Building assembly type decoration integrated wall and construction method

Through the design of the locking assembly, positioning assembly and sealing assembly, the problem of incomplete connection of the prefabricated decoration integrated wall during construction site installation is solved, rapid assembly and efficient sealing are achieved, and labor intensity of construction workers is reduced and assembly efficiency is improved.

CN120273462APending Publication Date: 2025-07-08CSCEC STRAIT CONSTR & DEV
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Patent Information

Application Number
CN202510467979.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing prefabricated decoration integrated wall lacks a complete connection mechanism when installing on the construction site, resulting in high labor intensity, low assembly efficiency and poor use effect.

Method used

The locking pin assembly, positioning assembly and sealing assembly are adopted, including the locking plate, spring rod, locking shell, locking sleeve, locking block, locking pin and sealing strip, so as to achieve quick plug-in and tight fit of the wall.

Benefits of technology

The rapid assembly of prefabricated decoration integrated walls is realized, which reduces the intensity of labor, improves assembly efficiency, and enhances the sealing of the splicing area to avoid water seepage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a building assembly type decoration integrated wall body and a construction method, and belongs to the technical field of assembly type decoration integrated wall bodies, the building assembly type decoration integrated wall body comprises a wall body, an insertion block is fixedly installed on one side of the wall body, a clamping pin assembly and a positioning assembly are arranged on the side wall of the insertion block, and an insertion groove is formed in the other side of the wall body; a sealing assembly is arranged on the side wall of the wall body, the clamping pin assembly comprises a clamping plate, and a spring rod is fixedly installed on one side of the clamping plate; according to the assembly type decoration integrated wall connecting mechanism, the clamping pin assemblies are arranged, through the design, two assembly type decoration integrated wall bodies are effectively and rapidly assembled, constructors do not need to install the connecting mechanism on the assembly type decoration integrated wall bodies, and therefore the labor intensity of workers is greatly reduced, and the assembly efficiency of the assembly type decoration integrated wall bodies is also greatly improved; the use effect is good.
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Description

Technical Field

[0001] The present invention belongs to the technical field of prefabricated integrated decoration walls, and particularly relates to a building prefabricated integrated decoration wall and a construction method thereof. Background Art

[0002] A prefabricated building is a building assembled on-site using prefabricated components. It places the traditional building construction method in the factory. The prefabricated integrated decoration wall built in the factory is transported to the construction site, and then the construction workers on the site install the prefabricated integrated decoration wall through connectors. The prefabricated integrated decoration wall is an important component in the prefabricated building.

[0003] Currently, the prefabricated integrated decoration wall needs to be assembled on-site by workers installing connectors. Most of the prefabricated integrated decoration walls do not have a perfect connection mechanism. Therefore, construction workers need to first install the connection mechanism for the prefabricated integrated decoration wall on the construction site, and then assemble the prefabricated integrated decoration wall after the installation is completed. This method greatly increases the labor intensity of workers and also reduces the assembly efficiency of the prefabricated integrated decoration wall, resulting in poor use effects. Summary of the Invention

[0004] The purpose of the present invention is to solve the problem that currently, the prefabricated integrated decoration wall needs to be assembled on-site by workers installing connectors. Most of the prefabricated integrated decoration walls do not have a perfect connection mechanism. Therefore, construction workers need to first install the connection mechanism for the prefabricated integrated decoration wall on the construction site, and then assemble the prefabricated integrated decoration wall after the installation is completed. This method greatly increases the labor intensity of workers and also reduces the assembly efficiency of the prefabricated integrated decoration wall, resulting in poor use effects. Thus, a building prefabricated integrated decoration wall and a construction method thereof are proposed.

[0005] To achieve the above purpose, the present invention adopts the following technical scheme: A building prefabricated integrated decoration wall includes a wall body. On one side of the wall body, an insertion block is fixedly installed. A pin component and a positioning component are arranged on the side wall of the insertion block. On the other side of the wall body, a slot is provided. A sealing component is arranged on the side wall of the wall body. The pin component includes a clamping plate. On one side of the clamping plate, a spring rod is fixedly installed. On the outer wall of one side of the wall body, a plate groove is provided. The other end of the spring rod is fixedly installed on the inner wall of the plate groove. The inner wall of the plate groove is slidably connected with the clamping plate. A pin installation groove is arranged on the outer wall of the insertion block.

[0006] As a further description of the above technical solution: On the inner wall of the pin installation groove, a pin housing is fixedly installed. On the inner wall of the pin housing, a second telescopic rod is fixedly installed. At both ends of the second telescopic rod, a clamping sleeve is fixedly installed. The inner wall of the clamping sleeve is slidably installed on the outer walls at both ends of the pin housing. A second spring is sleeved on the outer wall of the second telescopic rod, and both ends of the second spring are fixedly installed on the inner wall of the clamping sleeve.

[0007] As a further description of the above technical solution: On the side wall of the clamping sleeve, a block groove is provided. On the inner wall of the block groove, a first telescopic rod is fixedly installed. At the other end of the first telescopic rod, a block is fixedly installed. A first spring is sleeved on the outer wall of the first telescopic rod, and one end of the first spring is fixedly installed on the inner wall of the block.

[0008] As a further description of the above technical solution: The other end of the first spring is fixedly installed on the inner wall of the block groove. There is a sliding connection between the inner wall of the block groove and the outer wall of the block. On the inner walls on both sides of the slot, card holes are provided. There is a sliding connection between the inner wall of the pin installation groove and the clamping sleeve, and there is a sliding connection between the inner wall of the pin installation groove and the block.

[0009] As a further description of the above technical solution: The positioning component includes a third telescopic rod. On the outer wall of the insertion block, a spring installation groove is provided. The third telescopic rod is fixedly installed on the inner wall of the spring installation groove. At both ends of the third telescopic rod, limit plates are fixedly installed. On the outer wall of the limit plates, positioning pins are fixedly installed. A third spring is sleeved on the outer wall of the third telescopic rod.

[0010] As a further description of the above technical solution: Both ends of the third spring are fixedly installed on the outer wall of the limit plate. There is a sliding connection between the inner wall of the spring installation groove and the positioning pin. On the inner walls on both sides of the slot, positioning grooves are provided. The width of the limit plate is greater than the width of the bottom of the positioning pin, and the width of the spring installation groove is equal to the width of the positioning pin.

[0011] As a further description of the above technical solution: The length of the spring installation groove is equal to the length of the positioning pin. The width of the positioning groove is equal to the width of the positioning pin. The length of the positioning groove is equal to the length of the positioning pin. The length of the third telescopic rod is less than the depth of the spring installation groove.

[0012] As a further description of the above technical solution: The sealing component includes a sealing strip. The sealing strip is fixedly installed on the outer wall of one side of the wall body. On the outer wall of the other side of the wall body, an inlay groove is provided. The depth of the inlay groove is the same as the thickness of the sealing strip.

[0013] The present invention also discloses a method for using an integrated wall for building prefabricated decoration, which includes the following steps: S1. Insert the insertion block provided on one side of the first wall into the slot provided on the other side of the second wall. During this process, the outer wall on the other side of the second wall squeezes the clamping plates provided on both sides of the insertion block. After the clamping plates are squeezed, the clamping plates retract into the plate grooves. At the same time, the plate grooves squeeze the spring rods provided on the inner walls of the clamping plates, causing them to be in a compressed state. When the clamping plates move out from the outer wall of the socket, the socket then squeezes the inner walls on both sides of the slot. S2. When the socket reaches the same horizontal line as the card holes provided on the inner walls on both sides of the slot, the sockets slidably installed at both ends of the card pin housing are no longer squeezed, and the second springs provided on the inner wall of the card pin housing are also no longer squeezed by the sockets. The second springs reset. While the second springs reset, they drive the sockets fixedly installed at both ends of the second springs to move, causing the sockets to move out from both ends of the card pin installation groove, and the sockets provided at both ends of the card pin housing are inserted into the card holes. The clamping blocks provided on the side walls of the sockets are no longer squeezed by the side walls at both ends of the card pin installation groove. S3. The elastic force generated by the first spring provided on the inner wall of the clamping block drives the clamping block to move, causing the clamping block to be embedded in the embedding hole provided on the card hole. At the same time, the first spring is slightly compressed, so that the clamping block is in close fit with the inner wall of the embedding hole provided on the card hole. Before inserting the insertion block provided on one side of the first wall into the slot provided on the other side of the second wall, first press the positioning pins provided on both sides of the insertion block. The positioning pins retract into the spring installation groove provided on the insertion block. The limiting plate provided inside the spring installation groove squeezes the third spring, causing the third spring to be in a compressed state, and the third telescopic rod contracts synchronously. S4. After the insertion block is inserted into the slot, the positioning pins can be released. The positioning pins are squeezed by the inner walls on both sides of the slot and still retract into the spring installation groove provided on the insertion block. After the insertion block is completely inserted into the slot, the positioning pins are at the same horizontal line as the positioning grooves provided on the inner walls on both sides of the slot. The positioning pins are inserted into the positioning grooves by the elastic force generated by the third spring. When the first wall and the second wall are spliced, the sealing strip provided on one side of the first wall is inserted into the embedding groove provided on the other side of the second wall, so that the sealing strip is in close fit in the embedding groove.

[0014] In summary, due to the adoption of the above technical solutions, the beneficial effects of the present invention are: 1. In the present invention, by providing a latch assembly, an insertion block provided on one side of the first wall body is inserted into a slot provided on the other side of the second wall body. During this process, the outer wall on the other side of the second wall body presses against the latch plates provided on both sides of the insertion block. After the latch plates are pressed, the latch plates retract into the plate grooves. At the same time, the plate grooves press against the spring rods provided on the inner walls of the latch plates, causing them to form a compressed state. When the latch plates move out from the outer wall of the socket, the socket then presses against the inner walls on both sides of the slot. When the socket reaches the same horizontal line as the locking holes provided on the inner walls on both sides of the slot, the sockets slidably installed at both ends of the latch housing are no longer pressed. The second spring provided on the inner wall of the latch housing is also no longer pressed by the socket. The second spring is reset. When the second spring is reset, it drives the sockets fixedly installed at both ends of the second spring to displace, causing the sockets to move out from both ends of the latch installation groove, and the sockets provided at both ends of the latch housing are inserted into the locking holes. The latch blocks provided on the side walls of the socket are no longer pressed by the side walls at both ends of the latch installation groove. The elastic force generated by the first spring provided on the inner wall of the latch block drives the latch block to displace, causing the latch block to be embedded into the embedding holes provided on the locking holes. At the same time, the first spring is slightly compressed, causing the latch block to closely fit against the inner wall of the embedding hole provided on the locking hole. Through this design, it effectively realizes the rapid assembly of two prefabricated integrated decoration wall bodies, eliminating the need for construction workers to install the connection mechanism for the prefabricated integrated decoration wall bodies, thereby greatly reducing the manual labor intensity and significantly improving the assembly efficiency of the prefabricated integrated decoration wall bodies, with good usage effects.

[0015] 2. In the present invention, by providing a positioning assembly, before inserting the insertion block provided on one side of the first wall body into the slot provided on the other side of the second wall body, first press the positioning pins provided on both sides of the insertion block. The positioning pins retract into the spring installation grooves provided on the insertion block. The limiting plates provided inside the spring installation grooves press against the third spring, causing the third spring to form a compressed state. The third telescopic rod contracts synchronously. After the insertion block is inserted into the slot, the positioning pins can be released. The positioning pins are pressed by the inner walls on both sides of the slot and still retract into the spring installation grooves provided on the insertion block. After the insertion block is completely inserted into the slot, the positioning pins are at the same horizontal line as the positioning grooves provided on the inner walls on both sides of the slot. The positioning pins are inserted into the positioning grooves through the elastic force generated by the third spring. Through this design, it effectively realizes the rapid positioning of the insertion block of the first wall body to the slot of the second wall body, making it easier for the sockets in the latch assembly to be inserted into the locking holes, further improving the assembly efficiency, with good usage effects.

[0016] 3. In the present invention, by providing a sealing assembly, after the first wall body and the second wall body are spliced, the sealing strip provided on one side of the first wall body is inserted into the embedding groove provided on the other side of the second wall body, causing the sealing strip to closely fit inside the embedding groove. Through this design, it effectively realizes the close fit between the first wall body and the second wall body, avoiding water seepage at the splicing gap, greatly improving the sealing performance at the splicing of the prefabricated integrated decoration wall bodies, with good usage effects. Brief Description of the Drawings

[0017] Figure 1 It is a three-dimensional structure schematic diagram of an integrated wall for building prefabricated decoration.

[0018] Figure 2 It is a schematic diagram of one side structure of an integrated wall for building prefabricated decoration.

[0019] Figure 3 It is an exploded structure schematic diagram of the clamping plate in an integrated wall for building prefabricated decoration.

[0020] Figure 4 It is a three-dimensional structure schematic diagram of the clamping pin assembly in an integrated wall for building prefabricated decoration.

[0021] Figure 5 It is an internal structure schematic diagram of the clamping pin assembly in an integrated wall for building prefabricated decoration.

[0022] Figure 6 It is a partial exploded structure schematic diagram of the clamping pin assembly in an integrated wall for building prefabricated decoration.

[0023] Figure 7 It is an exploded structure schematic diagram of the positioning component in an integrated wall for building prefabricated decoration.

[0024] Figure 8 It is a cross-sectional view of the slot in an integrated wall for building prefabricated decoration.

[0025] Figure 9 It is an enlarged structure schematic diagram of part A in an integrated wall for building prefabricated decoration Legend Explanation: 1. Wall; 2. Insert block; 3. Clamping pin assembly; 31. Clamping hole; 32. Clamping pin installation groove; 33. Spring rod; 34. Clamping plate; 35. Plate groove; 36. Clamping pin shell; 37. Clamping sleeve; 38. Clamping block; 39. First telescopic rod; 310. First spring; 311. Second spring; 312. Second telescopic rod; 313. Clamping block groove; 4. Positioning component; 41. Spring installation groove; 42. Third telescopic rod; 43. Third spring; 44. Limiting plate; 45. Positioning pin; 46. Positioning groove; 5. Sealing component; 51. Sealing strip; 52. Inlay groove; 6. Slot. Detailed Implementation Manner

[0026] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0027] Please refer to Figures 1-9 , the present invention provides a technical solution: an integrated wall for building prefabricated decoration, including a wall 1, a plug 2 is fixedly installed on one side of the wall 1, a latch assembly 3 and a positioning assembly 4 are arranged on the side wall of the plug 2, a slot 6 is arranged on the other side of the wall 1, and a sealing assembly 5 is arranged on the side wall of the wall 1; The latch assembly 3 includes a latch plate 34, a spring rod 33 is fixedly installed on one side of the latch plate 34, a plate groove 35 is arranged on the outer wall of one side of the wall 1, the other end of the spring rod 33 is fixedly installed on the inner wall of the plate groove 35, the inner wall of the plate groove 35 is slidably connected with the latch plate 34, a latch installation groove 32 is arranged on the outer wall of the plug 2, a latch housing 36 is fixedly installed on the inner wall of the latch installation groove 32, a second telescopic rod 312 is fixedly installed on the inner wall of the latch housing 36, both ends of the second telescopic rod 312 are fixedly installed with a collar 37, the inner wall of the collar 37 is slidably installed on the outer walls at both ends of the latch housing 36, a second spring 311 is sleeved on the outer wall of the second telescopic rod 312, both ends of the second spring 311 are fixedly installed on the inner wall of the collar 37, a latch block groove 313 is arranged on the side wall of the collar 37, a first telescopic rod 39 is fixedly installed on the inner wall of the latch block groove 313, the other end of the first telescopic rod 39 is fixedly installed with a latch block 38, a first spring 310 is sleeved on the outer wall of the first telescopic rod 39, one end of the first spring 310 is fixedly installed on the inner wall of the latch block 38, the other end of the first spring 310 is fixedly installed on the inner wall of the latch block groove 313, the inner wall of the latch block groove 313 is slidably connected with the outer wall of the latch block 38, latch holes 31 are arranged on the inner walls on both sides of the slot 6, the inner wall of the latch installation groove 32 is slidably connected with the collar 37, and the inner wall of the latch installation groove 32 is slidably connected with the latch block 38; The specific implementation example is as follows: Insert the insertion block 2 provided on one side of the first wall body 1 into the slot 6 provided on the other side of the second wall body 1. During this process, the outer wall on the other side of the second wall body 1 squeezes the clamping plates 34 provided on both sides of the insertion block 2. After the clamping plates 34 are squeezed, the clamping plates 34 retract into the plate grooves 35. At the same time, the plate grooves 35 squeeze the spring rods 33 provided on the inner walls of the clamping plates 34, causing them to be in a compressed state. When the clamping plates 34 are moved out from the outer wall of the socket 37, the socket 37 then squeezes the inner walls on both sides of the slot 6. When the socket 37 reaches the same horizontal line as the locking holes 31 provided on the inner walls on both sides of the slot 6, the sockets 37 slidably installed at both ends of the locking pin housing 36 are no longer squeezed. The second spring 311 provided on the inner wall of the locking pin housing 36 is also no longer squeezed by the socket 37. The second spring 311 resets. While the second spring 311 resets, it drives the displacement of the sockets 37 fixedly installed at both ends of the second spring 311, causing the sockets 37 to move out from both ends of the locking pin installation groove 32, and inserting the sockets 37 provided at both ends of the locking pin housing 36 into the locking holes 31. The clamping blocks 38 provided on the side walls of the socket 37 are no longer squeezed by the side walls at both ends of the locking pin installation groove 32. The elastic force generated by the first spring 310 provided on the inner wall of the clamping block 38 drives the displacement of the clamping block 38, causing the clamping block 38 to be embedded into the embedding holes provided on the locking holes 31. At the same time, the first spring 310 is slightly compressed, causing the clamping block 38 to be in close fit with the inner wall of the embedding hole provided on the locking hole 31.

[0028] The positioning assembly 4 includes a third telescopic rod 42. A spring installation groove 41 is provided on the outer wall of the insertion block 2. The third telescopic rod 42 is fixedly installed on the inner wall of the spring installation groove 41. Limit plates 44 are fixedly installed at both ends of the third telescopic rod 42. A positioning pin 45 is fixedly installed on the outer wall of the limit plate 44. A third spring 43 is sleeved on the outer wall of the third telescopic rod 42. Both ends of the third spring 43 are fixedly installed on the outer wall of the limit plate 44. The inner wall of the spring installation groove 41 is slidably connected to the positioning pin 45. Positioning grooves 46 are provided on the inner walls on both sides of the slot 6. The width of the limit plate 44 is greater than the width of the bottom of the positioning pin 45. The width of the spring installation groove 41 is equal to the width of the positioning pin 45. The length of the spring installation groove 41 is equal to the length of the positioning pin 45. The width of the positioning groove 46 is equal to the width of the positioning pin 45. The length of the positioning groove 46 is equal to the length of the positioning pin 45. The length of the third telescopic rod 42 is less than the depth of the spring installation groove 41; The specific embodiment is as follows: Before inserting the insertion block 2 provided on one side of the first wall body 1 into the slot 6 provided on the other side of the second wall body 1, first press the positioning pins 45 provided on both sides of the insertion block 2. The positioning pins 45 retract into the spring installation grooves 41 provided on the insertion block 2. The limiting plate 44 provided inside the spring installation groove 41 squeezes the third spring 43, causing the third spring 43 to be in a compressed state, and the third telescopic rod 42 contracts synchronously. After the insertion block 2 is inserted into the slot 6, the positioning pins 45 can be released. The positioning pins 45 are squeezed by the inner walls on both sides of the slot 6 and still retract into the spring installation grooves 41 provided on the insertion block 2. After the insertion block 2 is completely inserted into the slot 6, the positioning pins 45 and the positioning grooves 46 provided on the inner walls on both sides of the slot 6 are on the same horizontal line, and the positioning pins 45 are inserted into the positioning grooves 46 by the elastic force generated by the third spring 43.

[0029] The sealing assembly 5 includes a sealing strip 51. The sealing strip 51 is fixedly installed on the outer wall of one side of the wall body 1. An inlay groove 52 is provided on the outer wall of the other side of the wall body 1, and the depth of the inlay groove 52 is the same as the thickness of the sealing strip 51. The specific embodiment is as follows: When the first wall body 1 and the second wall body 1 are spliced, the sealing strip 51 provided on one side of the first wall body 1 is inserted into the inlay groove 52 provided on the other side of the second wall body 1, so that the sealing strip 51 fits tightly in the inlay groove 52.

[0030] The present invention also discloses a using method of an integrated wall for building prefabricated decoration, including the following steps: S1. Insert the insertion block 2 provided on one side of the first wall body 1 into the slot 6 provided on the other side of the second wall body 1. During this process, the outer wall on the other side of the second wall body 1 squeezes the clamping plates 34 provided on both sides of the insertion block 2. After being squeezed, the clamping plates 34 retract into the plate grooves 35. At the same time, the plate grooves 35 squeeze the spring rods 33 provided on the inner walls of the clamping plates 34, causing them to be in a compressed state. When the clamping plates 34 are moved out from the outer walls of the card sleeves 37, the card sleeves 37 are then squeezed against the inner walls on both sides of the slot 6. S2. When the card sleeves 37 reach the same horizontal line as the card holes 31 provided on the inner walls on both sides of the slot 6, the card sleeves 37 slidably installed at both ends of the card pin housing 36 are no longer squeezed, and the second spring 311 provided on the inner wall of the card pin housing 36 is no longer squeezed by the card sleeves 37 either. The second spring 311 is reset. While the second spring 311 is reset, it drives the displacement of the card sleeves 37 fixedly installed at both ends of the second spring 311, so that the card sleeves 37 are moved out from both ends of the card pin installation groove 32, and the card sleeves 37 provided at both ends of the card pin housing 36 are inserted into the card holes 31. The clamping blocks 38 provided on the side walls of the card sleeves 37 are no longer squeezed by the side walls at both ends of the card pin installation groove 32. S3. The elastic force generated by the first spring 310 provided on the inner wall of the clamping block 38 drives the clamping block 38 to displace, so that the clamping block 38 is inserted into the insertion hole provided on the clamping hole 31. At the same time, the first spring 310 is slightly compressed, so that the clamping block 38 is in close contact with the inner wall of the insertion hole provided on the clamping hole 31. Before inserting the insertion block 2 provided on one side of the first wall body 1 into the insertion slot 6 provided on the other side of the second wall body 1, first press the positioning pins 45 provided on both sides of the insertion block 2. The positioning pins 45 retract into the spring installation groove 41 provided on the insertion block 2. The limiting plate 44 provided inside the spring installation groove 41 presses the third spring 43, so that the third spring 43 is in a compressed state, and the third telescopic rod 42 contracts synchronously; S4. After the insertion block 2 is inserted into the inside of the insertion slot 6, the positioning pins 45 can be released. The positioning pins 45 are pressed by the inner walls on both sides of the insertion slot 6 and still retract into the spring installation groove 41 provided on the insertion block 2. After the insertion block 2 is completely inserted into the insertion slot 6, the positioning pins 45 and the positioning grooves 46 provided on the inner walls on both sides of the insertion slot 6 are on the same horizontal line. The positioning pins 45 are inserted into the inside of the positioning grooves 46 by the elastic force generated by the third spring 43. When the first wall body 1 and the second wall body 1 are spliced, the sealing strip 51 provided on one side of the first wall body 1 is inserted into the embedding groove 52 provided on the other side of the second wall body 1, so that the sealing strip 51 is in close contact inside the embedding groove 52.

[0031] Working principle: Insert the insertion block 2 provided on one side of the first wall body 1 into the slot 6 provided on the other side of the second wall body 1. During this process, the outer wall on the other side of the second wall body 1 squeezes the clamping plates 34 provided on both sides of the insertion block 2. After the clamping plates 34 are squeezed, the clamping plates 34 retract into the plate grooves 35. At the same time, the plate grooves 35 squeeze the spring rods 33 provided on the inner walls of the clamping plates 34, causing them to be in a compressed state. When the clamping plates 34 are moved out from the outer wall of the bushing 37, the bushing 37 then squeezes the inner walls on both sides of the slot 6. When the bushing 37 reaches the same horizontal line as the clamping holes 31 provided on the inner walls on both sides of the slot 6, the bushings 37 slidably installed at both ends of the pin housing 36 are no longer squeezed. The second spring 311 provided on the inner wall of the pin housing 36 is also no longer squeezed by the bushing 37. The second spring 311 resets. While the second spring 311 resets, it drives the displacement of the bushings 37 fixedly installed at both ends of the second spring 311, causing the bushings 37 to move out from both ends of the pin installation groove 32, and inserting the bushings 37 provided at both ends of the pin housing 36 into the clamping holes 31. The clamping blocks 38 provided on the side walls of the bushing 37 are no longer squeezed by the side walls at both ends of the pin installation groove 32. The elastic force generated by the first spring 310 provided on the inner wall of the clamping block 38 drives the displacement of the clamping block 38, causing the clamping block 38 to be embedded into the embedding holes provided on the clamping holes 31. At the same time, the first spring 310 is slightly compressed, so that the clamping block 38 is in close contact with the inner wall of the embedding hole provided on the clamping hole 31. Before inserting the insertion block 2 provided on one side of the first wall body 1 into the slot 6 provided on the other side of the second wall body 1, first press the positioning pins 45 provided on both sides of the insertion block 2. The positioning pins 45 retract into the spring installation groove 41 provided on the insertion block 2. The limiting plate 44 provided inside the spring installation groove 41 squeezes the third spring 43, causing the third spring 43 to be in a compressed state. The third telescopic rod 42 contracts synchronously. After the insertion block 2 is inserted into the slot 6, the positioning pins 45 can be released. The positioning pins 45 are squeezed by the inner walls on both sides of the slot 6 and still retract into the spring installation groove 41 provided on the insertion block 2. After the insertion block 2 is completely inserted into the slot 6, the positioning pins 45 are at the same horizontal line as the positioning grooves 46 provided on the inner walls on both sides of the slot 6. The positioning pins 45 are inserted into the positioning grooves 46 through the elastic force generated by the third spring 43. When the first wall body 1 and the second wall body 1 are spliced, the sealing strip 51 provided on one side of the first wall body 1 is inserted into the embedding groove 52 provided on the other side of the second wall body 1, so that the sealing strip 51 is in close contact inside the embedding groove 52.

[0032] The above is only the preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. An integrated wall for building prefabricated decoration, comprising a wall (1), characterized in that: One side of the wall body (1) is fixedly installed with an insertion block (2). A pin component (3) and a positioning component (4) are arranged on the side wall of the insertion block (2). A slot (6) is arranged on the other side of the wall body (1), and a sealing component (5) is arranged on the side wall of the wall body (1); the pin component (3) includes a clamping plate (34). One side of the clamping plate (34) is fixedly installed with a spring rod (33). A plate groove (35) is arranged on the outer wall of one side of the wall body (1). The other end of the spring rod (33) is fixedly installed on the inner wall of the plate groove (35). The inner wall of the plate groove (35) is slidably connected with the clamping plate (34). A pin installation groove (32) is arranged on the outer wall of the insertion block (2).

2. The prefabricated integrated building decoration wall according to claim 1, characterized in that A pin shell (36) is fixedly installed on the inner wall of the pin installation groove (32). A second telescopic rod (312) is fixedly installed on the inner wall of the pin shell (36). Clamping sleeves (37) are fixedly installed at both ends of the second telescopic rod (312). The inner wall of the clamping sleeve (37) is slidably installed on the outer walls at both ends of the pin shell (36). A second spring (311) is sleeved on the outer wall of the second telescopic rod (312). Both ends of the second spring (311) are fixedly installed on the inner wall of the clamping sleeve (37).

3. The integrated wall for building prefabricated decoration according to claim 2, wherein A block groove (313) is arranged on the side wall of the clamping sleeve (37). A first telescopic rod (39) is fixedly installed on the inner wall of the block groove (313). A block (38) is fixedly installed at the other end of the first telescopic rod (39). A first spring (310) is sleeved on the outer wall of the first telescopic rod (39). One end of the first spring (310) is fixedly installed on the inner wall of the block (38).

4. The integrated wall for building prefabricated decoration according to claim 3, characterized in that, The other end of the first spring (310) is fixedly installed on the inner wall of the block groove (313). The inner wall of the block groove (313) is slidably connected with the outer wall of the block (38). Pin holes (31) are arranged on the inner walls on both sides of the slot (6). The inner wall of the pin installation groove (32) is slidably connected with the clamping sleeve (37). The inner wall of the pin installation groove (32) is slidably connected with the block (38).

5. The integrated wall for building prefabricated decoration according to claim 4, characterized in that, The positioning component (4) includes a third telescopic rod (42). A spring installation groove (41) is arranged on the outer wall of the insertion block (2). The third telescopic rod (42) is fixedly installed on the inner wall of the spring installation groove (41). Limit plates (44) are fixedly installed at both ends of the third telescopic rod (42). A positioning pin (45) is fixedly installed on the outer wall of the limit plate (44). A third spring (43) is sleeved on the outer wall of the third telescopic rod (42).

6. The integrated wall for building prefabricated decoration according to claim 5, wherein, Both ends of the third spring (43) are fixedly installed on the outer wall of the limit plate (44). The inner wall of the spring installation groove (41) is slidably connected with the positioning pin (45). Positioning grooves (46) are arranged on the inner walls on both sides of the slot (6). The width of the limit plate (44) is greater than the width of the bottom of the positioning pin (45). The width of the spring installation groove (41) is equal to the width of the positioning pin (45).

7. A prefabricated building decoration integrated wall according to claim 6, characterized in that, The length of the spring installation groove (41) is equal to the length of the positioning pin (45), the width of the positioning groove (46) is equal to the width of the positioning pin (45), the length of the positioning groove (46) is equal to the length of the positioning pin (45), and the length of the third telescopic rod (42) is less than the depth of the spring installation groove (41).

8. The integrated wall for building prefabricated decoration according to claim 7, characterized in that, The sealing assembly (5) includes a sealing strip (51), the sealing strip (51) is fixedly installed on the outer wall of one side of the wall body (1), and an inlay groove (52) is provided on the outer wall of the other side of the wall body (1), and the depth of the inlay groove (52) is the same as the thickness of the sealing strip (51).

9. A method for using the prefabricated building decoration integrated wall according to claim 8, characterized in that, It includes the following steps: S1. Insert the insertion block (2) provided on one side of the first wall body (1) into the slot (6) provided on the other side of the second wall body (1). During this process, the outer wall of the other side of the second wall body (1) squeezes the clamping plates (34) provided on both sides of the insertion block (2). After the clamping plates (34) are squeezed, the clamping plates (34) retract into the plate grooves (35). At the same time, the plate grooves (35) squeeze the spring rods (33) provided on the inner walls of the clamping plates (34) to form a compressed state. When the clamping plates (34) move out from the outer wall of the clamping sleeve (37), the clamping sleeve (37) then squeezes the inner walls on both sides of the slot (6); S2. When the clamping sleeve (37) reaches the same horizontal line as the clamping holes (31) provided on the inner walls on both sides of the slot (6), the clamping sleeves (37) slidably installed at both ends of the clamping pin housing (36) are no longer squeezed, and the second spring (311) provided on the inner wall of the clamping pin housing (36) is no longer squeezed by the clamping sleeve (37) either. The second spring (311) resets. While the second spring (311) resets, it drives the clamping sleeves (37) fixedly installed at both ends of the second spring (311) to displace, so that the clamping sleeves (37) move out from both ends of the clamping pin installation groove (32), and the clamping sleeves (37) provided at both ends of the clamping pin housing (36) are inserted into the clamping holes (31), and the clamping blocks (38) provided on the side walls of the clamping sleeves (37) are no longer squeezed by the side walls at both ends of the clamping pin installation groove (32); S3. The elastic force generated by the first spring (310) provided on the inner wall of the clamping block (38) drives the clamping block (38) to displace, so that the clamping block (38) is embedded in the embedding holes provided on the clamping holes (31). At the same time, the first spring (310) is slightly compressed, so that the clamping block (38) is in close fit with the inner walls of the embedding holes provided on the clamping holes (31). Before inserting the insertion block (2) provided on one side of the first wall body (1) into the slot (6) provided on the other side of the second wall body (1), first press the positioning pins (45) provided on both sides of the insertion block (2). The positioning pins (45) retract into the spring installation groove (41) provided on the insertion block (2). The limiting plate (44) provided inside the spring installation groove (41) squeezes the third spring (43) to form a compressed state, and the third telescopic rod (42) contracts synchronously; S4. After the insertion block (2) is inserted into the inside of the insertion slot (6), the positioning pin (45) can be released. The positioning pin (45) is squeezed by the inner walls on both sides of the insertion slot (6) and still contracts into the spring installation groove (41) provided on the insertion block (2). After the insertion block (2) is completely inserted into the insertion slot (6), the positioning pin (45) is on the same horizontal line as the positioning grooves (46) provided on the inner walls on both sides of the insertion slot (6). The positioning pin (45) is inserted into the inside of the positioning groove (46) by the elastic force generated by the third spring (43). When the first wall body (1) is spliced with the second wall body (1), the sealing strip (51) provided on one side of the first wall body (1) is inserted into the embedding groove (52) provided on the other side of the second wall body (1), so that the sealing strip (51) fits tightly in the embedding groove (52).