IMPACT RESISTANT GLASS SCREEN PROTECTOR

20210187912 ยท 2021-06-24

    Inventors

    Cpc classification

    International classification

    Abstract

    Disclosed is a multi-layer screen protector for a display of an electronic device. The screen protector may include a glass exterior surface for tactile response, an optically clear anti-explosion adhesive to contain broken glass from the protector or the display, and a TPU layer to provide impact resistance. The screen protector may be flat or curved.

    Claims

    1. A screen protector for the screen of an electronic device, the screen protector having a lamination including: a layer of glass having a first surface and a second surface, the first surface of the layer of glass being outward facing, the second surface of the layer of glass being screen facing, a layer of optically clear adhesive in contact with the second surface of the glass layer, a TPU layer having a first surface in contact with the optically clear adhesive and a second surface, the second surface in contact with a second adhesive layer, the second adhesive layer having a first surface in contact with the TPU layer and a second surface facing the screen, and a UV printing layer, the UV printing layer in contact with the second surface of the second adhesive layer, a third adhesive layer, the third adhesive layer having a first surface in contact with the second surface of the UV printing layer, and a second surface in contact with the screen.

    2. The structure of claim 1, wherein the second adhesive layer is an anti-explosion adhesive to adhere glass fragments of the screen or layer of glass of the screen protector when the screen or layer of glass break.

    3. The structure of claim 2, wherein the first and second adhesive layers are made of the same adhesive.

    4. The structure of claim 1, wherein the layer of glass includes a coating on the first surface of the layer of glass.

    5. The structure of claim 1, wherein the third adhesive layer is absent from a central portion of the lamination.

    6. The structure of claim 1, wherein the third adhesive layer is a double sided adhesive.

    7. The structure of claim 6, wherein the third adhesive layer second surface is a temporary adhesive.

    8. A screen protector for the display of an electronic device, the screen protector including a lamination of layers, the layers including: a layer of glass having a first surface and a second surface, an optically clear adhesive layer adhered to the second surface of the layer of glass, an anti-Newton ring layer in contact with the optically clear adhesive layer, a double-sided adhesive to attach the lamination to the display.

    9. The structure of claim 8, the double sided adhesive attached to the lamination at the perimeter of the lamination.

    10. The structure of claim 8, wherein the anti-Newton ring layer is a field of dots on a surface of the optically clear adhesive layer.

    11. The structure of claim 8, wherein at least a portion of the double sided adhesive layer is in contact with the optically clear adhesive layer.

    12. The structure of claim 8, wherein the lamination further includes a TPU layer.

    13. The structure of claim 8, wherein the double-sided adhesive layer includes a surface facing the display, the display facing surface being a temporary adhesive.

    14. The structure of claim 8, wherein the lamination includes a TPU layer.

    15. A screen protector for the display of an electronic device, the screen protector including: a glass layer having a first surface and a second surface, an anti-explosion adhesive having a first surface in contact with the second surface of the glass layer, a TPU layer having a first surface and a second surface, the second surface of the anti-explosion layer in contact with the first surface of the TPU layer, and a double-sided adhesive layer in contact with the screen.

    16. The screen protector of claim 15, wherein the double-sided adhesive is not in contact with the central portion of the screen.

    17. The screen protector of claim 15, wherein the double-sided adhesive layer has a first surface in contact with the screen, the first surface being a temporary adhesive.

    18. The screen protector of claim 15 further including a anti-Newton ring layer between the screen and the anti-explosion adhesive layer.

    19. The screen protector of claim 15 wherein the anti-explosion adhesive layer is at least 0.075 mm in thickness.

    20. The screen protector of claim 15, wherein the anti-explosion layer is coextensive with the glass layer.

    21. A screen protector for the screen of an electronic device, the screen protector having a lamination including: a layer of glass having a first surface and a second surface, the first surface of the layer of glass being outward facing, the second surface of the layer of glass being screen facing, a layer of optically clear adhesive in contact with the second surface of the glass layer, a TPU layer having a first surface in contact with the optically clear adhesive and a second surface, the second surface in contact with a second adhesive layer, the second adhesive layer having a first surface in contact with the TPU layer and a second surface facing the screen.

    Description

    BRIEF DESCRIPTION OF THE DRAWINGS

    [0006] FIG. 1 is a perspective view of a multi-layer screen protector applied to a phone display, the phone display removed from the phone for illustrative purposes.

    [0007] FIG. 2 is a cross-sectional view of the screen protector of FIG. 1.

    [0008] FIG. 1A is a cross-sectional view of a screen protector applied to a phone with a curved display.

    [0009] FIG. 3 is a perspective view of a screen protector having a glass layer, a TPU layer, and an adhesive layer applied to a display of a phone.

    [0010] FIG. 4 is a cross-sectional view of the screen protector of FIG. 3.

    [0011] FIG. 5 is a perspective view of a screen protector having a glass layer, an adhesive layer which may be an anti-explosion layer, and TPU layer, and an adhesive layer applied to a display of a phone.

    [0012] FIG. 6 is a cross-sectional view of the screen protector of FIG. 5.

    [0013] FIG. 7 is a perspective view of a screen protector having a glass layer, TPU layer, a UV printing layer, and an adhesive layer applied to a display of a phone.

    [0014] FIG. 8 is a cross-sectional view of the screen protector of FIG. 7.

    [0015] FIG. 9 is a perspective view of a screen protector having a glass layer, an optically clear adhesive layer, TPU layer, an anti-explosion adhesive layer, and a perimeter adhesive layer applied to a display of a phone.

    [0016] FIG. 10 is a cross-sectional view of the screen protector of FIG. 9.

    [0017] FIG. 11 is a perspective view of a screen protector having a glass layer, an optically clear adhesive layer or anti-explosion layer, a TPU layer, a UV printed layer, and a perimeter adhesive layer applied to a display of a phone.

    [0018] FIG. 12 is a cross-sectional view of the screen protector of FIG. 11.

    DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT

    [0019] With reference to the figures, in one embodiment, the invention discloses a laminated screen protector 100 for a mobile electronic device 10 having a display 11. The screen protector may be generally flat, or it may be curved as shown in FIG. 1A.

    [0020] The screen protector may include in some embodiments, an outwardly facing glass layer 110. The glass layer 110 may be co-extensive or nearly coextensive with the display 11 of the mobile electronic device 10. In the most preferred embodiment, the glass layer 110 is 0.33 mm thick, but the thickness may vary.

    [0021] The glass layer 110 may be tempered glass, Sapphire, rigid clear polymers, or other materials that are optically clear. In other embodiments, the glass layer 110 may include exterior coatings that improve oleophobicity, hydrophobicity, glare resistance, privacy films, etc. to enhance or add properties of material. Structures such a polarization gratings or louvers may also be present.

    [0022] The glass layer 110 may be curved to conform to a curve of the display 11 if a curve is present. It is preferred that the glass 110 is curved by heat bending.

    [0023] The screen protector may include a layer of optically clear adhesive 115 disposed on the underside or inward facing surface 112 of the glass layer 110. In the most preferred embodiment, the optically clear adhesive 115 is Kawin KN6050, but other adhesives may be used if they are optically clear. In the most preferred embodiment, the optically clear adhesive 115 is 0.05 mm thick, although the thickness may vary.

    [0024] The optically clear adhesive 115 is generally coextensive with the underlying TPU layer 120. However, in some embodiments, the optically clear adhesive 115 may be applied only to select portions of the inward facing surface 112 of the glass layer 110, or to select portion of the TPU layer 120. The optically clear adhesive 115 adheres the TPU layer 120 to the inward facing surface 112 of the glass layer. One skilled in the art will recognize that the TPU layer may be made of some plastic or polymer material other than TPU that have a low durometer when compared to the glass layer 110 or include a flexible elastomer.

    [0025] In some embodiments, the TPU layer 120 may be formed on the glass layer 110 without the need for an adhesive. Similarly, the UV printed layer 140 may be printed directly on the TPU layer.

    [0026] In some embodiments of the invention, the screen protector 100 includes a layer that will contain or adhere the glass fragments of the display 11 or the glass layer 110. The layer is referred to as an anti-explosion adhesive 130. The anti-explosion adhesive 130 is preferably 0.075 mm thick, but the thickness can vary. The anti-explosion adhesive 130 is preferably coextensive with the glass layer 110 or the display 11. In some embodiments, the anti-explosion adhesive may be used in any place that an optically clear adhesive is needed.

    [0027] In some embodiments, the lower surface 132 of the anti-explosion adhesive 130 does not have an adhesive property, so that it does not stick to the layer below it. This does not prevent the adherence of a UV printing layer 140.

    [0028] In some embodiments of the invention, a UV printing layer 140 is printed on the anti-explosion adhesive 130. The UV printing layer may be composed of a field of dots or other structures to act as spacers to maintain a slight gap between the lower surface 132 of the anti-explosion adhesive layer 130 and the display 11. In the most preferred embodiment, the spacers are a field of rigid hemispherical dots.

    [0029] The UV printing layer 140 is preferably coextensive with the anti-explosion adhesive layer 130, but need not be. The UV printing layer 140 is approximately 0.1 mm thick, but the thickness may vary. The purpose of the UV printing layer is to prevent or diminish Newton Rings or other optical distortions that may be created by two films in close proximity. In the most preferred embodiment, the UV printing layer 140 is formed with Kunyutong UV110. In some embodiments, the UV printing layer 140 includes 0.05 mm dots with 1 mm spacing between the dots. Other dots and variations of the field spacing may be used.

    [0030] In some embodiments of the invention, the UV printing layer 140 is not printed at all, but is sprayed or dipped.

    [0031] In some embodiments, the UV printing layer 140 is also known as an anti-newton ring layer 135.

    [0032] In some embodiments a double-sided adhesive layer 150 that is optically clear is used to attach the screen protector 100 including any of the previously described layers to the display 11. The adhesive layer 150 is preferably 0.1 mm thick, but the thickness may vary. In the most preferred embodiment, the temporary adhesive layer is preferably temporary on the side that adheres to the display 11 so that the screen protector 100 can be removed. In the most preferred embodiment, the temporary adhesive layer is Julidatong DT011. Other adhesives such as Fancy FSA-842BD-3-A may be used.

    [0033] The double-sided adhesive layer 150 is preferably applied to the perimeter of the screen protector 100 lamination. The double-sided adhesive layer 150 need not cover the central portion of the lamination. In an embodiment where the UV printing layer 140 or other spacing structure is omitted, it is preferable to have the double-sided adhesive layer is coextensive with the layer above it, such as the anti-explosion adhesive 130.

    [0034] In some embodiments, a release liner 160 is placed on the double-sided adhesive layer to prevent the adhesive form sticking to objects prior to the installation of the screen protector 100 onto a device with a display 11.

    [0035] One skilled in the art will recognize that the layers described herein may be laid-up in different combinations. It is also noted that the figures show materials for illustrative purposes and the folding back of a material, such as a glass layer, does not necessarily imply the material will bend or flex to the degree illustrated.

    [0036] The foregoing disclosure of specific embodiments is intended to be illustrative of the broad concepts comprehended by the invention.