This disclosure relates to the fields of texture, optical sheet and cover plate for a device, and in particular to an optical sheet, mould and cover plate for electronic device.
With the development of sciences and technologies, decorative films are widely used in surfaces of electronic products, such as mobile phones, and computers, etc., household appliances, such as refrigerators, air conditioners, washing machines, etc., and other products, such as vehicles, etc.
Existing decorative films are used as surface materials of mobile machines, such as mobile phones, and notebook computers, etc., and are used as surface materials for molding household appliances, such as refrigerators, washing machines, air conditioners, etc., although a variety of patterns and metal textures are embodied by gravure printing.
Existing decorative textures are generally cylindrical mirrors or printed patterns. The resolution of printed patterns is not very high. And use of cylindrical mirrors generally produces rainbow patterns that interfere with effects of the cylindrical mirrors, hence, there is need for developing a new decorative texture.
Due to the above reasons, there is a need to provide an optical sheet, mould and cover plate for electronic device, so as to solve the above technical problems.
A technical solution of this disclosure is as follows.
An optical sheet, wherein it includes:
a polymer layer;
a certain number of small short lines, the certain number of small short lines being formed at a side of the polymer layer and forming a micro-nano structure;
wherein at least one of the small short lines is of a convex structure or a concave structure, and two sidelines of the small short line are parallel to each other or intersect in a plane.
An optical sheet, wherein it includes:
a polymer layer;
a certain number of small short lines, the certain number of small short lines being formed at a side of the polymer layer and forming a micro-nano structure;
wherein at least one of the small short lines is of a convex structure or a concave structure, and at least one sideline of the small short line is a curve.
In an embodiment, there is an included angle between at least one of the small short lines and the horizontal direction.
In an embodiment, there are included angles a and b between at least two small short lines and the horizontal direction, the included angle a being unequal to the included angle b.
In an embodiment, the certain number of small short lines are arranged in an arrangement of a predetermined form.
In an embodiment, the arrangement of a predetermined form is linear or substantially linear.
In an embodiment, there exist intervals between neighboring small short lines, the intervals being 5 μm-50 μm.
In an embodiment, a distance between a bottom of the convex structure or concave structure of the small short lines and a surface at the other side of the polymer layer is 0.5 μm-200 μm.
In an embodiment, there exist at least two small short lines with identical heights or depths in the certain number of small short lines.
In an embodiment, there exist at least two small short lines with a height difference or a depth difference greater than 0.5 μm and not greater than 2 μm in the certain number of small short lines.
In an embodiment, there exist at least two small short lines with a height difference or a depth difference greater than 2 μm and less than 100 μm in the certain number of small short lines.
In an embodiment, there exist at least two small short lines with identical widths in the certain number of small short lines.
In an embodiment, there exist at least two small short lines with a width difference greater than 0.5 μm and not greater than 3 μm in the certain number of small short lines.
In an embodiment, there exist at least two small short lines with a width difference greater than 3 μm and less than 100 μm in the certain number of small short lines. In an embodiment, a reflective layer is disposed at the side of the polymer layer where the small short lines are disposed.
In an embodiment, a colored layer is disposed at a side of the reflective layer away from the small short lines.
In an embodiment, a carrier layer is disposed at the other side of the polymer layer.
In an embodiment, an adhesive layer is disposed between the polymer layer and the carrier layer.
A mould for manufacturing an optical sheet, wherein the mould includes:
a carrier body;
a polymer layer disposed at one side of the carrier body;
a certain number of small short lines, the certain number of small short lines being formed at a side of the polymer layer away from the carrier body and forming a micro-nano structure;
wherein at least one of the small short lines is of a convex structure or a concave structure, and two sidelines of the small short line are parallel to each other or intersect in a plane.
A mould for manufacturing an optical sheet, wherein the mould includes:
wherein at least one of the small short lines is of a convex structure or a concave structure, and at least one sideline of the small short line is a curve.
A cover plate for an electronic device, wherein the cover plate for an electronic device comprises the optical sheet as described in any one of the above embodiments.
Advantages of this disclosure exist in that:
(I) this application provides a new texture structure, in which directions of the small short lines may be changed randomly or according to a wanted effect in a certain direction, and included angles between the small short lines and the horizontal direction may vary from 0 degree to 180 degrees;
(II) this application provides an optical sheet with the texture structure, there existing at least one light pillar in the optical sheet with such a texture structure under a certain light source, which may reduce influence of a rainbow texture to the light shadow effects to some extent;
(III) this application provides a cover plate for an electronic device, the cover plate for an electronic device adopting the texture structure or the optical sheet, which may achieve different light shadow effects of the cover plate for an electronic device by flexibly applying rotation angles of the small short lines.
For this disclosure to be understood, this disclosure shall be fully described below with reference to the accompanying drawings. Better embodiments of this disclosure are given in the accompanying drawings; however, this disclosure may be carried out in various ways, which are not limited to those described below. Rather, these embodiments are provided so that the contents disclosed in this disclosure are understood more thoroughly and completely.
It should be noted that when an element is referred to as “being disposed on” another element, the element may be directly on the other element, or there exists an intermediate element therebetween. When an element is deemed as “being connected to” another element, the element may be directly connected to the other element, or there exists an intermediate element therebetween at the same time. The terms “vertical”, “horizontal”, “left”, “right”, and other similar expressions are only aimed at describing, and are not intended to show a unique embodiment.
All technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which this disclosure pertains, unless otherwise defined. The terminology used in the description of this disclosure is for the purpose of describing particular embodiments and is not intended to limit this disclosure. The term “and/or” as used herein includes any and all combinations of one or more of the associated listed items.
Referring to
At least one of the small short lines 30 is of a convex structure or a concave structure. The small short lines 30 may be disposed as convex structures, or concave structures, or partial convex structures and partial concave structures, on an arrangement plane of the small short lines 30; wherein there exist at least one pair of neighboring small short lines 30 with an interval therebetween. The interval here refers to that a point is taken respectively from two neighboring small short lines, the two points are connected by a straight line, and there exist an area in the straight line that is not covered by the small short lines 30.
In an embodiment, there are included angles a and b between at least two small short lines 30 and the horizontal direction, the included angle a being unequal to the included angle b. The small short lines 30 may be rotated at one angle (that is, included angles between all the small short lines and the horizontal direction are all identical), or, the small short lines 30 may be rotated at different angles, hence, included angles between the small short lines 30 and the horizontal direction may be different.
In an embodiment, referring to
In an embodiment, a cross section of a small short line 30 is of one of an arc, a trapezoid, a triangle, a quadrilateral, a shape with at least one side being of an arc, and a polygon.
Referring to
Referring to
Quadrilaterals are mainly given in
Referring to
a polymer layer 10, which may be of a general polymer material, or a thermosetting material, or a light-cured material;
a certain number of small short lines 30, the certain number of small short lines 30 being formed at a side of the polymer layer 10 and forming a micro-nano structure, and the micro-nano structure being integral with the polymer layer 10;
wherein at least one of the small short lines 30 is of a concave structure, and there exists an interval 31 between at least two neighboring small short lines 30; referring to
In an embodiment, the small short lines may be of the quadrilaterals given in
In an embodiment, referring to
In an embodiment, referring to
Small short line texture structures are disposed on the optical sheet, and according to different optical effects to be achieved, angles of the certain number of small short lines 30, 32, 34, 35, 36 and 37 may be rotated, so that they exhibit different angles, and desired effects may be achieved.
In an embodiment, the certain number of small short lines are arranged in an arrangement of a predetermined form. In an embodiment, the arrangement of a predetermined form is linear or substantially linear, and the small short lines may also be arranged in other forms.
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
Such a design may lower a difficulty in the process, and may achieve desired optical effect. And as there exist relatively small height differences, the optical effects are hard to be seen by human eyes. The height differences and depth differences here are provided on the premise that the area or circumference of the plane where there exist convexities or concaves is substantially changeless.
In an embodiment, referring to
Here, the height difference between the convexities or the depth differences between the concaves of the small short lines are set relatively large, and such a setting may bring different visual effects, so that the visual effects of the optical sheet is better and richer, and adaptation of needs of different users may be increased, bringing customers more senses of changes.
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
In an embodiment, referring to
Referring to
a carrier body 60′;
a polymer layer 10′ disposed at one side of the carrier body 60′;
a certain number of small short lines, the certain number of small short lines 30′ being formed at a side of the polymer layer 10′ away from the carrier body 60′ and forming a micro-nano structure;
wherein at least one of the small short lines 30′ is of a convex structure or a concave structure; what is given in the figure is a concave structure, of course, it may also be a convex structure; and at least one sideline of the small short line is of a curve. In another embodiment, there are two sidelines of the small short line that are parallel to each other or intersect in a plane.
Furthermore, a blocking layer 61 is provided between the carrier body 60′ and the polymer layer 10′. In this way, some area do not need textures during a process of imprinting by the mould, and as the blocking layer 61 is used, areas that are blocked will not be cured during a process of curing.
Referring to
Referring to
The electronic device may be a 3C product or a household appliance; wherein the 3C product includes: a mobile phone, a PAD, a watch, a computer, an iPOD, a camera, etc., and the household appliance includes: a refrigerator, a television set, an air conditioner, a washing machine, and the like.
The technical solution of this disclosure at least includes the following advantages:
(I) this application provides a new texture structure, in which directions of the small short lines may be changed randomly or according to a wanted effect in a certain direction, and included angles between the small short lines and the horizontal direction may vary from 0 degree to 180 degrees;
(II) this application provides an optical sheet with the texture structure, there existing at least one light pillar in the optical sheet with such a texture structure under a certain light source, which may reduce influence of a rainbow texture to the light shadow effects to some extent;
(III) this application provides a cover plate for an electronic device, the cover plate for an electronic device adopting the texture structure or the optical sheet, which may achieve different light shadow effects of the cover plate for an electronic device by flexibly applying rotation angles of the small short lines.
For the above targets, features and advantages of the present invention to be understood more easily, embodiments of the present inventions are described above with reference to the accompanying drawings. In the above description, many details are given so that the present invention is fully understood. However, the present invention may be carried out in other implementations than those described above. Similar modifications may be made by those skilled in the art without departing from the concept of the present invention, hence, the present invention is not limited to the above disclosure. And the technical features of the above embodiments may be arbitrarily combined. For the sake of concise description, not all possible combinations of the technical features of the above embodiments are described. However, combinations of the technical features shall be deemed as being within the protection scope of the present invention only if the combinations of these technical features are not contradictory to each other.
The above embodiments are some implementations of the present invention only. Description of these implementations are relatively particular and minute, however, it should not be understood as limiting the protection scope of the present invention. It should be noted that many variants and modifications may be made by those skilled in the art without departing from the concept of the present invention, and all of these are covered by the present invention. Hence, the protection scope of the present invention shall be covered by the attached claims.
Number | Date | Country | Kind |
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201710343660.3 | May 2017 | CN | national |
This application is a continuation of International Application No. PCT/CN2018/086817 filed on May 15, 2018, which claims priority to Chinese Patent Application No. 201710343660.3, filed on May 16, 2017, all of which are hereby incorporated by reference in their entireties.
Number | Date | Country | |
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Parent | PCT/CN2018/086817 | May 2018 | US |
Child | 16685262 | US |