Laminated vehicle glass structures including embedded piezoelectric exciters for sound generation
Laminated vehicle glass structures included embedded piezoelectric exciters for sound generation. The piezoelectric exciters are embedded at least partially within the laminating materials and are offset relative to a centerline longitudinally extending between the opposing glass panels. Also disclosed are processes for forming the laminated glass structures. The laminated glass structures can be utilized about the vehicle anywhere sound generation is desired, e.g., passenger windows, fixed or sliding roofing systems, front windshield, rear windshield, side windows, rear quarter glasses, and the like. The piezoelectric exciters act as a diaphragm to produce sound upon vibration.
1 . A laminated glass structure for a vehicle comprising:
a first glass panel;
a second glass panel;
a laminating material intermediate the first and second glass panels;
a plastic layer configured to provide solar reflectivity, wherein the plastic layer is different from the laminating material; and
one or more piezoelectric exciters which are embedded within the laminating material, offset relative to a centerline of the laminated glass structure, and in contact with a surface of the plastic layer,
wherein the centerline of the laminated glass structure longitudinally extends between the first and second glass panels and is defined by a centerline of the plastic layer.
2 . The laminated glass structure of claim 1 , wherein:
among the first glass panel and the second glass panel, the first glass panel is relatively closer to an exterior of the vehicle, and the second glass panel is relatively closer to an interior of the vehicle;
the one or more piezoelectric exciters are between the plastic layer and the first glass panel or are between the plastic layer and the second glass panel; and
the one or more piezoelectric exciters comprise a ring structure having a diameter of 19 mm, a thickness of 0.3 mm, and a Young's modulus of 70 Gpa.
3 . The laminated glass structure of claim 1 , wherein the plastic layer comprises polyethylene terephthalate.
4 . The laminated glass structure of claim 1 , wherein the laminating material comprises polyvinyl butyral resin or ethylene vinyl acetate.
5 . The laminated glass structure of claim 1 , wherein the laminating material has a thickness of about 0.3 millimeters to about 2 millimeters.
6 . The laminated glass structure of claim 1 , wherein the first glass panel includes an outer surface facing an exterior of the vehicle and is at a thickness within a range of about 1.6 millimeters to about 3.5 millimeters and wherein the second glass panel includes an outer surface facing an interior of the vehicle and is at a thickness within a range of about 0.7 millimeters to about 3.5 millimeters.
7 . The laminated glass structure of claim 1 , wherein the one or more piezoelectric exciters comprises a ring structure having a thickness dimension less than a thickness dimension for the laminating material.
8 . The laminated glass structure of claim 1 , wherein the one or more piezoelectric exciters comprises a lead zirconium titanate piezoelectric material.
9 . The laminated glass structure of claim 1 , wherein the one or more piezoelectric exciters are bonded directly to an interior surface of a selected one of the first and second glass panels.
10 . The laminated glass structure of claim 2 , wherein there are at least two adjacent piezoelectric exciters contacting a selected surface of the plastic layer.
11 . The laminated glass structure of claim 10 , wherein the at least two adjacent piezoelectric exciters contact the same selected surface.
12 . The laminated glass structure of claim 10 , wherein the one or more piezoelectric exciters comprises a ring structure comprising a circular-shape, an oval-shape, or a polygonal shape.
13 . A process of forming a laminated glass structure for a vehicle comprising:
adhesively applying one or more hard piezoelectric exciters to a selected glass surface of a first glass panel, to a selected glass surface of a second glass panel, or a combination thereof;
assembling the first glass panel, the second glass panel, a plastic layer configured to provide solar reflectivity, and at least one sheet of laminating material to form an assembly, wherein the selected glass surface of the first glass panel, the selected glass surface of a second glass panel, or the combination thereof to which the one or more hard piezoelectric exciters are adhesively applied are oriented to contact the laminating material, and the plastic layer is different from the at least one sheet of laminating material; and
applying heat and pressure to the assembly in amounts effective to laminate the first glass panel to the second glass panel and form the laminated glass structure,
wherein:
the one or more hard piezoelectric exciters are intermediate the first and second glass panels and are offset relative to a centerline of the laminated glass structure, and
the centerline of the laminated glass structure longitudinally extends between the first glass panel and the second glass panel and is defined by a centerline of the plastic layer.
14 . The process of claim 13 , wherein the laminating material comprises polyvinyl butyral resin or ethylene vinyl acetate.
15 . The process of claim 13 , wherein the one or more hard piezoelectric exciters comprise a ring structure.
16 . The process of claim 13 , wherein the one or more hard piezoelectric exciters comprise lead zirconium titanate.
17 . The process of claim 13 , wherein:
the at least one sheet of laminating material comprises at least two sheets of the laminating material;
the plastic layer is intermediate the at least two sheets of the laminating material; and
the one or more hard piezoelectric exciters are embedded in a sheet of the at least two sheets, wherein the sheet is between the first glass panel and the plastic layer or is between the second glass panel and the plastic layer.
18 . The process of claim 17 , wherein the plastic layer comprises polyethylene terephthalate.
19 . The process of claim 13 , wherein the one or more piezoelectric exciters comprises a ring structure having a thickness dimension less than a thickness dimension for the at least one sheet of laminating material.
20 . A laminated glass structure for a vehicle, the laminated glass structure comprising:
an outer glass panel having a thickness of about 1.6 to about 3.5 millimeters, the outer glass panel including an outer surface exposed to an environment about the vehicle and an inner surface;
an inner glass panel having a thickness of about 0.7 millimeters to about 3.5 millimeters, the inner glass panel including an inner surface and an outer surface exposed an interior of the vehicle;
a laminating material having a thickness of about 0.3 millimeters to about 2 millimeters between the outer glass panel and the inner glass panel and in contact with the inner surfaces of the outer and inner glass panels, wherein the laminating material comprises polyvinyl butyral resin or ethylene vinyl acetate;
a plastic layer configured to provide solar reflectivity, wherein the plastic layer is in contact with and different from the laminating material; and
one or more hard piezoelectric exciters which are embedded at least partly in the laminating material, are in a shape of a ring having a thickness less than an actual thickness of the laminating material, and are offset relative to a centerline of the laminated glass structure,
wherein:
the centerline of the laminated glass structure longitudinally extends between the inner surfaces of the outer and inner glass panels and is defined by a centerline of the plastic layer, and
the one or more hard piezoelectric exciters are in contact with a selected one of the inner surfaces, are completely embedded in the laminating material, or are in contact with a surface of the plastic layer,
wherein the laminated glass structure forms a fixed or sliding roofing system, one or more passenger movable windows, a front windshield and/or a rear windshield.