CN216039308U - Multilayer coated glass - Google Patents

Multilayer coated glass Download PDF

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Publication number
CN216039308U
CN216039308U CN202122495887.4U CN202122495887U CN216039308U CN 216039308 U CN216039308 U CN 216039308U CN 202122495887 U CN202122495887 U CN 202122495887U CN 216039308 U CN216039308 U CN 216039308U
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China
Prior art keywords
glass
coated glass
multilayer coated
splint
vertical
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Active
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CN202122495887.4U
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Chinese (zh)
Inventor
陈月亮
李小平
袁毅
万小燕
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Anhui Yuhong Film Technology Co ltd
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Anhui Yuhong Film Technology Co ltd
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Abstract

The utility model discloses multilayer coated glass, relates to the technical field of coated glass production and application, and aims at solving the problem of potential safety hazard that the multilayer coated glass is loosened to cause glass falling due to the fact that the existing multilayer coated glass is singly fixed by sol for a long time. The utility model can not only carry out rapid positioning treatment through the positioning block, but also carry out rapid fixing treatment through the fastening bolt, thereby effectively prolonging the service life and improving the use safety of the multilayer coated glass.

Description

Multilayer coated glass
Technical Field
The utility model relates to the technical field of production and application of coated glass, in particular to multilayer coated glass.
Background
Coated glass, also known as reflective glass, is produced by coating one or more layers of metal, alloy or metal compound films on the surface of glass to change the optical properties of the glass and meet certain specific requirements. The coated glass can be divided into heat reflection glass, low radiation glass, sun-shading glass, conductive film glass and the like according to different characteristics of products, the heat reflection glass and the low radiation glass are most applied, and two production methods of a vacuum magnetron sputtering method and a chemical vapor deposition method are adopted.
The production method of the coated glass mainly comprises a vacuum magnetron sputtering method, a vacuum evaporation method, a chemical vapor deposition method, a sol-gel method and the like, wherein the magnetron sputtering coated glass can be designed and manufactured into a multilayer complex film system by utilizing a magnetron sputtering technology, a plurality of colors can be coated on a white glass substrate, the corrosion resistance and the wear resistance of a film layer are good, the multilayer coated glass is used in many places at present, most of the multilayer coated glass is formed by assembling single coated glass together and fixing treatment is carried out through sol, but the sol fixing treatment time is long and can cause looseness, so that the multilayer coated glass is separated and falls off, at present, high-rise buildings are provided, and the glass falls off and has great potential safety hazards.
SUMMERY OF THE UTILITY MODEL
The multilayer coated glass provided by the utility model solves the potential safety hazard problem that the multilayer coated glass is loosened to cause glass falling after long time because the existing multilayer coated glass is singly fixed by adopting sol.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a multilayer coated glass, includes two horizontal splint and two vertical splint, two three draw-in groove has been seted up respectively to the inboard of horizontal splint and two vertical splint, and is three the bottom of draw-in groove is fixedly connected with rubber packing pad respectively, and is three the inside of draw-in groove is overlapped respectively and is equipped with low radiation glass, heat reflection glass and sunshade type glass, two the constant head tank has been seted up respectively to the top and the bottom of vertical splint, two both ends fixedly connected with locating plate, two respectively about horizontal splint the locating plate movable sleeve is established in the inside of two constant head tanks respectively.
Preferably, four movable holes are respectively formed in the low-radiation glass, the heat reflection glass and the sunshade glass, and threaded holes are formed in the upper end and the lower end of the front face of each vertical clamping plate, which correspond to the four movable holes.
Preferably, the four threaded holes are respectively and internally connected with fastening bolts in a threaded manner, and the four fastening bolts are respectively sleeved in the threaded holes in a threaded manner and are respectively and movably sleeved in the movable holes.
Preferably, the tops of the four fastening bolts are respectively sleeved with a protective cap, and the four protective caps are respectively movably sleeved inside the threaded holes.
Preferably, the cross sections of the two vertical clamping plates and the two transverse clamping plates are trapezoidal, and the top and the bottom of the two vertical clamping plates are closely attached to the left end and the right end of the two transverse clamping plates respectively.
Compared with the prior art, the utility model has the beneficial effects that: the utility model installs the vertical splint; a transverse splint; a rubber gasket; positioning a groove; positioning a plate; low emissivity glass; a heat reflective glass; a sunshade type glass; a movable hole; fastening a bolt; mechanisms such as helmet, fix locking through vertical splint and horizontal splint to multi-layer glass, this equipment modern design, easy operation, this equipment not only can be through the quick location processing of locating piece, can carry out quick fixed processing through fastening bolt simultaneously, the effectual life and the safety in utilization that have improved multi-layer coated glass.
Drawings
FIG. 1 is a schematic diagram of a left side perspective structure of a multi-layer coated glass according to the present invention;
FIG. 2 is a schematic diagram of a rear-view perspective structure of a multi-layer coated glass according to the present invention;
FIG. 3 is a schematic top view of a multi-layer coated glass according to the present invention;
fig. 4 is a partial perspective view of the transverse clamping plate and the vertical clamping plate of the multi-layer coated glass provided by the utility model.
In the figure: 1. a vertical splint; 2. a transverse splint; 3. a rubber gasket; 4. positioning a groove; 5. positioning a plate; 6. low emissivity glass; 7. a heat reflective glass; 8. a sunshade type glass; 9. a movable hole; 10. fastening a bolt; 11. a protective cap.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-4, the present solution provides an embodiment: the utility model provides a multilayer coated glass, including two horizontal splint 2 and two vertical splint 1, three draw-in groove has been seted up respectively to two horizontal splint 2 and two vertical splint 1's inboard, the bottom of three draw-in groove is the sealed pad 3 of fixedly connected with rubber respectively, the inside of three draw-in groove is overlapped respectively and is equipped with low radiation glass 6, thermoreflectance glass 7 and sunshade type glass 8, constant head tank 4 has been seted up respectively to two vertical splint 1's top and bottom, both ends fixedly connected with locating plate 5 respectively about two horizontal splint 2, two locating plate 5 movable sleeve establish the inside at two constant head tanks 4 respectively.
In this embodiment, four movable holes 9 are respectively formed in the low-emissivity glass 6, the heat-reflective glass 7 and the sunshade glass 8, and threaded holes are formed in the upper and lower ends of the front surface of the two vertical clamping plates 1, which correspond to the four movable holes 9.
In this embodiment, the four threaded holes are respectively and threadedly connected with a fastening bolt 10, and the four fastening bolts 10 are respectively and threadedly sleeved in the threaded holes and movably sleeved in the movable holes 9.
In this embodiment, the tops of the four fastening bolts 10 are respectively sleeved with protective caps 11, and the four protective caps 11 are respectively movably sleeved in the threaded holes.
In this embodiment, the cross sections of two vertical splint 1 and two horizontal splint 2 are trapezoidal, and the top and the bottom of two vertical splint 1 are laminated closely with the left and right ends of two horizontal splint 2 respectively.
Firstly, respectively sleeving low-radiation glass 6, heat-reflecting glass 7 and sunshade glass 8 in three clamping grooves of one vertical clamping plate 1, correspondingly sleeving the three clamping grooves on two transverse clamping plates 2 in the tops and the bottoms of the low-radiation glass 6, the heat-reflecting glass 7 and the sunshade glass 8, movably sleeving the positioning plates 5 on the transverse clamping plates 2 in the positioning grooves 4 for quick positioning treatment, quickly fixing the other vertical clamping plate 1 and the positioning plates 5 through the positioning grooves 4 after the transverse clamping plates 2 are fixed, improving the installation efficiency of multilayer coated glass, rotating the fastening bolts 10 after the transverse clamping plates 2 and the vertical clamping plates 1 are positioned, enabling the fastening bolts 10 to be sleeved in threaded holes in the front of the vertical clamping plates 1, penetrating through the low-radiation glass 6, the heat-reflecting glass 7 and the movable holes 9 on the sunshade glass 8, bottom through fastening bolt 10 and the screw hole bottom threaded connection of vertical splint 1 are to low-emissivity glass 6, the three coated glass of thermoreflectance glass 7 and 8 coated glass of sunshade type glass fix the processing, avoid three-layer coated glass to produce the separation after working often simultaneously and cause not hard uply, lead to the droing of multilayer coated glass, fastening bolt 10 fixes to handle the back and protects the processing through helmet 11 with fastening bolt 10's top, avoid causing the fish tail to operating personnel, the effectual speed that has reduced fastening bolt 10 and expose and rust and corrode at the outside simultaneously, effectual life and the safety in utilization that have improved multilayer glass.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and equivalent alternatives or modifications according to the technical solution of the present invention and the inventive concept thereof should be covered by the scope of the present invention.

Claims (5)

1. The utility model provides a multilayer coated glass, includes two horizontal splint (2) and two vertical splint (1), its characterized in that, two three draw-in groove has been seted up respectively to the inboard of horizontal splint (2) and two vertical splint (1), and is three the bottom of draw-in groove is fixedly connected with rubber packing pad (3) respectively, and is three the inside of draw-in groove is overlapped respectively and is equipped with low-emissivity glass (6), heat reflection glass (7) and sunshade type glass (8), two constant head tank (4) have been seted up respectively to the top and the bottom of vertical splint (1), two both ends are fixedly connected with locating plate (5) respectively about horizontal splint (2), two locating plate (5) movable sleeve respectively establish the inside at two constant head tanks (4).
2. The multilayer coated glass according to claim 1, wherein the low-emissivity glass (6), the heat-reflective glass (7) and the sunshade glass (8) are respectively provided with four movable holes (9), and the upper and lower ends of the front surface of the two vertical clamping plates (1) are respectively provided with threaded holes corresponding to the four movable holes (9).
3. The multilayer coated glass according to claim 2, wherein the four threaded holes are respectively and threadedly connected with a fastening bolt (10), and the four fastening bolts (10) are respectively and threadedly sleeved inside the threaded holes and movably sleeved inside the movable holes (9).
4. The multilayer coated glass according to claim 3, wherein the tops of the four fastening bolts (10) are respectively sleeved with a protective cap (11), and the four protective caps (11) are respectively movably sleeved inside the threaded holes.
5. The multilayer coated glass according to claim 1, wherein the cross-section of each of the two vertical clamping plates (1) and the two transverse clamping plates (2) is trapezoidal, and the top and the bottom of each of the two vertical clamping plates (1) are closely attached to the left and right ends of each of the two transverse clamping plates (2).
CN202122495887.4U 2021-10-18 2021-10-18 Multilayer coated glass Active CN216039308U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122495887.4U CN216039308U (en) 2021-10-18 2021-10-18 Multilayer coated glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122495887.4U CN216039308U (en) 2021-10-18 2021-10-18 Multilayer coated glass

Publications (1)

Publication Number Publication Date
CN216039308U true CN216039308U (en) 2022-03-15

Family

ID=80609514

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122495887.4U Active CN216039308U (en) 2021-10-18 2021-10-18 Multilayer coated glass

Country Status (1)

Country Link
CN (1) CN216039308U (en)

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