IP Library › Granted Patent US 12,391,605
Granted Patent B2
US 12,391,605 · App. 17/588,727 · Granted Aug 19, 2025

Production method for sheets of glass with a diffuse finish, and resulting sheet of glass

Inventors: Jose Luis Tavares Cortes (Nuevo León, MX); Arturo Si Ming Lamshing Tai (Nuevo León, MX); Gerardo Soto Puente (Nuevo León, MX); Jorge Sanchez-Gonzalez (Nuevo León, MX)
Assignee: Vidrio Plano de México, S.A. de C.V.
C03C15/00C03C15/02C03C15/025C03C23/0075G02B5/0221G02B5/0268G02B5/0294
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Quick Facts
Patent No.
US 12,391,605
App. No.
17/588,727
Granted
Aug 19, 2025
Kind
B2
Abstract

The present invention relates to a process for manufacturing glass sheets with diffuse finish and the resulting glass sheet by this process. The glass sheet is subjected to a series of alternate immersions in acidic solutions and alkaline solutions to remove impurities and waste and to generate a diffuse finish on both sides of the glass sheet. The process generates in the glass sheet in at least one side, a diffuse surface with a peak to valley roughness (Rt) of between 5.8343 μm and 9.3790 μm; an average roughness (Ra) value between 0.8020 μm and 0.9538 μm; an RMS roughness between 0.9653 μm and 1.1917 μm; a solar transmission between 84.8% and 46.50%; a solar reflection between 7.4 and 4.4%; a light transmission between 88.5% and 67.70%; a reflection of light between 6.50% and 5.20%; and UV transmission between 35.60% and 70.20%.

Claims (39)

1. A glass sheet with diffuse finish produced by the process of:

a) Providing a sheet of glass;

b) Providing a first immersion of the glass sheet in a first acidic solution for a predetermined time, to remove impurities from the glass, wherein the first acidic solution is a hydrochloric acid solution of 32.5% hydrochloric acid by volume;

c) Rinsing or washing the glass sheet once it has been immersed in the first acidic solution to remove the remaining acidic solution and avoid the formation of undesirable lines and marks in the glass; and

d) Providing a second immersion step to said glass sheet in a second acidic solution for a second predetermined time, wherein the second acidic solution comprises a mixture of 70% ammonium difluoride and 30% of 32.5% hydrochloric acid by volume to generate a diffuse finish on both sides of the glass,

wherein the process generates in the glass sheet, on at least one side, a diffuse surface with a peak-valley roughness (Rt) from 5.8343 μm to 9.3790 μm; an average roughness (Ra) between 0.8020 μm and 0.9538 μm; RMS roughness between 0.9653 μm and 1.19167 μm; a solar transmission between 84.8% and 46.50%; a solar reflection between 7.4 and 4.4%; a light transmission between 88.5% and 67.70%; a reflection of light between 6.50% and 5.20%; and UV transmission between 35.60% and 70.20%.

2. The glass sheet with diffuse finish produced by the process of claim 1 , including the additional steps of:

e) Providing a third step of immersing the glass sheet from step d) in an alkaline solution for a third predetermined period; and

f) Rinsing or washing the glass sheet to remove any residual alkaline solution from the glass sheet.

3. The glass sheet with diffuse finish produced by the process of claim 2 , including the additional steps of:

g) Providing a fourth immersion step to said glass sheet in a third acidic solution for a fourth predetermined period, wherein the third acidic solution is a solution of 32.5% hydrofluoric acid solution by volume;

h) Providing a fifth step of immersing the glass sheet from step g) in the alkaline solution of step e) to stop the reaction of the third acidic solution in said glass sheet; and

i) Rinsing the glass sheet to remove residues of the alkaline solution.

4. A glass sheet with diffuse finish produced by the process of:

a) Providing a sheet of glass;

b) Providing a first immersion of the glass sheet in a first acidic solution for a predetermined time, to remove impurities from the glass, wherein the first acidic solution is a hydrochloric acid solution of 32.5% hydrochloric acid by volume;

c) Rinsing or washing the glass sheet once it has been immersed in the first acidic solution to remove the remaining acidic solution and avoid the formation of undesirable lines and marks in the glass; and

d) Providing a second immersion step to said glass sheet in a second acidic solution for a second predetermined time, wherein the second acidic solution comprises a mixture of 70% ammonium difluoride and 30% of 32.5% hydrochloric acid by volume to generate a diffuse finish on both sides of the glass,

wherein the process generates in the glass sheet, on at least one side, a diffuse surface comprising: a peak-valley roughness (Rt) of about 5.9244 μm; an Ra roughness of about 0.7081 μm; an RMS roughness of about 0.8764 μm; a solar transmission of at least 84%; a solar reflectance of about 7.3%; a light transmission of about 88.5%; and UV transmission of about 64.2%.

5. The glass sheet with diffuse finish produced by the process of claim 4 , including the additional steps of:

e) Providing a third step of immersing the glass sheet from step d) in an alkaline solution for a third predetermined period; and

f) Rinsing or washing the glass sheet to remove any residual alkaline solution from the glass sheet.

6. The glass sheet with diffuse finish produced by the process of claim 5 , including the additional steps of:

g) Providing a fourth immersion step to said glass sheet in a third acidic solution for a fourth predetermined period, wherein the third acidic solution is a solution of 32.5% hydrofluoric acid solution by volume;

h) Providing a fifth step of immersing the glass sheet from step g) in the alkaline solution of step e) to stop the reaction of the third acidic solution in said glass sheet; and

i) Rinsing the glass sheet to remove residues of the alkaline solution.

7. A glass sheet with diffuse finish produced by the process of:

a) Providing a sheet of glass;

b) Providing a first immersion of the glass sheet in a first acidic solution for a predetermined time, to remove impurities from the glass, wherein the first acidic solution is a hydrochloric acid solution of 32.5% hydrochloric acid by volume;

c) Rinsing or washing the glass sheet once it has been immersed in the first acidic solution to remove the remaining acidic solution and avoid the formation of undesirable lines and marks in the glass; and

d) Providing a second immersion step to said glass sheet in a second acidic solution for a second predetermined time, wherein the second acidic solution comprises a mixture of 70% ammonium difluoride and 30% of 32.5% hydrochloric acid by volume to generate a diffuse finish on both sides of the glass,

wherein the process includes in the glass sheet, on at least one side, a diffuse surface comprising: a peak-valley roughness (Rt) of about 0.0641 μm; an Ra roughness of about 0.0091 μm; and an RMS roughness of about 0.0111 μm.

8. The glass sheet with diffuse finish produced by the process of claim 7 , including the additional steps of:

e) Providing a third step of immersing the glass sheet from step d) in an alkaline solution for a third predetermined period; and

f) Rinsing or washing the glass sheet to remove any residual alkaline solution from the glass sheet.

9. The glass sheet with diffuse finish produced by the process of claim 8 , including the additional steps of:

g) Providing a fourth immersion step to said glass sheet in a third acidic solution for a fourth predetermined period, wherein the third acidic solution is a solution of 32.5% hydrofluoric acid solution by volume;

h) Providing a fifth step of immersing the glass sheet from step g) in the alkaline solution of step e) to stop the reaction of the third acidic solution in said glass sheet; and

i) Rinsing the glass sheet to remove residues of the alkaline solution.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2022
From: TAVARES CORTES, JOSE LUIS; LAMSHING TAI, ARTURO SI MING; SOTO PUENTE, GERARDO; SANCHEZ-GONZALEZ, JORGE
To: VIDRIO PLANO DE MEXICO, S.A. DE C.V.
Reel/Frame 058830/0254 →
Continuity (3)
Division 16437733 · Jun 11, 2019
Division 15322284
Related Publication 20220153633A1 · May 19, 2022
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