CN216494622U - Buckle type screen - Google Patents

Buckle type screen Download PDF

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Publication number
CN216494622U
CN216494622U CN202122706473.1U CN202122706473U CN216494622U CN 216494622 U CN216494622 U CN 216494622U CN 202122706473 U CN202122706473 U CN 202122706473U CN 216494622 U CN216494622 U CN 216494622U
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CN
China
Prior art keywords
buckle
screen
screen unit
snap
fixing plate
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CN202122706473.1U
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Chinese (zh)
Inventor
叶永珍
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Haitai Oulin Group South China Co Ltd
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Haitai Oulin Group South China Co Ltd
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Priority to CN202122706473.1U priority Critical patent/CN216494622U/en
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Publication of CN216494622U publication Critical patent/CN216494622U/en
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Abstract

The utility model relates to the technical field of furniture and discloses a buckled screen which comprises a bracket, wherein the bracket is provided with a first buckling hole and a second buckling hole; a screen unit; the buckle assembly comprises a buckle body, the buckle body is fixedly arranged on the screen unit, and the buckle body is used for being buckled with the first buckle hole; the elastic buckle component comprises an elastic buckle body, the elastic buckle body is fixedly arranged on the screen unit, and the elastic buckle body is used for elastically buckling the second buckle hole. The detachable connection of the screen unit and the bracket is realized, the installation is convenient, the detachment is easy, and the detachable connection belongs to the technical field of furniture.

Description

Buckle type screen
Technical Field
The utility model relates to the technical field of furniture, in particular to a buckle type screen.
Background
Generally, a screen includes a bracket and a screen unit mounted on the bracket. In the existing screen, after the screen unit is installed on the bracket, the screen unit is locked on the bracket, when the screen unit needs to be replaced, the whole structure of the screen needs to be disassembled, the operation is complex, and the time consumption is long.
SUMMERY OF THE UTILITY MODEL
Aiming at the technical problems in the prior art, the utility model aims to: the utility model provides a buckle type screen, which realizes the detachable connection of a screen unit and a bracket, and has convenient installation and easy detachment.
In order to achieve the purpose, the utility model adopts the following technical scheme:
a snap-type screen comprising:
the bracket is provided with a first buckling hole and a second buckling hole;
a screen unit;
the buckle assembly comprises a buckle body, the buckle body is fixedly arranged on the screen unit, and the buckle body is used for being buckled with the first buckle hole;
the elastic buckle component comprises an elastic buckle body, the elastic buckle body is fixedly arranged on the screen unit, and the elastic buckle body is used for elastically buckling the second buckle hole.
Further, the buckle body includes first fixed plate and buckle, buckle fixed connection in first fixed plate, the one end of buckle is equipped with interior concave part and arc butt portion, interior concave part with arc butt portion towards the plane at first fixed plate place, and with the plane interval at first fixed plate place sets up.
Furthermore, the buckle body is positioned at the lower part of the screen unit, and the elastic buckle body is positioned at the upper part of the screen unit.
Furthermore, the buckle body further comprises a limiting bulge, the limiting bulge is fixedly connected to the first fixing plate, and the limiting bulge is used for being inserted into the screen unit.
Further, the buckle assembly further comprises a first locking member for fixing the buckle body to the screen unit.
Further, the body is buckled to elasticity includes second fixed plate and elasticity bending plate, elasticity bending plate has two, two elasticity bending plate interval sets up and respectively fixed connection in the second fixed plate, the second fixed plate be used for fixed mounting in the screen unit, the elasticity is buckled the body and is passed through two the elasticity bending plate be close to each other the card and go into the hole is buckled to the second.
Furthermore, the elastic bending plate comprises a first bending part and a second bending part, one end of the first bending part is fixedly connected to the second fixing plate, an included angle between the first bending part and the second fixing plate is an obtuse angle, the second bending part is fixedly connected to the other end of the first bending part, and an included angle between the second bending part and the second fixing plate is an acute angle.
Furthermore, the elastic buckle assembly further comprises a second locking member, and the second locking member is used for fixing the elastic buckle body to the screen unit.
Further, the screen unit comprises a fixing frame and a screen plate arranged on the fixing frame; the buckle assembly and the elastic buckle assembly are respectively arranged on the fixing frame.
Further, the screen plate is made of glass.
Compared with the prior art, the utility model has the beneficial effects that: the snap-type screen is matched with the elastic buckle component through the buckle component, so that the screen unit is detachably connected with the bracket. When the screen unit is installed, the buckle component is installed in the first buckle hole, and then the elastic buckle component is installed in the second buckle hole by utilizing the elastic deformation of the elastic buckle component; when the screen unit is disassembled, the elastic buckle component is separated from the second buckle hole by utilizing the elastic deformation of the elastic buckle component, and then the buckle component is pulled out of the first buckle hole. The utility model has convenient installation and easy disassembly, overcomes the problems of low screen interchangeability, complex module replacement operation, high maintenance cost and the like, realizes the quick delivery of the installation site of a client, saves the installation time and the like, and has larger optimization on the whole screen structure.
Drawings
Fig. 1 is a structural exploded view of a snap-type screen.
Fig. 2 is a structural exploded view of a side view of a snap-type screen.
Fig. 3 is a partial perspective view of a portion a of fig. 1.
Fig. 4 is a partial perspective view of a portion B of fig. 1.
Fig. 5 is a perspective view of the screen unit.
Fig. 6 is an exploded view of the structure of fig. 5.
Fig. 7 is a partial perspective view of the portion C of fig. 6.
In the figure, 1, a bracket; 2. a screen unit; 3. a buckle assembly; 4. an elastic buckle component; 5. a connecting seat; 11. a cross bar; 12. a vertical rod; 13. a first fastening hole; 14. a second fastening hole; 15. wiring grooves; 21. a screen plate; 22. a fixed mount; 23. a fixing member; 31. a buckle body; 32. a first locking member; 41. an elastic buckle body; 42. a second locking member; 221. a connecting member; 222. a side beam; 223. a first slot; 224. a second slot; 225. connecting holes; 226. connecting grooves; 227. a boss; 311. a first fixing plate; 312. buckling the plate; 313. an inner concave portion; 314. an arcuate abutment; 315. a limiting bulge; 411. a second fixing plate; 412. an elastic bending plate; 413. a first bent portion; 414. a second bending part.
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 utility model but are not intended to limit the scope of the utility model.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "communicating" are to be construed broadly, e.g., as meaning fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Referring to fig. 1 to 4, the snap-type screen includes a bracket 1, a screen unit 2, a buckle component 3 and an elastic buckle component 4. The bracket 1 is provided with a first fastening hole 13 and a second fastening hole 14. The buckle assembly 3 comprises a buckle body 31, the buckle body 31 is fixedly mounted on the screen unit 2, and the buckle body 31 is used for being buckled in the first buckle hole 13. The elastic buckle assembly 4 includes an elastic buckle body 41, the elastic buckle body 41 is fixedly mounted on the screen unit 2, and the elastic buckle body 41 is used for elastically buckling in the second buckle hole 14.
The screen unit 2 is respectively buckled with the first buckle hole 13 and the second buckle hole 14 of the bracket 1 through the buckle body 31 and the elastic buckle body 41, the buckle body 31 is abutted against the edge of the first buckle hole 13, the elastic buckle body 41 is elastically clamped into or pulled out of the second buckle hole 14, the detachable connection of the screen unit 2 and the bracket 1 is realized, the installation is convenient, the disassembly is easy, the integral structure of the buckle type screen is optimized, the interchangeability of products is improved, and the maintenance cost is reduced.
In other embodiments, the snap assembly 3 is located at an upper portion of the screen unit 2 and the elastic snap assembly 4 is located at a lower portion of the screen unit 2.
For the above-described stand 1, the stand 1 comprises two vertical bars 12 and three cross bars 11. Two montants 12 set up relatively, and three horizontal pole 11 distributes along montant 12's length direction, and the both ends of horizontal pole 11 fixed connection respectively in two montants 12. Two sides of each vertical rod 12 are respectively provided with a plurality of groups of first buckling holes 13 and second buckling holes 14, and the first buckling holes 13 and the second buckling holes 14 are distributed at intervals along the height direction of the vertical rods 12.
In other embodiments, the buckle assembly 3 and the elastic buckle assembly 4 can be mounted on the vertical bars 12 or the cross bars 11 respectively through corner connectors.
Wherein, a screen unit 2 is arranged between every two adjacent transverse rods 11, a plurality of groups of buckle components 3 and elastic buckle components 4 are arranged on each screen unit 2, and the plurality of groups of buckle components 3 and elastic buckle components 4 correspond to a plurality of groups of first buckle holes 13 and second buckle holes 14 on each vertical rod 12.
Wherein, the inside fretwork setting of montant 12, buckle body 31 and elasticity are detained body 41 and are passed first knot hole 13 and second knot hole 14 respectively and insert the inside of montant 12 to respectively the butt in the inside wall of montant 12, thereby realize the lock joint respectively in first knot hole 13 and second knot hole 14.
In other embodiments, the three cross bars 11 may also be provided with a first fastening hole 13 and a second fastening hole 14, respectively, the first fastening hole 13 and the second fastening hole 14 may be directly formed on the three cross bars 11, or the connecting base 5 may be mounted on the three cross bars 11, respectively, and the first fastening hole 13 and the second fastening hole 14 are formed on the connecting base 5.
In other embodiments, the screen units 2 are disposed on both sides of the support 1, a predetermined space is provided between two oppositely disposed screen units 2, and the two vertical bars 12 and the three horizontal bars 11 are respectively provided with a wiring groove 15. The two vertical rods 12 and the three cross rods 11 are hollow inside and communicated with a preset space through the wiring grooves 15, so that the wiring of a circuit is realized, and the preset space can be used for installing a light source.
In other embodiments, the structural shape of the support 1 can be set according to practical needs, and is not limited to the connection structure between the two vertical bars 12 and the three horizontal bars 11; in addition, the number of the first fastening holes 13 and the second fastening holes 14 on the vertical rod 12 can also be selected according to actual needs.
As for the above described snap assembly 3, the snap assembly 3 comprises a snap body 31. The buckle body 31 comprises a first fixing plate 311 and two buckle plates 312, wherein the buckle plates 312 are arranged at intervals along the horizontal direction. The pinch plate 312 is fixedly connected to the first fixing plate 311, an inner concave portion 313 and an arc-shaped abutting portion 314 are arranged at the lower end of the pinch plate 312, and the arc-shaped abutting portion 314 extends downwards. The concave portion 313 and the arc abutting portion 314 face a plane on which the first fixing plate 311 is located, and are disposed at a distance from the plane on which the first fixing plate 311 is located. During installation, the arc abutting part 314 abuts against the edge of the first buckling hole 13, and is inserted into the first buckling hole 13 from top to bottom along the edge of the first buckling hole 13 and clamped inside the vertical rod 12, after the arc abutting part 314 is clamped into the first buckling hole 13, the inner concave part 313 abuts against the edge of the first buckling hole 13, the edge of the first buckling hole 13 is clamped into the inner concave part 313 to realize positioning, and then the screen unit 2 is installed through buckling of the elastic buckling component 4.
The buckle component 3 is positioned at the lower part of the screen unit 2, and the elastic buckle component 4 is positioned at the upper part of the screen unit 2. The inner concave part 313 is an arc groove, through the arrangement, the screen unit 2 is allowed to enable the arc abutting part 314 of the buckle body 31 to firstly pass through the first buckle hole 13 at a certain inclination angle, and the inner concave part 313 of the buckle body 31 abuts against the edge and the side wall of the first buckle hole 13, at this time, the lower part of the screen unit 2 is close to the support 1, the upper part of the screen unit 2 is far away from the support 1, and then the screen unit 2 is rotated by taking the inner concave part 313 of the buckle body 31 as a rotation center, so that the upper part of the screen unit 2 moves towards the support 1 until the elastic buckle body 41 is buckled with the second buckle hole 14, thereby greatly facilitating the installation of the screen unit 2 on the support 1.
In other embodiments, the buckle body 31 further includes a limiting protrusion 315, the limiting protrusion 315 is fixedly connected to the first fixing plate 311, and the screen unit 2 is provided with a limiting insertion hole for the limiting protrusion 315 to be inserted into; the limiting projection 315 is used for inserting into a limiting jack of the screen unit 2.
In other embodiments, the snap assembly 3 further comprises a first locking member 32, the first locking member 32 being used to fix the snap body 31 to the screen unit 2. The first locking member 32 is a bolt or a screw, and the first fixing plate 311 is fixed on the screen unit 2 by the first locking member 32.
In other embodiments, the elastic buckle body 41 includes two second fixing plates 411 and two elastic bending plates 412, the two elastic bending plates 412 are disposed at intervals along the vertical direction and are respectively fixedly connected to the second fixing plates 411, and the bending positions of the two elastic bending plates 412 are protruded along directions away from each other. The distance between the bending positions of the two elastic bending plates 412 is greater than the horizontal width of the second buttonhole 14. The second fixing plate 411 is used to be fixedly installed on the screen unit 2, and the elastic buckle body 41 is inserted into the second buckle hole 14 by the mutual approach of the two elastic bending plates 412. When the elastic buckle body 41 is clamped into the second buckle hole 14 and abuts against the edge of the second buckle hole 14, the bending parts of the two elastic bending plates 412 are pressed by force and approach each other, so that the elastic buckle body can be clamped into the second buckle hole 14, and after the two elastic bending plates 412 are completely clamped into the second buckle hole 14, the two elastic bending plates 412 recover to deform and keep away from each other, thereby preventing the two elastic bending plates 412 from separating from the second buckle hole 14. When the elastic buckle body 41 is pulled out in a direction away from the second buckle hole 14 with force when the elastic buckle needs to be disassembled, the bent parts of the two elastic bending plates 412 are pressed and approach each other under force, so that the elastic buckle body can be pulled out from the second buckle hole 14.
In other embodiments, the elastic bending plate 412 includes a first bending portion 413 and a second bending portion 414, one end of the first bending portion 413 is fixedly connected to the second fixing plate 411, an included angle between the first bending portion 413 and the second fixing plate 411 is an obtuse angle, the second bending portion 414 is fixedly connected to the other end of the first bending portion 413, and an included angle between the second bending portion 414 and the second fixing plate 411 is an acute angle. The first bending portions 413 of the two elastic bending plates 412 extend along a direction away from the second fixing plate 411, and along the direction away from the second fixing plate 411, a distance between the first bending portions 413 of the two elastic bending plates 412 gradually increases, the second bending portions 414 of the two elastic bending plates 412 extend along the direction away from the second fixing plate 411, and along the direction away from the second fixing plate 411, a distance between the second bending portions 414 of the two elastic bending plates 412 gradually decreases. When the elastic buckle body 41 is snapped into the second snap hole, the edges of the two opposite sides of the second snap hole press the second bending portions 414 of the two elastic bending plates 412 to make the two elastic bending plates 412 close to each other. When the elastic buckle body 41 is pulled out of the second clamping hole, the edges of the two opposite sides of the second clamping hole press the first bending portions 413 of the two elastic bending plates 412 to make the two elastic bending plates 412 approach each other.
In other embodiments, the elastic buckle assembly 4 further comprises a second locking member 42, and the second locking member 42 is used for fixing the elastic buckle body 41 to the screen unit 2. The second locking member 42 is a bolt or a screw, and the second fixing plate 411 is fixed on the screen unit 2 by the second locking member 42.
Referring to fig. 5 to 7, regarding the screen unit 2, the screen unit 2 may also be referred to as a snap-type screen glass frame, the screen unit 2 includes a screen plate 21 and a fixing frame 22, and the screen plate 21 is detachably mounted to the fixing frame 22.
The screen plate 21 is rectangular plate-shaped and made of glass, and the screen plate 21 plays roles of isolation, decoration and the like.
In other embodiments, the screen panel 21 may have other shapes, such as a triangle, a prism, etc., and the screen panel 21 may also have other materials, such as a glass fiber reinforced material, a plastic material, etc.
The mount 22 includes a plurality of side beams 222 and a plurality of connecting members 221. The side beams 222 are provided with first slots 223 and second slots 224, the plurality of side beams 222 are arranged around the screen panel 21, the screen panel 21 is inserted into the first slots 223, namely, the periphery of the screen panel 21 is inserted into the first slots 223 of each side beam 222 arranged around the screen panel, the first slots 223 of each side beam 222 limit the periphery of the screen panel 21, the connection between the screen panel 21 and the side beams 222 is enhanced, the detachable connection between the screen panel 21 and the side beams 222 is allowed, and the screen panel 21 is easily detached from the side beams 222. Both ends of each connecting member 221 are respectively inserted into the second slots 224 of each two adjacent side sills 222, that is, one connecting member 221 is disposed between the two adjacent side sills 222, both ends of one connecting member 221 are respectively inserted into the second slots 224 of the two adjacent side sills 222 to connect the two adjacent side sills 222, and each two adjacent side sills 222 limit the corresponding connecting member 221, thereby enhancing the connection between the connecting member 221 and the side sills 222, allowing the detachable connection between the side sills 222, and allowing the connecting member 221 to be easily detached from the side sills 222. Through the arrangement, the screen unit 2 can be disassembled and assembled, and the structure is simple, the assembly is convenient, and the whole screen unit is easy to disassemble.
The mount 22 includes four side members 222 and four connecting members 221. The four side beams 222 are arranged around the four sides of the screen panel 21 to form a rectangular frame, the four sides of the screen panel 21 are respectively inserted into the first slots 223 of the four side beams 222, and the first slots 223 of the four side beams 222 are respectively wrapped on the four sides of the screen panel 21 to limit and protect the four sides of the screen panel 21. Both ends of each connecting member 221 are inserted into the second insertion grooves 224 of each adjacent two side members 222, respectively. The four side beams 222 are opposite to each other in pairs, and the two adjacent side beams 222 are perpendicular to each other.
It is understood that the length of the side beams 222 may be set as required, for example, for a rectangular screen panel 21, the length of the side beam 222 corresponding to the long side of the screen panel 21 may be adaptively longer, the length of the side beam 222 corresponding to the short side of the screen panel 21 may be adaptively shorter, and for a square screen panel 21, the lengths of the side beams 222 corresponding to the four sides of the screen panel 21 may be uniform, respectively.
In other embodiments, the number of the side beams 222 may be selected according to actual needs, and is not limited to four, for example, when the screen panel 21 is pentagonal, the number of the side beams 222 may be five, one side beam 222 corresponds to an edge of one screen panel 21, and the number of the connecting members 221 may be adjusted according to the number of the side beams 222, only by ensuring that at least one connecting member 221 is arranged between every two adjacent side beams 222 for connection.
The end surfaces of every two adjacent side beams 222 are engaged with each other and are abutted against each other, so that the connection between the side beams 222 is tighter, a gap is prevented from occurring in the splicing between the two adjacent side beams 222, which affects the appearance of the screen unit 2, and the structure of the fixing frame 22 is more compact.
Specifically, the end surfaces of the two ends of the side beams 222 are 45-degree tangent planes, that is, the end surfaces of the side beams 222 and the length direction of the side beams 222 form an included angle of 45 degrees, so that when four side beams 222 are enclosed to form a rectangular frame, every two adjacent side beams 222 can be tightly abutted, and the structure is simple and easy to implement.
The first slot 223 and the second slot 224 are respectively located at two sides of the side beam 222, so that the screen plate 21 and the connecting piece 221 are respectively located at two sides of the side beam 222, wherein one side where the screen plate 21 is located is a front surface of the screen unit 2, and one side where the connecting piece 221 is located is a back surface, and the back surface can be used for being mounted on the bracket 1 of the snap-type screen, thereby avoiding exposing too many structures on the front surface of the screen glass frame, and enabling the screen glass frame to be simpler and more beautiful in a visual range.
Specifically, the first insertion groove 223 is located at one side of the side member 222, the first insertion groove 223 is disposed along the length direction of the side member 222 and extends from one end of the side member 222 toward the other end of the side member 222, and the notches of the first insertion grooves 223 of the opposing two side members 222 face each other. The second slot 224 is located on the other side of the side beam 222, the second slot 224 is arranged along the length direction of the side beam 222 and extends from one end of the side beam 222 to the other end of the side beam 222, two second slots 224 are arranged on the side beam 222, the two second slots 224 are arranged oppositely and at intervals, the notches of the two slots face each other, the middle parts of the two second slots 224 are used for exposing the connecting piece 221, the angle code is convenient to mount, and the upper end and the lower end of the angle code are respectively clamped into the two second slots 224.
In other embodiments, the arrangement manner of the first slot 223 and the second slot 224 may be selected according to actual needs, for example, the first slot 223 and the second slot 224 are both located on the same side of the side beam 222, for example, only one second slot 224 is disposed on the side beam 222, the second slot 224 penetrates through the side beam 222 along the length direction of the side beam 222, the cross section of the second slot 224 is a closed loop structure, two ends of the connecting member 221 are respectively inserted into the second slots 224 of two adjacent side beams 222, and the connecting member 221 is integrally and respectively received in the second slots 224 of two adjacent side beams 222.
The connecting member 221 is in a shape of a right-angled plate to fit the two adjacent and perpendicular side beams 222, so that when the two ends of the boss 227 are respectively inserted into the second slots 224 of the two adjacent side beams 222, the end surfaces of the two side beams 222 can be tightly abutted against each other, and the connecting member 221 is located on the second slots 224, so that the structure of the fixing frame 22 is more compact and the assembly is facilitated.
Specifically, bosses 227 are respectively disposed on two sides of the connecting member 221, the bosses 227 on the two sides of the connecting member 221 are respectively inserted into two second slots 224 on the side beam 222, and the two second slots 224 on the side beam 222 limit the bosses 227 on the two sides of the connecting member 221, so that the connecting member 221 and the side beam 222 are tightly connected. The middle portions of the two second slots 224 on the side members 222 expose the connectors 221 to allow mounting of the below-described snap-in assembly 3 or snap-in assembly 4 on the connectors 221, and the screen unit 2 frame is mounted on the bracket 1 of the snap-in screen by means of a fastening fitting. Since the connecting member 221 is located at both ends of the side member 222, and the side member 222 is generally a profile, etc., and has a low structural strength, the snap-fastener assembly 3 or the elastic fastener assembly 4 is installed at the portion exposed on the connecting member 221, so that both ends of the frame of the screen unit 2 can be integrally and stably installed on the bracket 1 of the snap-type screen.
The screen unit 2 further includes a fixing member 23, and the fixing member 23 fixedly connects the side beams 222 and the connecting member 221 such that each adjacent two of the side beams 222 and the connecting member 221 are fixed to each other, thereby fixing the plurality of side beams 222, which surround the screen panel 21, to each other while the plurality of side beams 222 fix the screen panel 21 therein.
Specifically, the side member 222 is provided with a coupling hole 225, the outer side surface of the side member 222 is a recessed surface, and the coupling hole 225 is provided on the recessed surface. The connecting member 221 is provided with a coupling groove 226, the coupling hole 225 is opposite to the coupling groove 226, and the fixing member 23 passes through the coupling hole 225 and the coupling groove 226 and fixedly couples the side member 222 and the connecting member 221. The connecting slot 226 is disposed on a boss 227 of a side of the connecting member 221 away from the screen panel 21, and both ends of the boss 227 are provided with the connecting slot 226 and are respectively opposite to the connecting holes 225 on the two adjacent side beams 222. Wherein, the fixing member 23 may be a screw, and one screw is screw-coupled with a corresponding one of the coupling holes 225 and one of the coupling grooves 226.
In other embodiments, the side beam 222 and the connecting member 221 may be fixedly connected in other manners.
The assembly process of the screen unit in a rectangular frame is exemplified as follows, and for convenience of description, the four side beams are respectively referred to as a first side beam, a second side beam, a third side beam and a fourth side beam, wherein the first side beam and the fourth side beam are opposite, and the second side beam and the third side beam are opposite, specifically as follows:
one end of each connecting piece is respectively inserted into the second slots at the two ends of the first side beam, the other ends of the two connecting pieces are respectively inserted into the second slots at one ends of the second side beam and the third side beam, and the two connecting pieces are fixedly connected with the first side beam, the second side beam and the third side beam through fixing pieces, and at the moment, the three side beams form an Contraband-shaped structure; three edges of the screen plate are respectively inserted into first slots of the first side beam, the second side beam and the third side beam; one ends of the other two connecting pieces are respectively inserted into the second slots at the two ends of the fourth side beam, the other ends of the other two connecting pieces are respectively inserted into the second slots at the other ends of the second side beam and the third side beam, meanwhile, the other side of the screen plate is inserted into the first slot of the fourth side beam, and finally the other two connecting pieces, the second side beam, the third side beam and the fourth side beam are fixedly connected through fixing pieces, so that the screen plate, the side beams and the connecting pieces are relatively fixed. The structure is simple, the assembly is convenient, and the disassembly is easy.
The above is an exemplary description of the assembly process of the screen unit, and the order of the assembly steps can be adjusted according to the actual situation.
The above description is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, many modifications and substitutions can be made without departing from the technical principle of the present invention, and these modifications and substitutions should also be regarded as the protection scope of the present invention.

Claims (10)

1. A snap-type screen, comprising:
the bracket is provided with a first buckling hole and a second buckling hole;
a screen unit;
the buckle assembly comprises a buckle body, the buckle body is fixedly arranged on the screen unit, and the buckle body is used for being buckled with the first buckle hole;
the elastic buckle component comprises an elastic buckle body, the elastic buckle body is fixedly arranged on the screen unit, and the elastic buckle body is used for elastically buckling the second buckle hole.
2. The snap-type screen according to claim 1, wherein said snap-type body comprises a first fixing plate and a clip, said clip is fixedly connected to said first fixing plate, one end of said clip is provided with an inner concave portion and an arc-shaped abutting portion, said inner concave portion and said arc-shaped abutting portion face to a plane of said first fixing plate and are spaced from said plane of said first fixing plate.
3. A snap-type screen according to claim 2, wherein said snap body is located at a lower portion of said screen unit and said elastic snap body is located at an upper portion of said screen unit.
4. A buckle screen according to claim 2, wherein said buckle body further comprises a limiting protrusion fixedly connected to said first fixing plate, said limiting protrusion being adapted to be inserted into said screen unit.
5. A snap-type screen according to any one of claims 1-4, wherein said snap assembly further comprises a first locking member for securing said snap body to said screen unit.
6. The buckle type screen according to claim 1, wherein the resilient buckle body comprises two resilient bending plates and two resilient bending plates, the two resilient bending plates are spaced apart and fixedly connected to the second fixing plate respectively, the second fixing plate is configured to be fixedly mounted on the screen unit, and the resilient buckle body is clamped into the second buckling hole by the two resilient bending plates approaching each other.
7. The folding screen according to claim 6, wherein the flexible bending plate comprises a first bending portion and a second bending portion, one end of the first bending portion is fixedly connected to the second fixing plate, and the included angle between the first bending portion and the second fixing plate is an obtuse angle, the second bending portion is fixedly connected to the other end of the first bending portion, and the included angle between the second bending portion and the second fixing plate is an acute angle.
8. A buckled screen according to claim 1, wherein said resilient clip assembly further comprises a second retaining member for securing said resilient clip body to said screen unit.
9. A snap-type screen according to claim 1, wherein said screen unit comprises a mount and a screen plate mounted on said mount; the buckle assembly and the elastic buckle assembly are respectively arranged on the fixing frame.
10. A snap-type screen according to claim 9, wherein said screen panel is glass.
CN202122706473.1U 2021-11-05 2021-11-05 Buckle type screen Active CN216494622U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122706473.1U CN216494622U (en) 2021-11-05 2021-11-05 Buckle type screen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122706473.1U CN216494622U (en) 2021-11-05 2021-11-05 Buckle type screen

Publications (1)

Publication Number Publication Date
CN216494622U true CN216494622U (en) 2022-05-13

Family

ID=81527521

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122706473.1U Active CN216494622U (en) 2021-11-05 2021-11-05 Buckle type screen

Country Status (1)

Country Link
CN (1) CN216494622U (en)

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