substrate has a length dimension and a width dimension and wherein the length dimension is larger than the width dimension, and wherein the glass substrate has a non-rectangular shape.

13. A method of making a mirror substrate for a vehicular rearview mirror assembly, the method comprising:

providing a glass substrate having a planar front surface, a planar rear surface and a circumferential perimeter edge about a periphery of the glass substrate and extending between the planar front surface and the planar rear surface, wherein the planar front surface and the perimeter edge meet at a front perimeter edge portion of the glass substrate that circumscribes the glass substrate;

wherein the planar front surface is angled relative to the planar rear surface;

positioning the glass substrate at a fixture to support the glass substrate;

grinding the front perimeter edge portion of the glass substrate by moving a grinding wheel around the periphery of the glass substrate while rotating the grinding wheel about a grinding wheel axis to establish a rounded surface about and around the periphery of the glass substrate and between the planar front surface and a rear portion of the perimeter edge of the glass substrate;

wherein the grinding wheel is attached to a movable head that is movable under computer control around the periphery of the glass substrate;

wherein the rounded surface has a radius of curvature of at least 2.5 mm;

wherein the rounded surface provides a curved transition between the planar front surface of the glass substrate and the rear portion of the perimeter edge of the glass substrate; and

coating the planar rear surface of the glass substrate with a mirror reflector coating to make a prismatic mirror substrate for a vehicular prismatic interior rearview mirror assembly.

14. The method of claim 13 , comprising, after grinding the front perimeter edge portion of the glass substrate to establish the rounded surface, moving a polishing wheel around the periphery of the glass substrate while rotating the polishing wheel about a polishing wheel axis to polish the rounded surface about and around the periphery of the glass substrate.

15. The method of claim 14 , wherein the grinding wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate, and wherein the polishing wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate.

16. The method of claim 14 , wherein at least one selected from the group consisting of (i) the grinding wheel is pivotable to adjust the grinding wheel axis relative to the planar front surface of the glass substrate and (ii) the polishing wheel is pivotable to adjust the polishing wheel axis relative to the planar front surface of the glass substrate.

17. A method of making a mirror substrate for a vehicular rearview mirror assembly, the method comprising:

providing a glass substrate having a planar front surface, a planar rear surface and a circumferential perimeter edge about a periphery of the glass substrate and extending between the planar front surface and the planar rear surface, wherein the planar front surface and the perimeter edge meet at a front perimeter edge portion of the glass substrate that circumscribes the glass substrate;

wherein the planar front surface is parallel to the planar rear surface;

positioning the glass substrate at a fixture to support the glass substrate;

grinding the front perimeter edge portion of the glass substrate by moving a grinding wheel around the periphery of the glass substrate while rotating the grinding wheel about a grinding wheel axis to establish a rounded surface about and around the periphery of the glass substrate and between the planar front surface and a rear portion of the perimeter edge of the glass substrate;

wherein the grinding wheel is attached to a movable head that is movable under computer control around the periphery of the glass substrate;

wherein the rounded surface has a radius of curvature of at least 2.5 mm;

wherein the rounded surface provides a curved transition between the planar front surface of the glass substrate and the rear portion of the perimeter edge of the glass substrate; and

coating the planar rear surface of the glass substrate with a transparent electrically conductive coating to make a front mirror substrate for an electro-optic rearview mirror assembly.

18. The method of claim 17 , comprising, after grinding the front perimeter edge portion of the glass substrate to establish the rounded surface, moving a polishing wheel around the periphery of the glass substrate while rotating the polishing wheel about a polishing wheel axis to polish the rounded surface about and around the periphery of the glass substrate.

19. The method of claim 18 , wherein the grinding wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate, and wherein the polishing wheel axis is at a 90 degree angle relative to the planar front surface of the glass substrate.

20. The method of claim 18 , wherein at least one selected from the group consisting of (i) the grinding wheel is pivotable to adjust the grinding wheel axis relative to the planar front surface of the glass substrate and (ii) the polishing wheel is pivotable to adjust the polishing wheel axis relative to the planar front surface of the glass substrate.

Continuity (11)
Continuation 16258789 · Jan 28, 2019
Continuation 15338779 · Oct 31, 2016
Continuation 14641813 · Mar 9, 2015
Continuation 13964136 · Aug 12, 2013
Continuation 13265613 · Oct 21, 2011
Continuation In Part PCTUS2010051741
Provisional Application 61261839 · Nov 17, 2009
Provisional Application 61249300 · Oct 7, 2009
Provisional Application 61187112 · Jun 15, 2009
Provisional Application 61172022 · Apr 23, 2009
Related Publication 20200254932A1 · Aug 13, 2020
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