Low-reflectivity energy-saving high-strength Low-E coated glass

By using a combination structure of Low-E glass base layer and PAM plate layer in Low-E glass, combined with hollow sealing layer and helium layer, and setting explosion-proof film layer and oxide metal coating layer, the problem of insufficient overall strength is solved, and the effect of high strength and energy saving is achieved.

CN223805025UActive Publication Date: 2026-01-16DONGGUAN YIN JIAN GLASS ENG CO LTD
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Patent Information

Application Number
CN202423224537.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2026-01-16
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

The existing high-strength photochromic Low-E glass has insufficient overall strength, resulting in weak safety performance.

Method used

The structure employs a combination of Low-E glass substrate and PAM board layer, combined with a hollow sealed partition filled with helium gas layer and an explosion-proof membrane layer, along with an oxide metal coating layer, an infrared reflective film layer and a low-emissivity coating, to enhance structural strength and reduce heat transfer.

Benefits of technology

It significantly improves the overall strength and safety performance of the glass, while also enhancing energy efficiency, reducing indoor heat loss, and extending service life.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223805025U_ABST
Patent Text Reader

Abstract

The utility model provides low-reflectivity energy-saving high-strength Low-E coated glass which comprises an outer frame, a Low-E glass base layer and a Palm plate layer are arranged in the outer frame, a hollow sealing interlayer is formed between the Low-E glass base layer and the Palm plate layer, and the hollow sealing interlayer is filled with a helium layer; an oxidized metal coating layer and an explosion-proof film layer are sequentially arranged on one side surface, close to the Palm plate layer, of the Low-E glass base layer; an anti-oxidation film layer, an infrared reflecting film layer, an indium tin oxide film layer and a silicon oxide film layer are sequentially arranged on one side surface, far away from the Palm plate layer, of the Low-E glass base layer; a low-radiation coating is arranged on one side surface, close to the Low-E glass base layer, of the Pall plate layer, and an antibacterial film layer is arranged on one side surface, far away from the Low-E glass base layer, of the Pall plate layer; a fireproof plate layer, a fireproof adhesive coating layer and a drying agent layer are sequentially arranged on one side, close to the Low-E glass base layer and the Palm plate layer, of the outer frame. On the basis of a good energy-saving effect, the overall strength is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to Low-E glass technical field especially relates to a kind of low reflectivity energy-saving high-strength Low-E coated glass. BACKGROUND

[0002] Chinese utility model patent authorization announcement No. CN 219667644 U, authorization announcement day is September 12, 2023, and it specifically relates to a kind of high-strength photochromic low-E glass structure, including glass body, the glass body includes low-E glass base layer and Pam board layer, the low-E glass base layer and Pam board layer between from low-E glass base layer side to Pam board layer side are sequentially attached with explosion-proof film layer and photochromic film layer;The low-E glass base layer is attached with oxidation-resistant film layer on the side away from the Pam board layer. By setting the mutual cooperation of low-E glass base layer and Pam board layer, then combining explosion-proof film layer, the structure has high strength, high impact resistance, explosion-proof function;By setting photochromic film layer, the structure can automatically adjust the visible light transmittance according to sunlight intensity. In actual use process, the defects of the above prior art are: overall strength is insufficient, leading to weak safety performance. In view of this situation, it is urgent to improve. UTILITY MODEL CONTENT

[0003] Therefore, the utility model discloses a kind of low reflectivity energy-saving high-strength Low-E coated glass, with good energy-saving effect on the basis of high overall strength.

[0004] The utility model provides a kind of low reflectivity energy-saving high-strength Low-E coated glass, including outer frame, Low-E glass base layer and Pam board layer are arranged in the outer frame, the hollow sealed partition layer is formed between the Low-E glass base layer and the Pam board layer, helium layer is filled and arranged in the hollow sealed partition layer;The Low-E glass base layer is sequentially provided with oxidation metal coating layer and explosion-proof film layer on the side to the Pam board layer;The Low-E glass base layer is sequentially provided with oxidation-resistant film layer, infrared reflective film layer, indium tin oxide film layer, silicon oxide film layer on the side away from the Pam board layer;Low-emissivity coating is provided on the side of the Pam board layer to the Low-E glass base layer, antibacterial film layer is provided on the side of the Pam board layer away from the Low-E glass base layer;Fireproof plate layer, fireproof adhesive coating, desiccant layer are sequentially provided on the side of the outer frame to the Low-E glass base layer and Pam board layer.

[0005] Preferably, the Low-E glass base layer and the antibacterial film layer are provided with an antireflection film layer.

[0006] Preferably, the silicon oxide film layer is provided with a self-cleaning film layer on the side away from the indium tin oxide film layer.

[0007] Preferably, the sound insulation cotton layer is arranged between the fireproof plate layer and the fireproof glue coating layer.

[0008] Preferably, the Low-E glass base layer is arranged as a double-silver Low-E glass layer.

[0009] The utility model discloses the beneficial effect is: through setting up the combination structure of Low-E glass base layer and palm board layer, cooperation hollow sealed interlayer fills in and is provided with helium layer, and sets up the anti -explosion membrane layer, promotes the overall strength of this structure greatly, thereby promotes the safety factor, through setting up the cooperation structure of oxidation metal plating film layer, infrared ray reflection film layer, low radiation coating, reduces the indoor heat energy transmission to the outside because of radiation, reduces indoor temperature loss amount, reduces outdoor reflectivity, thereby improves the energy -conserving effect of this structure. BRIEF DESCRIPTION OF DRAWINGS

[0010] Figure 1 It is the cross section schematic view of the utility model.

[0011] The figure mark is: Low-E glass base layer 10, helium layer 11, oxidation resistance film layer 12, infrared ray reflection film layer 13, indium tin oxide film layer 14, silicon oxide film layer 15, oxidation metal plating film layer 16, anti -explosion membrane layer 17, low radiation coating 18, palm board layer 19, antibacterial film layer 20, fireproof plate layer 23, fireproof glue coating layer 22, desiccant layer 21, outer frame 24. DETAILED DESCRIPTION

[0012] In order to further understand the characteristics, technical means and specific purposes and functions reached by the utility model, the utility model is further described in detail below in combination with specific embodiments and drawings.

[0013] In the utility model, unless another explicit provision and limitation, the terms "installation", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, can be fixed connection, can also be detachable connection, or integrally connected, can be mechanical connection, can also be electrical connection, can be directly connected, can also be indirectly connected through intermediate medium, can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to specific circumstances.

[0014] Please refer to Figure 1As shown, a low reflectivity energy-saving high-strength Low-E coated glass is provided, comprising an outer frame 24, a Low-E glass base layer 10 and a pvc plate layer 19 are arranged in the outer frame 24, a hollow sealed separation layer is formed between the Low-E glass base layer 10 and the pvc plate layer 19, and a helium layer 11 is filled in the hollow sealed separation layer; the side of the Low-E glass base layer 10 close to the pvc plate layer 19 is sequentially provided with a metal oxide coating layer 16 and an explosion-proof film layer 17; the side of the Low-E glass base layer 10 away from the pvc plate layer 19 is sequentially provided with an oxidation-resistant film layer 12, an infrared reflective film layer 13, an indium tin oxide film layer 14 and a silicon oxide film layer 15; the side of the pvc plate layer 19 close to the Low-E glass base layer 10 is provided with a low-emissivity coating layer 18, and the side of the pvc plate layer 19 away from the Low-E glass base layer 10 is provided with an antibacterial film layer 20; the side of the outer frame 24 close to the Low-E glass base layer 10 and the pvc plate layer 19 is sequentially provided with a fireproof plate layer 23, a fireproof adhesive coating layer 22 and a desiccant layer 21.

[0015] Preferably, a transparent film layer is arranged between the Low-E glass base layer 10 and the antibacterial film layer 20, so as to increase the transmittance of light on the surface by reducing reflected light.

[0016] Preferably, a self-cleaning film layer is arranged on the side of the silicon oxide film layer 15 away from the indium tin oxide film layer 14, so that the surface of the structure has a self-cleaning function.

[0017] Preferably, a sound insulation cotton layer is arranged between the fireproof plate layer 23 and the fireproof adhesive coating layer 22, so that the structure has a sound insulation function.

[0018] Preferably, the Low-E glass base layer 10 is a double-silver Low-E glass layer.

[0019] In the embodiment, the combination structure of the Low-E glass base layer and the pvc plate layer, the helium layer filled in the hollow sealed separation layer, and the explosion-proof film layer greatly improve the overall strength of the structure, thereby improving the safety factor; the combination structure of the metal oxide coating layer, the infrared reflective film layer and the low-emissivity coating layer reduces the transfer of indoor heat energy to the outside due to radiation, reduces the indoor temperature loss, and reduces the outdoor reflectivity, thereby improving the energy-saving effect of the structure. The combination structure of the indium tin oxide film layer 14 and the silicon oxide film layer 15 avoids the air surface glass of the structure being easy to get dirty and easy to rot, thereby further improving the service life.

[0020] The above embodiment only expresses one implementation manner of the utility model, and the description is relatively specific and detailed, but cannot be understood as a limitation on the utility model patent scope. It should be noted that, for ordinary skilled persons in the art, without departing from the concept of the utility model, a number of modifications and improvements can be made, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent should be subject to the appended claims.

Claims

1. A low emissivity energy saving high strength Low-E coated glass comprising an outer frame (24) characterised in that: The outer frame (24) is provided with a Low-E glass base layer (10) and a permalite layer (19), a hollow sealed separation layer is formed between the Low-E glass base layer (10) and the permalite layer (19), and the hollow sealed separation layer is filled with a helium layer (11); the side of the Low-E glass base layer (10) close to the permalite layer (19) is sequentially provided with a metal oxide coating layer (16) and an explosion-proof film layer (17); the side of the Low-E glass base layer (10) away from the permalite layer (19) is sequentially provided with an oxidation-resistant film layer (12), an infrared reflective film layer (13), an indium tin oxide film layer (14) and a silicon oxide film layer (15); the side of the permalite layer (19) close to the Low-E glass base layer (10) is provided with a low-emissivity coating (18), and the side of the permalite layer (19) away from the Low-E glass base layer (10) is provided with an antibacterial film layer (20); the side of the outer frame (24) close to the Low-E glass base layer (10) and the permalite layer (19) is sequentially provided with a fireproof plate layer (23), a fireproof glue coating layer (22) and a desiccant layer (21).

2. The low reflectivity energy-saving high-strength Low-E coated glass according to claim 1, characterized in that: The Low-E glass base layer (10) and the antibacterial film layer (20) are provided with an anti-reflection film layer.

3. The low reflectivity energy saving high intensity Low-E coated glass as claimed in claim 1, wherein the glass substrate is selected from the group consisting of clear glass, tinted glass, patterned glass, and coated glass. The silicon oxide film layer (15) is provided with a self-cleaning film layer on the side away from the indium tin oxide film layer (14).

4. The low emissivity energy saving high-strength Low-E coated glass according to claim 1, characterized in that: The fireproof plate layer (23) and the fireproof glue coating layer (22) are provided with a sound insulation cotton layer.

5. The low reflectance energy saving high intensity Low-E coated glass as claimed in claim 1, wherein the glass substrate is selected from the group consisting of clear glass, tinted glass, patterned glass, coated glass, and combinations thereof. The Low-E glass base layer (10) is a double-silver Low-E glass layer.

Citation Information

Patent Citations

  • High-strength photochromic low-E glass structure

    CN219667644U