CN213704795U - Large-scale anti-explosion glass that wear-resistants - Google Patents

Large-scale anti-explosion glass that wear-resistants Download PDF

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Publication number
CN213704795U
CN213704795U CN202022401345.1U CN202022401345U CN213704795U CN 213704795 U CN213704795 U CN 213704795U CN 202022401345 U CN202022401345 U CN 202022401345U CN 213704795 U CN213704795 U CN 213704795U
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explosion
glass
layer
proof
proof glass
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CN202022401345.1U
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罗圣克
杨振东
张军伟
赵云辉
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Henan Yubo Special Glass Co ltd
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Henan Yubo Special Glass Co ltd
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Abstract

The utility model discloses a large-scale explosion-proof glass that wear-resistants, including lower protective frame, explosion-proof glass main part, vice joint piece, installing frame and spliced pole, explosion-proof glass main part is installed to one side of protective frame bottom down, and the top of explosion-proof glass main part extends to the outside of lower protective frame, and one side on explosion-proof glass main part top installs protective frame, one side of protective frame bottom is fixed with vice joint piece down, and one side on going up the protective frame top is fixed with main joint piece, and the both sides of main joint piece bottom all are fixed with the connecting plate to equidistant positioning bolt is installed to one side on connecting plate surface, and positioning bolt's one end extends to the inside of vice joint piece. The utility model discloses not only improve explosion-proof glass's barrier propterty, the simple operation nature of reinforcing glass when the installation is maintained still improves this explosion-proof glass's security performance, effectively protects the user.

Description

Large-scale anti-explosion glass that wear-resistants
Technical Field
The utility model relates to an explosion-proof glass technical field specifically is a large-scale explosion-proof glass that wear-resistants.
Background
Glass is an important building material, and along with the continuous improvement of the decoration requirements of people on buildings, the glass plays an important role in the modern production and life, the application of the glass is very wide, such as glass windows, glass ornaments, glass ware, vehicle-mounted glass, glass curtain walls and the like, and along with the continuous expansion of the application range of the glass, the market demand is continuously increased, so the using amount of the glass is increased year by year, the self explosion of the toughened glass is determined to be unavoidable due to the characteristics of the toughened glass, and the self explosion time cannot be estimated, so in order to prevent the damage caused by the self explosion of the toughened glass, measures or methods are often adopted in the glass processing and mounting processes to reduce the loss caused by the self explosion of the toughened glass.
The explosion-proof glass on the market is various and can basically meet the use requirements of people, but certain defects still exist, and the specific problems are as follows.
(1) In the process of splicing and installing the conventional explosion-proof glass, certain connection between the glass is not ensured, the joint is generally subjected to glue sealing treatment after the glass is installed, the connection between the glass is poor in stability during installation, and the glass is not convenient to align quickly, so that inconvenience is brought to installation work of workers;
(2) in the transportation process of the existing explosion-proof glass, the glass is easy to collide and scratch and the like, and the self protection performance is limited;
(3) once the existing explosion-proof glass is broken, the glass becomes fragments and cannot effectively resist wind pressure or secondary impact of a heavy object, so that the glass corners are easy to collide and damage, and the use safety is low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a large-scale explosion-proof glass that wear-resistants to solve the installation that proposes explosion-proof glass among the above-mentioned background art not convenient, easily collide with and the lower problem of safety in utilization in the transportation.
In order to achieve the above object, the utility model provides a following technical scheme: a large-scale abrasion-resistant explosion-proof glass, which comprises a lower protective frame, an explosion-proof glass main body, an auxiliary clamping block, a mounting frame and a connecting column, an explosion-proof glass main body is arranged on one side of the bottom of the lower protective frame, the top end of the explosion-proof glass main body extends to the outside of the lower protective frame, and one side of the top end of the explosion-proof glass main body is provided with an upper protective frame, one side of the bottom end of the lower protective frame is fixed with an auxiliary clamping block, one side of the top end of the upper protective frame is fixed with a main clamping block, and two sides of the bottom end of the main clamping block are both fixed with connecting plates, positioning bolts with equal intervals are arranged on one side of the surface of the connecting plate, one end of each positioning bolt extends into the auxiliary clamping block, a rubber block is fixed on the outer wall of one side of the main body of the explosion-proof glass, and a connecting column is fixed at one end of the rubber block, which is far away from the explosion-proof glass main body, and a glass structure is arranged at one side inside the explosion-proof glass main body.
Preferably, an installation frame is fixed on one side inside the explosion-proof glass main body, and a clamping groove is formed in one side inside the installation frame.
Preferably, the glass structure is internally provided with a protective film layer, a nano tin oxide heat insulation film layer, a first glass base layer, a glass fiber layer, a PVC glue layer, a metal explosion-proof wire mesh layer, a middle glass base layer, a silicon dioxide aerogel layer and a third glass base layer in sequence, one side of the interior of the explosion-proof glass main body is provided with the protective film layer, and the outer wall of one side of the protective film layer is provided with the nano tin oxide heat insulation film layer.
Preferably, a first glass base layer is bonded to one end, away from the protective film layer, of the nano tin oxide heat insulation film layer, and a glass fiber layer is fixed on the outer wall of one side of the first glass base layer.
Preferably, a PVC glue layer is coated on the outer wall of one side of the glass fiber layer, a metal explosion-proof wire mesh layer is bonded on one side of the surface of the PVC glue layer, and a middle glass base layer is fixed on the outer wall of one side of the metal explosion-proof wire mesh layer.
Preferably, a silica aerogel layer is coated on the outer wall of one side of the middle glass base layer, and a third glass base layer is bonded on one side of the surface of the silica aerogel layer.
Compared with the prior art, the beneficial effects of the utility model are that: the large-sized wear-resistant explosion-proof glass not only improves the protection performance of the explosion-proof glass, enhances the operation convenience of the glass during installation and maintenance, but also improves the safety performance of the explosion-proof glass, and effectively protects users;
(1) the main clamping block and the positioning bolt are arranged, the lower protective frame and the upper protective frame are taken out and inserted into the bottom end and the top end of the explosion-proof glass main body respectively, then the group of explosion-proof glass main bodies are spliced again according to the same steps, the main clamping block at the top end of the upper protective frame is aligned to the auxiliary clamping block, so that the upper protective frame and the lower protective frame are clamped with each other, the positioning bolt is driven into the connecting plate and the auxiliary clamping block, relative sliding does not occur between the main clamping block and the auxiliary clamping block at the moment, the lower protective frame and the upper protective frame are utilized for protecting the explosion-proof glass main body, collision of the explosion-proof glass main body in the transportation process is reduced, the risk that the explosion-proof glass main body is damaged and scratched is reduced, and the protective performance of;
(2) the connecting column and the connecting column are arranged, the two groups of explosion-proof glass main bodies are taken out, the rubber blocks on the outer wall of the group of explosion-proof glass main bodies are inserted into the mounting frame, the connecting column enters the mounting frame along with the rubber blocks after being extruded, the connecting column returns to the original state after entering the clamping groove, and the rubber blocks are clamped into the mounting frame, so that the glass can be quickly aligned, the integral stability of the glass is improved, and the operation convenience of the glass during mounting and maintenance is enhanced;
(3) through being provided with glass fiber layer and silica aerogel layer, through first glass basic unit, middle glass basic unit and third glass basic unit three-layer glass's structure, combine silica aerogel layer again, glass fiber layer and the thermal-insulated rete of nanometer tin oxide, make this glass have good fire prevention function, protection film layer mainly protects the surface, reinforcing glass's the function of wear-resisting, set up the explosion-proof silk screen layer of metal, combine PVC glue film and glass fiber layer, make glass have good explosion-proof function, avoid glass to explode and split the in-process more piece of appearance, thereby improve this explosion-proof glass's security performance, effectively protect the user.
Drawings
Fig. 1 is a schematic view of a front view cross-sectional structure of the present invention;
FIG. 2 is an enlarged schematic view of the structure at A of FIG. 1 according to the present invention;
FIG. 3 is a schematic side view of the cross-sectional structure of the explosion-proof glass main body of the present invention;
FIG. 4 is an enlarged schematic view of the glass structure of the present invention;
in the figure: 1. a lower protective frame; 2. an explosion-proof glass body; 3. a secondary snap-in block; 4. an upper protection frame; 5. a main clamping block; 6. positioning the bolt; 7. a connecting plate; 8. installing a frame; 9. a card slot; 10. connecting columns; 11. a rubber block; 12. a glass structure; 1201. a protective film layer; 1202. a nano tin oxide heat insulation film layer; 1203. a first glass substrate layer; 1204. a glass fiber layer; 1205. a PVC glue layer; 1206. a metal explosion-proof wire mesh layer; 1207. an intermediate glass substrate layer; 1208. a silica aerogel layer; 1209. and a third glass substrate layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides an embodiment: a large-scale wear-resistant explosion-proof glass comprises a lower protective frame 1, an explosion-proof glass main body 2, an auxiliary clamping block 3, a mounting frame 8 and a connecting column 10, wherein the explosion-proof glass main body 2 is mounted at one side of the bottom of the lower protective frame 1, the top end of the explosion-proof glass main body 2 extends to the outside of the lower protective frame 1, and one side of the top end of the explosion-proof glass main body 2 is provided with an upper protective frame 4, one side of the bottom end of the lower protective frame 1 is fixed with an auxiliary clamping block 3, one side of the top end of the upper protective frame 4 is fixed with a main clamping block 5, and two sides of the bottom end of the main clamping block 5 are both fixed with connecting plates 7, positioning bolts 6 with equal intervals are installed on one side of the surface of the connecting plate 7, one ends of the positioning bolts 6 extend into the auxiliary clamping blocks 3, rubber blocks 11 are fixed on the outer wall of one side of the explosion-proof glass main body 2, and connecting columns 10 are fixed at one ends, far away from the explosion-proof glass main body 2, of the rubber blocks 11;
taking out the lower protective frame 1 and the upper protective frame 4 to be respectively inserted at the bottom end and the top end of the explosion-proof glass main body 2, splicing a group of explosion-proof glass main bodies 2 again according to the same steps, aligning the main clamping block 5 at the top end of the upper protective frame 4 with the auxiliary clamping block 3 to enable the two to be clamped mutually, driving the positioning bolt 6 into the connecting plate 7 and the auxiliary clamping block 3, preventing the main clamping block 5 and the auxiliary clamping block 3 from sliding relatively, protecting the explosion-proof glass main body 2 by using the lower protective frame 1 and the upper protective frame 4, reducing the collision of the explosion-proof glass main body 2 in the transportation process, reducing the risks of breakage and scratch of the explosion-proof glass main body 2 and improving the protective performance of the explosion-proof glass;
a mounting frame 8 is fixed on one side inside the explosion-proof glass main body 2, and a clamping groove 9 is formed in one side inside the mounting frame 8;
the two groups of the explosion-proof glass main bodies 2 are taken out, the rubber blocks 11 on the outer walls of the groups of the explosion-proof glass main bodies 2 are inserted into the mounting frame 8, the connecting columns 10 enter the mounting frame 8 along with the rubber blocks 11 after being extruded, the connecting columns 10 recover to the original shape after entering the clamping grooves 9, and the rubber blocks 11 are clamped into the mounting frame 8, so that the glass can be quickly aligned, the overall stability of the glass is improved, and the operation convenience of the glass during installation and maintenance is enhanced;
a glass structure 12 is arranged on one side inside the explosion-proof glass main body 2;
the glass structure 12 is internally provided with a protective film layer 1201, a nano tin oxide heat insulation film layer 1202, a first glass base layer 1203, a glass fiber layer 1204, a PVC glue layer 1205, a metal explosion-proof wire mesh layer 1206, a middle glass base layer 1207, a silicon dioxide aerogel layer 1208 and a third glass base layer 1209 in sequence, one side of the interior of the explosion-proof glass main body 2 is provided with the protective film layer 1201, and the outer wall of one side of the protective film layer 1201 is provided with the nano tin oxide heat insulation film layer 1202;
a first glass base layer 1203 is bonded to one end, far away from the protective film layer 1201, of the nano tin oxide heat insulation film layer 1202, a glass fiber layer 1204 is fixed on the outer wall of one side of the first glass base layer 1203, a PVC glue layer 1205 is coated on the outer wall of one side of the glass fiber layer 1204, a metal explosion-proof wire mesh layer 1206 is bonded to one side of the surface of the PVC glue layer 1205, and a middle glass base layer 1207 is fixed on the outer wall of one side of the metal explosion-proof wire mesh layer 1206;
a silica aerogel layer 1208 is coated on the outer wall of one side of the middle glass base layer 1207, and a third glass base layer 1209 is bonded on one side of the surface of the silica aerogel layer 1208;
through first glass basic unit 1203, middle glass basic unit 1207 and third glass basic unit 1209 three-layer glass's structure, combine silica aerogel layer 1208 again, glass fiber layer 1204 and the thermal-insulated rete 1202 of nanometer tin oxide, make this glass have good fire prevention function, protection film layer 1201 mainly protects the surface, reinforcing glass's function of wear-resisting, set up metal explosion-proof silk screen layer 1206, combine PVC glue film 1205 and glass fiber layer 1204, make glass have good explosion-proof function, avoid glass to explode and split the in-process more piece of appearance, thereby improve this explosion-proof glass's security performance.
The working principle is as follows: when in use, firstly, the lower protective frame 1 and the upper protective frame 4 are taken out and respectively inserted into the bottom end and the top end of the explosion-proof glass main body 2, then the group of explosion-proof glass main bodies 2 are spliced again according to the same steps, then the main clamping block 5 at the top end of the upper protective frame 4 is aligned with the auxiliary clamping block 3 so as to be clamped with each other, then the positioning bolt 6 is driven into the connecting plate 7 and the auxiliary clamping block 3, at the moment, the main clamping block 5 and the auxiliary clamping block 3 do not slide relatively any more, so that the lower protective frame 1 and the upper protective frame 4 are utilized to protect the explosion-proof glass main body 2, the collision of the explosion-proof glass main body 2 in the transportation process is reduced, the risks of damage and scratch of the explosion-proof glass main body 2 are reduced, the protective performance of the explosion-proof glass is improved, the two groups of explosion-proof glass main bodies 2 are taken out, the rubber block 11 on, the connecting column 10 enters the mounting frame 8 along with the rubber block 11 after being extruded, the connecting column 10 returns to the original state after entering the clamping groove 9, and the rubber block 11 is clamped in the mounting frame 8, so that the glass can be quickly aligned, the overall stability of the glass is improved, the operation convenience of the glass during installation and maintenance is enhanced, the glass has a good fireproof function by the structure of three layers of glass, namely the first glass base layer 1203, the middle glass base layer 1207 and the third glass base layer 1209, and then the silica aerogel layer 1208, the glass fiber layer 1204 and the nano tin oxide heat insulation film layer 1202 are combined, the protective film layer 1201 mainly protects the surface, the anti-wear function of the glass is enhanced, the metal explosion-proof silk screen layer 1206 is arranged, the PVC glue layer 1205 and the glass fiber layer 1204 are combined, the glass has a good explosion-proof function, more fragments are avoided from occurring in the glass explosion process, and the safety performance of the explosion-proof glass is improved, effectively protecting the user.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a large-scale explosion-proof glass that wear-resistants, includes protective frame (1), explosion-proof glass main part (2), vice joint block (3), installing frame (8) and spliced pole (10) down, its characterized in that: an explosion-proof glass main body (2) is installed on one side of the bottom of the lower protective frame (1), the top end of the explosion-proof glass main body (2) extends to the outside of the lower protective frame (1), an upper protective frame (4) is installed on one side of the top end of the explosion-proof glass main body (2), an auxiliary clamping block (3) is fixed on one side of the bottom end of the lower protective frame (1), a main clamping block (5) is fixed on one side of the top end of the upper protective frame (4), connecting plates (7) are fixed on two sides of the bottom end of the main clamping block (5), positioning bolts (6) with equal intervals are installed on one side of the surface of each connecting plate (7), one end of each positioning bolt (6) extends to the inside of the corresponding auxiliary clamping block (3), a rubber block (11) is fixed on the outer wall of one side of the explosion-proof glass main body (2), and a connecting column (10) is fixed on one end, far away from, and a glass structure (12) is arranged on one side in the explosion-proof glass main body (2).
2. A large-sized abrasion-resistant explosion-proof glass according to claim 1, wherein: an installation frame (8) is fixed on one side inside the explosion-proof glass main body (2), and a clamping groove (9) is formed in one side inside the installation frame (8).
3. A large-sized abrasion-resistant explosion-proof glass according to claim 1, wherein: the glass structure is characterized in that a protective film layer (1201), a nano tin oxide heat insulation film layer (1202), a first glass base layer (1203), a glass fiber layer (1204), a PVC glue layer (1205), a metal explosion-proof wire mesh layer (1206), a middle glass base layer (1207), a silicon dioxide aerogel layer (1208) and a third glass base layer (1209) are sequentially arranged inside the glass structure (12), the protective film layer (1201) is arranged on one side inside the explosion-proof glass main body (2), and the nano tin oxide heat insulation film layer (1202) is installed on the outer wall of one side of the protective film layer (1201).
4. A large-sized abrasion-resistant explosion-proof glass according to claim 3, wherein: one end, far away from the protective film layer (1201), of the nano tin oxide heat insulation film layer (1202) is bonded with a first glass base layer (1203), and a glass fiber layer (1204) is fixed on the outer wall of one side of the first glass base layer (1203).
5. A large-sized abrasion-resistant explosion-proof glass according to claim 4, wherein: the outer wall of glass fiber layer (1204) one side coats and is smeared PVC glue film (1205), and one side bonding on PVC glue film (1205) surface has explosion-proof silk screen layer of metal (1206), and is fixed with middle glass basic unit (1207) on the outer wall of explosion-proof silk screen layer of metal (1206) one side.
6. A large-sized abrasion-resistant explosion-proof glass according to claim 5, wherein: and a silica aerogel layer (1208) is coated on the outer wall of one side of the middle glass base layer (1207), and a third glass base layer (1209) is bonded on one side of the surface of the silica aerogel layer (1208).
CN202022401345.1U 2020-10-26 2020-10-26 Large-scale anti-explosion glass that wear-resistants Active CN213704795U (en)

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CN202022401345.1U CN213704795U (en) 2020-10-26 2020-10-26 Large-scale anti-explosion glass that wear-resistants

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022401345.1U CN213704795U (en) 2020-10-26 2020-10-26 Large-scale anti-explosion glass that wear-resistants

Publications (1)

Publication Number Publication Date
CN213704795U true CN213704795U (en) 2021-07-16

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ID=76800005

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