Liquid crystal display hangs cable

文档序号:1585370 发布日期:2020-02-04 浏览:19次 中文

阅读说明:本技术 一种液晶显示屏吊起线缆 (Liquid crystal display hangs cable ) 是由 王冬兴 于 2019-11-27 设计创作,主要内容包括:本发明涉及一种液晶显示屏吊起线缆,包括坚固外层(1)、金属丝网一层(2)、硅胶内层(3)、加厚弹簧丝网层(4)、织布层(5)、弹簧丝(6);所述坚固外层(1)、金属丝网一层(2)、金属丝网一层(3)、加厚弹簧丝网层(4)、织布层(5)、弹簧丝(6)均为圆环形并由外到内依次连接;其中所述硅胶内层(3)热熔连接所述坚固外层(1)并将第一弹簧丝网(2)连接到两者之间,所述硅胶内层(3)热熔连接所述织布层(5)、并将加厚弹簧丝网层(4)连接到两者之间,所述弹簧丝(6)位于所述织布层(5)中间。本发明通过多层结构各层相互连接,其结构强度大,同时直径不大。(The invention relates to a liquid crystal display screen hoisting cable which comprises a firm outer layer (1), a metal wire mesh layer (2), a silica gel inner layer (3), a thickened spring wire mesh layer (4), a woven fabric layer (5) and spring wires (6); the firm outer layer (1), the metal wire mesh layer (2), the metal wire mesh layer (3), the thickened spring wire mesh layer (4), the woven fabric layer (5) and the spring wire (6) are all circular rings and are sequentially connected from outside to inside; wherein silica gel inlayer (3) hot melt connect firm outer (1) and be connected to first spring silk screen (2) between the two, silica gel inlayer (3) hot melt connects weaving layer (5) and will thicken spring silk screen layer (4) and be connected to between the two, spring silk (6) are located in the middle of weaving layer (5). The invention is connected with each other through each layer of the multilayer structure, and the structure has high strength and small diameter.)

1. The utility model provides a liquid crystal display hangs cable which characterized in that: comprises a firm outer layer (1), a metal wire mesh layer (2), a silica gel inner layer (3), a thickened spring wire mesh layer (4), a woven fabric layer (5) and spring wires (6); the firm outer layer (1), the metal wire mesh layer (2), the metal wire mesh layer (3), the thickened spring wire mesh layer (4), the woven fabric layer (5) and the spring wire (6) are all circular rings and are sequentially connected from outside to inside; wherein the silica gel inner layer (3) is in hot-melt connection with the firm outer layer (1) and connects the first spring wire mesh layer (2) between the firm outer layer and the firm outer layer, the silica gel inner layer (3) is in hot-melt connection with the woven fabric layer (5) and connects the thickened spring wire mesh layer (4) between the firm outer layer and the woven fabric layer, and the spring wire (6) is positioned in the middle of the woven fabric layer (5);

still be provided with in the cable and run through firm outer (1), wire mesh one deck (2), silica gel inlayer (3), thickening spring silk screen layer (4), fabric layer (5), spring silk (6) to outside lifting hook (7), lifting hook (7) are made for the metal.

2. The lcd screen suspension cable of claim 1, wherein: the outer side of the firm outer layer (1) is also provided with a plurality of wear-resistant pieces (11).

3. The liquid crystal display screen hoisting cable according to claim 1, wherein: the wear-resistant sheet (11) is hemispherical, and the wear-resistant sheet (11) is made of polytetrafluoroethylene.

4. The liquid crystal display screen hoisting cable according to claim 1, wherein: the thickness of the firm outer layer (1) is 3 mm.

5. The liquid crystal display screen hoisting cable according to claim 1, wherein: the thicknesses of the metal wire mesh layer (2) and the thickened spring wire mesh layer (4) are respectively 1mm and 1.5 mm.

6. The liquid crystal display screen hoisting cable according to claim 1, wherein: the thickness of the silica gel inner layer (3) is 2 mm.

7. The liquid crystal display screen hoisting cable according to claim 1, wherein: the diameter of the spring wire (6) is 2 mm.

Technical Field

The invention relates to a cable, in particular to a high-strength cable for intelligent building construction.

Background

The liquid crystal display is an active matrix liquid crystal display driven by Thin Film Transistor (TFT), and mainly uses current to stimulate liquid crystal molecules to generate points, lines and surfaces to match with a back lamp tube to form a picture. IPS, TFT, SLCD all belong to the subclass of LCD. The working principle of the liquid crystal display is as follows: under the action of electric field, the change of the arrangement direction of liquid crystal molecules is utilized to change (modulate) the light transmittance of an external light source, so that electro-optical conversion is completed, and color reproduction of time domain and space domain is completed through different excitations of R, G, B tricolor signals and through red, green and blue tricolor filter films.

Need use the cable of high strength in the display screen, current cable intensity is not high.

Disclosure of Invention

In order to solve the technical problems, the invention aims to provide a liquid crystal display screen hoisting cable.

The technical scheme of the invention is as follows:

the utility model provides a liquid crystal display hangs cable which characterized in that: comprises a firm outer layer (1), a metal wire mesh layer (2), a silica gel inner layer (3), a thickened spring wire mesh layer (4), a woven fabric layer (5) and spring wires (6); the firm outer layer (1), the metal wire mesh layer (2), the metal wire mesh layer (3), the thickened spring wire mesh layer (4), the woven fabric layer (5) and the spring wire (6) are all circular rings and are sequentially connected from outside to inside; wherein silica gel inlayer (3) hot melt connect firm outer (1) and be connected to first spring silk screen (2) between the two, silica gel inlayer (3) hot melt connects weaving layer (5) and will thicken spring silk screen layer (4) and be connected to between the two, spring silk (6) are located in the middle of weaving layer (5). Still be provided with in the cable and run through firm outer (1), wire mesh one deck (2), silica gel inlayer (3), thickening spring silk screen layer (4), fabric layer (5), spring silk (6) to outside lifting hook (7), lifting hook (7) are made for the metal.

Furthermore, a plurality of wear-resistant pieces (11) are arranged on the outer side of the firm outer layer (1).

Further, the wear-resistant sheet (11) is hemispherical, and the wear-resistant sheet (11) is made of polytetrafluoroethylene.

Further, the firm outer layer (1) has a thickness of 3 mm.

Further, the thicknesses of the metal wire mesh layer (2) and the thickened spring wire mesh layer (4) are respectively 1mm and 1.5 mm.

Further, the thickness of the silica gel inner layer (3) is 2 mm.

Further, the diameter of the spring wire (6) is 2 mm.

By the scheme, the invention at least has the following advantages:

the invention is connected with each other through each layer of the multilayer structure, and the structure has high strength and small diameter.

The foregoing description is only an overview of the technical solutions of the present invention, and in order to make the technical solutions of the present invention more clearly understood and to implement them in accordance with the contents of the description, the following detailed description is given with reference to the preferred embodiments of the present invention and the accompanying drawings.

Drawings

FIG. 1 is a schematic structural view of the present invention;

in the figure:

1-a firm outer layer; 2-one layer of wire mesh; 3-inner layer of silica gel; 4-thickening the spring wire mesh layer; 5-weaving a cloth layer; 6-a spring wire; 11-abrasion resistant sheet.

Detailed Description

The following detailed description of embodiments of the present invention is provided in connection with the accompanying drawings and examples. The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.

Referring to fig. 1, a liquid crystal display screen hoisting cable according to a preferred embodiment of the present invention includes a firm outer layer 1, a metal wire mesh layer 2, a silica gel inner layer 3, a thickened spring wire mesh layer 4, a fabric layer 5, and a spring wire 6; the firm outer layer 1, the metal wire mesh layer 2, the metal wire mesh layer 3, the thickened spring wire mesh layer 4, the fabric layer 5 and the spring wire 6 are all circular rings and are sequentially connected from outside to inside; wherein 3 hot melt of silica gel inlayer connect firm outer 1 and will first spring silk screen 2 be connected to between the two, 3 hot melt of silica gel inlayer connect weaving layer 5 and will thicken spring silk screen layer 4 and be connected to between the two, spring silk 6 is located in the middle of weaving layer 5. Still be provided with in the cable and run through firm outer (1), wire mesh one deck (2), silica gel inlayer (3), thickening spring silk screen layer (4), fabric layer (5), spring silk (6) to outside lifting hook (7), lifting hook (7) are made for the metal.

A plurality of wearpads 11 are also provided on the outside of the solid outer layer 1.

Said wear-resistant sheet 11 is hemispherical, said wear-resistant sheet 11 being made of polytetrafluoroethylene.

The thickness of the solid outer layer 1 is 3 mm.

The thickness of the wire mesh layer 2 and the thickness of the thickened spring wire mesh layer 4 are 1mm and 1.5mm, respectively.

The inner layer 3 of silica gel is 2mm thick.

The spring wire 6 has a diameter of 2 mm.

The working principle of the invention is as follows:

this device can play great structural strength through firm outer 1, wire mesh one deck 2, silica gel inlayer 3, thickening spring silk screen layer 4, the fabric layer 5, the spring silk 6 that connect gradually each other, and whole occupation space is less simultaneously, can provide high strength.

The invention has at least the following advantages:

the invention is connected with each other through each layer of the multilayer structure, and the structure has high strength and small diameter.

The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, it should be noted that, for those skilled in the art, many modifications and variations can be made without departing from the technical principle of the present invention, and these modifications and variations should also be regarded as the protection scope of the present invention.

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