A splicable isolation wall body, an isolation wall and a construction process thereof
By using modularly designed, splicable isolation walls with elastic components and detachable connection devices, the problems of inconvenient disassembly and assembly and low protective performance of existing wall panels are solved, achieving the effects of simple disassembly and assembly, good protective performance and rapid construction.
Patent Information
- Application Number
- CN202211412814.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-11
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2042-11-11
AI Technical Summary
Existing wall panels are inconvenient to install and remove, have low protective performance, and are easily damaged, especially under external forces.
The wall adopts a modular design, including front and rear wall panels and left and right splicing devices. The modular design of the wall panels is achieved by using elastic elements and detachable connection devices, and the detachable connection of the wall is achieved by splicing protrusions and receiving grooves.
It achieves simple assembly and disassembly of the wall and good protective performance. It can absorb external forces, improve protective performance, has good moisture-proof and fire-proof performance, and is easy and quick to construct, reducing construction costs and transportation difficulties.
Smart Images

Figure CN115559448B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of civil engineering construction technology, in particular to a splicable partition wall body, a partition wall and a construction process thereof. BACKGROUND
[0002] Civil engineering is a collective term for the science and technology of building various land engineering facilities, which refers to the materials, equipment and technical activities such as surveying, designing, construction, maintenance and repair, and also refers to the object of engineering construction. In civil engineering, wall panels are used to achieve room partitioning.
[0003] A civil engineering wall panel (patent number 202122018720.9, application date 2021.08.25) is disclosed, which is formed by at least six layers of panel pieces stacked and fixedly connected. Although this wall panel can achieve certain fireproof, moisture-proof and thermal insulation performance, it is not convenient to disassemble and assemble because the layers of panel pieces are stacked and fixedly connected, and the protective performance is low and it is easily damaged under external force. SUMMARY
[0004] The purpose of the present application is to provide a splicable partition wall body, a partition wall and a construction process thereof, which are simple and convenient to disassemble and assemble, and have good protective performance.
[0005] To achieve the above-mentioned purpose, the technical solution adopted by the present application is as follows:
[0006] A splicable partition wall body comprises front and rear wall panel bodies and left and right splicing devices, the left and right splicing devices are respectively located between the left and right sides of the front and rear wall panel bodies; each splicing device comprises a mounting seat, front and rear movable pieces and an elastic piece arranged between the front and rear movable pieces, the front and rear movable pieces are respectively movably connected to the front and rear sides of the mounting seat, and the front and rear movable pieces are respectively detachably connected to the corresponding side wall panel body.
[0007] The mounting seat comprises a left end plate and a right end plate arranged at intervals, and a baffle is arranged between the front side and the rear side of the left end plate and the right end plate; the front and rear movable pieces are arranged between the left end plate and the right end plate, and the front and rear movable pieces are movably arranged between the baffles on the left and right sides; under the action of the elastic piece, the front end of the front movable piece abuts against the baffle on the front side, and the rear end of the rear movable piece abuts against the baffle on the rear side.
[0008] The mounting base further comprises a slide bar extending frontward and rearward, the slide bar is connected to the two baffle plates on the front and rear sides through the two movable members on the front and rear sides respectively, and the two movable members can move frontward and rearward relative to the slide bar; preferably, the elastic member is a compression spring, and the compression spring is sleeved on the slide bar; or, the opposite sides of the left end plate and the right end plate are respectively provided with frontward and rearward extending guide grooves, the left and right sides of the two movable members are respectively provided with sliding blocks matched with the guide grooves, and the sliding blocks on the corresponding sides are arranged in the guide grooves in a frontward and rearward movable manner.
[0009] The detachable connecting device is arranged between the two movable members of each of the splicing devices and the wall plate bodies on the corresponding sides, and the two movable members of each of the splicing devices are detachably connected to the two wall plate bodies through the detachable connecting device; preferably, the detachable connecting device comprises fixing plates and connecting plates arranged on the opposite sides of the two movable members and the wall plate bodies, threaded rods extending downward from the lower sides of the connecting plates or upward from the upper sides of the connecting plates, and fixing nuts matched with the threaded rods, the fixing plates are provided with through holes penetrating upward and downward for the threaded rods to pass through, and the fixing plates and the connecting plates are arranged upward and downward; preferably, the threaded rods on the connecting plates at the corresponding positions can pass through the through holes of the fixing plates, and when the fixing plates and the connecting plates are arranged upward and downward, the fixing nuts are screwed onto the threaded rods and located at the ends of the fixing plates away from the connecting plates.
[0010] The left and right sides of the left and right splicing devices of each of the partition wall bodies are respectively provided with matched first structures and second structures, and the first structures and the second structures are arranged to be detachably connected; preferably, the first structures and the second structures are arranged as accommodating grooves and splicing protrusions; preferably, the splicing protrusions and the accommodating grooves are arranged such that the splicing protrusions can be inserted into the accommodating grooves from top to bottom or from bottom to top.
[0011] In the left end plate and the right end plate of the same partition wall body, the right end surface of the right end plate and the right end surfaces of the two wall plate bodies are located on the same front and rear plane; correspondingly, the left end surface of the left end plate and the left end surfaces of the two wall plate bodies are located on the same front and rear plane; preferably, the upper end surfaces of the splicing devices and the upper end surfaces of the two wall plate bodies are located on the same front and rear plane, and the lower end surfaces of the splicing devices and the lower surfaces of the two wall plate bodies are also located on the same front and rear plane.
[0012] A partition wall that can be spliced comprises N pieces of the partition wall bodies, the N pieces of the partition wall bodies are detachably connected in sequence from left to right, and N≥2.
[0013] The left and right adjacent two partition wall bodies are detachably connected through the detachable connection of the first structures and the second structures on the opposite sides; preferably, the left and right adjacent two partition wall bodies are detachably connected through the insertion of the splicing protrusions on the opposite sides into the accommodating grooves.
[0014] A construction process of a splicable isolation wall, comprising the following steps:
[0015] S1. Placing two splicing devices between the left and right sides of the front and rear wall plate bodies respectively, connecting the movable plates on the corresponding sides with the wall plate bodies, thereby obtaining an isolation wall body;
[0016] S2. According to the preset length of the isolation wall in the left-right direction, obtaining N pieces of isolation wall bodies in accordance with the method of step S1, wherein N is greater than or equal to 2;
[0017] S3. Sequentially and detachably splicing the N pieces of isolation wall bodies left and right, thereby obtaining an isolation wall with a preset length.
[0018] When the two splicing devices are placed between the left and right sides of the front and rear wall plate bodies respectively, the screw rod on the connecting plate at the corresponding position passes through the through hole of the fixed plate, and when the fixed plate and the connecting plate are stacked one on top of the other, the fixed nut is screwed onto the screw rod and located at the end of the fixed plate away from the connecting plate.
[0019] In the N pieces of isolation wall bodies, any two isolation wall bodies are detachably connected through the first structure and the second structure on the left and right opposite sides, thereby realizing the detachable connection of the two isolation wall bodies.
[0020] The splicing protrusion of one of the isolation wall bodies is inserted into the accommodating groove on the opposite side of the other wall body from top to bottom or from bottom to top, thereby completing the detachable connection of the left and right adjacent two isolation wall bodies.
[0021] Because the application adopts the above technical scheme, the application has the following beneficial effects:
[0022] 1. Because the wall plate body and the splicing structure are detachably connected, the disassembly and assembly of the isolation wall body of the application are very simple and convenient. Moreover, because the isolation wall body of the application adopts the above arrangement, the wall plate body and the splicing structure each form a modular design. When one of the wall plate bodies or the splicing structure has a problem, only the problematic plate body or splicing structure needs to be replaced, thereby reducing the construction cost. Furthermore, the wall plate body and the splicing structure can be first manufactured at another place, transported to the construction site, and then assembled, which not only accelerates the construction progress but also changes the parts into a whole and makes transportation more convenient.
[0023] 2. When the isolation wall body of the application is extruded by external force, the front and rear wall plate bodies can move relatively close by extruding the elastic member, that is, the isolation wall body of the application can absorb and convert the external force, thereby effectively ensuring that the wall plate body is not easily damaged, that is, ensuring that the isolation wall body of the application is not easily damaged, thereby greatly improving the protection performance of the isolation wall body of the application.
[0024] 3、Because the left and right two splicing devices are respectively located between the left and right sides of the front and back two wall bodies, it is equivalent to that the left and right sides of the front and back two wall bodies are separated by the two splicing devices, and the part of the front and back two wall bodies between the two splicing devices is a gap; in this way, even if one of the wall bodies is affected by moisture or fire, the other wall body will not be affected soon, so that the moisture-proof and fire-proof performance of the partition wall body is better, and the front and back two wall bodies are arranged in this way, so that the heat preservation performance of the partition wall body is also very good.
[0025] 4、Because the partition wall is composed of two or more partition wall bodies which are detachably spliced, the construction and disassembly of the partition wall are more convenient and fast, the construction process of the partition wall is very simple and fast, and the partition wall has all the beneficial technical effects of the partition wall body; in addition, one partition wall body can be regarded as a module, so that the partition wall is modularized, and the construction cost is lower, and the transportation of each module is more convenient than the transportation of the whole partition wall. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is a perspective view of the partition wall body according to the present application.
[0027] Figure 2 It is a perspective view of the partition wall body according to the present application.
[0028] Figure 3 It is a perspective view of the partition wall body according to the present application.
[0029] Figure 4 It is a perspective view of the partition wall body according to the present application.
[0030] Figure 5 It is an enlarged view of the partition wall body according to the present application. Figure 4 DETAILED DESCRIPTION
[0031] The partition wall body and the construction process of the partition wall body according to the present application will be described below in combination with the drawings and specific embodiments.
[0032] As shown in the drawings, the partition wall body according to the present application comprises two wall bodies which are detachably spliced. Figures 1 to 5 As shown, the application discloses a splicing partition wall body, which comprises front and back wall plate bodies 1 and left and right splicing devices 2, the left and right splicing devices 2 are respectively arranged between the left and right sides of the front and back wall plate bodies 1; each splicing device 2 comprises a mounting seat, front and back movable parts 206 and an elastic part 207 arranged between the front and back movable parts 206, the front and back movable parts 206 are respectively connected to the front and back sides of the mounting seat in a front and back movable manner, and the front and back movable parts 206 are respectively detachably connected to the wall plate body 1 on the corresponding side. In this way, under the action of the elastic part 207, the front and back movable parts 206 are relatively far away from each other in the front and back directions, so that the front and back wall plate bodies 1 are also relatively far away from each other in the front and back directions; when an external force is applied, the front and back movable parts 206 and the front and back wall plate bodies 1 can be relatively close to each other in the front and back directions.
[0033] The mounting seat comprises left and right end plates 201 and 202 arranged at intervals, and baffles 204 are arranged between the front sides and the back sides of the left and right end plates 201 and 202; the front and back movable parts 206 are arranged between the left and right end plates 201 and 202, and the front and back movable parts 206 are arranged between the baffles 204 on the front and back sides in a front and back movable manner. In the absence of an external force, under the action of the elastic part 207, the front end of the front movable part 206 abuts against the baffle 204 on the front side, the rear end of the rear movable part 206 abuts against the baffle 204 on the rear side, and the front and back movable parts 206 are relatively far away from each other.
[0034] In the embodiment, the mounting seat further comprises front and back extending slide rods 205, the front and back ends of the slide rods 205 are respectively connected to the baffles 204 on the front and back sides through the front and back movable parts 206, and the front and back movable parts 206 can move relative to the slide rods 205 in the front and back directions, so as to realize the purpose that the front and back movable parts 206 are connected to the front and back sides of the mounting seat in a front and back movable manner. The elastic part 207 is a compression spring, which is sleeved on the slide rod 205 and arranged between the baffles 204 on the front and back sides. In other embodiments, the opposite sides of the left and right end plates 201 and 202 can be respectively provided with front and back extending guide grooves, the left and right sides of the front and back movable parts 206 are respectively provided with slide blocks matched with the guide grooves, and the slide blocks on the corresponding sides are arranged in the guide grooves in a front and back movable manner (not shown in the figure), so that the front and back movable parts 206 can move relative to the left and right end plates 201 and 202 in the front and back directions, thereby realizing the purpose that the front and back movable parts 206 are respectively connected to the front and back sides of the mounting seat in a front and back movable manner. In this embodiment, the opposite sides of the front and back movable parts 206 can be provided with spring seats, grooves or any other known structures for connecting the front and back ends of the compression spring.
[0035] Preferably, two slide rods 205 are arranged on the upper side of the mounting base in left and right directions, and two slide rods 205 are arranged on the lower side of the mounting base in left and right directions. The front and rear ends of each slide rod 205 are connected to the front and rear baffles 204, respectively. In this way, the movement of the front and rear movable members 206 is smoother and less likely to be dislocated, and the movement of the front and rear wall plate bodies 1 is also smoother and less likely to be dislocated.
[0036] In this embodiment, two baffles 204 are arranged between the front sides of the left end plate 201 and the right end plate 202, respectively, and two baffles 204 are arranged between the rear sides of the left end plate 201 and the right end plate 202, respectively. As shown in the drawings, Figure 2 Preferably, the left end plate 201 and the right end plate 202 are integrally formed with the small blocking blocks fixedly connected thereto, so that the assembly is more convenient. In other embodiments, the baffles 204 can not have a gap in the middle, but can be an integral plate extending in left and right directions, and the left and right ends of the plate are connected to the left end plate 201 and the right end plate 202, respectively. The front and rear baffles 204 are arranged to limit the maximum distance between the front and rear movable members 206, i.e., to limit the maximum front and rear distance of the front and rear wall plate bodies 1.
[0037] The front and rear movable members 206 of each splicing device 2 and the corresponding wall plate body 1 are provided with a detachable connecting device. Through the detachable connecting device, the front and rear movable members 206 of each splicing device 2 are detachably connected to the front and rear wall plate bodies 1, respectively. In the corresponding movable member 206 and wall plate body 1, the detachable connecting device includes a fixed plate 301 and a connecting plate 302 arranged on the opposite sides of the two, a screw rod 303 extending downward from the lower side of the connecting plate 302 or upward from the upper side of the connecting plate 302, a fixed nut 304 connectable with the screw rod 303, and a through hole 3011 penetrating the fixed plate 301 in an up and down direction and through which the screw rod 303 passes, and the fixed plate 301 and the connecting plate 302 are arranged in an up and down direction.
[0038] Because the front and back wall plate bodies have a certain height, at least two upper and lower spaced detachable connecting devices are arranged between the front and back two movable members 206 of each of the splicing devices 2 and the corresponding side wall plate body 1. In the embodiment, three splicing devices 2 are arranged between each movable member 206 and the corresponding side wall plate body 1 in a spaced manner. In other embodiments, other appropriate numbers of splicing devices 2 can be arranged according to the height of the front and back wall plate bodies 1. In this way, the front and back two wall plate bodies 1 and the splicing devices 2 can be connected more stably, and the entire partition wall body is more stable and safer to use.
[0039] Preferably, in the corresponding side movable member 206 and the wall plate body 1, one is integrally formed with the fixed plate 301, and the other is integrally formed with the connecting plate 302 and the screw rod 303. In this way, the assembly and disassembly operations of the partition wall body of the present application can be further reduced, and the assembly and disassembly operations of the partition wall body of the present application are further simple and convenient.
[0040] In the embodiment, the left and right sides of each of the partition wall bodies are respectively provided with matched first structures 208 and second structures 203 which are arranged to be detachably connected. In the embodiment, the first structure and the second structure are respectively arranged as a receiving groove 208 and a splicing protrusion 203. Specifically, the left end of the left end plate and the right end of the right end plate are respectively provided with matched receiving grooves 208 and splicing protrusions. In the embodiment, the splicing protrusion 203 and the receiving groove 208 are arranged such that the splicing protrusion 203 can be inserted into the receiving groove 208 from top to bottom or from bottom to top. In this way, when the left and right two partition wall bodies need to be spliced together, the splicing protrusion 203 of one of the two adjacent partition wall bodies can be inserted into the receiving groove 208 of the other wall body on the opposite side from top to bottom or from bottom to top, that is, the detachable connection of the left and right two adjacent partition wall bodies is completed, that is, the assembly of the left and right two adjacent partition wall bodies is completed. In this way, according to the actual length of the partition wall, two or more of the above partition wall bodies can be spliced together to obtain the required partition wall, so that the construction of the partition wall is very simple, convenient and fast.
[0041] The present application also discloses a splicable partition wall comprising N pieces of the above-mentioned partition wall bodies, which are spliced together in sequence from left to right, and N≥2.
[0042] The present application also discloses a construction process of a splicable partition wall, which comprises the following steps:
[0043] S1. two splicing devices are respectively arranged between the left and right sides of the front and rear wall plate bodies, and the movable plates on the corresponding sides are connected with the wall plate bodies, so as to obtain a partition wall body;
[0044] S2. according to the length of the partition wall in the left-right direction, the number of N partition wall bodies required is obtained according to the method of step S1, and N≥2;
[0045] That is to say, if the length of the partition wall in the left-right direction is the sum of the left-right lengths of N (N≥2) partition wall bodies, N partition wall bodies need to be obtained.
[0046] S3. the N partition wall bodies obtained are sequentially and left-right detachably spliced, so as to obtain a partition wall with a preset length.
[0047] In the above step S1, when the two splicing devices 2 are respectively arranged between the left and right sides of the front and rear wall plate bodies 1, the screw rods 303 on the connecting plates 302 at the corresponding positions pass through the through holes 3011 of the fixed plates 301, when the fixed plates 301 and the connecting plates 302 are stacked on each other, the fixed nuts 304 are screwed on the screw rods 303 and the fixed nuts 304 are located at the end of the fixed plates 301 away from the connecting plates 302. In this way, the connection of the fixed plates 301 and the connecting plates 302 is completed, that is, the connection of the splicing devices 2 and the wall plate bodies 1 is completed, so as to splice a partition wall body.
[0048] In this embodiment, the screw rod 303 extends downward from the lower side of the connecting plate 302, and correspondingly, the fixed plate 301 is located at the lower side of the connecting plate 302. When assembling, the screw rod 303 passes through the through hole 3011 of the fixed plate 301 downward, when the connecting plate 302 and the fixed plate 301 are stacked on each other, the fixed nut 304 is screwed on the screw rod 303 and the fixed nut 304 is located at the lower end of the fixed plate 301, so as to connect the fixed plate 301 and the connecting plate 302, and further connect the movable part 206 and the wall plate body 1, that is, connect the splicing device 2 and the wall plate body 1. Similarly, if the screw rod 303 extends upward from the upper side of the connecting plate 302, correspondingly, the connecting plate 302 is located at the lower side of the fixed plate 301; when assembling, the screw rod 303 passes through the through hole 3011 of the fixed plate 301 upward, when the connecting plate 302 and the fixed plate 301 are stacked on each other, the fixed nut 304 is screwed on the screw rod 303 and the fixed nut 304 is located at the upper end of the fixed plate 301.
[0049] In step S3, the N blocks of the partition wall body, the left and right two partition wall bodies are connected by the first structure 208 and the second structure 203 on the left and right opposite sides, so that the left and right two partition wall bodies are connected, that is, the left and right two partition wall bodies are assembled. Specifically, the assembling protrusion 203 of one partition wall body is inserted into the accommodating groove 208 on the opposite side of the other wall body from top to bottom or from bottom to top, so that the left and right two adjacent partition wall bodies are assembled. According to the same method, the N blocks of the partition wall body are assembled, so that the partition wall of the preset length is obtained.
[0050] Preferably, in the left end plate 201 and the right end plate 202 of the same partition wall body, the right end surface of the right end plate 202 is on the same front-back plane as the right end surface of the front-back two wall plate bodies 1, and correspondingly, the left end surface of the left end plate 201 is on the same front-back plane as the left end surface of the front-back two wall plate bodies. In this way, after the adjacent two partition wall bodies are spliced, they can be considered as seamless splicing, so as to further ensure the performance of the partition wall.
[0051] In this embodiment, in the same partition wall body, the upper end surface of the assembling device 2 is on the same front-back plane as the upper end surface of the front-back two wall plate bodies 1, and the lower end surface of the assembling device 2 is also on the same front-back plane as the lower surface of the front-back two wall plate bodies 1. In this way, the partition wall body and the partition wall are more flat.
[0052] When the partition wall is to be disassembled, the operation is reversed. Specifically, the left and right two adjacent partition wall bodies are moved up and down, so that the assembling protrusion 203 of one partition wall body is separated from the accommodating groove 208 of the other partition wall body, so that the left and right two adjacent partition wall bodies are separated; then the fixed nuts 304 are unscrewed, and the assembling device 2 is moved up / down relative to the front-back two wall plate bodies 1, so that the threaded rod 303 is separated from the perforation 3011, and then the assembling device 2 of the same partition wall body and the front-back two wall plate bodies 1 are completely separated. Therefore, the assembling and disassembling of the partition wall body and the partition wall of the present application are very simple and convenient.
[0053] As described above, because the wall plate body 1 and the assembling device 2 are detachably connected, the disassembly / assembly of the partition wall body of the present application is very simple and convenient. Moreover, because the partition wall body of the present application is provided as described above, the wall plate body 1 and the assembling structure each form a modular design, so that the components can be manufactured and the assembling device 2 can be assembled in another place first, and then the wall plate body 1 and the assembling device 2 are assembled at the construction site. In this way, not only the construction progress can be accelerated, but also the components can be transported more conveniently. Moreover, when one component has a problem, only the problematic component needs to be replaced, without replacing the entire wall body, so that the construction cost can be reduced.
[0054] When the front and rear wall plate bodies 1 are assembled together by the left and right assembling devices 2, i.e. the partition wall body is assembled, because of the setting of the elastic members 207, the front and rear wall plate bodies 1 keep a relatively far apart state without external force, i.e. the front and rear movable members 206 are respectively in abutting state with the corresponding side baffle 204; when the partition wall body is extruded by external force, the front and rear wall plate bodies can move relatively close by extruding the elastic members 207, specifically, each wall plate body moves together with the corresponding side movable member 206 as a whole, thus, the partition wall body can absorb and transform the external force, thereby effectively ensuring that the wall plate body 1 is not easily damaged, i.e. the partition wall body is not easily damaged, thereby greatly improving the protection performance of the partition wall body.
[0055] Because the left and right assembling devices 2 are respectively located between the left and right sides of the front and rear wall plate bodies 1, i.e. the left and right sides of the front and rear wall plate bodies 1 are separated by the two assembling devices 2, and the part between the two assembling devices 2 of the front and rear wall plate bodies 1 is a gap 11 (as shown in Figure 1 Even if one of the wall plate bodies 1 is affected by moisture or fire, the other wall plate body 1 will not be affected soon, thereby the moisture and fire resistance performance of the partition wall body is better. Moreover, because of the setting of the front and rear wall plate bodies 1, the heat preservation performance of the partition wall body is also good. Therefore, the partition wall assembled by multiple partition wall bodies also has the same good protection performance.
[0056] Furthermore, because of the setting of the front and rear wall plate bodies 1 and the left and right assembling devices 2 of the partition wall body, compared with the structure of the traditional multi-layer wall plate stacked and fixedly connected, the mass of the partition wall body is relatively light, so the partition wall body is a light partition wall body, thereby the partition wall is relatively light.
[0057] Because the partition wall is assembled by two or more partition wall bodies, the construction and disassembly of the partition wall are more convenient and fast, i.e. the construction process of the partition wall is very convenient and fast, and the partition wall also has all the beneficial technical effects of the partition wall body; furthermore, one partition wall body can be regarded as a module, thereby the partition wall is modularized, and the construction cost is also lower, and the transportation of each module is more convenient than the transportation of the whole partition wall.
[0058] The above front, rear, left, right, up and down directions are described with the state of the wall plate in normal use as the reference. It should be understood by those skilled in the art that the directions will change correspondingly with the change of the observation vision. That is, the above direction description is only for convenience of description and understanding, and is not a limitation on the invention.
[0059] The above detailed description of the embodiments of the present application is only a preferred embodiment of the present application, and should not be considered as limiting the scope of the present application. Any equivalent changes and improvements made according to the scope of the present application should still belong to the patent scope of the present application.
Claims
1. A splicable barrier wall body, characterized by: The application relates to a wall body of a partition wall, which comprises two front and back wall plate bodies and two left and right splicing devices, the two left and right splicing devices are respectively arranged between the left and right sides of the two front and back wall plate bodies, each splicing device comprises a mounting seat, two front and back movable members and an elastic member arranged between the two front and back movable members, the two front and back movable members are respectively movably connected to the front and back sides of the mounting seat, and the two front and back movable members are respectively detachably connected to the wall plate body on the corresponding side. The mounting seat comprises a left end plate and a right end plate arranged at intervals, and the front side and the back side of the left end plate and the right end plate are respectively provided with a baffle; the two front and back movable members are arranged between the left end plate and the right end plate, and the two front and back movable members are movably arranged between the baffles on the front and back sides; under the action of the elastic member, the front end of the front movable member abuts against the baffle on the front side, and the rear end of the rear movable member abuts against the baffle on the rear side. The mounting seat further comprises a front and back extending sliding rod, the two ends of the sliding rod are respectively connected to the baffles on the front and back sides through the two front and back movable members, and the two front and back movable members are movable relative to the sliding rod; the elastic member is a compression spring, and the compression spring is sleeved on the sliding rod.
2. The splicable barrier wall of claim 1, wherein: The two front and back movable members of each splicing device are provided with a detachable connecting device between the two front and back movable members and the wall plate body on the corresponding side, and the two front and back movable members of each splicing device are respectively detachably connected to the two wall plate bodies through the detachable connecting device.
3. The splicable barrier wall of claim 2, wherein: In the two movable members on the corresponding side and the wall plate body, the detachable connecting device comprises a fixed plate and a connecting plate arranged on the opposite sides of the two movable members and the wall plate body respectively, a screw rod extending downward from the lower side of the connecting plate or upward from the upper side of the connecting plate, and a fixed nut capable of being connected with the screw rod, the fixed plate is provided with a through hole penetrating from top to bottom for the screw rod to pass through, and the fixed plate and the connecting plate are arranged in a top and bottom mode.
4. The splicable barrier wall of claim 3, wherein: The screw rod on the connecting plate at the corresponding position can pass through the through hole of the fixed plate, when the fixed plate and the connecting plate are arranged in a top and bottom mode, the fixed nut can be screwed on the screw rod and located at the end of the fixed plate away from the connecting plate.
5. The splicable partition wall of any one of claims 1 to 4, wherein: The left and right splicing devices of each partition wall body are respectively provided with matched first and second structures on the side away from each other in the left and right directions, and the first and second structures are arranged to be detachable.
6. The splicable barrier wall of claim 5, wherein: The first and second structures are respectively arranged as accommodating grooves and splicing protrusions.
7. The splicable barrier wall of claim 6, wherein: The splicing protrusion and the accommodating groove are arranged in a mode that the splicing protrusion can be inserted into the accommodating groove from top to bottom or from bottom to top.
8. The splicable partition wall of any one of claims 1 to 4, 6 to 7, wherein: In the two left and right end plates of the same partition wall body, the right end surface of the right end plate and the right end surfaces of the two wall plate bodies are in the same front and back plane, and correspondingly, the left end surface of the left end plate and the left end surfaces of the two wall plate bodies are in the same front and back plane.
9. The splicable barrier wall of claim 8, wherein: The upper end surface of the splicing device and the upper end surfaces of the two wall plate bodies are in the same front and back plane, and the lower end surface of the splicing device and the lower end surfaces of the two wall plate bodies are also in the same front and back plane.
10. A splicable partition wall characterized by: The application further relates to N partition wall bodies as claimed in any one of claims 1 to 9, the N partition wall bodies are detachably connected in sequence in the left and right directions, and N is greater than or equal to 2.
11. The splicable wall of claim 10, wherein: The wall bodies of two adjacent isolation walls are detachably connected through the detachable connection of the first structure and the second structure on the opposite sides.
12. The splicable wall of claim 11, wherein: The wall bodies of two adjacent isolation walls are detachably connected through the insertion of the splicing protrusions on the opposite sides into the accommodating grooves.
Citation Information
Patent Citations
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