A medical prefabricated wall system and its installation method

Through overhead wall system and dry construction, combined with leveling components and caulking parts, the odor and bacteria breeding problems in hospital wall decoration are solved, and stable, odor-free wall installation and storage cabinet fixing are achieved.

CN115095097BActive Publication Date: 2025-07-11ZHEJIANG YASHA DECORATION
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Patent Information

Application Number
CN202210859689.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-21
Publication Date
2025-07-11
Estimated Expiration
2042-07-21

AI Technical Summary

Technical Problem

The wall decoration of existing hospitals has problems such as adhesive odor, bacteria are prone to breeding at joints, and installation is difficult and difficult to control. The foam glue smells pungent during the installation of the storage cabinet and the quality is difficult to control.

Method used

The overhead wall system is adopted, and dry construction is carried out using splicing parts, keels and leveling components. Combining the casing parts and edge-retraction parts, wall installation is achieved without grooves, and the storage cabinet is fixed through leveling components and mounting parts.

Benefits of technology

A wall system that is free of odor, bacteria-free and stable installation is achieved, simplifies the construction process, improves installation quality, and ensures stable and fixed lockers.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a medical assembled wall surface system and an installation method thereof, including splicing parts, keels, and leveling components. A plug-in body is vertically arranged in the middle of the base plate of the splicing part, and the front ends of the plug-in body horizontally extend outwards to both sides to form buckling plates. Buckling notches are formed at both side ends of the wall panel. A plurality of the keels are fixed to the wall body in parallel through the leveling components. The base plate is located on the back surface of the wall panel, and one side of the base plate is fixed to the keel and the leveling component located inside the keel, so that the wall panel and the splicing part can be sequentially plugged and assembled and fixed to be horizontally arranged on the front surface of the keel; a storage cabinet is embedded between two groups of horizontally arranged wall panels. The present invention can lift the original wall of the wall surface, without the need for grooving, and the wiring arrangement is simple and convenient; the dry operation has no waiting time, is environmentally friendly and has no peculiar smell.
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Description

Technical Field

[0001] The present invention relates to the technical field of hospital decoration, and particularly to a medical prefabricated wall system and an installation method thereof. Background Art

[0002] With the advocacy of national policies and the popularization of the concept of prefabricated interior decoration, the market acceptance of prefabricated industrialization technology has gradually increased. With the characteristics of dry construction, rapid construction, and environmental friendliness, prefabricated interior decoration technology has not only been limited to traditional home decoration, hotels, low-rent housing, etc., but has gradually been accepted by the hospital industry.

[0003] The design requirements for hospital walls are simple and clean colors, good sound insulation performance, green and environmentally friendly decoration materials, and attention should be paid to preventing cross-infection. Currently, in addition to traditional wet operations, hospital wall decoration usually uses adhesives to lay fire and ice boards for surface decoration. Although the fire and ice boards have good fire resistance, their colors are relatively monotonous, the boards are heavy and difficult to install, and after long-term use of the pasting method, problems such as larger, uneven, and blackened gaps at the joints are likely to occur. If treated with caulking agents, a large number of bacteria will breed in the wall joints.

[0004] The prefabricated installation method for the built-in storage cabinet is basically the same as the traditional method. Usually, holes need to be drilled in the wall panel and sealed at the edges. The back of the cabinet body is connected to the original wall, and the gaps are filled with foaming glue. The quality of the installation process is difficult to control, and the foaming glue has a pungent smell, and ventilation is required. Summary of the Invention

[0005] To solve the problems existing in the prior art, the present invention provides a medical prefabricated wall system and an installation method thereof, which lift the original wall of the wall, do not require grooving, and the wiring layout is simple and convenient; dry operation has no waiting time, is environmentally friendly and odorless.

[0006] The technical solution for the present invention to solve the problem is to provide a medical prefabricated wall system and an installation method thereof, including splicing parts, keels, and leveling components. A plug-in body is vertically arranged in the middle of the base plate of the splicing part. The front ends of the plug-in bodies horizontally extend out buckle plates to both sides respectively. Buckle notches are provided at both ends of the wall panel. Multiple keels are fixed on the wall through the leveling components in parallel. The base plate is located on the back of the wall panel, and one side of the base plate is fixed to the keel and the leveling component located inside the keel, so that the wall panel and the splicing part can be sequentially inserted and assembled and fixed to the front of the keel in a horizontal arrangement; a storage cabinet is embedded between two groups of horizontally arranged wall panels.

[0007] Furthermore, the leveling component includes a leveling base and a leveling column. The leveling base includes a sleeve and a docking seat. The sleeve is vertically arranged at the central position of the docking seat, and the sleeve is used to open a leveling hole with internal threads through the docking seat. The leveling column includes a fixing column, a limiting ring, a stud, and a rotating cavity. The fixing column cooperates with an expansion sleeve embedded in the wall to form an expansion bolt, so that the leveling column can be fixed on the wall. External threads are provided on the outer wall of the stud and are screwed with the leveling hole. A limiting ring for limiting the screwing depth and the wall-piercing depth is arranged between the stud and the fixing column. The stud is axially provided with the rotating cavity, so that after the stud is screwed with the leveling hole, a leveling tool can be inserted into the rotating cavity through the outside of the leveling hole penetrating the docking seat to rotate the leveling column. Wing plates are arranged on both sides of the docking seat, and a gap is reserved between the wing plates and the docking seat, and the gap corresponds to the upper side of the front surface of the keel.

[0008] Furthermore, a circumferential positioning structure is arranged on the fixing column, so that the fixing column can rotate in the expansion sleeve and does not fall off outward. The rotating cavity is a polygonal column cavity structure.

[0009] Furthermore, wing plates are arranged on both sides of the docking seat and are elastically abutted against the inner wall of the sliding cavity.

[0010] Furthermore, the keel is of a square tube structure. A mounting cavity is formed by inward depression along the axis in the middle of the front side wall of the keel. An axial notch is opened on the back side wall of the keel to form a snap cavity in the inner cavity of the keel. The docking seat is arranged corresponding to the snap cavity, so that the docking seat can slide through the snap cavity, and the wing plates are abutted against the upper and lower side walls of the snap cavity. The two gaps are respectively located on the upper and lower sides of the mounting cavity and are opposite to the upper and lower sides of the front side wall of the keel. A through hole is opened on the bottom wall of the mounting cavity, and the through hole is directly opposite to the leveling hole located at the center of the docking seat. The port of the mounting cavity is constricted, so that both the upper and lower side walls are inclined towards the center of the cavity.

[0011] Furthermore, a plurality of mounting parts for mounting to the mounting cavity are fixed on the back of the storage cabinet. The lower end of the wall panel located above the storage cabinet is fastened by an upper edge-receiving part fixed on the upper side of the front surface of the keel, and the upper edge-receiving part abuts against the upper surface of the rear end of the storage cabinet. The mounting part located at the uppermost end on the back of the storage cabinet shares the same keel with the upper edge-receiving part. The upper end of the wall panel located below the storage cabinet is fastened in an inverted manner by a lower edge-receiving part on the rear edge of the bottom of the storage cabinet.

[0012] Further, the mounting member includes an upper fixing plate, a mounting portion, and a lower fixing groove. The mounting portion is located between the upper fixing plate and the lower fixing groove and protrudes toward the keel. The lower side wall of the mounting portion is arranged parallel to the lower side wall of the mounting cavity, so that the mounting portion can be vertically mounted on the mounting cavity. The upper fixing plate is within the range of the mounting cavity, the lower fixing groove is on the front surface of the keel below the mounting cavity, and the bottom walls of the upper fixing plate and the lower fixing groove are in the same plane.

[0013] Further, both the upper edge trimming member and the lower edge trimming member are right-angled structures. Countersunk nail grooves are provided on the inner side of the vertical plate of the upper edge trimming member and the outer side of the vertical plate of the lower edge trimming member. Clamping members in the form of inverted teeth are provided on the upper side of the front end of the horizontal plate of the upper edge trimming member and the lower side of the front end of the horizontal plate of the lower edge trimming member.

[0014] Further, screws are provided in the countersunk nail grooves on the inner side of the vertical plate of the upper edge trimming member and are driven into the front upper side of the keel, so that the screws can be driven into the gap between the docking seat and the upper wing plate, thereby squeezing the wing plate into contact with the keel.

[0015] Further, the upper edge trimming member is placed in the docking gap between the upper end of the storage cabinet and the wall panel. A keel is provided between the back surface of the upper end of the storage cabinet and the wall. The vertical plate of the upper edge trimming member is fixedly connected to the structure on the upper side of the mounting cavity on the front surface of the keel, so that the clamping member at the front end of the horizontal plate of the upper edge trimming member can be clamped to the wall panel located above the storage cabinet.

[0016] A clamping cavity can be formed between the clamping member of the upper edge trimming member and the vertical plate, and the width of the clamping cavity matches the thickness of the wall panel.

[0017] The upper edge trimming member is fixed to the keel and is parallel to the keel, so that the horizontal plate can be pressed against the upper surface of the rear end of the storage cabinet in parallel.

[0018] Further, the lower edge trimming member is placed in the docking gap between the lower end of the storage cabinet and the wall panel. The vertical plate of the lower edge trimming member is fixed to the bottom corner of the rear end of the storage cabinet, so that the clamping member on the horizontal plate of the lower edge trimming member can be reversely clamped to the wall panel located below the storage cabinet.

[0019] Screws are provided in the countersunk nail grooves on the outer side of the vertical plate of the lower edge trimming member for fixedly connecting the lower edge trimming member to the bottom corner of the rear end of the storage cabinet.

[0020] The horizontal plate of the lower edge trimming member is parallel to the lower bottom surface of the storage cabinet, so that the inverted teeth on the horizontal plate can be reversely buckled in parallel to the upper end surface of the wall panel located below the storage cabinet.

[0021] Further, the front end face of the reverse teeth of the fastening member is formed as an arc surface.

[0022] Further, the base plate of the splicing member includes a positioning plate and a fixing plate. The positioning plate and the fixing plate are respectively arranged on both sides of the bottom end of the insertion body. The positioning plate extends and is provided with a settlement structure downward, so as to form a countersunk nail groove on the front surface of the positioning plate for fitting and fixing with the keel by screws; the fixing plate extends and is provided with a settlement plate downward, so as to form a fixing groove on the back surface of the fixing plate, and screws are arranged in the fixing groove to fix the splicing member to the wall panel; the bottom wall of the settlement plate and the bottom wall of the settlement structure are in the same plane; the fastening plate includes a horizontal plate and a lower fastening plate. The horizontal plate is vertically arranged on both sides of the insertion body and is parallel to the base plate. The lower fastening plate is arranged to incline downward at the front end of the horizontal plate, so that when the fastening plate is inserted into the fastening notch, the upper surface of the horizontal plate and the lower end of the lower fastening plate respectively abut against the upper and lower inner walls of the fastening notch.

[0023] Further, it further includes a caulking member for filling the assembly gap of the wall panel. The caulking member includes a plug-in plate and a docking plate. The plug-in plate is vertically arranged on the center line of the back surface of the docking plate, and the front surface of the docking plate is formed as an arc-shaped depression; a plug-in cavity is axially opened at the front end of the insertion body, and the length of the plug-in plate is matched with the depth of the plug-in cavity, so that when the plug-in plate is inserted to the bottom of the plug-in cavity, the arc-shaped depression of the docking plate can be smoothly docked with the upper surfaces of the wall panels on both sides of the insertion body; anti-dropping reverse tooth structures are arranged on both sides of the plug-in plate, and the front end of the plug-in plate is formed as a tip for facilitating insertion into the plug-in cavity.

[0024] Further, the caulking member is fixed to one side end of the wall panel, and the fastening plate of the insertion body is inserted into the fastening notch in a facing manner. The wall panels with the splicing members fixed to multiple side ends are sequentially spliced and assembled through the splicing members to form the decorative panels on the entire wall surface.

[0025] Further, the lower fixing groove is a sunken groove, and the groove is opened in a direction away from the keel, and its opening faces the keel, so that when a screw is driven into the lower fixing groove, the screw does not interfere with the keel.

[0026] The present invention also proposes an installation method for a medical prefabricated wall surface system, including:

[0027] S1: Pre-assemble the leveling column in the leveling seat, and install the leveling component into the keel to ensure that the empty positions are aligned;

[0028] S2: Layout the original wall elastic line according to the position of the leveling component, embed the expansion sleeve, and fix the leveling component on the wall body;

[0029] S3: Use an Allen wrench to pass through the perforations on the keel and rotate the leveling column to level the base layer.

[0030] S4: Install the mounting parts and the lower edge trim on the storage cabinet with screws, mount the storage cabinet on the horizontally placed keel, and install the upper edge trim.

[0031] S5: Fix the splicing parts to the keel in sequence, insert the wall panels on both sides of the splicing parts in sequence, dock the wall panels into the upper and lower edge trims, and insert the caulking parts into the insertion cavity.

[0032] The beneficial effects of the present invention are as follows:

[0033] The present invention is a medical prefabricated wall system, which uses the method of overhead leveling for dry construction, effectively reducing the mess on the site; the leveling structure is simple to operate, and the leveling effect is stable and does not change after installation and fixation, which can effectively maintain the flatness of the wall panel installation.

[0034] The present invention, through an assembled caulking component, caulks and fills while assembling the overhead wall panels, quickly completing the assembly and caulking and filling of the wall panels. The caulking parts and the splicing parts are used in combination, and the size of the caulking parts can be well controlled, enabling smooth docking with the wall panels, with a simple operation structure and a stable filling effect.

[0035] The present invention fixes and installs the storage cabinet based on a long keel profile, ensuring the stable assembly posture of the storage cabinet, avoiding the deformation of the cabinet body, and secondly reinforcing the storage cabinet through the upper and lower edge trims, while solving the problem of difficult docking between the wall panel and the storage cabinet. When assembling the storage cabinet, pre-install the mounting parts on the back of the storage cabinet and directly perform the mounting and docking of the storage cabinet, which is simple to operate. Based on the keel structure installation, the dry-hanging posture is parallel to the keel and is relatively stable. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] The drawings incorporated into the specification and constituting a part of the specification illustrate embodiments of the present invention and are used in conjunction with the description to explain the principles of the present invention. In these drawings, like reference numerals are used to represent like elements. The following drawings are some embodiments of the present invention, not all embodiments. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0037] Figure 1 It is a schematic diagram of the assembly of the wall panel of a medical prefabricated wall system according to an embodiment of the present invention;

[0038] Figure 2 For an embodiment of the present invention Figure 1 The enlarged view of the structure at A in;

[0039] Figure 3Schematic diagram of the cooperation between the splicing part and the caulking part in the embodiment of the present invention;

[0040] Figure 4 Structural diagram of the wall panel provided in the embodiment of the present invention;

[0041] Figure 5 Schematic diagram of the back structure of the wall panel assembly of a medical prefabricated wall system in the embodiment of the present invention;

[0042] Figure 6 Structural diagram of the keel in the embodiment of the present invention;

[0043] Figure 7 Schematic diagram of the cooperation between the keel and the leveling component in the embodiment of the present invention;

[0044] Figure 8 Exploded structural diagram of the leveling component in the embodiment of the present invention;

[0045] Figure 9 Structural diagram of a medical prefabricated wall system in the embodiment of the present invention;

[0046] Figure 10 Assembly side view of a medical prefabricated wall system in the embodiment of the present invention;

[0047] Figure 11 In the embodiment of the present invention Figure 10 Enlarged structural diagram at position B;

[0048] Figure 12 In the embodiment of the present invention Figure 10 Enlarged structural diagram at position C;

[0049] Figure 13 Schematic diagram of the cooperation between the mounting part and the keel in the embodiment of the present invention;

[0050] Figure 14 Structural diagram of the upper edge closing part in the embodiment of the present invention;

[0051] Figure 15 Structural diagram of the lower edge closing part in the embodiment of the present invention.

[0052] In the figure: 1. Splicing part; 2. Caulking part; 3. Keel; 4. Leveling seat; 5. Leveling column; 6. Mounting part; 8. Wall panel; 9. Storage cabinet; 11. Inserting body; 12. Positioning plate; 13. Fixing plate; 31. Mounting cavity; 32. Buckle cavity; 41. Sleeve; 42. Docking seat; 43. Leveling hole; 44. Wing plate; 51. Fixed column; 52. Limiting ring; 53. Stud; 54. Rotating cavity; 55. Expansion sleeve; 61. Upper fixing plate; 62. Mounting part; 63. Lower fixing groove; 81. Buckling notch; 91. Upper edge closing part; 92. Lower edge closing part. Detailed implementation manners

[0053] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some but not all of the embodiments of the present invention. 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 scope of protection of the present invention.

[0054] To solve the above problems, the present invention proposes a medical prefabricated wall system. Please refer to Figures 1-15 , which mainly includes splicing members 1, keels 3, and leveling components. A plug-in body 11 is vertically arranged in the middle of the base plate of the splicing member 1. The front ends of the plug-in body 11 horizontally extend outwards to both sides to form buckling plates. Buckling notches 81 are provided at both ends of the wall panel 8. Multiple keels 3 are fixed to the wall through the leveling components in parallel. The base plate is located on the back of the wall panel 8, and one side of the base plate is fixed to the keel 3 and the leveling components inside the keel 3, so that the wall panel 8 and the splicing member 1 can be sequentially inserted and assembled and fixed to the front of the keel 3 in a horizontal arrangement; a storage cabinet 9 is embedded between two horizontally arranged wall panels 8.

[0055] In the present invention, the leveling component includes a leveling column 5 and a leveling seat 4. The front section of the leveling column 5 is nailed into the wall. External threads are provided on the outer wall of the rear section of the leveling column 5. Internal threads are provided on the inner wall of the sleeve 41 of the leveling seat 4 corresponding to the external threads, so that a screw connection can be formed between the leveling column 5 and the leveling seat 4. An axial rotation cavity 54 is provided at the rear end of the leveling column 5. The leveling hole 43 for the internal thread of the sleeve 41 penetrates through the leveling seat 4, so that a leveling tool can be inserted into the rotation cavity 54 from outside the leveling hole 43 to rotate the leveling column 5 nailed into the wall.

[0056] In the present invention, the base plate of the splicing member 1 is located on the back of the wall panel 8. A plug-in body 11 is provided on the base plate. A plug-in cavity is provided at the front end of the plug-in body 11. Buckling notches 81 are provided at both ends of the wall panel 8. Buckling plates that can be inserted into the buckling notches 81 horizontally extend outwards from both side walls of the plug-in cavity, so that two wall panels 8 can be horizontally spliced on both sides of the plug-in body 11. The plug-in body 11 is located between the two wall panels 8. The caulking member 2 is inserted into the plug-in cavity facing the front end of the plug-in body 11 to fill the front gap between the two wall panels 8.

[0057] In the present invention, at least two keels 3 are horizontally arranged in parallel at the rear side of the storage cabinet 9, and the storage cabinet 9 is embedded between two groups of horizontally arranged wall panels 8. An inwardly recessed mounting cavity 31 is provided on one side of the keel 3 facing the back surface of the storage cabinet 9. A mounting member 6 is fixed at the position of the back surface of the storage cabinet 9 corresponding to the horizontally arranged keel 3. The mounting member 6 is provided with a protruding mounting portion 62 corresponding to the mounting cavity 31. The mounting portions 62 on the back surface of the storage cabinet 9 are respectively mounted in the mounting cavities 31 on the keel 3 to fix the storage cabinet 9 embedded in the wall panel 8.

[0058] In the present invention, the upper edge closing member 91 is buckled to the lower end of the wall panel 8 on the upper side of the storage cabinet 9 and pressed against the upper surface of the rear end of the storage cabinet 9. The lower edge closing member 92 is fixed to the rear edge of the bottom of the storage cabinet 9 and buckled to the upper end of the wall panel 8 on the lower side of the storage cabinet 9, so that the upper edge closing member 91 and the lower edge closing member 92 can limit and support the storage cabinet 9.

[0059] In an embodiment of the present invention, the flatness of the base layer is adjusted by the screwing depth between the leveling column 5 and the leveling seat 4. A plurality of leveling components can be arranged between the back surface of the keel 3 and the wall to level the keel 3; the front surface of the keel 3 is used for assembling and fixing the wall panel 8.

[0060] The way of driving the leveling column 5 into the wall can be realized in the form of an expansion bolt. Taking the front section of the leveling column 5 as the insertion bolt, an expansion sleeve 55 is pre-embedded in the wall, and the front section of the leveling column 5 is correspondingly inserted into the expansion sleeve 55 to realize the driving and fixing between the leveling column 5 and the wall.

[0061] Specifically, the leveling column 5 includes a fixed column 51, a limit ring 52, and a stud 53. The front section of the leveling column 5 is the fixed column 51, the rear section of the leveling column 5 is the stud 53, and the limit ring 52 is arranged at the butt joint position of the fixed column 51 and the stud 53 to limit and abut against the sleeve 41, which can prevent the fixed column 51 from entering the leveling hole 43 and damaging the thread structure, and further prevent the stud 53 from abutting against the keel 3 and interfering with the wall panel.

[0062] The front end of the fixed column 51 is provided with a tip, so as to be easily inserted into the expansion sleeve 55 and cooperate with it to form an expansion bolt to complete the fixed connection with the wall.

[0063] A circumferential positioning structure can be arranged on the fixed column 51, so that after the fixed column 51 is inserted into the expansion sleeve 55, it can be rotated but will not fall off outward. Preferably, the positioning structure is a ring-shaped inverted cone, which has a good anti-dropping effect while being easy to insert.

[0064] External threads are provided on the outer wall of the stud 53, and a rotating cavity 54 is provided along the axis of the stud 53. The rotating cavity 54 is preferably a polygonal column cavity structure. The rotating cavity 54 can be a hexagonal prism cavity structure, and the corresponding leveling tool can be rotated using an internal hexagon wrench.

[0065] In an embodiment of the present invention, the leveling post 5 can be a metal part, and the leveling base 4 and the expansion sleeve 55 can be plastic parts.

[0066] In an embodiment of the present invention, the leveling base 4 mainly includes a sleeve 41 and a docking seat 42. The sleeve 41 is located at the center position on the back of the docking seat 42, and the leveling hole 43 penetrates through the docking seat 42, so that a leveling tool can be inserted from the front of the docking seat 42 along the leveling hole 43 into the rotation cavity 54 for rotational leveling operation.

[0067] The docking seat 42 is limited and fixed to the keel 3 to restrict the relative rotation between the leveling base 4 and the leveling post 5, so that the screwed connection relationship between the leveling post 5 and the leveling base 4 is fixed and no longer changes, thereby effectively stabilizing the leveling result.

[0068] Specifically, the cooperation relationship between the keel 3 and the docking seat 42 can be sliding limit. The keel 3 is provided with a snap cavity 32 corresponding to the structure size of the docking seat 42, so that the docking seat 42 can be slidably inserted from the port of the keel 3 into the snap cavity 32 to form a snap effect. After leveling is completed, a keel 3 can be inserted through a plurality of arranged docking seats 42 to complete the snap effect, so that the screwed connection between the leveling base 4 and the leveling post 5 is relatively fixed, and the leveling effect is stable and no longer changes.

[0069] A perforation is opened on the bottom wall of the snap cavity 32 of the keel 3, which is directly opposite to the leveling hole 43, so that an Allen wrench can be inserted into the leveling hole 43 through the perforation for leveling operation. It can be understood that after the keel 3 is inserted into the docking seat 42, except for the perforation on it, other positions block the leveling hole 43, and leveling operation cannot be carried out through the leveling hole 43 normally.

[0070] Furthermore, wing plates 44 can be provided on both sides of the docking seat 42. The wing plates 44 are elastic structures, so that the docking seat 42 can be elastically abutted against the inner wall of the snap cavity 32, thereby fixing the position of the docking seat 42 on the keel 3 in a follow-up manner.

[0071] In the present invention, the caulking member 2 and the splicing member 1 are used in combination, which can make the exposed surface of the caulking member 2 smoothly dock with the wall panel 8, improving the caulking effect. The splicing member 1 is of an I-shaped structure. The base plate is located on the back of the wall panel 8, and a plug-in body 11 is vertically arranged on the base plate. The upper end of the plug-in body 11 horizontally extends out buckle plates on both sides, thus forming the basic structure of the I-shaped splicing member 1.

[0072] The plug-in body 11 is located between the side ends of two wall panels 8 when assembling the wall panels 8. Buckle notches 81 are opened at both side ends of the wall panel 8 to complete the plug-in assembly corresponding to the buckle plates. An axial plug-in cavity is opened at the front end of the plug-in body 11 for corresponding insertion and fixation of the caulking member 2 and completing the gap filling on the front side of the wall panel 8.

[0073] In an embodiment of the present invention, the caulking member 2 includes a plugging board and a docking board. The plugging board is vertically disposed on the center line of the back surface of the docking board, and the front surface of the docking board is provided with an arc-shaped depression. Anti-dropping reverse tooth structures are provided on both sides of the plugging board; the front end of the plugging board is provided as a tip for facilitating insertion into the plugging cavity.

[0074] It should be clear that the length of the plugging board matches the depth of the plugging cavity of the plugging body 11 located between the two wall panels 8, so that when the plugging board is inserted to the bottom of the plugging cavity, the two side edges of the arc-shaped depression of the docking board are just smoothly docked with the upper surfaces of the two side wall panels 8.

[0075] Based on the assembly structure of the wall panel 8 of the present invention, when the plugging board is inserted into the plugging cavity, the plugging body 11 is extruded outward, but both sides of the plugging body 11 are abutted against the side ends of the wall panel 8, so that the insertion of the plugging board is extruded and a stable plugging relationship can be maintained.

[0076] From the overall structure of the wall panel 8, the insertion of the caulking member 2 can increase the assembly stability of the wall panel 8, so that a stable abutting effect is formed between each wall panel 8 and the plugging body 11.

[0077] In an embodiment of the present invention, the buckling board includes a horizontal board and a lower buckling board. The horizontal board is vertically disposed on both sides of the plugging body 11 and is parallel to the base board. The lower buckling board is disposed at the front end of the horizontal board and inclines downward, so that when the buckling board is inserted into the buckling notch 81, the upper surface of the horizontal board and the lower end of the lower buckling board respectively abut against the upper and lower inner walls of the buckling notch 81.

[0078] In the present invention, the base board of the splicing member 1 is located on the back surface of the wall panel 8 and can be fixed to the keel 3, so as to fixedly install the assembled wall panels 8 on the wall. It can be understood that a leveling component can be provided between the keel 3 and the wall for leveling and fixing.

[0079] Specifically, the keel 3 can be horizontally disposed on the back surface of the wall panel 8 and fixed to the wall through a leveling component, so that the assembled wall panels 8 can be fixedly connected to the wall.

[0080] In an embodiment of the present invention, the base board includes a positioning board 12 and a fixing board 13. The positioning board 12 and the fixing board 13 are respectively disposed on both sides of the bottom end of the plugging body 11, and the positioning board 12 and the fixing board 13 are in the same plane. Among them, the positioning board 12 is used to be fixed to the keel 3 to determine the positions of the splicing member 1 and the wall panel 8; the fixing board 13 is used for fixing between the splicing member 1 and the wall panel 8.

[0081] Based on the interference situation of the fixing nails during actual installation, the positioning plate 12 can be extended and a settling structure can be provided downward to form a nail-sinking groove on the front surface of the positioning plate 12. The bottom surface of the nail-sinking groove is fitted with the keel 3 and fixed by fixing nails. The fixing nails are located in the nail-sinking groove, and their exposed structures will not interfere with the wall panel 8 located on the front surface of the positioning plate 12.

[0082] The fixing plate 13 is extended and a settling plate is provided downward to form a fixing groove on the back surface of the fixing plate 13. Fixing nails can be provided in the fixing groove to fix the splicing member 1 and the wall panel 8. The fixing nails are located in the fixing groove, and their exposed structures will not interfere with the keel 3.

[0083] Furthermore, the settling plate and the bottom wall of the nail-sinking groove are in the same plane to ensure smooth docking and fixation between the base plate and the keel 3.

[0084] The wing plate 44 abuts against the upper and lower side walls of the buckle cavity 32 and is located on the upper and lower sides of the mounting cavity 31 respectively. A gap is reserved between the wing plate 44 and the docking seat 42. When the fixing nails are driven into the keel 3 in the nail-sinking groove on the positioning plate 12 for fixation, the driving position can be aligned with the gap for fixation. While achieving the nail-driving and fixation effect, the fixation and limiting effect between the main structure of the leveling component and the keel 3 can be strengthened.

[0085] In the embodiment of the present invention, the side end of each wall panel 8 can be butt-jointed and fixed with a caulking member 2. The buckling plate on one side of the plug-in body 1 is inserted into the buckling notch 81 for butt-joint and fixed to the wall panel 8 through the base plate; at this time, the docking notch on the other side end of the wall panel 8 is idle, and the buckling plate on the other side of the plug-in body 1 is idle. The wall panels 8 with the splicing members 1 fixed at the side ends can be sequentially spliced and assembled through the splicing members 1 to form an integrated wall panel, which is the decorative panel covering the entire wall surface.

[0086] It can be understood that when multiple wall panels 8 are spliced, they can be sequentially butt-jointed with the two side ends as the splicing points.

[0087] In the present invention, the storage cabinet 9 is horizontally embedded into the assembly structure of the wall panel 8 and is mounted by relying on the keel 3 used for assembling the wall panel 8, so as to install and fix the storage cabinet 9 in the assembly structure of the wall panel 8. Adding the storage cabinet 9 in the wall decoration is convenient for storing items and increases the available space.

[0088] The storage cabinet 9 should be mounted and combined with at least two keels 3, which are located on the upper side and the lower side of the back surface of the storage cabinet 9 respectively, to effectively support the storage cabinet 9. The storage cabinet 9 is fitted and installed with the upper and lower wall panels 8, and a trimming component can be provided for gap filling.

[0089] The back fixing mount 6 of the locker 9 is cooperated with the keel 3 for mounting. Based on at least two mounts 6, the locker 9 is horizontally mounted on the leveled keel 3, and each mount 6 corresponds to one keel 3.

[0090] Specifically, the mounting cooperation structure can be respectively arranged on the mount 6 and the keel 3. Preferably, on the side of the keel 3 facing the back of the locker 9, a recessed mounting cavity 31 is opened along the direction of the keel 3. The mount 6 is horizontally fixed at the position corresponding to the keel 3 on the back of the locker 9. The mount 6 is provided with a protruding mounting part 62 corresponding to the mounting cavity 31, so that the mounting parts 62 on the back of the locker 9 can be respectively mounted in the mounting cavities 31 on the keel 3, thereby horizontally fixing the locker 9 in the assembly structure of the wall panel 8 and completing the inlay of the locker 9.

[0091] In the embodiment of the present invention, the mounting cavity 31 is opened at the central position of the front of the keel 3. The port of the mounting cavity 31 converges relative to the bottom wall, so that the side wall of the mounting cavity 31 inclines towards the center of the cavity. Preferably, the side walls of the mounting cavity 31 are symmetrically inclined, so that the keel 3 does not need to distinguish directions during use, and the same mounting cooperation can be implemented on both side walls of the mounting cavity 31.

[0092] The lower side wall of the mounting part 62 is inclined corresponding to the inclination angle of the side wall of the mounting cavity 31, so that the mounting part 62 can be vertically mounted on the keel 3, and the lower side wall of the mounting part 62 is stably attached to the side wall of the mounting cavity 31 and is not easy to fall off.

[0093] The mount 6 of the present invention further includes an upper fixing plate 61 and a lower fixing groove 63. The mounting part 62 is located between the upper fixing plate 61 and the lower fixing groove 63 and protrudes towards the keel 3. The lower fixing groove 63 is located below the mounting part 62 and is a sunken groove plate structure. The opening direction of the groove is away from the keel 3, and the opening of the groove faces the front of the keel 3, so that when the screw is fixed by fitting the locker 9, the screw does not interfere with the keel 3; the upper fixing plate 61 is located above the mounting part 62, and the upper fixing plate 61 is within the port range of the mounting cavity 31. Further, the upper fixing plate 61 and the bottom wall of the lower fixing groove 63 are in the same plane, so that the mount 6 can be flatly attached and fixed to the back of the locker 9.

[0094] Specifically, the fixing plate 1 can be directly fixed to the locker 9 with screws, and screws are arranged in the lower fixing groove 63 to fix the locker 9. The outer cap of the screw is placed in the lower fixing groove 63, which does not make contact with the keel 3 and does not damage the mounting cooperation posture between the keel 3 and the mount 6.

[0095] In an embodiment of the present invention, an in - sunken mounting cavity 31 is provided on the front of the keel 3. Based on the square - frame structure of the keel 3, an opening can be provided on the opposite side of the mounting cavity 31 to form a snap - lock cavity 32 for snap - locking the leveling component, and the keel 3 is installed and fixed on the wall.

[0096] Specifically, please refer to Figure 7 , the leveling component can be provided with a docking seat 42 corresponding to the snap - lock cavity 32, so that the keel 3 can be inserted and installed on the docking seat 42 of the leveling component and fixed.

[0097] In a specific embodiment, the present invention is illustrated by taking two keels 3 as an example. Based on the distribution of the keels 3 on the back of the storage cabinet 9, the first keel can be at the docking position between the upper end of the back of the storage cabinet 9 and the wall panel 8; the second keel can be located at a position closer to the lower part of the back of the storage cabinet 9.

[0098] In an embodiment of the present invention, there are docking gaps between the assembly structures of the storage cabinet 9 and the wall panels on the upper and lower sides. A trimming component can be provided for blocking and beautifying operations at the same time.

[0099] The trimming component includes an upper trimming piece 91 and a lower trimming piece 92. Both the upper trimming piece 91 and the lower trimming piece 92 are of right - angle structures. Sinking nail grooves are provided on the inner side of the vertical plate of the upper trimming piece 91 and the outer side of the vertical plate of the lower trimming piece 92; on the upper side of the front end of the horizontal plate of the upper trimming piece 91 and the lower side of the front end of the horizontal plate of the lower trimming piece 92, inverted - tooth - type fastening parts are provided.

[0100] The upper trimming piece 91 is placed in the docking gap between the upper end of the storage cabinet 9 and the wall panel 8. There is a keel 3 between the back of the upper end of the storage cabinet 9 and the wall. The vertical plate of the upper trimming piece 91 is fixedly connected to the structure above the mounting cavity 31 on the front of the keel 3, so that the fastening part at the front end of the horizontal plate of the upper trimming piece 91 can be buckled to the wall panel 8 above the storage cabinet 9.

[0101] The lower trimming piece 92 is placed in the docking gap between the lower end of the storage cabinet 9 and the wall panel 8. The vertical plate of the lower trimming piece 92 is fixed to the bottom edge of the back end of the storage cabinet 9, so that the fastening part on the horizontal plate of the lower trimming piece 92 can be reversely buckled to the wall panel 8 below the storage cabinet 9.

[0102] It can be understood that the upper trimming piece 91 is fixed to the keel 3 and can be levelly docked with the storage cabinet 9. If there are small - scale errors on the lower end face of the wall panel 8 above the storage cabinet 9, they can be blocked by the fastening part of the upper trimming piece 91. The upper trimming piece 91 can also buckle the wall panel 8 to stabilize the assembly structure.

[0103] The lower trimming piece 92 is fixed to the bottom edge of the back end of the storage cabinet 9, and the fastening part on the horizontal plate reversely buckles the wall panel 8 below the storage cabinet 9. If there are small - scale errors on the upper end face of the wall panel 8, they can also be blocked by the fastening part of the lower trimming piece 92.

[0104] It can be understood that although the edge trimming component of the present invention has a certain limiting and supporting effect, it cannot be fully used as the installation structure of the storage cabinet 9. The structural size of the edge trimming component is small and cannot support the storage cabinet 9 for subsequent placing items. If the items inside are too heavy, relying solely on the edge trimming component for fixation is likely to cause the storage cabinet 9 to fall. Therefore, there is a necessary connection structure between the storage cabinet 9 and the wall, that is, the mounting cooperation between the mounting member 6 and the keel 3, which serves as the main supporting and fixing structure of the storage cabinet 9 to prevent the storage cabinet 9 from falling off.

[0105] A fastening cavity can be formed between the fastening member of the upper edge trimming member 91 and the vertical plate. The width of the fastening cavity only needs to match the thickness of the wall panel 8, so that the wall panel 8 can be vertically located in the fastening cavity. Screws are arranged in the nail-sinking groove on the inner side of the vertical plate and fixedly connected to the keel 3 correspondingly, so that the wall panel 8 located in the fastening cavity can be tightened towards the keel 3 side by buckling, which is beneficial to the stability of the assembly structure of the wall panel 8.

[0106] It should be clear that the upper edge trimming member 91 is fixed to the keel 3 and parallel to the keel 3, so that the cross plate can be parallelly pressed against the upper surface of the rear end of the storage cabinet 9. For the lower end surface of the wall panel 8 with a certain dimensional error, the fastening cavity can cover this dimensional error and be parallelly abutted against the upper surface of the rear end of the storage cabinet 9.

[0107] Screws are arranged in the nail-sinking groove on the outer side of the vertical plate of the lower edge trimming member 92 for fixedly connecting the lower edge trimming member 92 to the rear edge of the bottom of the storage cabinet 9. The storage cabinet 9 is embedded between the wall panels, so that the reverse teeth on the lower edge trimming member 92 can be buckled backward to press the wall panel 8 located below the storage cabinet 9, which is beneficial to the stability of the assembly structure of the wall panel 8.

[0108] It should be clear that the cross plate of the lower edge trimming member 92 is parallel to the lower bottom surface of the storage cabinet 9, so that the reverse teeth on the cross plate can be parallelly buckled backward to the upper end surface of the wall panel 8 located below the storage cabinet 9. For the upper end surface of the wall panel 8, the dimensional error existing thereon will be blocked by the reverse teeth of the fastening member. At the same time, the lower edge trimming member 92 can still be butt-jointed parallelly with the lower end surface of the storage cabinet 9.

[0109] In the embodiment of the present invention, the front end surface of the reverse teeth of the fastening member is formed as an arc surface to smoothly butt-joint the corner structure between the wall panel 8 and the storage cabinet 9.

[0110] Based on the wall system of the present invention, whether the storage cabinet 9 is embedded or not can be installed according to actual needs. The assembly of the wall panel 8 on the wall depends on the fixed cooperation between the splicing member 1 and the keel 3. Therefore, when the storage cabinet 9 does not need to be embedded, a group of horizontally arranged wall panels 8 can be supplemented at the position of the storage cabinet 9.

[0111] It should be clear that in the embodiments of the present invention, the upper edge receiving member 91 and the mounting member 6 located at the uppermost end of the back of the storage locker 9 share the same keel 3. The vertical plate on the front of the keel 3 for fixing the upper edge receiving member 91, and the mounting cavity 31 in the middle of the front of the keel 3 is used to mount the mounting portion 61 of the mounting member 6 on the back of the storage locker 9, and the lower fixing groove 63 of the mounting member 6 facing the lower side of the front of the keel 3. There is at least one other keel 3 at the lower part of the back of the storage locker 9, as long as it does not interfere with the fixation of the lower edge receiving member 92.

[0112] The lower ends of a group of horizontally arranged wall panels 8 are located in the fastening cavity of the upper edge receiving member 91. After the upper edge receiving member 91 is fixed to the keel 3, the gap between the wing plate 44 nailed into the keel 3 and the docking seat 42 first strengthens the limit fixation effect between the leveling component and the keel 3; secondly, it can be in a horizontal state and be flush with the upper surface of the rear end of the storage locker 9; thirdly, it can receive and edge the lower ends of the wall panels 8 falling into the fastening cavity.

[0113] In the embodiments of the present invention, the wall panel 8 can be made of modified magnesium oxychloride board, with uniform internal components, high strength, a density of 1.0 g / cm³, and is coated with ultra-soft CPL paper using pur hot melt adhesive, with high hardness, scratch resistance, and rich finishes, reaching fire protection grade A, and can be applicable to environments such as hospitals.

[0114] Based on the structure of the present invention, the original wall of the overhead wall does not need to be grooved, the line layout is simple and convenient, it is easy to repair, detachable, there is no waiting time for dry construction, the prefabrication degree of each component is high, and the quality is easy to control. The wall joints are filled with caulking members 2 to cover problems such as uneven wall joints, deformation, and blackening, and avoid the growth of bacteria during long-term use. The storage locker 9 is installed by the dry hanging method, is detachable, and is environmentally friendly and odorless.

[0115] In the embodiments of the present invention, an installation method for a medical prefabricated wall system is also proposed, which specifically includes:

[0116] S1: Pre-assemble the leveling columns in the leveling seats, and install the leveling components into the keels to ensure that the empty positions are aligned;

[0117] S2: Layout the original wall lines according to the positions of the leveling components, embed expansion sleeves, and fix the leveling components on the wall;

[0118] S3: Use an inner hexagon wrench to rotate the leveling columns through the perforations on the keels for primary leveling;

[0119] S4: Install the mounting members and the lower edge receiving members on the storage locker with screws, and mount the storage locker on the horizontally arranged keels, and install the upper edge receiving members;

[0120] S5: Fix the splicing members to the keels in sequence, insert the wall panels on both sides of the splicing members in sequence, dock the wall panels into the upper and lower edge receiving members, and insert the caulking members into the insertion cavities.

[0121] The content described above can be implemented alone or in various combinations, and these variant ways are all within the protection scope of the present invention.

[0122] It should be noted that in this text, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "comprising an..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element.

[0123] The above content is a further detailed description of the present invention in combination with specific preferred embodiments, and it cannot be determined that the specific embodiments of the present invention are only limited to these descriptions. For those of ordinary skill in the technical field to which the present invention pertains, without departing from the concept of the present invention, several simple deductions or substitutions can be made, and all should be regarded as belonging to the protection scope of the present invention.

Claims

1. A medical assembled wall system, characterized in that It includes splicing parts (1), keels (3), and a leveling component. A plug-in body (11) is vertically arranged in the middle of the base plate of the splicing part (1). The front ends of the plug-in body (11) horizontally extend outwards to both sides to form buckling plates. Buckling notches (81) are provided at both side ends of the wall panel (8). Multiple keels (3) are fixed to the wall in parallel through the leveling component. The base plate is located on the back of the wall panel (8), and one side of the base plate is fixed to the keel (3) and the leveling component located inside the keel (3), so that the wall panel (8) and the splicing part (1) can be successively plugged and assembled and fixed to the front of the keel (3) in a horizontal arrangement; A storage cabinet (9) is embedded between two horizontally arranged wall panels (8); The leveling component includes a leveling seat (4) and a leveling column (5). The leveling seat (4) includes a sleeve (41) and a docking seat (42). The sleeve (41) is vertically arranged at the central position of the docking seat (42). The sleeve (41) is used to open a leveling hole (43) with internal threads that penetrates the docking seat (42); The leveling column (5) includes a fixed column (51), a limiting ring (52), a stud (53), and a rotating cavity (54). The fixed column (51) cooperates with an expansion sleeve (55) embedded in the wall to form an expansion bolt, so that the leveling column (5) can be fixed to the wall. External threads are provided on the outer wall of the stud (53) to be screwed and matched with the leveling hole (43). A limiting ring (52) for limiting the screwing depth and the wall-piercing depth is arranged between the stud (53) and the fixed column (51). The stud (53) is axially provided with the rotating cavity (54), so that after the stud (53) is screwed with the leveling hole (43), a leveling tool can be inserted into the rotating cavity (54) through the outside of the leveling hole (43) that penetrates the docking seat (42) to rotate the leveling column (5); Wings (44) are arranged on both sides of the docking seat (42). A gap is reserved between the wing (44) and the docking seat (42), and the gap corresponds to the upper side of the front of the keel (3); The keel (3) has a square tube structure. A hanging cavity (31) is recessed axially in the middle of the front side wall of the keel (3). An axial notch is provided on the back side wall of the keel (3) so that a buckle cavity (32) is formed in the inner cavity of the keel (3). The docking seat (42) is arranged corresponding to the buckle cavity (32), so that the docking seat (42) can slide through the buckle cavity (32), and the wings (44) are in contact with the upper and lower side walls of the buckle cavity (32). The two gaps are respectively located on the upper and lower sides of the hanging cavity (31) and are opposite to the upper and lower sides of the front side wall of the keel (3); A perforation is provided on the bottom wall of the hanging cavity (31), and the perforation is directly opposite to the leveling hole (43) located at the center of the docking seat (42); The ports of the hanging cavity (31) are constricted, so that both the upper and lower side walls are inclined towards the center of the cavity.

2. The medical prefabricated wall system according to claim 1, wherein, A plurality of mounting members (6) for mounting to the mounting cavity (31) are fixed to the back surface of the storage locker (9); the lower end of the wall panel (8) located above the storage locker (9) is fastened by an upper edge-receiving member (91) fixed to the upper side of the front surface of the keel (3), and the upper edge-receiving member (91) abuts against the upper surface of the rear end of the storage locker (9); the mounting member (6) at the uppermost end of the back surface of the storage locker (9) shares the same keel (3) with the upper edge-receiving member (91); the upper end of the wall panel (8) located below the storage locker (9) is reversely fastened by a lower edge-receiving member (92) fixed to the rear edge of the bottom of the storage locker (9).

3. The medical prefabricated wall surface system according to claim 2, wherein The mounting member (6) includes an upper fixing plate (61), a mounting portion (62), and a lower fixing groove (63). The mounting portion (62) is located between the upper fixing plate (61) and the lower fixing groove (63) and protrudes in the direction of the keel (3). The lower side wall of the mounting portion (62) is arranged parallel to the lower side wall of the mounting cavity (31), so that the mounting portion (62) can be vertically mounted on the mounting cavity (31); the upper fixing plate (61) is within the range of the mounting cavity (31), the lower fixing groove (63) is on the front surface of the keel (3) below the mounting cavity (31), and the bottom walls of the upper fixing plate (61) and the lower fixing groove (63) are in the same plane.

4. The medical prefabricated wall system according to claim 2, wherein, Both the upper edge-receiving member (91) and the lower edge-receiving member (92) are right-angled structures. Counterbore grooves are provided on the inner side of the vertical plate of the upper edge-receiving member (91) and the outer side of the vertical plate of the lower edge-receiving member (92); snap-fastening members in the form of reverse teeth are provided on the upper side of the front end of the horizontal plate of the upper edge-receiving member (91) and the lower side of the front end of the horizontal plate of the lower edge-receiving member (92).

5. The medical prefabricated wall system according to claim 4, characterized in that, Screws are provided in the counterbore groove on the inner side of the vertical plate of the upper edge-receiving member (91) and are driven into the front upper side of the keel (3) so that the screws can be driven into the gap between the docking seat (42) and the upper wing plate (44), thereby squeezing the wing plate (44) to abut against the keel (3).

6. The medical prefabricated wall system according to claim 1, characterized in that The base plate of the splicing piece (1) comprises a positioning plate (12) and a fixing plate (13). The positioning plate (12) and the fixing plate (13) are arranged on both sides of the bottom end of the plug-in body (11). The positioning plate (12) is extended and a sinking structure is arranged downwardly, so that a sinking groove is formed on the front side of the positioning plate (12) for fitting with the keel (3) and fixing with screws; the fixing plate (13) is extended and a sinking plate is arranged downwardly, so that a fixing groove is formed on the back side of the fixing plate (13), and a fixing groove is arranged in the fixing groove. The splicing piece (1) and the wall panel (8) are fixed by screws; the settlement plate and the bottom wall of the settlement structure are in the same plane; the buckle plate comprises a horizontal plate and a lower buckle plate, the horizontal plate is vertically arranged on both sides of the plug-in body (11) and is parallel to the base plate, and the lower buckle plate is arranged with the front end of the horizontal plate tilted downward, so that when the buckle plate is inserted into the buckle notch (81), the upper surface of the horizontal plate and the lower end of the lower buckle plate respectively abut against the upper and lower inner walls of the buckle notch (81).

7. A medical prefabricated wall system according to claim 1, wherein It also includes a caulking piece (2) for filling the assembly gap of the wall panel (8), the caulking piece (2) including a plug-in plate and a docking plate, the plug-in plate being arranged perpendicularly to the back center line of the docking plate, and the front of the docking plate being arranged as an arc-shaped depression; a plug-in cavity is axially provided at the front end of the plug-in body (11), the length of the plug-in plate matches the depth of the plug-in cavity, so that when the plug-in plate is plugged into the bottom of the plug-in cavity, the arc-shaped depression of the docking plate can smoothly dock with the upper surface of the wall panel (8) on both sides of the plug-in body (11); inverted tooth structures are arranged on both sides of the plug-in plate to prevent it from falling off, and the front end of the plug-in plate is arranged as a pointed end to facilitate plugging into the plug-in cavity.

8. The installation method of a medical assembled wall surface system according to any one of claims 1-7, characterized in that The following steps are involved: S1: Pre-install the leveling column in the leveling seat, and install the leveling assembly into the keel to ensure that the empty space is aligned; S2: Arrange the original wall elastic line according to the position of the leveling component, embed the expansion sleeve, and fix the leveling component on the wall; S3: Use an Allen wrench to rotate the leveling column through the holes on the keel to level the base; S4: Install the mounting parts and lower edge parts on the locker with screws, mount the locker on the horizontal keel, and install the upper edge parts; S5: sequentially fix the splicing pieces to the keel, sequentially insert the wall panels on both sides of the splicing pieces, butt the wall panels into the upper and lower edge trimming pieces, and insert the caulking pieces into the insertion cavity.

Citation Information

Patent Citations

  • Medical fabricated wall surface system

    CN217998678U